CN117616112A - 用于增加酶活性和昆虫信息素的生产的改进的方法和细胞 - Google Patents

用于增加酶活性和昆虫信息素的生产的改进的方法和细胞 Download PDF

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CN117616112A
CN117616112A CN202280041758.2A CN202280041758A CN117616112A CN 117616112 A CN117616112 A CN 117616112A CN 202280041758 A CN202280041758 A CN 202280041758A CN 117616112 A CN117616112 A CN 117616112A
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I·波罗迪娜
C·霍尔肯布林克
K·R·基尔戴高德
K·佩特凯维舍斯
L·温宁
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Abstract

本文提供了通过共表达NAD(P)H细胞色素b5还原酶(EC 1.6.2.2,Ncb5or)来增加去饱和酶和脂肪酰基还原酶的酶活性的方法,以及用于在细胞中生产被包含在信息素中的化合物的方法,特别是蛾信息素,诸如饱和的和去饱和的脂肪醇以及饱和的和去饱和的脂肪醇乙酸酯和脂肪酸及其衍生物。

Description

用于增加酶活性和昆虫信息素的生产的改进的方法和细胞
技术领域
本发明涉及用于增加酶活性的方法,以及用于在细胞中生产被包含在信息素、特别是蛾信息素中的化合物的方法,所述化合物是诸如饱和的和去饱和的脂肪醇、饱和的和去饱和的脂肪酸以及饱和的和去饱和的脂肪醇乙酸酯、及其衍生物。
背景技术
预期害虫综合治理(IPM)在提高作物产量、最大限度地减少环境影响和实现有机食品生产方面发挥重要作用。IPM采用替代性害虫控制方法,诸如使用信息素破坏交配、使用信息素进行大规模诱捕、有益昆虫等。
信息素构成一组不同的化学物质,昆虫(像其它生物一样)在各种情况下用它们与同一物种的个体进行交流,所述情况包括配偶吸引、警报、踪迹标记和聚集。与远距离配偶寻找相关的昆虫信息素已经在农业和林业应用中用于监测和控制害虫,作为杀虫剂的安全且环境友好的替代品。用于害虫控制的信息素的生物生产在价格、特异性和环境影响方面优于化学合成。
鳞翅目(Lepidoptera)蛾的I型信息素是10至18个碳链长度的不饱和脂肪醇、醛或乙酸酯。在雄蛾触角中的受体对具有特定链长度、右立体异构体(双键的Z或E确认)中特定碳处的去饱和以及末端官能团的信息素具有选择性(Tupec,Bucek,Valterova,和Pichova,2017)。几种生物合成酶会促进信息素生产,包括脂肪酰基辅酶A去饱和酶和脂肪酰基辅酶A还原酶。所述去饱和酶将双键引入脂肪酰基辅酶A中。它们被认为是从NADH接收细胞色素b5还原酶和细胞色素b5提供的电子的整合膜蛋白。所述脂肪酰基还原酶将饱和的或去饱和的脂肪酰基辅酶A转化为饱和的或去饱和的脂肪醇。这些酶也是整合膜蛋白,但被认为直接从NADPH接收电子。
除了“经典的”单结构域膜结合的细胞色素b5还原酶(CytB5Red)和细胞色素b5(CytB5)之外,另一种名为NAD(P)H细胞色素b5氧化还原酶(Ncb5or;也被称作细胞色素b5还原酶4或Cyb5R4)的flavoheme还原酶是在动物界高度保守的。Ncb5or酶与经典的CytB5Red/CytB5对不同,因为Ncb5or含有三个结构域:细胞色素b5-样结构域、细胞色素b5还原酶-样结构域和CHORD-SGT1(CS结构域)(Deng,等人,2010)(参见图1)。CS结构域存在于许多不同的蛋白质中,并且被认为参与蛋白质-蛋白质相互作用(Benson,等人,2019;Zhu,等人,2004)。与CytB5Red相比,Ncb5or CytB5Red-样结构域含有多个插入和缺失(Benson等人,2019)。CytB5-样结构域也是如此(图2)(Benson等人,2019)。与CytB5Red/CytB5系统相比,Ncb5or被认为具有根本不同的电子转移机制(Benson等人,2019)。此外,它们具有利用NADH和NADPH的非凡能力(Benson等人,2019)。
已经主要在小鼠或人细胞系中研究了可溶性的Ncb5or,其中Ncb5or的敲除已经导致Δ9去饱和的减少(Zambo,等人,2020;Larade,等人,2008)。迄今为止,据我们所知,还没有在昆虫中关于Ncb5or基因或其功能的描述。
发明内容
本发明如在权利要求书中所定义。
本文提供了一种细胞,其表达:
i)第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和
ii)异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);
由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高的滴度和/或纯度生产所述化合物。
本文还提供了一种细胞,其表达:
i)第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、去饱和的脂肪酰基辅酶A和去饱和的脂肪酸的化合物;和
ii)异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);
由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高的滴度和/或纯度生产所述化合物。
本文进一步提供了一种用于增加至少一种酶的活性的方法,所述酶选自由去饱和酶和脂肪酰基辅酶A还原酶(FAR)组成的组,所述方法包括以下步骤:
a.提供去饱和酶,所述酶能够在脂肪酰基辅酶A中引入至少一个双键,从而将所述脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪酰基辅酶A;和/或
b.提供FAR,所述FAR能够将所述去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇,从而生产所述去饱和的脂肪醇;和
c.使所述去饱和酶和/或FAR与Ncb5or接触,从而与在没有所述Ncb5or存在下所述去饱和酶和/或FAR的活性相比,增加所述去饱和酶和/或FAR的活性,其中在相同条件下测量所述活性;
其中通过测量由所述去饱和酶和/或所述FAR形成的产物的浓度来测量活性的增加。
本文还提供了一种用于在细胞中生产选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物的方法,所述方法包括以下步骤:
a.提供细胞并在培养基中温育所述细胞;和
b.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
c.在所述细胞中表达Ncb5or;
d.任选地,回收所述化合物。
本文进一步提供了一种用于增加在细胞中生产的选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物的滴度和/或纯度的方法,所述细胞能够合成一种或多种脂肪酰基辅酶A和/或能够从其环境中输入脂肪酰基辅酶A,所述方法包括以下步骤:
a.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
b.在所述细胞中表达Ncb5or,从而与在相同条件下来自不表达所述Ncb5or的细胞的滴度和/或纯度相比,增加所述化合物的滴度和/或纯度;
c.任选地,回收所述化合物。
本文还提供了核酸构建体系统,其包含编码Ncb5or和以下的核酸:
a.能够在脂肪酰基辅酶A中引入至少一个双键的去饱和酶;和/或
b.脂肪酰基辅酶A还原酶FAR,其能够将去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇。
本文进一步提供了一种部件试剂盒,其包含:
a.在本申请中提供的细胞;
b.在本申请中提供的核酸系统,其中所述构建体是用于修饰细胞;
c.使用说明;和
d.任选地,要被修饰的细胞。
本文还提供了Ncb5or在用于增加一种或多种酶的活性的方法中的用途。
本文进一步提供了通过本申请的方法可得到的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛、去饱和的脂肪酸和/或饱和的脂肪醛。
本文还提供了通过本申请的方法可得到的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛、去饱和的脂肪酸和/或饱和的脂肪醛的用途。
本文进一步提供了一种监测害虫的存在或破坏害虫的交配的方法,所述方法包括以下步骤:
a.根据本申请的方法生产去饱和的脂肪醇和任选的去饱和的脂肪醇乙酸酯和/或去饱和的脂肪醛;和
b.将所述脂肪醇和任选的所述脂肪醇乙酸酯和/或所述去饱和的脂肪醛配制为信息素组合物;和
c.采用所述信息素组合物作为害虫综合治理组合物。
本文还提供了一种发酵液,其含有根据本申请的酵母细胞。
本文进一步提供了一种发酵系统或催化系统,其包含根据本申请的酵母细胞。
本文还提供了一种用于扩散信息素组合物的装置,诸如信息素分配器,所述信息素组合物包含通过本申请的方法可得到的去饱和的脂肪醇和/或去饱和的脂肪醇乙酸酯和/或去饱和的脂肪醛。
本文进一步提供了一种用于在细胞中生产至少1mg/L的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛和/或饱和的脂肪醛的方法,诸如至少1.5mg/L,诸如至少5mg/L,诸如至少10mg/L,诸如至少25mg/L,诸如至少50mg/L,诸如至少100mg/L,诸如至少250mg/L,诸如至少500mg/L,诸如至少750mg/L,诸如至少1g/L,诸如至少2g/L,诸如至少3g/L,诸如至少4g/L,诸如至少5g/L,诸如至少6g/L,诸如至少7g/L,诸如至少8g/L,诸如至少9g/L,诸如至少10g/L,诸如至少11g/L,诸如至少12g/L,诸如至少13g/L,诸如至少14g/L,诸如至少15g/L,诸如至少16g/L,诸如至少17g/L,诸如至少18g/L,诸如至少19g/L,诸如至少20g/L,诸如至少25g/L,诸如至少30g/L,诸如至少35g/L,诸如至少40g/L,诸如至少45g/L,诸如至少50g/L,或更多。
本文还提供了一种用于增加在细胞中生产的选自去饱和的脂肪醇、去饱和的脂肪酸以及去饱和的脂肪酰基辅酶A的化合物的纯度的方法,所述细胞能够合成一种或多种脂肪酰基辅酶A和/或能够从其环境中输入脂肪酰基辅酶A,所述方法包括以下步骤:
a.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
b.在所述细胞中表达Ncb5or,从而与在相同条件下来自不表达所述Ncb5or的细胞生产相比增加所述化合物的生产;
其中所述化合物的纯度是所述化合物相对于所述细胞生产的相同化合物组内的所有化合物的比率或百分比,诸如所述去饱和的脂肪醇相对于所述细胞生产的所有去饱和的脂肪醇的百分比,诸如去饱和的脂肪酸相对于所述细胞生产的所有脂肪酸的百分比,和/或诸如去饱和的脂肪酰基辅酶A相对于所述细胞生产的所有脂肪酰基辅酶A的百分比。
附图说明
图1.A)可视化经典细胞色素B5、细胞色素B5还原酶和Ncb5or的结构域预测的示意图。B)多个Ncb5or和经典细胞色素B5和细胞色素B5还原酶的氨基酸比对和结构域预测。使用Batch CD-检索工具预测结构域(https://www.ncbi.nlm.nih.gov/Structure/bwrpsb/bwrpsb.cgi)。
图2.来自不同的Ncb5or和经典细胞色素B5蛋白质的预测细胞色素B5结构域的氨基酸比对;DmCytB5,黑腹果蝇(Drosophila melanogaster)细胞色素B5(Uniprot IDQ9V4N3);HsCytB5typeB,智人(Homo sapiens)细胞色素B5(Uniprot ID O43169);MaCytB5,高山被孢霉(Mortierella alpina)细胞色素B5(NCBI ID Q9Y706.1);剩余的序列可以在序列表中找到。
具体实施方式
定义
生物杀虫剂:术语“生物杀虫剂”是“生物学杀虫剂”的缩写,并表示几种类型的害虫管理干预:通过捕食、寄生或化学关系。在欧盟,生物杀虫剂已经被定义为“一种基于微生物或天然产物的杀虫剂形式”。在美国,美国环保署(EPA)将其定义为“包括控制害虫的天然存在的物质(生化杀虫剂)、控制害虫的微生物(微生物杀虫剂)、以及含有添加的遗传物质的植物所产生的杀虫物质(掺入植物的保护剂)或PIP”。本发明更具体地涉及包含天然产物或天然存在的物质的生物杀虫剂。它们通常通过生长和浓缩天然存在的生物体和/或其代谢物(包括细菌和其它微生物、真菌、线虫、蛋白质等)而产生。它们经常被认为是害虫综合治理(IPM)计划的重要组成部分,并已经作为合成化学植物保护产品(PPP)的替代品而受到广泛的实际关注。《生物控制剂手册》(Manual of Biocontrol Agents)(2009年:以前的《生物杀虫剂手册》(Biopesticide Manual))给出了可用的生物杀昆虫剂(和其它基于生物学的控制)产品的概述。
混浊浓度:该术语在本文中用于表示表面活性剂、特别是非离子表面活性剂或二醇溶液在溶液中的浓度,高于该浓度,在给定的温度下,所述表面活性剂和所述溶液的混合物开始相分离,并出现两相,从而变得混浊。例如,在给定温度下表面活性剂在水溶液中的混浊浓度是当与所述水溶液混合时产生两相的所述表面活性剂的最小浓度。所述混浊浓度可以从表面活性剂的生产商获得,或者它可以通过制作剂量曲线并确定混合物发生相分离时的浓度来实验性地确定。
浊点:表面活性剂、特别是非离子表面活性剂或二醇溶液在溶液(例如水溶液)中的浊点是所述表面活性剂和所述溶液(例如所述水溶液)的混合物开始相分离并出现两相从而变得混浊的温度。这种行为是含有聚氧乙烯链的非离子表面活性剂的特征,其在水中表现出与温度行为相反的溶解度,并因此随着温度升高而在某个点“变浑浊”。表现出这种行为的二醇被称为“浊点二醇”。所述浊点受盐度影响,在更多盐的液体中通常较低。
去饱和的:术语“去饱和的”在本文中将与术语“不饱和的”互换使用,并表示含有一个或多个碳-碳双键或碳-碳三键的化合物。
衍生自:当表示衍生自生物体的多肽或多核苷酸时,该术语意指所述多肽或多核苷酸是所述生物体天然的,即其天然存在于所述生物体中。
乙氧基化的和丙氧基化的C16-C18醇基消泡剂:该术语表示一组聚乙氧基化的非离子表面活性剂,其包含以下或主要由以下组成:乙氧基化的和丙氧基化的C16-C18醇,例如CAS编号68002-96-0,也被称作C16-C18烷基醇乙氧基化物丙氧基化物或C16-C18醇乙氧基化的丙氧基化的聚合物。
萃取剂:本文中使用的术语“萃取剂”表示促进在发酵中产生的疏水化合物的回收的非离子表面活性剂诸如消泡剂,特别是选自以下的聚乙氧基化的表面活性剂:聚氧乙烯聚氧丙烯醚,聚醚分散体的混合物,包含聚乙二醇单硬脂酸酯诸如二甲硅油的消泡剂以及乙氧基化的和丙氧基化的C16-C18醇基消泡剂和它们的组合。
脂肪酸:术语“脂肪酸”表示具有长脂族链(即4至28个碳原子(诸如4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20、21、22、23、24、25、26、27或28个碳原子)的脂族链)的羧酸。大多数天然存在的脂肪酸是无支链的。它们可以是饱和的或去饱和的。
脂肪醇乙酸酯:该术语表示具有脂肪碳链的乙酸酯,即具有4至28个碳原子(诸如4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20、21、22、23、24、25、26、27或28个碳原子)的脂族链。脂肪酰基乙酸酯可以是饱和的或去饱和的。
脂肪酰基辅酶A:该术语在本文中将与“脂肪酰基辅酶A酯”互换使用,并表示通式R-CO-S辅酶A的化合物,其中R是具有4至28个碳原子(诸如4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20、21、22、23、24、25、26、27或28个碳原子)的碳链长度的脂肪碳链。所述脂肪碳链通过硫代酸酯键连接到辅酶A的-SH基团。脂肪酰基辅酶A可以是饱和的或去饱和的,取决于衍生出它的脂肪酸是饱和的还是去饱和的。
脂肪醇:术语“脂肪醇”在本文中表示从脂肪酰基辅酶A衍生出的醇,其具有4至28个碳原子(诸如4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20、21、22、23、24、25、26、27或28个碳原子)的碳链长度。脂肪醇可以是饱和的或去饱和的。
脂肪醛:该术语在本文中表示从脂肪酰基辅酶A衍生出的醛,其具有4至28个碳原子(诸如4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20、21、22、23、24、25、26、27或28个碳原子)的碳链长度。脂肪醛可以是饱和的或去饱和的。
功能变体:该术语在本文中表示酶的功能变体,其保留亲本酶的至少一些活性。因此,酰基辅酶A氧化酶、去饱和酶、形成醇的脂肪酰基辅酶A还原酶、醇脱氢酶、形成醛的脂肪酰基辅酶A还原酶、乙酰基转移酶或NAD(P)H细胞色素b5氧化还原酶(Ncb5or)的功能变体可以分别催化与衍生出它们的酰基辅酶A氧化酶、去饱和酶、形成醇的脂肪酰基辅酶A还原酶、醇脱氢酶、形成醛的脂肪酰基辅酶A还原酶或乙酰基转移酶相同的转化,尽管反应效率可能不同,例如,与亲本酶相比降低或提高的效率,或者被改变的底物特异性。
异源的:当表示多肽(诸如蛋白质或酶)或表示多核苷酸时,术语“异源的”在本文中应解释为表示在野生型细胞中不天然存在的多肽或多核苷酸。例如,术语“异源Δ9去饱和酶”当应用于酿酒酵母(Saccharomyces cerevisiae)时表示不天然存在于野生型酿酒酵母细胞中的Δ9去饱和酶,例如衍生自黑腹果蝇(Drosophila melanogaster)的Δ9去饱和酶。
同一性/同源性:就多核苷酸(或多肽)而言,术语同一性和同源性在本文中被定义为,在以下操作后在候选序列中分别与相应天然核酸(或氨基酸)的残基相同或同源的核酸(或氨基酸)的百分比:比对序列并引入缺口(如果必要的话)以实现最大同一性/相似性/同源性百分比,并根据NCIUB规则(hftp://www.chem.qmul.ac.uk/iubmb/misc/naseq.html;NC-IUB,Eur J Biochem(1985))考虑任何保守置换作为序列同一性的一部分。5'或3'延伸或插入(对于核酸)或N'或C'延伸或插入(对于多肽)都不会导致同一性、相似性或同源性的降低。用于比对的方法和计算机程序是本领域众所周知的。通常,两个序列之间给定的同源性意味着这些序列之间的同一性至少等于同源性;例如,如果两个序列彼此具有70%同源性,则它们彼此的同一性不可低于70%,但可以具有80%同一性。
增加的活性:术语“增加的活性”在本文中可以表示给定肽(诸如蛋白或酶)的活性的增加。使用本领域已知的方法可以测量活性的增加,例如使用酶测定来测量酶的活性增加。在某些情况下,活性的增加导致酶正在产生的一种或多种化合物(即产物)的更高产量。因此,通过测量所述产物的量(诸如浓度),可以测量增加的酶活性。如果酶具有增加的活性,则产物的浓度将比由不具有增加的活性的相同酶(例如亲本酶或未修饰的酶)在相似或相同的条件下所产生的产物浓度更高。如果具有增加的活性的酶在细胞内表达,则可以将产物测量为产物滴度,即所述细胞已经产生的产物的量,并且可以与来自表达亲本酶或未修饰的酶但在其它方面具有与表达活性增加的酶的细胞相同或相似的基因型的细胞、在相似或相同的条件下获得的相同产物的滴度或量进行比较。
天然的:术语“天然的”当表示多肽(诸如蛋白质或酶)或表示多核苷酸时,在本文中应解释为表示天然存在于野生型细胞中的多肽或多核苷酸。
害虫:本文中使用的术语“害虫”应表示对人类或人关注方面有害的生物体,特别是动物,特别是在农业或家畜生产的背景下。害虫是对植物或动物、人或人关注方面、家畜、人建筑物、野生生态系统等具有侵袭性或繁殖性、有害性、麻烦性、有毒性、破坏性、滋扰性的任何活生物体。该术语经常与相关术语害虫、杂草、植物和动物寄生虫和病原体重叠。一种生物体可能在一种场合是害虫,但在另一种场合是有益的、驯化的或可接受的。
信息素:信息素是天然存在的化合物。鳞翅目信息素由以醇、醛或乙酸酯官能团结尾且在脂族主链中含有最多3个双键的无支链脂族链(9至18个碳,诸如9、10、11、12、13、14、15、16、17或18个碳原子)指定。因此,去饱和的脂肪醇、去饱和的脂肪醛和去饱和的脂肪醇乙酸酯通常被包含在信息素中。信息素组合物可以化学地或生物化学地产生,例如如本文所述。因此,信息素包含去饱和的脂肪醇、去饱和的脂肪醛和/或去饱和的脂肪醇乙酸酯,诸如可以通过本文描述的方法和细胞获得。
纯度:本文中使用的术语“纯度”表示一种化合物相对于由所述细胞生产的相同化合物组内的所有化合物的比率或百分比。例如,特定去饱和的脂肪醇的纯度是所述去饱和的脂肪醇相对于所述细胞生产的所有去饱和的脂肪醇的百分比;脂肪酸的纯度是所述脂肪酸相对于所述细胞生产的所有脂肪酸的百分比;并且去饱和的脂肪酰基辅酶A的纯度是所述去饱和的脂肪酰基辅酶A相对于所述细胞生产的所有脂肪酰基辅酶A的百分比。
降低的活性:术语“降低的活性”在本文中可以表示给定肽(诸如蛋白质或酶)的活性的全部或部分丧失。在某些情况下,肽是由不可删除的必需基因编码。在这些情况下,通过本领域已知的方法,诸如转录或翻译的下调、肽的抑制,可以降低所述肽的活性。在其它情况下,所述肽是由非必需基因编码,并且活性可能降低或可能完全丧失,例如作为编码肽的基因的缺失的后果。为了部分地或完全地降低给定肽的活性,本领域已知的方法不仅包括编码所述肽的基因中的突变,而且包括编码调节因子(其参与编码所述肽的基因的转录或翻译)的基因的突变,例如转录因子基因或转录阻遏物基因的突变,其导致所述转录因子或阻遏物的增加或减少的表达,这进而降低编码所述肽的基因的转录水平;基因的天然启动子的截短或突变,例如为了除去转录因子结合位点或使它们不可接触所述转录因子;用较弱的启动子替换天然启动子,从而导致编码所述肽的编码序列的转录减少;基因的天然终止子的截短或突变,或用另一个终止子序列替换基因的天然终止子;Kozak序列的突变。其它方法涉及在RNA水平的调节,并且包括RNA干扰系统诸如Dicer或Argonaute、RNA沉默方法、导致靶向RNA降解的CRISPR/Cas系统的引入。还考虑在蛋白质水平的调节,例如通过使用抑制剂或蛋白质降解序列。所列出的方法可以是可诱导的,即它们可以以本领域已知的瞬时方式被活化。
饱和的:术语“饱和的”表示不含碳-碳双键或碳-碳三键的化合物。
特异性:酶对给定底物的特异性是该酶表现出的催化从所述底物开始的反应的偏好。在本公开内容中,对十四烷酰基辅酶A(肉豆蔻酰基辅酶A)比对十六烷酰基辅酶A(棕榈酰基辅酶A)具有更高特异性的去饱和酶和/或脂肪酰基辅酶A还原酶,与用十六烷酰基辅酶A作为底物的反应相比,优选地催化用十四烷酰基辅酶A作为底物的反应。确定去饱和酶或脂肪酰基辅酶A还原酶的特异性的方法是本领域已知的。例如,给定的去饱和酶在表达它的给定细胞中的特异性可以如下确定:将所述细胞在包含肉豆蔻酸甲酯的溶液中温育至多48小时,然后萃取并用甲醇酯化产物。然后可以通过GC-MS测定所得脂肪酸甲酯的特性。例如,对肉豆蔻酰基辅酶A具有较高特异性且对棕榈酰基辅酶A具有低特异性的去饱和酶将导致(Z)9-C14:Me比(Z)9-C16:Me更高的浓度。例如,给定的还原酶在给定细胞中的特异性可以如下确定:将表达所述还原酶的细胞在包含(Z)9-肉豆蔻酸甲酯的溶液中温育至多48小时,随后萃取并通过GC-MS分析所得的脂肪醇。对(Z)9-C14:辅酶A具有较高特异性且对(Z)9-C16:辅酶A具有低特异性的还原酶将导致(Z)9-C14:OH比(Z)9-C16:OH更高的浓度。
滴度:化合物的滴度在本文中表示化合物产生的浓度。当化合物由细胞产生时,该术语表示细胞所产生的总浓度,即化合物的总量除以培养基的体积。这意味着,特别是对于挥发性化合物,滴度包括可能已经从培养基中蒸发的化合物部分,并因此通过从发酵液中和从来自发酵罐的潜在废气中收集所产生的化合物来测定。
本发明的发明人已经发现,NAD(P)H细胞色素b5氧化还原酶(Ncb5or)是增加其它酶、特别是位于细胞膜中的膜结合酶的活性的酶。因此,当Ncb5or在经工程改造以生产化合物诸如去饱和的和饱和的脂肪醇、去饱和的和饱和的脂肪醛以及去饱和的和饱和的脂肪醇乙酸酯(其生产依赖于这样的膜结合酶)的细胞中表达时,可以显著改善这些化合物的生产。换言之,Ncb5or显著增加某些酶的活性,诸如脂肪酰基去饱和酶和还原酶诸如脂肪酰基辅酶A还原酶和细胞色素P450的活性。
本文公开了能够生产化合物(诸如上面列出的化合物)的细胞。所述细胞表达:第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和异源Ncb5or;由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产所述化合物。优选地,所述第一种酶或第一组酶是异源酶,即不在细胞中天然表达。
在一个实施方案中,所述第一种酶或第一组酶可以包含一种或多种去饱和酶或由其组成,所述酶能够将脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A,由此当在相同条件下培养时,与表达所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的脂肪酰基辅酶A。
在另一个实施方案中,所述第一种酶或第一组酶包含一种或多种脂肪酰基还原酶(FAR)或由其组成,所述脂肪酰基还原酶(FAR)能够将饱和的或去饱和的脂肪酰基辅酶A分别转化为饱和的或去饱和的脂肪醇,由此当在相同条件下培养时,与表达所述一种或多种FAR、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产饱和的或去饱和的脂肪醇。
在又另一个实施方案中,所述第一种酶或第一组酶包含能够将脂肪酰基辅酶A转化为去饱和的脂肪醇的一种或多种脂肪酰基还原酶(FAR)和一种或多种去饱和酶或由其组成,由此当在相同条件下培养时,与表达所述一种或多种FAR和所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的脂肪醇。
所述细胞可以进一步表达乙酰基转移酶,由此所述细胞能够将去饱和的或饱和的脂肪醇分别转化为去饱和的或饱和的脂肪醇乙酸酯,由此当在相同条件下培养时,与表达所述第一组酶和所述乙酰基转移酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的或饱和的脂肪醇乙酸酯。
优选地,所述第一种酶或第一组酶是昆虫物种天然的。在某些实施方案中,所述第一种酶或第一组酶是异源去饱和酶和还原酶。这样的细胞生产去饱和的脂肪醇、饱和的脂肪醇和去饱和的脂肪醇乙酸酯,即,与表达相同异源去饱和酶和还原酶、但不表达异源Ncb5or的细胞相比,以更高滴度生产信息素化合物。
所述去饱和酶在酰基辅酶A中引入至少一个双键,然后通过还原酶的作用将其转化为对应的醇。该去饱和的脂肪醇然后可以进一步转化为去饱和的脂肪醇乙酸酯和/或去饱和的脂肪醛,如本文所详述。
去饱和酶
在本发明中,术语“脂肪酰基辅酶A去饱和酶”、“去饱和酶”、“脂肪酰基去饱和酶”和“FAD”将互换使用。该术语通常表示能够在链长度为8、9、10、11、12、13、14、15、16、17、18、19、20、21或22个碳原子的酰基辅酶A中引入至少一个E/Z确认的双键的酶。所述双键可以引入在任何位置。例如,在9位引入双键的去饱和酶被称为Δ9去饱和酶。
去饱和酶催化反应:
脂肪酰基辅酶A+2亚铁细胞色素b5+O(2)+2H(+)<=>去饱和的脂肪酰基辅酶A+2高铁细胞色素b5+2H(2)O
所述异源去饱和酶可能对任何类型的生物体而言是天然的。在某些实施方案中,所述异源去饱和酶对植物而言是天然的,诸如蓖麻(Ricinus communis)或天竺葵(Pelargonium hortorum)。在另一个实施方案中,所述异源去饱和酶对昆虫而言是天然的,诸如双翅目(Diptera)、鞘翅目(Coleoptera)或鳞翅目(Lepidoptera)的昆虫,诸如地夜蛾属(Agrotis)、柞蚕属(Antheraea)、带卷蛾属(Argyrotaenia)、Amyelois、熊蜂属(Bombus)、家蚕属(Bombyx)、果斑螟属(Cadra)、花萤属(Chauliognathus)、禾草螟属(Chilo)、色卷蛾属(Choristoneura)、小卷蛾属(Cydia)、松毛虫属(Dendrophilus)、杆草螟属(Diatraea)、果蝇属(Drosophila)、粉斑螟属(Ephestia)、Epiphyas、小食心虫属(Grapholita)、棉铃虫属(Helicoverpa)、Lampronia、花翅小卷蛾属(Lobesia)、Manducta、秆野螟属(Ostrinia)、红铃虫属(Pectinophora)、谷斑螟属(Plodia)、菜蛾属(Plutella)、海链藻属(Thalassiosira)、异舟蛾属(Thaumetopoea)、拟谷盗属(Tribolium)、粉夜蛾属(Trichoplusia)、灰翅夜蛾属(Spodoptera)或巢蛾属(Yponomeuta)的昆虫,诸如黄地老虎(Agrotis segetum)、柞蚕(Antheraea pernyi)、红带卷蛾(Argyrotaenia velutiana)、脐橙螟蛾(Amyelois transitella)、红尾熊蜂(Bombus lapidarius)、家蚕(Bombyx mori)、粉斑螟蛾(Cadra cautella)、瘟疫丽艳花萤(Chauliognathus lugubris)、二化螟(Chilosupprealis)、平行带状卷叶蛾(Choristoneura parallela)、蔷薇斜条卷叶蛾(Choristoneura rosaceana)、苹果蠹蛾(Cydia pomonella)、马尾松毛虫(Dendrophiluspunctatus)、小蔗杆草螟(Diatraea saccharalis)、嗜凤梨果蝇(Drosophila ananassae)、黑腹果蝇(Drosophila melanogaster)、大果蝇(Drosophila virilis)、Drosophilayakuba、烟草粉螟(Ephestia elutella)、地中海粉斑螟(Ephestia kuehniella)、苹淡褐卷蛾(Epiphyas postvittana)、梨小食心虫(Grapholita molesta)、烟夜蛾(Helicoverpaassulta)、谷实夜蛾(Helicoverpa zea)、红醋栗穿孔蛾(Lampronia capitella)、葡萄花翅小卷蛾(Lobesia botrana)、烟草天蛾(Manducta sexta)、亚洲玉米螟(Ostriniafurnacalis)、欧洲玉米螟(Ostrinia nubilalis)、红铃麦蛾(Pectinophoragossypiella)、印度谷螟(Plodia interpunctella)、小菜蛾(Plutella xylostella)、甜菜夜蛾(Spodoptera exigua)、海灰翅夜蛾(Spodoptera littoralis)、斜纹夜蛾(Spodopteralitura)、假微型海链藻(Thalassiosira pseudonana)、松异舟蛾(Thaumetopoeapityocampa)、赤拟谷盗(Tribolium castaneum)、粉纹夜蛾(Trichoplusia ni)或苹果巢蛾(Yponomeuta padella)。
在某些实施方案中,所述细胞能够表达第一种酶或第一组酶,其包含去饱和酶或由去饱和酶组成。在一个实施方案中,所述细胞能够表达至少一种异源Δ5去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ6去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ7去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ8去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ9去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ10去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ11去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ12去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ13去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ14去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ15去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ16去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ17去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ18去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ19去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ20去饱和酶。在另一个实施方案中,所述细胞能够表达至少一种异源Δ21去饱和酶。在优选的实施方案中,所述去饱和酶是Δ9去饱和酶或Δ11去饱和酶。
如本领域已知的,编码异源去饱和酶的基因可以针对细胞进行密码子优化。确定去饱和酶是否在细胞中表达的方法是本领域技术人员已知的,并且包括例如检测来自给定底物的给定产物,如上文所详述和如下文实施例中所示。
根据需要哪种去饱和的脂肪醇,技术人员将知道使用哪类去饱和酶。例如,为了生产在位置11去饱和的脂肪醇,优选使用Δ11去饱和酶。如果需要在位置9去饱和的脂肪醇,可以使用Δ9去饱和酶,诸如与果蝇属去饱和酶诸如果蝇属Δ9去饱和酶具有至少60%同一性的Δ9去饱和酶,例如在SEQ ID NO:14中所示的来自黑腹果蝇的Δ9去饱和酶,或与其具有至少60%同一性的Δ9去饱和酶,或与灰翅夜蛾属去饱和酶诸如灰翅夜蛾属Δ9去饱和酶具有至少60%同一性的Δ9去饱和酶,例如在SEQ ID NO:33中所示的来自斜纹夜蛾的Δ9去饱和酶,或与其具有至少60%同一性的Δ9去饱和酶。
在某些实施方案中,所述去饱和酶是选自以下组的去饱和酶:在SEQ ID NO:1至38和SEQ ID NO:126至139中所示的去饱和酶,或与其具有至少60%同一性、诸如至少61%同一性、诸如至少62%同一性、诸如至少63%同一性、诸如至少64%同一性、诸如至少65%同一性、诸如至少66%同一性、诸如至少67%同一性、诸如至少68%同一性、诸如至少69%同一性、诸如至少70%同一性、诸如至少71%同一性、诸如至少72%、诸如至少73%、诸如至少74%、诸如至少75%、诸如至少76%、诸如至少77%、诸如至少78%、诸如至少79%、诸如至少80%、诸如至少81%、诸如至少82%、诸如至少83%、诸如至少84%、诸如至少85%、诸如至少86%、诸如至少87%、诸如至少88%、诸如至少89%、诸如至少90%、诸如至少91%、诸如至少92%、诸如至少93%、诸如至少94%、诸如至少95%、诸如至少96%、诸如至少97%、诸如至少98%、诸如至少99%的同一性的其变体、诸如100%同一性选自在SEQ ID NO:1至38中所示的去饱和酶的组的去饱和酶。
在一个实施方案中,所述异源去饱和酶是夜蛾属去饱和酶。在一个实施方案中,所述去饱和酶是黄地老虎去饱和酶,诸如在SEQ ID NO:1中所示的去饱和酶(Desat19)。在某些实施方案中,所述去饱和酶是夜蛾属去饱和酶的变体、黄地老虎去饱和酶的变体或在SEQID NO:1中所示的去饱和酶(Desat19)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是Amyelois去饱和酶。在一个实施方案中,所述去饱和酶是脐橙螟蛾去饱和酶,诸如在SEQ ID NO:3中所示的去饱和酶(Desat17)、在SEQ ID NO:2中所示的去饱和酶(Desat16)或在SEQ ID NO:4中所示的去饱和酶(Desat18)。在某些实施方案中,所述去饱和酶是Amyelois去饱和酶的变体、脐橙螟蛾去饱和酶的变体或在SEQ ID NO:3中所示(Desat17)、在SEQ ID NO:2中所示(Desat16)或在SEQ ID NO:4中所示(Desat18)的去饱和酶的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是柞蚕属去饱和酶。在一个实施方案中,所述去饱和酶是柞蚕去饱和酶,诸如在SEQ ID NO:126中所示的去饱和酶(Desat72)。在某些实施方案中,所述去饱和酶是柞蚕属去饱和酶的变体、柞蚕去饱和酶的变体或在SEQ IDNO:126中所示的去饱和酶(Desat72)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是带卷蛾属去饱和酶。在一个实施方案中,所述去饱和酶是红带卷蛾去饱和酶,诸如在SEQ ID NO:127中所示的去饱和酶(Desat76)。在某些实施方案中,所述去饱和酶是带卷蛾属去饱和酶的变体、红带卷蛾去饱和酶的变体或在SEQ ID NO:127中所示的去饱和酶(Desat76)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是熊蜂属去饱和酶。在一个实施方案中,所述去饱和酶是红尾熊蜂去饱和酶,诸如在SEQ ID NO:128中所示的去饱和酶(Desat75)。在某些实施方案中,所述去饱和酶是熊蜂属去饱和酶的变体、红尾熊蜂去饱和酶的变体或在SEQ ID NO:128中所示的去饱和酶(Desat75)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是家蚕属去饱和酶。在一个实施方案中,所述去饱和酶是家蚕去饱和酶,诸如在SEQ ID NO:129中所示的去饱和酶(Desat78)。在某些实施方案中,所述去饱和酶是家蚕去饱和酶的变体、家蚕去饱和酶的变体或在SEQ ID NO:129中所示的去饱和酶(Desat78)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是果斑螟属去饱和酶。在一个实施方案中,所述去饱和酶是粉斑螟蛾去饱和酶,诸如在SEQ ID NO:134中所示的去饱和酶(Desat70)。在某些实施方案中,所述去饱和酶是果斑螟属去饱和酶的变体、粉斑螟蛾去饱和酶的变体或在SEQ ID NO:134中所示的去饱和酶(Desat70)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是花萤属去饱和酶。在一个实施方案中,所述去饱和酶是瘟疫丽艳花萤去饱和酶,诸如在SEQ ID NO:5中所示的去饱和酶(Desat25)。在某些实施方案中,所述去饱和酶是花萤属去饱和酶的变体、瘟疫丽艳花萤去饱和酶的变体或在SEQ ID NO:5中所示的去饱和酶(Desat25)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是禾草螟属去饱和酶。在一个实施方案中,所述去饱和酶是二化螟去饱和酶,诸如在SEQ ID NO:6(Desat47)或SEQ ID NO:130(Desat44)中所示的去饱和酶。在某些实施方案中,所述去饱和酶是禾草螟属去饱和酶的变体、二化螟去饱和酶的变体或在SEQ ID NO:6(Desat47)或SEQ ID NO:130(Desat44)中所示的去饱和酶的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是色卷蛾属去饱和酶。在一个实施方案中,所述去饱和酶是平行带状卷叶蛾去饱和酶,诸如在SEQ ID NO:7中所示的去饱和酶(Desat36),或蔷薇斜条卷叶蛾去饱和酶,诸如在SEQ ID NO:8中所示的去饱和酶(Desat35)。在某些实施方案中,所述去饱和酶是色卷蛾属去饱和酶的变体、平行带状卷叶蛾去饱和酶、蔷薇斜条卷叶蛾去饱和酶的变体或在SEQ ID NO:7中所示的去饱和酶(Desat36)、在SEQ ID NO:8中所示的去饱和酶(Desat35)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是小卷蛾属去饱和酶。在一个实施方案中,所述去饱和酶是苹果蠹蛾去饱和酶,诸如在SEQ ID NO:9中所示的去饱和酶(Desat4)、在SEQ ID NO:10中所示的去饱和酶(Desat2)或在SEQ ID NO:11中所示的去饱和酶(Desat1)。在某些实施方案中,所述去饱和酶是小卷蛾属去饱和酶的变体、苹果蠹蛾去饱和酶的变体或在SEQ ID NO:9中所示的去饱和酶(Desat4)、在SEQ ID NO:10中所示的去饱和酶(Desat2)或在SEQ ID NO:11中所示的去饱和酶(Desat1)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是松毛虫属(Dendrolimus)去饱和酶。在一个实施方案中,所述去饱和酶是马尾松毛虫去饱和酶,诸如在SEQ ID NO:12中所示的去饱和酶(Desat40)。在某些实施方案中,所述去饱和酶是松毛虫属去饱和酶的变体、马尾松毛虫去饱和酶的变体或在SEQ ID NO:12中所示的去饱和酶(Desat40)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是杆草螟属Z11去饱和酶。在一个实施方案中,所述去饱和酶是小蔗杆草螟Z11去饱和酶,诸如在SEQ ID NO:132中所示的Z11去饱和酶(Desat63)。在某些实施方案中,所述去饱和酶是杆草螟属Z11去饱和酶的变体、小蔗杆草螟Z11去饱和酶的变体或在SEQ ID NO:132中所示的Z11去饱和酶(Desat63)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是果蝇属去饱和酶。在一个实施方案中,所述去饱和酶是大果蝇去饱和酶,例如诸如在SEQ ID NO:15中所示的Desat61。在一个实施方案中,所述去饱和酶是嗜凤梨果蝇去饱和酶,例如诸如在SEQ ID NO:131中所示的去饱和酶(Desat60)。在一个实施方案中,所述去饱和酶是黑腹果蝇去饱和酶,例如诸如在SEQ IDNO:14中所示的去饱和酶(Desat24)。在一个实施方案中,所述去饱和酶是Drosophilagrimshawi去饱和酶,例如诸如在SEQ ID NO:13中所示的去饱和酶(Desat59)。在一个实施方案中,所述去饱和酶是Drosophila yakuba去饱和酶,例如诸如在SEQ ID NO:133中所示的去饱和酶(Desat56)。在某些实施方案中,所述去饱和酶是果蝇属去饱和酶的变体、嗜凤梨果蝇去饱和酶的变体、大果蝇去饱和酶的变体、黑腹果蝇去饱和酶的变体、Drosophilagrimshawi去饱和酶的变体、Drosophila yakuba去饱和酶的变体,例如在SEQ ID NO:131中所示的去饱和酶(Desat60)的变体、在SEQ ID NO:14中所示的去饱和酶(Desat24)的变体、在SEQ ID NO:15中所示的去饱和酶(Desat61)的变体或在SEQ ID NO:13中所示的去饱和酶(Desat59)的变体、在SEQ ID NO:133中所示的去饱和酶(Desat56)的变体,与其具有诸如至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是Epiphyas去饱和酶。在一个实施方案中,所述去饱和酶是苹淡褐卷蛾去饱和酶,诸如在SEQ ID NO:16中所示的去饱和酶(Desat33)。在某些实施方案中,所述去饱和酶是Epiphyas去饱和酶的变体、苹淡褐卷蛾去饱和酶的变体或在SEQ ID NO:16中所示的去饱和酶(Desat33)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是小食心虫属去饱和酶。在一个实施方案中,所述去饱和酶是梨小食心虫去饱和酶,诸如在SEQ ID NO:17中所示的去饱和酶(Desat31)或在SEQ ID NO:18中所示的去饱和酶(Desat55)。在某些实施方案中,所述去饱和酶是小食心虫属去饱和酶的变体、梨小食心虫去饱和酶的变体或在SEQ ID NO:17中所示的去饱和酶(Desat31)或在SEQ ID NO:18中所示的去饱和酶(Desat55)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是棉铃虫属去饱和酶。在一个实施方案中,所述去饱和酶是谷实夜蛾去饱和酶,诸如在SEQ ID NO:19中所示的Desat51。在某些实施方案中,所述去饱和酶是棉铃虫属去饱和酶的变体、谷实夜蛾去饱和酶的变体或在SEQ IDNO:19中所示的Desat51的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是花翅小卷蛾属去饱和酶。在一个实施方案中,所述去饱和酶是葡萄花翅小卷蛾去饱和酶,诸如Desat30(SEQ ID NO:20)、Desat71(SEQ ID NO:135)或Desat43(SEQ ID NO:21)。在某些实施方案中,所述去饱和酶是花翅小卷蛾属去饱和酶的变体、葡萄花翅小卷蛾去饱和酶的变体或在SEQ ID NO:20中所示的(Desat30)、在SEQ ID NO:135中所示的(Desat71)或在SEQ ID NO:21中所示的(Desat43)去饱和酶的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是Manducta去饱和酶。在一个实施方案中,所述去饱和酶是烟草天蛾去饱和酶,诸如在SEQ ID NO:22中所示的去饱和酶(Desat52)。在某些实施方案中,所述去饱和酶是Manducta去饱和酶的变体、烟草天蛾去饱和酶的变体或在SEQ ID NO:22中所示的去饱和酶(Desat52)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是秆野螟属去饱和酶。在一个实施方案中,所述去饱和酶是欧洲玉米螟去饱和酶,诸如在SEQ ID NO:23中所示的去饱和酶(Desat32)。在一个实施方案中,所述去饱和酶是亚洲玉米螟去饱和酶,诸如在SEQ ID NO:136中所示的去饱和酶(Desat77)。在某些实施方案中,所述去饱和酶是秆野螟属去饱和酶的变体、欧洲玉米螟去饱和酶的变体、亚洲玉米螟去饱和酶的变体、或在SEQ ID NO:23中所示的去饱和酶(Desat32)或在SEQ ID NO:136中所示的(Desat77)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是红铃虫属去饱和酶。在一个实施方案中,所述去饱和酶是红铃麦蛾去饱和酶,诸如在SEQ ID NO:24中所示的去饱和酶(Desat48)。在某些实施方案中,所述去饱和酶是红铃虫属去饱和酶的变体、红铃麦蛾去饱和酶的变体或在SEQ ID NO:24中所示的去饱和酶(Desat48)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是天竺葵属(Pelargonium)去饱和酶。在一个实施方案中,所述去饱和酶是天竺葵去饱和酶,诸如在SEQ ID NO:25中所示的去饱和酶(Desat22)。在某些实施方案中,所述去饱和酶是天竺葵属去饱和酶的变体、天竺葵去饱和酶的变体或在SEQ ID NO:25中所示的去饱和酶(Desat22)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是谷斑螟属去饱和酶。在一个实施方案中,所述去饱和酶是印度谷螟去饱和酶,诸如在SEQ ID NO:137中所示的去饱和酶(Desat65)。在某些实施方案中,所述去饱和酶是谷斑螟属去饱和酶的变体、印度谷螟去饱和酶的变体或在SEQ ID NO:137中所示的去饱和酶(Desat65)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是菜蛾属去饱和酶。在一个实施方案中,所述去饱和酶是小菜蛾去饱和酶,诸如在SEQ ID NO:26中所示的去饱和酶(Desat45)。在某些实施方案中,所述去饱和酶是菜蛾属去饱和酶的变体、小菜蛾去饱和酶的变体或在SEQ IDNO:26中所示的去饱和酶(Desat45)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是蓖麻属(Ricinus)去饱和酶。在一个实施方案中,所述去饱和酶是蓖麻去饱和酶,诸如在SEQ ID NO:27中所示的Desat23。在某些实施方案中,所述去饱和酶是蓖麻属去饱和酶的变体、蓖麻去饱和酶的变体或在SEQ ID NO:27中所示的Desat23的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是酵母属去饱和酶。在一个实施方案中,所述去饱和酶是酿酒酵母去饱和酶,诸如在SEQ ID NO:28中所示的去饱和酶(Desat42)。在某些实施方案中,所述去饱和酶是酵母属去饱和酶的变体、酿酒酵母去饱和酶的变体或在SEQID NO:28中所示的去饱和酶(Desat42)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是灰翅夜蛾属去饱和酶。在一个实施方案中,所述去饱和酶是海灰翅夜蛾去饱和酶,诸如在SEQ ID NO:31中所示的去饱和酶(Desat20),或斜纹夜蛾去饱和酶,诸如在SEQ ID NO:32中所示的去饱和酶(Desat38)或在SEQ ID NO:33中所示的去饱和酶(Desat26),或甜菜夜蛾去饱和酶,诸如在SEQ ID NO:29中所示的去饱和酶(Desat37)。在某些实施方案中,所述去饱和酶是灰翅夜蛾属去饱和酶的变体、海灰翅夜蛾去饱和酶的变体、斜纹夜蛾去饱和酶的变体、甜菜夜蛾去饱和酶的变体或在SEQ ID NO:31中所示的(Desat20)、在SEQ ID NO:32中所示的(Desat38)、在SEQ ID NO:33中所示的(Desat26)或在SEQ ID NO:29中所示的(Desat37)去饱和酶的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是异舟蛾属去饱和酶。在一个实施方案中,所述去饱和酶是松异舟蛾去饱和酶,诸如在SEQ ID NO:34中所示的去饱和酶(Desat34)。在某些实施方案中,所述去饱和酶是异舟蛾属去饱和酶的变体、松异舟蛾去饱和酶的变体或在SEQ ID NO:34中所示的去饱和酶(Desat34)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是拟谷盗属去饱和酶。在一个实施方案中,所述去饱和酶是赤拟谷盗去饱和酶,诸如在SEQ ID NO:35中所示的去饱和酶(Desat28)、在SEQ ID NO:138中所示的去饱和酶(Desat27)或在SEQ ID NO:36中所示的去饱和酶(Desat29)。在某些实施方案中,所述去饱和酶是拟谷盗属去饱和酶的变体、赤拟谷盗去饱和酶的变体或在SEQ ID NO:35中所示的(Desat28)、在SEQ ID NO:138中所示的(Desat27)或在SEQ ID NO:36中所示的(Desat29)去饱和酶的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是粉夜蛾属去饱和酶。在一个实施方案中,所述去饱和酶是粉纹夜蛾去饱和酶,诸如在SEQ ID NO:37中所示的去饱和酶(Desat21)。在某些实施方案中,所述去饱和酶是粉夜蛾属去饱和酶的变体、粉纹夜蛾去饱和酶的变体或在SEQ ID NO:37中所示的去饱和酶(Desat21)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是耶氏酵母属(Yarrowia)去饱和酶。在一个实施方案中,所述去饱和酶是解脂耶氏酵母(Yarrowia lipolytica)去饱和酶,诸如在SEQ ID NO:38中所示的去饱和酶(Desat69)。在某些实施方案中,所述去饱和酶是耶氏酵母属去饱和酶的变体、解脂耶氏酵母去饱和酶的变体或在SEQ ID NO:38中所示的去饱和酶(Desat69)的变体,与其具有至少60%的同一性。
在一个实施方案中,所述异源去饱和酶是巢蛾属去饱和酶。在一个实施方案中,所述去饱和酶是苹果巢蛾去饱和酶,诸如在SEQ ID NO:139中所示的去饱和酶(Desat73)。在某些实施方案中,所述去饱和酶是巢蛾属去饱和酶的变体、苹果巢蛾去饱和酶的变体或在SEQ ID NO:139中所示的去饱和酶(Desat73)的变体,与其具有至少60%的同一性。
应当理解,与上述给定的去饱和酶具有至少60%同一性的变体去饱和酶可以与所述去饱和酶具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%同一性,或更多。
编码去饱和酶的核酸
在某些实施方案中,所述异源去饱和酶由核酸编码,所述核酸与选自在SEQ IDNO:39至76和SEQ ID NO:140至153中所示的去饱和酶的组的核酸具有至少60%同一性,诸如与其具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%同一性,诸如100%同一性。
在一个实施方案中,所述异源去饱和酶由具有与编码黄地老虎去饱和酶的核酸(在SEQ ID NO:39中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码脐橙螟蛾去饱和酶的核酸(在SEQ ID NO:40、SEQ ID NO:41或SEQ IDNO:42中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码柞蚕去饱和酶的核酸(在SEQ ID NO:140中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码红带卷蛾去饱和酶的核酸(在SEQ ID NO:141中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码红尾熊蜂去饱和酶的核酸(在SEQ ID NO:142中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码家蚕去饱和酶的核酸(在SEQ ID NO:143中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码粉斑螟蛾去饱和酶的核酸(在SEQ ID NO:148中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码瘟疫丽艳花萤去饱和酶的核酸(在SEQID NO:43中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码二化螟去饱和酶的核酸(在SEQ ID NO:44或SEQ ID NO:144中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码平行带状卷叶蛾去饱和酶的核酸(在SEQ ID NO:45中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码蔷薇斜条卷叶蛾去饱和酶的核酸(在SEQ ID NO:46中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码苹果蠹蛾去饱和酶的核酸(在SEQ ID NO:47、SEQ ID NO:48或SEQ ID NO:49中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码马尾松毛虫去饱和酶的核酸(在SEQ ID NO:50中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码小蔗杆草螟去饱和酶的核酸(在SEQ ID NO:146中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码大果蝇去饱和酶的核酸(在SEQ ID NO:53中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码嗜凤梨果蝇去饱和酶的核酸(在SEQ ID NO:145中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码黑腹果蝇去饱和酶的核酸(在SEQ ID NO:52中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码Drosophila yakuba去饱和酶的核酸(在SEQ ID NO:147中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码Drosophila grimshawi去饱和酶的核酸(在SEQ ID NO:51中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码苹淡褐卷蛾去饱和酶的核酸(在SEQ ID NO:54中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码梨小食心虫去饱和酶的核酸(在SEQ ID NO:55或SEQ ID NO:56中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码谷实夜蛾去饱和酶的核酸(在SEQ ID NO:57中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码葡萄花翅小卷蛾去饱和酶的核酸(在SEQ ID NO:58、SEQ IDNO:149或SEQ ID NO:59中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码烟草天蛾去饱和酶的核酸(在SEQ ID NO:60中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码欧洲玉米螟去饱和酶的核酸(在SEQ ID NO:61中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码亚洲玉米螟去饱和酶的核酸(在SEQ ID NO:150中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码红铃麦蛾去饱和酶的核酸(在SEQ ID NO:62中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码天竺葵去饱和酶的核酸(在SEQ ID NO:63中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码印度谷螟去饱和酶的核酸(在SEQ ID NO:151中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码小菜蛾去饱和酶的核酸(在SEQ ID NO:64中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码蓖麻去饱和酶的核酸(在SEQ ID NO:65中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码酿酒酵母去饱和酶的核酸(在SEQ ID NO:66中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码甜菜夜蛾去饱和酶的核酸(在SEQ ID NO:67中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码海灰翅夜蛾去饱和酶的核酸(在SEQ ID NO:68或SEQ ID NO:69中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码斜纹夜蛾去饱和酶的核酸(在SEQ ID NO:70或SEQ ID NO:71中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码松异舟蛾去饱和酶的核酸(在SEQID NO:72中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码赤拟谷盗去饱和酶的核酸(在SEQ ID NO:73、SEQ ID NO:152或SEQ ID NO:74中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码粉纹夜蛾去饱和酶的核酸(在SEQ ID NO:75中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码解脂耶氏酵母去饱和酶的核酸(在SEQ ID NO:76中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源去饱和酶由与编码苹果巢蛾去饱和酶的核酸(在SEQ ID NO:76中所示)具有至少60%同一性的核酸编码。在本文中,与给定核酸具有至少60%同一性的核酸可以与给定核酸具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%,或更多。
多个异源去饱和酶的共表达
本发明的细胞可以表达至少一个异源去饱和酶。在某些实施方案中,所述细胞表达一个异源去饱和酶。但是,可能需要表达几个异源去饱和酶,诸如至少两个异源去饱和酶,它们可以是相同的或不同的。可替换地,可能需要表达编码至少一个异源去饱和酶的核酸的几个拷贝,诸如至少两个拷贝,至少三个拷贝或更多。在其它实施方案中,所述细胞表达至少两个异源去饱和酶,例如三个异源去饱和酶。
要修饰的细胞可以表达天然去饱和酶,其可能对去饱和的脂肪醇和/或去饱和的脂肪醇乙酸酯的生产具有负面影响。因此,如果要被修饰的细胞表达这样的天然去饱和酶,则可以优选地修饰生物体以使得天然去饱和酶的活性降低或缺失。
为了确保天然去饱和酶的活性的缺失,可以采用本领域已知的方法。可以删除或部分地删除编码天然去饱和酶的基因,以确保天然去饱和酶不被表达。可替换地,所述基因可以被突变,使得天然去饱和酶被表达但缺乏活性,例如通过酶的催化位点的突变。可替换地,通过诸如沉默RNA或siRNA等方法,可以阻止mRNA翻译成活性蛋白。可替换地,可以将所述细胞在包含抑制天然去饱和酶活性的抑制剂的培养基中温育。还可以提供抑制编码天然去饱和酶的基因的转录的化合物,使得当所述化合物存在时转录被灭活。可以采用本领域已知的其它方法。
因此,天然去饱和酶的灭活可以是永久性的或长期的,即修饰的细胞以稳定的方式表现出天然去饱和酶的活性降低或无活性,或者它可以是暂时的,即修饰的细胞可以在一段时间内表现出天然去饱和酶的活性,但此活性可以在其它时间段内被抑制。
增加的C14特异性
许多合乎需要的信息素化合物具有14的碳链长度。因此,将反应导向C14化合物的生产可能是有意义的。在某些实施方案中,本文公开的细胞表达对十四烷酰基辅酶A比对十六烷酰基辅酶A具有更高特异性的去饱和酶和/或对去饱和的十四烷酰基辅酶A比对去饱和的十六烷酰基辅酶A具有更高特异性的酰基辅酶A还原酶。换而言之,所述去饱和酶对碳链长度为14的底物比对碳链长度为16的底物更具特异性。表达这样的去饱和酶的酵母细胞的例子公开于WO 2018/109167中。
这样的去饱和酶(以及本文下文所述的任何还原酶)在细胞中的表达增加了碳链长度为14的总去饱和脂肪醇的分数,特别是与碳链长度为16的总去饱和脂肪醇的分数相比。具有所需特异性的去饱和酶特别是对于果蝇属、灰翅夜蛾属、色卷蛾属物种而言天然的去饱和酶,诸如对于黑腹果蝇、Drosophila grimshawi、大果蝇、斜纹夜蛾、平行带状卷叶蛾或蔷薇斜条卷叶蛾而言天然的去饱和酶,例如在SEQ ID NO:1至38中所示的去饱和酶,或与其具有至少60%同一性的其变体。
在某些实施方案中,所述去饱和酶选自由以下组成的组:
i)与在SEQ ID NO:14中所示的来自黑腹果蝇的Δ9去饱和酶具有至少60%同一性的Δ9去饱和酶;
ii)与在SEQ ID NO:13中所示的来自Drosophila grimshawi的Δ9去饱和酶具有至少60%同一性的去饱和酶;
iii)与在SEQ ID NO:15中所示的来自大果蝇的Δ9去饱和酶具有至少60%同一性的去饱和酶;
iv)与在SEQ ID NO:33中所示的来自斜纹夜蛾的Δ9去饱和酶具有至少60%同一性的Δ9去饱和酶;
v)与在SEQ ID NO:7中所示的来自平行带状卷叶蛾的Δ11去饱和酶具有至少60%同一性的Δ11去饱和酶;
vi)与在SEQ ID NO:8中所示的来自蔷薇斜条卷叶蛾的Δ11去饱和酶具有至少60%同一性的Δ11去饱和酶;
以及与其具有至少60%同一性、61%同一性、诸如至少62%同一性、诸如至少63%同一性、诸如至少64%同一性、诸如至少65%同一性、诸如至少66%同一性、诸如至少67%同一性、诸如至少68%同一性、诸如至少69%同一性、诸如至少70%同一性、诸如至少71%同一性、诸如至少72%、诸如至少73%、诸如至少74%、诸如至少75%、诸如至少76%、诸如至少77%、诸如至少78%、诸如至少79%、诸如至少80%、诸如至少81%、诸如至少82%、诸如至少83%、诸如至少84%、诸如至少85%、诸如至少86%、诸如至少87%、诸如至少88%、诸如至少89%、诸如至少90%、诸如至少91%、诸如至少92%、诸如至少93%、诸如至少94%、诸如至少95%、诸如至少96%、诸如至少97%、诸如至少98%、诸如至少99%同一性的其功能变体。
已经发现这些去饱和酶当在酵母细胞中表达时优先催化C14底物的去饱和。
在这样的细胞中,去饱和的十四烷酰基辅酶A与去饱和的十六烷酰基辅酶A的比率是至少0.1,诸如至少0.2,诸如至少0.3,诸如至少0.4,诸如至少0.5,诸如至少0.75,诸如至少1,诸如至少2,诸如至少3,诸如至少4,诸如至少5,诸如至少6,诸如至少7,诸如至少8,诸如至少9,诸如至少10,诸如至少12.5,诸如至少15,或更多。
在某些实施方案中,去饱和的脂肪醇的滴度是至少1mg/L,诸如至少1.5mg/L,诸如至少5mg/L,诸如至少10mg/L,诸如至少25mg/L,诸如至少50mg/L,诸如至少100mg/L,诸如至少250mg/L,诸如至少500mg/L,诸如至少750mg/L,诸如至少1g/L,诸如至少2g/L,诸如至少3g/L,诸如至少4g/L,诸如至少5g/L,或更多。
在某些实施方案中,链长度为14的去饱和的脂肪醇的滴度是至少1mg/L,诸如至少1.5mg/L,诸如至少5mg/L,诸如至少10mg/L,诸如至少25mg/L,诸如至少50mg/L,诸如至少100mg/L,诸如至少250mg/L,诸如至少500mg/L,诸如至少750mg/L,诸如至少1g/L,诸如至少2g/L,诸如至少3g/L,诸如至少4g/L,诸如至少5g/L,或更多。
在某些实施方案中,产生的去饱和的脂肪醇包含至少1%的链长度为14的去饱和的脂肪醇,诸如至少1.5%,诸如至少2%,诸如至少2.5%,诸如至少3%,诸如至少3.5%,诸如至少4%,诸如至少4.5%,诸如至少5%,诸如至少7.5%,诸如至少10%,或更多。
如何试验给定的去饱和酶是否具有所需的特异性可以如本文所述进行。
脂肪酰基辅酶A还原酶
将在本文中可互换地使用术语“脂肪酰基辅酶A还原酶”和“FAR”。术语“异源FAR”表示不由生物体(诸如细胞)天然地表达的FAR。
FAR催化两步反应:
酰基辅酶A+2NADPH<=>辅酶A+醇+2NADP(+)
其中在第一步中,脂肪酰基辅酶A被还原为脂肪醛,然后脂肪醛在第二步中进一步还原成脂肪醇。脂肪酰基辅酶A可以是去饱和的或饱和的脂肪酰基辅酶A。
能够催化这样的反应的FAR是具有EC编号1.2.1.84的形成醇的脂肪酰基辅酶A还原酶。
Ncb5or可以增加FAR的活性。在某些实施方案中,所述第一种酶或第一组酶包含一种或多种FAR或由其组成。
所述FAR对于本文公开的细胞而言可以是异源的。在某些实施方案中,所述FAR优选地对于昆虫而言是天然的,诸如鳞翅目的昆虫,诸如鳞翅属的昆虫,诸如以下属的昆虫:夜蛾属、Amyelois、蔽眼蝶属(Bicyclus)、熊蜂属、禾草螟属、银纹夜蛾属(Chrysodeixis)、小卷蛾属、棉铃虫属、实夜蛾属(Heliothis)、Manducta、秆野螟属、谷斑螟属、菜蛾属、灰翅夜蛾属、粉夜蛾属、Tyta或巢蛾属,诸如黄地老虎、脐橙螟蛾、偏瞳蔽眼蝶(Bicyclusanynana)、红尾熊蜂(Bombus lapidaries)、二化螟、黄豆银纹夜蛾(Chrysodeixisincludes)、苹果蠹蛾、棉铃虫(Helicoverpa armigera)、烟夜蛾、烟芽夜蛾(Heliothisvirescens)、Heliothis subflexa、烟草天蛾、亚洲玉米螟、印度谷螟、小菜蛾、甜菜夜蛾、草地贪夜蛾(Spodoptera frugiperda)、海灰翅夜蛾、斜纹夜蛾、粉纹夜蛾、Tyta alba、柳黑斑巢蛾(Yponomeuta rorellus),或与其具有至少60%同一性的功能变体。在某些实施方案中,所述FAR对于细菌而言是天然的,诸如海杆菌属(Marinobacter)的细菌,诸如栖藻海杆菌(Marinobacter algicola)。
在一个实施方案中,所述异源FAR是夜蛾属FAR。在一个实施方案中,所述FAR是黄地老虎FAR,诸如在SEQ ID NO:77中所示的FAR(FAR12)。在某些实施方案中,所述FAR是小地老虎(Agrotis ipsilon)FAR,诸如在SEQ ID NO:78中所示的FAR(FAR18)。在某些实施方案中,所述FAR是夜蛾属FAR的变体、黄地老虎FAR诸如在SEQ ID NO:77中所示的FAR(FAR12)的变体、小地老虎FAR诸如在SEQ ID NO:78中所示的FAR(FAR18)的变体或其变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是Amyelois FAR。在一个实施方案中,所述FAR是脐橙螟蛾FAR,诸如在SEQ ID NO:154(FAR33)、SEQ ID NO:155(FAR34)或SEQ ID NO:156(FAR35)中所示的FAR。在某些实施方案中,所述FAR是Amyelois FAR的变体、脐橙螟蛾FAR诸如在SEQ ID NO:77中所示的FAR(FAR12)的变体、脐橙螟蛾FAR诸如在SEQ ID NO:154(FAR33)、SEQ ID NO:155(FAR34)或SEQ ID NO:156(FAR35)中所示的FAR的变体或其变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是蔽眼蝶属FAR。在一个实施方案中,所述FAR是偏瞳蔽眼蝶FAR,诸如在SEQ ID NO:79中所示的FAR(FAR11)。在某些实施方案中,所述FAR是蔽眼蝶属FAR的变体、偏瞳蔽眼蝶FAR的变体或在SEQ ID NO:79中所示的FAR(FAR11)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是熊蜂属FAR。在一个实施方案中,所述FAR是红尾熊蜂FAR,诸如在SEQ ID NO:80中所示的FAR(FAR14)。在某些实施方案中,所述FAR是熊蜂属FAR的变体、红尾熊蜂FAR的变体或在SEQ ID NO:80中所示的FAR(FAR14)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是禾草螟属FAR。在一个实施方案中,所述FAR是二化螟FAR,诸如在SEQ ID NO:81中所示的FAR(FAR13)。在某些实施方案中,所述FAR是禾草螟属FAR的变体、二化螟FAR的变体或在SEQ ID NO:81中所示的FAR(FAR13)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是银纹夜蛾属FAR。在一个实施方案中,所述FAR是黄豆银纹夜蛾(Chrysodeixis includens)FAR,诸如在SEQ ID NO:157中所示的FAR(FAR47)。在某些实施方案中,所述FAR是银纹夜蛾属FAR的变体、黄豆银纹夜蛾FAR的变体或在SEQ ID NO:157中所示的FAR(FAR47)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是小卷蛾属FAR。在一个实施方案中,所述FAR是苹果蠹蛾FAR,诸如在SEQ ID NO:82中所示的FAR(FAR23)。在某些实施方案中,所述FAR是小卷蛾属FAR的变体、苹果蠹蛾FAR的变体或在SEQ ID NO:82中所示的FAR(FAR23)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是棉铃虫属FAR。在一个实施方案中,所述FAR是棉铃虫FAR。在一个实施方案中,所述FAR是棉铃虫FAR,诸如在SEQ ID NO:83中所示的FAR(FAR1)。在一个实施方案中,所述FAR是烟夜蛾FAR,诸如在SEQ ID NO:84中所示的FAR(FAR6)。在某些实施方案中,所述FAR是棉铃虫属FAR的变体、棉铃虫FAR的变体、棉铃虫FAR的变体、烟夜蛾FAR的变体诸如在SEQ ID NO:83中所示的FAR(FAR1)或在SEQ ID NO:84中所示的FAR(FAR6)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是实夜蛾属FAR。在一个实施方案中,所述FAR是Heliothis subflexa FAR,诸如在SEQ ID NO:85中所示的FAR(FAR4)。在一个实施方案中,所述FAR是烟芽夜蛾FAR,诸如在SEQ ID NO:86中所示的FAR(FAR5)。在某些实施方案中,所述FAR是实夜蛾属FAR的变体、Heliothis subflexa FAR的变体、烟芽夜蛾FAR的变体、在SEQID NO:85中所示的FAR(FAR4)或在SEQ ID NO:86中所示的FAR(FAR5)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是Manducta FAR。在一个实施方案中,所述FAR是烟草天蛾FAR,诸如在SEQ ID NO:160中所示的FAR(FAR43)。在某些实施方案中,所述FAR是Manducta FAR的变体、烟草天蛾FAR的变体或在SEQ ID NO:160中所示的FAR(FAR43)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是海杆菌属FAR。在一个实施方案中,所述FAR是栖藻海杆菌FAR,诸如在SEQ ID NO:159中所示的FAR(FAR42)。在某些实施方案中,所述FAR是海杆菌属FAR的变体、栖藻海杆菌FAR的变体或在SEQ ID NO:159中所示的FAR(FAR42)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是秆野螟属FAR。在一个实施方案中,所述FAR是亚洲玉米螟FAR,诸如在SEQ ID NO:161中所示的FAR(FAR44)。在某些实施方案中,所述FAR是秆野螟属FAR的变体、亚洲玉米螟FAR的变体或在SEQ ID NO:161中所示的FAR(FAR44)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是谷斑螟属FAR。在一个实施方案中,所述FAR是印度谷螟FAR,诸如在SEQ ID NO:162(FAR28)或SEQ ID NO:163(FAR30)中所示的FAR。在某些实施方案中,所述FAR是谷斑螟属FAR的变体、印度谷螟FAR的变体或在SEQ ID NO:162(FAR28)或SEQ ID NO:163(FAR30)中所示的FAR的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是菜蛾属FAR。在一个实施方案中,所述FAR是小菜蛾FAR,诸如在SEQ ID NO:87中所示的FAR(FAR27)。在某些实施方案中,所述FAR是菜蛾属FAR的变体、小菜蛾FAR的变体或在SEQ ID NO:87中所示的FAR(FAR27)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是灰翅夜蛾属FAR。在一个实施方案中,所述FAR是甜菜夜蛾FAR,诸如在SEQ ID NO:88中所示的FAR(FAR16)。在一个实施方案中,所述FAR是草地贪夜蛾FAR,诸如在SEQ ID NO:89中所示的FAR(FAR22)。在一个实施方案中,所述FAR是海灰翅夜蛾FAR,诸如在SEQ ID NO:90中所示的FAR(FAR15)。在一个实施方案中,所述FAR是斜纹夜蛾FAR,诸如在SEQ ID NO:91中所示的FAR(FAR19)。在某些实施方案中,所述FAR是灰翅夜蛾属FAR的变体、甜菜夜蛾FAR的变体、草地贪夜蛾FAR的变体、海灰翅夜蛾FAR的变体、斜纹夜蛾属FAR的变体、在SEQ ID NO:88中所示的FAR(FAR16)的变体、在SEQ ID NO:89中所示的FAR(FAR22)的变体、在SEQ ID NO:90中所示的FAR(FAR15)的变体、在SEQ ID NO:91中所示的FAR(FAR19)的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是Tyta FAR。在一个实施方案中,所述FAR是Tytaalba FAR,诸如在SEQ ID NO:92中所示的FAR25。在某些实施方案中,所述FAR是Tyta FAR的变体、Tyta alba FAR的变体或在SEQ ID NO:92中所示的FAR25的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是粉夜蛾属FAR。在一个实施方案中,所述FAR是粉纹夜蛾FAR,诸如在SEQ ID NO:93中所示的FAR38。在某些实施方案中,所述FAR是粉夜蛾属FAR的变体、粉纹夜蛾FAR的变体或在SEQ ID NO:93中所示的FAR38的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是粉夜蛾属FAR。在一个实施方案中,所述FAR是粉纹夜蛾FAR,诸如在SEQ ID NO:166中所示的FAR41。在某些实施方案中,所述FAR是粉夜蛾属FAR的变体、粉纹夜蛾FAR的变体或在SEQ ID NO:166中所示的FAR41的变体,与其具有至少60%同一性。
在一个实施方案中,所述异源FAR是巢蛾属FAR。在一个实施方案中,所述FAR是柳黑斑巢蛾FAR,诸如在SEQ ID NO:167中所示的FAR8。在某些实施方案中,所述FAR是巢蛾属FAR的变体、柳黑斑巢蛾FAR的变体或在SEQ ID NO:167中所示的FAR8的变体,与其具有至少60%同一性。
将理解,与上面给定的FAR具有至少60%同一性的变体FAR可以与所述FAR具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%同一性,或更多。
编码FAR的核酸
在某些实施方案中,所述异源FAR由核酸编码,所述核酸与选自在SEQ ID NO:94至110和SEQ ID NO:168-181中所示的去饱和酶的组的核酸具有至少60%同一性,诸如与其具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%同一性,诸如100%同一性。
在一个实施方案中,所述异源FAR由与来自黄地老虎的编码FAR的核酸(在SEQ IDNO:94中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自小地老虎的编码FAR的核酸(在SEQ ID NO:95中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自脐橙螟蛾的编码FAR的核酸(在SEQ ID NO:168、SEQID NO:169或SEQ ID NO:170中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自偏瞳蔽眼蝶的编码FAR的核酸(在SEQ ID NO:96中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自红尾熊蜂的编码FAR的核酸(在SEQ ID NO:97中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自二化螟的编码FAR的核酸(在SEQ ID NO:98中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自黄豆银纹夜蛾的编码FAR的核酸(在SEQ ID NO:171中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自苹果蠹蛾的编码FAR的核酸(在SEQ ID NO:99或SEQ ID NO:172中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自棉铃虫的编码FAR的核酸(在SEQ ID NO:100中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自烟夜蛾的编码FAR的核酸(在SEQ ID NO:101中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自Heliothis subflexa的编码FAR的核酸(在SEQ ID NO:102中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自烟芽夜蛾的编码FAR的核酸(在SEQ ID NO:103中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自栖藻海杆菌的编码FAR的核酸(在SEQ ID NO:173中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自烟草天蛾的编码FAR的核酸(在SEQ ID NO:174中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自亚洲玉米螟的编码FAR的核酸(在SEQ IDNO:175中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自印度谷螟的编码FAR的核酸(在SEQ ID NO:176或SEQ ID NO:177中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自小菜蛾的编码FAR的核酸(在SEQ ID NO:104中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自甜菜夜蛾的编码FAR的核酸(在SEQ ID NO:105、SEQ ID NO:178或SEQ ID NO:179中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自草地贪夜蛾的编码FAR的核酸(在SEQ ID NO:106中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自海灰翅夜蛾的编码FAR的核酸(在SEQ ID NO:107中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自斜纹夜蛾的编码FAR的核酸(在SEQ ID NO:108中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自Tyta alba的编码FAR的核酸(在SEQ ID NO:109中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自粉纹夜蛾的编码FAR的核酸(在SEQ ID NO:110或SEQ ID NO:180中所示)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源FAR由与来自柳黑斑巢蛾的编码FAR的核酸(在SEQ ID NO:181中所示)具有至少60%同一性的核酸编码。在本文中,与给定的核酸具有至少60%同一性的核酸可以与给定的核酸具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%,或更多。
多个FAR的共表达
本发明的细胞可以表达至少一个异源FAR。在某些实施方案中,所述细胞表达一个异源FAR。但是,可能需要表达几个异源FAR,诸如至少两个异源FAR,它们可以是相同的或不同的。可替换地,可能需要表达编码至少一个异源FAR的核酸的几个拷贝,诸如至少两个拷贝、至少三个拷贝或更多。在其它实施方案中,所述细胞表达至少两个异源FAR,例如三个异源FAR。
例如,所述细胞可以表达FAR1或其变体的两个拷贝;或FAR1的一个拷贝和FAR5的一个拷贝;或FAR1的两个拷贝、FAR5的一个拷贝和FAR4的一个拷贝。
去饱和酶和FAR
任何上述FAR可以与任何去饱和酶、特别是本文描述的任何去饱和酶一起表达。
在某些实施方案中,所述细胞表达:
-夜蛾属FAR,诸如黄地老虎FAR,例如在SEQ ID NO:77中所示的FAR12,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-夜蛾属FAR,诸如小地老虎FAR,例如在SEQ ID NO:78中所示的FAR18,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-蔽眼蝶属FAR,诸如偏瞳蔽眼蝶FAR,例如在SEQ ID NO:79中所示的FAR11,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-熊蜂属FAR,诸如红尾熊蜂FAR,例如在SEQ ID NO:80中所示的FAR14,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-禾草螟属FAR,诸如二化螟FAR,例如在SEQ ID NO:81中所示的FAR13,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ IDNO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-小卷蛾属FAR,诸如苹果蠹蛾FAR,例如在SEQ ID NO:82中所示的FAR23,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-棉铃虫属FAR,诸如烟夜蛾FAR,例如在SEQ ID NO:83中所示的FAR6,或棉铃虫FAR,例如在SEQ ID NO:82中所示的FAR1;和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-实夜蛾属FAR,诸如Heliothis subflexa FAR,例如在SEQ ID NO:85中所示的FAR4,或烟芽夜蛾FAR,例如在SEQ ID NO:86中所示的FAR5;和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-菜蛾属FAR,诸如小菜蛾FAR,例如在SEQ ID NO:87中所示的FAR27,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-灰翅夜蛾属FAR,诸如甜菜夜蛾FAR,例如在SEQ ID NO:88中所示的FAR16,草地贪夜蛾FAR,例如在SEQ ID NO:89中所示的FAR22,海灰翅夜蛾FAR,例如在SEQ ID NO:90中所示的FAR15,或斜纹夜蛾FAR,例如在SEQ ID NO:91中所示的FAR19,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-Tyta FAR,诸如Tyta alba FAR,例如在SEQ ID NO:92中所示的FAR25,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
-粉夜蛾属FAR,诸如粉纹夜蛾FAR,例如在SEQ ID NO:93中所示的FAR38,和/或
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和
-如下面详述的Ncb5or,
或与其具有至少60%同一性的其变体。
术语相对于给定的酶“具有至少60%同一性的其变体”应当理解为表示与所述酶具有60%同一性或更多的变体,诸如与所述酶具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%同一性,或更多。
NAD(P)H细胞色素b5氧化还原酶
虽然一种或多种异源去饱和酶和/或一种或多种还原酶的表达可以导致去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和/或饱和的脂肪醇乙酸酯的产生,但是发明人已经发现,另外的酶在细胞中的引入似乎对去饱和酶和/或还原酶的活性具有积极影响,因为其导致滴度的增加。这种另外的酶是NAD(P)H细胞色素b5氧化还原酶,并且天然存在于许多昆虫中,包括鳞翅目昆虫。
术语“NAD(P)H细胞色素b5氧化还原酶”和“Ncb5or”将在本文中可互换地使用。术语“异源Ncb5or”表示不由生物体(诸如细胞)天然表达的Ncb5or。
Ncb5or也被称作细胞色素b5还原酶4,并且是一种作用于NADH或NADPH的氧化还原酶,以血红素蛋白作为受体。它含有与细胞色素b5、细胞色素b5还原酶和CHORD-SGT1相似的三个功能结构域(Deng,等人,2010)。Ncb5or催化反应:
2Fe3++NAD(P)H<=>2Fe2++H++NAD(P)+
能够催化这样的反应的Ncb5or具有EC编号1.6.2.2。
本文公开的细胞表达第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产所述化合物。
在一个实施方案中,所述第一种酶或第一组酶可以由一种或多种能够将脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A的去饱和酶组成,由此当在相同条件下培养时,与表达所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的脂肪酰基辅酶A。
在另一个实施方案中,所述第一种酶或第一组酶由一种或多种能够将脂肪酰基辅酶A转化为饱和的脂肪醇的脂肪酰基还原酶(FAR)组成,由此当在相同条件下培养时,与表达所述一种或多种FAR、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产饱和的脂肪醇。
在又另一个实施方案中,所述第一种酶或第一组酶由一种或多种脂肪酰基还原酶(FAR)和一种或多种能够将脂肪酰基辅酶A转化为去饱和的脂肪醇的去饱和酶组成,由此当在相同条件下培养时,与表达所述一种或多种FAR和所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的脂肪醇。
所述细胞可以进一步表达乙酰基转移酶,由此所述细胞能够将去饱和的或饱和的脂肪醇分别转化为去饱和的或饱和的脂肪醇乙酸酯,由此当在相同条件下培养时,与表达所述第一组酶和所述乙酰基转移酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的或饱和的脂肪醇乙酸酯。
在一个优选的实施方案中,与在相同条件下培养且不表达所述异源Ncb5or的生物体中的所述去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的生产相比,所述去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的生产在所述生物体中增加。换而言之,在表达所述第一种酶或第一组酶的细胞中,异源Ncb5or的表达增加所述去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的生产。因而,当在相同或类似的条件下试验时,与在没有所述异源Ncb5or存在下所述异源去饱和酶和/或所述异源FAR的活性相比,异源Ncb5or的表达增加所述第一种酶或第一组酶的活性,诸如所述异源去饱和酶和/或所述异源FAR的活性,其中例如通过测量由异源去饱和酶和异源FAR形成的产物的滴度来测量所述活性。
本文进一步提供了Ncb5or在用于增加一种或多种酶的活性的方法中的用途。
在一个实施方案中,所述一种或多种酶是一种或多种膜结合的酶。技术人员知道如何确定酶是否是膜结合的。例如,可以使用荧光标志物来确定与荧光标志物融合的酶是否与已知在膜中发现的蛋白质共定位。
在一个实施方案中,所述一种或多种酶选自去饱和酶和脂肪酰基还原酶,诸如分别在本文“去饱和酶”和“脂肪酰基辅酶A还原酶”部分中呈现的去饱和酶和脂肪酰基还原酶。
在一个实施方案中,所述一种或多种酶(例如如本文描述的去饱和酶和/或FAR)的活性的增加是至少1.2倍,诸如至少1.3倍,诸如至少1.4倍,诸如至少1.5倍,诸如至少1.6倍,诸如至少1.7倍,诸如至少1.8倍,诸如至少1.9倍,诸如至少2倍,诸如至少3倍,诸如至少4倍,诸如至少5倍,诸如至少6倍,诸如至少7倍,诸如至少8倍,诸如至少9倍,诸如至少10倍,诸如至少15倍,诸如至少20倍,诸如至少30倍,诸如至少40倍,诸如至少50倍;其中所述一种或多种酶的活性的增加是相对于在没有所述Ncb5or存在下所述一种或多种酶的活性,其中在相同条件下测量所述活性,其中通过测量由所述一种或多种酶形成的产物的浓度来测量所述增加。
在一个实施方案中,所述一种或多种酶(例如如本文描述的去饱和酶和/或FAR)的活性的增加是至少1.2倍,诸如至少1.3倍,诸如至少1.4倍,诸如至少1.5倍,诸如至少1.6倍,诸如至少1.7倍,诸如至少1.8倍,诸如至少1.9倍,诸如至少2倍,诸如至少3倍,诸如至少4倍,诸如至少5倍,诸如至少6倍,诸如至少7倍,诸如至少8倍,诸如至少9倍,诸如至少10倍,诸如至少15倍,诸如至少20倍,诸如至少30倍,诸如至少40倍,诸如至少50倍;其中所述一种或多种酶的活性的增加是相对于在没有所述Ncb5or存在下所述一种或多种酶的活性,其中在相同条件下测量所述活性,其中通过测量由所述去饱和酶和/或所述FAR形成的产物的浓度来测量所述增加。
本文中公开的Ncb5or可以是任何类型的Ncb5or。在某些实施方案中,所述Ncb5or对于植物、昆虫或哺乳动物而言是天然的。在某些实施方案中,所述Ncb5or对于昆虫而言是天然的,诸如夜蛾属、Amyelois、Aphantopus、灯蛾属(Arctia)、蔽眼蝶属、熊蜂属、家蚕属、禾草螟属、小卷蛾属、斑蝶属(Danaus)、果蝇属、大蓑蛾属(Eumeta)、大蜡螟属(Galleria)、棉铃虫属、实夜蛾属、海波斯莫科马属(Hyposmocoma)、小粉蝶属(Leptidea)、花翅小卷蛾属、Manduca、秋尺蛾属(Operophtera)、秆野螟属、凤蝶亚属(Papilio)、凤蝶亚属、凤蝶亚属、菜粉蝶属(Pieris)、菜蛾属、灰翅夜蛾属、粉夜蛾属和红蛱蝶属(Vanessa)的昆虫。在优选的实施方案中,所述Ncb5or对于选自黄地老虎、脐橙螟蛾、阿芬眼蝶(Aphantopushyperantus)、木虎蛾(Arctia plantaginis)、偏瞳蔽眼蝶、欧洲熊蜂(Bombusterrestris)、野桑蚕(Bombyx mandarina)、家蚕、二化螟、苹果蠹蛾、黑脉金斑蝶(Danausplexippus)、Drosophila grimshawi、黑腹果蝇、大避债蛾(Eumeta japonica)、大蜡螟(Galleria mellonella)、棉铃虫(Helicoverpa armigera)、烟芽夜蛾(Heliothisvirescens)、Hyposmocoma kahamanoa、条纹小粉蝶(Leptidea sinapis)、葡萄花翅小卷蛾(Lobesia botrana)、烟草天蛾(Manduca sexta)、冬尺蠖蛾(Operophtera brumata)、亚洲玉米螟(Ostrinia furnacalis)、金凤蝶(Papilio machaon)、玉带凤蝶(Papiliopolytes)、柑橘凤蝶(Papilio xuthus)、菜粉蝶(Pieris rapae)、小菜蛾(Plutellaxylostella)、草地贪夜蛾(Spodoptera frugiperda)、斜纹夜蛾(Spodoptera litura)、粉纹夜蛾(Trichoplusia ni)和夏威夷红蛱蝶(Vanessa tameamea)的昆虫而言是天然的。
在某些实施方案中,所述Ncb5or是选自表5的Ncb5or。
在某些实施方案中,所述Ncb5or是选自以下的Ncb5or:在SEQ ID NO:111至114、SEQ ID NO:124或SEQ ID NO:182至185中所示的Ncb5or,或与选自在SEQ ID NO:111至114、SEQ ID NO:124或SEQ ID NO:182至185中所示的Ncb5or组的Ncb5or具有至少60%同一性的其变体。
在一个实施方案中,所述Ncb5or是小卷蛾属Ncb5or。在一个实施方案中,所述Ncb5or是苹果蠹蛾Ncb5or。在某些实施方案中,所述Ncb5or是在SEQ ID NO:124(CpoNcb5or1)或SEQ ID NO:182(CpNcb5or)中所示的小卷蛾属Ncb5or的变体,或与其具有至少60%同一性的其变体。
在一个实施方案中,所述Ncb5or是果蝇属Ncb5or。在一个实施方案中,所述Ncb5or是黑腹果蝇Ncb5or。在一个实施方案中,所述Ncb5or是大果蝇Ncb5or。在某些实施方案中,所述Ncb5or是果蝇属Ncb5or的变体、黑腹果蝇Ncb5or的变体、Drosophila grimshawiNcb5or的变体、在SEQ ID NO:112中所示的Ncb5or(DmNcb5or)的变体或在SEQ ID NO:111中所示的Ncb5or(DgNcb5or)的变体,其与在SEQ ID NO:112或SEQ ID NO:111中所示的Ncb5or具有至少60%同一性。
在一个实施方案中,所述Ncb5or是人属(Homo)Ncb5or。在一个实施方案中,所述Ncb5or是智人(Homo sapiens)Ncb5or。在某些实施方案中,所述Ncb5or是人属Ncb5or的变体、智人Ncb5or的变体或在SEQ ID NO:113中所示的Ncb5or(HsNcb5or)的变体,其与在SEQID NO:113中所示的Ncb5or具有至少60%同一性。
在一个实施方案中,所述Ncb5or是花翅小卷蛾属Ncb5or。在一个实施方案中,所述Ncb5or是葡萄花翅小卷蛾Ncb5or,诸如在SEQ ID NO:189中所示(LboNcb5or)。在某些实施方案中,所述Ncb5or是花翅小卷蛾属Ncb5or的变体,诸如在SEQ ID NO:189中所示,与其具有至少60%同一性。
在某些实施方案中,所述Ncb5or是熊蜂属Ncb5or。在一个实施方案中,所述Ncb5or是欧洲熊蜂Ncb5or,诸如在SEQ ID NO:184中所示(BterNcb5or),或与其具有至少60%同一性的其变体。
在一个实施方案中,所述Ncb5or是灰翅夜蛾属Ncb5or。在一个实施方案中,所述Ncb5or是斜纹夜蛾Ncb5or。在某些实施方案中,所述Ncb5or是灰翅夜蛾属Ncb5or的变体、斜纹夜蛾Ncb5or的变体或在SEQ ID NO:114中所示的Ncb5or(SlitNcb5or)的变体,其与在SEQID NO:114中所示的Ncb5or具有至少60%同一性。
Ncb5or的变体表示Ncb5or的功能变体,其保留至少一些或全部Ncb5or活性,并且与其具有至少60%同一性,诸如至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%,诸如100%同一性。
编码Ncb5or的核酸
在某些实施方案中,所述异源Ncb5or由与Ncb5or具有至少60%同一性的核酸编码,所述Ncb5or选自在SEQ ID NO:115至118中所示的Ncb5or的组。如本领域已知的,可以将这样的核酸引入如本文描述的细胞中,或可以包含在载体诸如质粒内。
在一个实施方案中,所述异源Ncb5or由与编码黄地老虎Ncb5or的核酸(诸如在SEQID NO:187中所示的核酸序列)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源Ncb5or由与编码欧洲熊蜂Ncb5or的核酸(诸如在SEQ ID NO:188中所示的核酸序列)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源Ncb5or由与编码苹果蠹蛾Ncb5or的核酸(诸如在SEQ ID NO:125或SEQ ID NO:182中所示的核酸序列)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源Ncb5or由与在SEQ ID NO:115中所示的来自Drosophila grimshawi的编码Ncb5or的核酸具有至少60%同一性的核酸编码。在一个实施方案中,所述异源Ncb5or由与在SEQ ID NO:116中所示的来自黑腹果蝇的编码Ncb5or的核酸具有至少60%同一性的核酸编码。在一个实施方案中,所述异源Ncb5or由与在SEQ IDNO:117中所示的来自智人的编码Ncb5or的核酸具有至少60%同一性的核酸编码。在一个实施方案中,所述异源Ncb5or由与编码葡萄花翅小卷蛾Ncb5or的核酸(诸如在SEQ ID NO:185中所示的核酸序列)具有至少60%同一性的核酸编码。在一个实施方案中,所述异源Ncb5or由与在SEQ ID NO:118中所示的来自斜纹夜蛾的编码Ncb5or的核酸具有至少60%同一性的核酸编码。
在本文中,与给定的核酸具有至少60%同一性的核酸与其具有至少60%同一性,诸如至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%,诸如100%同一性。
多个Ncb5or的共表达
本发明的细胞表达至少一个异源Ncb5or。在某些实施方案中,所述细胞表达一个异源Ncb5or。但是,可能需要表达几个异源Ncb5or,诸如至少两个异源Ncb5or,它们可以是相同的或不同的。可替换地,可能需要表达编码至少一个异源Ncb5or的核酸的几个拷贝,诸如至少两个拷贝、至少三个拷贝或更多。在某些实施方案中,所述细胞表达至少两个异源Ncb5or,例如三个异源Ncb5or。
去饱和酶、FAR和Ncb5or
任何上述Ncb5or可以与本文描述的去饱和酶和还原酶的任何组合一起在细胞中表达。因此,下文列出的Ncb5or可以用于不仅在体内而且在体外增加下文所列出的任何FAR和/或去饱和酶的活性。
在某些实施方案中,所述细胞表达小卷蛾属Ncb5or,诸如苹果蠹蛾Ncb5or,例如CpoNcb5or1(SEQ ID NO:124)或CpNcb5or(SEQ ID NO:182);以及以下一种或两种:
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和/或
-选自以下的FAR:夜蛾属FAR,诸如黄地老虎FAR,例如在SEQ ID NO:77中所示的FAR12,或诸如小地老虎FAR,例如在SEQ ID NO:78中所示的FAR18;蔽眼蝶属FAR,诸如偏瞳蔽眼蝶FAR,例如在SEQ ID NO:79中所示的FAR11;熊蜂属FAR,诸如红尾熊蜂FAR,例如在SEQID NO:80中所示的FAR14;禾草螟属FAR,诸如二化螟FAR,例如在SEQ ID NO:81中所示的FAR13;小卷蛾属FAR,诸如苹果蠹蛾FAR,例如在SEQ ID NO:82中所示的FAR23;棉铃虫属FAR,诸如棉铃虫FAR,例如在SEQ ID NO:83中所示的FAR1,或诸如烟夜蛾FAR,例如在SEQ IDNO:84中所示的FAR6;实夜蛾属FAR,诸如烟芽夜蛾FAR,例如在SEQ ID NO:86中所示的FAR5,或诸如Heliothis subflexa FAR,例如在SEQ ID NO:85中所示的FAR4;菜蛾属FAR,诸如小菜蛾FAR,例如在SEQ ID NO:87中所示的FAR27;灰翅夜蛾属FAR,诸如甜菜夜蛾FAR,例如在SEQ ID NO:88中所示的FAR16,或草地贪夜蛾FAR,例如在SEQ ID NO:89中所示的FAR22,或海灰翅夜蛾FAR,例如在SEQ ID NO:90中所示的FAR15,或斜纹夜蛾FAR,例如在SEQ ID NO:91中所示的FAR19;Tyta FAR,诸如Tyta alba FAR,例如在SEQ ID NO:92中所示的FAR25;和粉夜蛾属FAR,诸如粉纹夜蛾FAR,例如在SEQ ID NO:93中所示的FAR38;
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达果蝇属Ncb5or,诸如Drosophila grimshawhiNcb5or,例如在SEQ ID NO:111中所示的DgNcb5or;以及以下一种或两种:
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和/或
-选自以下的FAR:夜蛾属FAR,诸如黄地老虎FAR,例如在SEQ ID NO:77中所示的FAR12,或诸如小地老虎FAR,例如在SEQ ID NO:78中所示的FAR18;蔽眼蝶属FAR,诸如偏瞳蔽眼蝶FAR,例如在SEQ ID NO:79中所示的FAR11;熊蜂属FAR,诸如红尾熊蜂FAR,例如在SEQID NO:80中所示的FAR14;禾草螟属FAR,诸如二化螟FAR,例如在SEQ ID NO:81中所示的FAR13;小卷蛾属FAR,诸如苹果蠹蛾FAR,例如在SEQ ID NO:82中所示的FAR23;棉铃虫属FAR,诸如棉铃虫FAR,例如在SEQ ID NO:83中所示的FAR1,或诸如烟夜蛾FAR,例如在SEQ IDNO:84中所示的FAR6;实夜蛾属FAR,诸如烟芽夜蛾FAR,例如在SEQ ID NO:86中所示的FAR5,或诸如Heliothis subflexa FAR,例如在SEQ ID NO:85中所示的FAR4;菜蛾属FAR,诸如小菜蛾FAR,例如在SEQ ID NO:87中所示的FAR27;灰翅夜蛾属FAR,诸如甜菜夜蛾FAR,例如在SEQ ID NO:88中所示的FAR16,或草地贪夜蛾FAR,例如在SEQ ID NO:89中所示的FAR22,或海灰翅夜蛾FAR,例如在SEQ ID NO:90中所示的FAR15,或斜纹夜蛾FAR,例如在SEQ ID NO:91中所示的FAR19;Tyta FAR,诸如Tyta alba FAR,例如在SEQ ID NO:92中所示的FAR25;和粉夜蛾属FAR,诸如粉纹夜蛾FAR,例如在SEQ ID NO:93中所示的FAR38;
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达果蝇属Ncb5or,诸如黑腹果蝇Ncb5or,例如在SEQ ID NO:112中所示的DmNcb5or;以及以下一种或两种:
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和/或
-选自以下的FAR:夜蛾属FAR,诸如黄地老虎FAR,例如在SEQ ID NO:77中所示的FAR12,或诸如小地老虎FAR,例如在SEQ ID NO:78中所示的FAR18;蔽眼蝶属FAR,诸如偏瞳蔽眼蝶FAR,例如在SEQ ID NO:79中所示的FAR11;熊蜂属FAR,诸如红尾熊蜂FAR,例如在SEQID NO:80中所示的FAR14;禾草螟属FAR,诸如二化螟FAR,例如在SEQ ID NO:81中所示的FAR13;小卷蛾属FAR,诸如苹果蠹蛾FAR,例如在SEQ ID NO:82中所示的FAR23;棉铃虫属FAR,诸如棉铃虫FAR,例如在SEQ ID NO:83中所示的FAR1,或诸如烟夜蛾FAR,例如在SEQ IDNO:84中所示的FAR6;实夜蛾属FAR,诸如烟芽夜蛾FAR,例如在SEQ ID NO:86中所示的FAR5,或诸如Heliothis subflexa FAR,例如在SEQ ID NO:85中所示的FAR4;菜蛾属FAR,诸如小菜蛾FAR,例如在SEQ ID NO:87中所示的FAR27;灰翅夜蛾属FAR,诸如甜菜夜蛾FAR,例如在SEQ ID NO:88中所示的FAR16,或草地贪夜蛾FAR,例如在SEQ ID NO:89中所示的FAR22,或海灰翅夜蛾FAR,例如在SEQ ID NO:90中所示的FAR15,或斜纹夜蛾FAR,例如在SEQ ID NO:91中所示的FAR19;Tyta FAR,诸如Tyta alba FAR,例如在SEQ ID NO:92中所示的FAR25;和粉夜蛾属FAR,诸如粉纹夜蛾FAR,例如在SEQ ID NO:93中所示的FAR38;
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达人属Ncb5or,诸如智人Ncb5or,例如在SEQ IDNO:113中所示的HsNcb5or;以及以下一种或两种:
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和/或
-选自以下的FAR:夜蛾属FAR,诸如黄地老虎FAR,例如在SEQ ID NO:77中所示的FAR12,或诸如小地老虎FAR,例如在SEQ ID NO:78中所示的FAR18;蔽眼蝶属FAR,诸如偏瞳蔽眼蝶FAR,例如在SEQ ID NO:79中所示的FAR11;熊蜂属FAR,诸如红尾熊蜂FAR,例如在SEQID NO:80中所示的FAR14;禾草螟属FAR,诸如二化螟FAR,例如在SEQ ID NO:81中所示的FAR13;小卷蛾属FAR,诸如苹果蠹蛾FAR,例如在SEQ ID NO:82中所示的FAR23;棉铃虫属FAR,诸如棉铃虫FAR,例如在SEQ ID NO:83中所示的FAR1,或诸如烟夜蛾FAR,例如在SEQ IDNO:84中所示的FAR6;实夜蛾属FAR,诸如烟芽夜蛾FAR,例如在SEQ ID NO:86中所示的FAR5,或诸如Heliothis subflexa FAR,例如在SEQ ID NO:85中所示的FAR4;菜蛾属FAR,诸如小菜蛾FAR,例如在SEQ ID NO:87中所示的FAR27;灰翅夜蛾属FAR,诸如甜菜夜蛾FAR,例如在SEQ ID NO:88中所示的FAR16,或草地贪夜蛾FAR,例如在SEQ ID NO:89中所示的FAR22,或海灰翅夜蛾FAR,例如在SEQ ID NO:90中所示的FAR15,或斜纹夜蛾FAR,例如在SEQ ID NO:91中所示的FAR19;Tyta FAR,诸如Tyta alba FAR,例如在SEQ ID NO:92中所示的FAR25;和粉夜蛾属FAR,诸如粉纹夜蛾FAR,例如在SEQ ID NO:93中所示的FAR38;
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达花翅小卷蛾属Ncb5or,诸如葡萄花翅小卷蛾Ncb5or;以及以下一种或两种:
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和/或
-选自以下的FAR:夜蛾属FAR,诸如黄地老虎FAR,例如在SEQ ID NO:77中所示的FAR12,或诸如小地老虎FAR,例如在SEQ ID NO:78中所示的FAR18;蔽眼蝶属FAR,诸如偏瞳蔽眼蝶FAR,例如在SEQ ID NO:79中所示的FAR11;熊蜂属FAR,诸如红尾熊蜂FAR,例如在SEQID NO:80中所示的FAR14;禾草螟属FAR,诸如二化螟FAR,例如在SEQ ID NO:81中所示的FAR13;小卷蛾属FAR,诸如苹果蠹蛾FAR,例如在SEQ ID NO:82中所示的FAR23;棉铃虫属FAR,诸如棉铃虫FAR,例如在SEQ ID NO:83中所示的FAR1,或诸如烟夜蛾FAR,例如在SEQ IDNO:84中所示的FAR6;实夜蛾属FAR,诸如烟芽夜蛾FAR,例如在SEQ ID NO:86中所示的FAR5,或诸如Heliothis subflexa FAR,例如在SEQ ID NO:85中所示的FAR4;菜蛾属FAR,诸如小菜蛾FAR,例如在SEQ ID NO:87中所示的FAR27;灰翅夜蛾属FAR,诸如甜菜夜蛾FAR,例如在SEQ ID NO:88中所示的FAR16,或草地贪夜蛾FAR,例如在SEQ ID NO:89中所示的FAR22,或海灰翅夜蛾FAR,例如在SEQ ID NO:90中所示的FAR15,或斜纹夜蛾FAR,例如在SEQ ID NO:91中所示的FAR19;Tyta FAR,诸如Tyta alba FAR,例如在SEQ ID NO:92中所示的FAR25;和粉夜蛾属FAR,诸如粉纹夜蛾FAR,例如在SEQ ID NO:93中所示的FAR38;
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达灰翅夜蛾属Ncb5or,诸如斜纹夜蛾Ncb5or,例如在SEQ ID NO:114中所示的SlitNcb5or;以及以下一种或两种:
-选自以下的去饱和酶:夜蛾属去饱和酶,诸如黄地老虎去饱和酶,例如在SEQ IDNO:1中所示的Desat19;Amyelois去饱和酶,诸如脐橙螟蛾去饱和酶,例如在SEQ ID NO:2中所示的Desat16、在SEQ ID NO:3中所示的Desat17或在SEQ ID NO:4中所示的Desat18;花萤属去饱和酶,诸如瘟疫丽艳花萤去饱和酶,例如在SEQ ID NO:5中所示的Desat25;禾草螟属去饱和酶,诸如二化螟去饱和酶,例如在SEQ ID NO:6中所示的Desat47;色卷蛾属去饱和酶,诸如平行带状卷叶蛾去饱和酶,例如在SEQ ID NO:7中所示的Desat36,或诸如蔷薇斜条卷叶蛾去饱和酶,例如在SEQ ID NO:8中所示的Desat35;小卷蛾属去饱和酶,诸如苹果蠹蛾去饱和酶,例如在SEQ ID NO:9中所示的Desat4、在SEQ ID NO:10中所示的Desat2或在SEQID NO:11中所示的Desat1;松毛虫属去饱和酶,诸如马尾松毛虫去饱和酶,例如在SEQ IDNO:12中所示的Desat40;果蝇属去饱和酶,诸如Drosophila grimshawi去饱和酶,例如在SEQ ID NO:13中所示的Desat59,或诸如黑腹果蝇去饱和酶,例如在SEQ ID NO:14中所示的Desat24,或诸如大果蝇去饱和酶,例如在SEQ ID NO:15中所示的Desat61;或Epiphyas去饱和酶,诸如苹淡褐卷蛾去饱和酶,例如在SEQ ID NO:16中所示的Desat33;小食心虫属去饱和酶,诸如梨小食心虫去饱和酶,例如在SEQ ID NO:17中所示的Desat31或在SEQ ID NO:18中所示的Desat55;棉铃虫属去饱和酶,诸如谷实夜蛾去饱和酶,例如在SEQ ID NO:19中所示的Desat51;花翅小卷蛾属去饱和酶,诸如葡萄花翅小卷蛾去饱和酶,例如在SEQ ID NO:20中所示的Desat30或在SEQ ID NO:21中所示的Desat43;Manducta去饱和酶,例如在SEQID NO:22中所示的Desat52;秆野螟属去饱和酶,诸如欧洲玉米螟去饱和酶,例如在SEQ IDNO:23中所示的Desat32;红铃虫属去饱和酶,诸如红铃麦蛾去饱和酶,例如在SEQ ID NO:24中所示的Desat48;天竺葵属去饱和酶,诸如天竺葵去饱和酶,例如在SEQ ID NO:25中所示的Desat22;菜蛾属去饱和酶,诸如小菜蛾去饱和酶,例如在SEQ ID NO:26中所示的Desat45;蓖麻属去饱和酶,诸如蓖麻去饱和酶,例如在SEQ ID NO:27中所示的Desat23;酵母属去饱和酶,诸如酿酒酵母去饱和酶,例如在SEQ ID NO:28中所示的Desat42;灰翅夜蛾属去饱和酶,诸如甜菜夜蛾去饱和酶,例如在SEQ ID NO:29中所示的Desat37,或诸如海灰翅夜蛾去饱和酶,例如在SEQ ID NO:30中所示的Desat20或在SEQ ID NO:31中所示的Desat20,或诸如斜纹夜蛾去饱和酶,例如在SEQ ID NO:32中所示的Desat38或在SEQ IDNO:33中所示的Desat26;异舟蛾属去饱和酶,诸如松异舟蛾去饱和酶,例如在SEQ ID NO:34中所示的Desat34;拟谷盗属去饱和酶,诸如赤拟谷盗去饱和酶,例如在SEQ ID NO:35中所示的Desat28或在SEQ ID NO:36中所示的Desat29;粉夜蛾属去饱和酶,诸如粉纹夜蛾去饱和酶,例如在SEQ ID NO:37中所示的Desat21;耶氏酵母属去饱和酶,诸如解脂耶氏酵母去饱和酶,例如在SEQ ID NO:38中所示的Desat69;或它们的组合;和/或
-选自以下的FAR:夜蛾属FAR,诸如黄地老虎FAR,例如在SEQ ID NO:77中所示的FAR12,或诸如小地老虎FAR,例如在SEQ ID NO:78中所示的FAR18;蔽眼蝶属FAR,诸如偏瞳蔽眼蝶FAR,例如在SEQ ID NO:79中所示的FAR11;熊蜂属FAR,诸如红尾熊蜂FAR,例如在SEQID NO:80中所示的FAR14;禾草螟属FAR,诸如二化螟FAR,例如在SEQ ID NO:81中所示的FAR13;小卷蛾属FAR,诸如苹果蠹蛾FAR,例如在SEQ IDNO:82中所示的FAR23;棉铃虫属FAR,诸如棉铃虫FAR,例如在SEQ ID NO:83中所示的FAR1,或诸如烟夜蛾FAR,例如在SEQ ID NO:84中所示的FAR6;实夜蛾属FAR,诸如烟芽夜蛾FAR,例如在SEQ ID NO:86中所示的FAR5,或诸如Heliothis subflexa FAR,例如在SEQ ID NO:85中所示的FAR4;菜蛾属FAR,诸如小菜蛾FAR,例如在SEQ ID NO:87中所示的FAR27;灰翅夜蛾属FAR,诸如甜菜夜蛾FAR,例如在SEQID NO:88中所示的FAR16,或草地贪夜蛾FAR,例如在SEQ ID NO:89中所示的FAR22,或海灰翅夜蛾FAR,例如在SEQ ID NO:90中所示的FAR15,或斜纹夜蛾FAR,例如在SEQ ID NO:91中所示的FAR19;Tyta FAR,诸如Tyta alba FAR,例如在SEQ ID NO:92中所示的FAR25;和粉夜蛾属FAR,诸如粉纹夜蛾FAR,例如在SEQ ID NO:93中所示的FAR38;
或与其具有至少60%同一性的其变体。
相对于给定的酶术语“具有至少60%同一性的变体”应当理解为表示与所述酶具有60%同一性或更多的变体,诸如与所述酶具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%同一性,或更多。
考虑到本公开内容,确定Ncb5or是否增加去饱和酶和/或脂肪酰基辅酶A还原酶的活性的方法对于本领域技术人员来说是显而易见的。例如,通过在包含所述去饱和酶的脂肪酰基辅酶A底物的溶液中温育细胞,可以确定给定的Ncb5or是否增加去饱和酶的活性,其中所述细胞表达(i)所述Ncb5or和所述去饱和酶;或(ii)所述去饱和酶。在相同条件下温育48小时以后,可以通过GC-MS测定由所述去饱和酶产生的产物的量(滴度)(即去饱和的脂肪酰基辅酶A的量)。与不表达所述Ncb5or的细胞相比,表达所述Ncb5or的细胞的更高滴度指示,所述Ncb5or增加所述去饱和酶的活性。
在一个实施方案中,所述Ncb5or是DgNcb5or(SEQ ID NO:111),所述FAR选自由以下组成的组:FAR12(SEQ ID NO:77)、FAR18(SEQ ID NO:78)、FAR11(SEQ ID NO:79)、FAR14(SEQ ID NO:80)、FAR13(SEQ ID NO:81)、FAR23(SEQ ID NO:82)、FAR1(SEQ ID NO:83)、FAR6(SEQ ID NO:84)、FAR4(SEQ ID NO:85)、FAR5(SEQ ID NO:86)、FAR27(SEQ ID NO:87)、FAR16(SEQ ID NO:88)、FAR22(SEQ ID NO:89)、FAR15(SEQ ID NO:90)、FAR19(SEQ ID NO:91)、FAR25(SEQ ID NO:92)、FAR38(SEQ ID NO:93)、FAR33(SEQ ID NO:154)、FAR34(SEQ IDNO:155)、FAR35(SEQ ID NO:156)、FAR47(SEQ ID NO:157)、FAR46(SEQ ID NO:158)、FAR42(SEQ ID NO:159)、FAR43(SEQ ID NO:160)、FAR44(SEQ ID NO:161)、FAR28(SEQ ID NO:162)、FAR30(SEQ ID NO:163)、FAR17(SEQ ID NO:164)、FAR45(SEQ ID NO:165)、FAR41(SEQID NO:166)和FAR8(SEQ ID NO:167),且所述去饱和酶选自由以下组成的组:Desat19(SEQID NO:1)、Desat16(SEQ ID NO:2)、Desat17(SEQ ID NO:3)、Desat18(SEQ ID NO:4)、Desat25(SEQ ID NO:5)、Desat47(SEQ ID NO:6)、Desat36(SEQ ID NO:7)、Desat35(SEQ IDNO:8)、Desat4(SEQ ID NO:9)、Desat2(SEQ ID NO:10)、Desat1(SEQ ID NO:11)、Desat40(SEQ ID NO:12)、Desat59(SEQ ID NO:13)、Desat24(SEQ ID NO:14)、Desat61(SEQ ID NO:15)、Desat33(SEQ ID NO:16)、Desat31(SEQ ID NO:17)、Desat55(SEQ ID NO:18)、Desat51(SEQ ID NO:19)、Desat30(SEQ ID NO:20)、Desat43(SEQ ID NO:21)、Desat52(SEQ ID NO:22)、Desat32(SEQ ID NO:23)、Desat48(SEQ ID NO:24)、Desat22(SEQ ID NO:25)、Desat45(SEQ ID NO:26)、Desat23(SEQ ID NO:27)、Desat42(SEQ ID NO:28)、Desat37(SEQ ID NO:29)、Desat20(SEQ ID NO:30)、Desat20(SEQ ID NO:31)、Desat38(SEQ ID NO:32)、Desat26(SEQ ID NO:33)、Desat34(SEQ ID NO:34)、Desat28(SEQ ID NO:35)、Desat29(SEQ ID NO:36)、Desat21(SEQ ID NO:37)、Desat69(SEQ ID NO:38)、Desat72(SEQ ID NO:126)、Desat76(SEQ ID NO:127)、Desat75(SEQ ID NO:128)、Desat78(SEQ ID NO:129)、Desat44(SEQ ID NO:130)、Desat60(SEQ ID NO:131)、Desat63(SEQ ID NO:132)、Desat56(SEQ IDNO:133)、Desat70(SEQ ID NO:134)、Desat71(SEQ ID NO:135)、Desat77(SEQ ID NO:136)、Desat65(SEQ ID NO:137)、Desat27(SEQ ID NO:138)和Desat73,优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组。
在一个实施方案中,所述Ncb5or是DmNcb5or(SEQ ID NO:112),所述FAR选自上面列出的FAR的组(在Ncb5or为DgNcb5or的情况下),优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组,且所述去饱和酶选自上面列出的去饱和酶的组(在Ncb5or为DgNcb5or的情况下)。
在一个实施方案中,所述Ncb5or是HsNcb5or(SEQ ID NO:113),所述FAR选自上面列出的FAR的组(在Ncb5or为DgNcb5or的情况下),优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组,且所述去饱和酶选自上面列出的去饱和酶的组(在Ncb5or为DgNcb5or的情况下)。
在一个实施方案中,所述Ncb5or是SlitNcb5or(SEQ ID NO:114),所述FAR选自上面列出的FAR的组(在Ncb5or为DgNcb5or的情况下),优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组,且所述去饱和酶选自上面列出的去饱和酶的组(在Ncb5or为DgNcb5or的情况下)。
在一个实施方案中,所述Ncb5or是CpoNcb5or1(SEQ ID NO:124),所述FAR选自上面列出的FAR的组(在Ncb5or为DgNcb5or的情况下),优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组,且所述去饱和酶选自上面列出的去饱和酶的组(在Ncb5or为DgNcb5or的情况下)。
在一个实施方案中,所述Ncb5or是CpNcb5or(SEQ ID NO:182),所述FAR选自上面列出的FAR的组(在Ncb5or为DgNcb5or的情况下),优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组,且所述去饱和酶选自上面列出的去饱和酶的组(在Ncb5or为DgNcb5or的情况下)。
在一个实施方案中,所述Ncb5or是AseNcb5or(SEQ ID NO:183),所述FAR选自上面列出的FAR的组(在Ncb5or为DgNcb5or的情况下),优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组,且所述去饱和酶选自上面列出的去饱和酶的组(在Ncb5or为DgNcb5or的情况下)。
在一个实施方案中,所述Ncb5or是BterNcb5or(SEQ ID NO:184),所述FAR选自上面列出的FAR的组(在Ncb5or为DgNcb5or的情况下),优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组,且所述去饱和酶选自上面列出的去饱和酶的组(在Ncb5or为DgNcb5or的情况下)。
在一个实施方案中,所述Ncb5or是LboNcb5or(SEQ ID NO:185),所述FAR选自上面列出的FAR的组(在Ncb5or为DgNcb5or的情况下),优选地所述FAR选自由FAR1、FAR15、FAR16、FAR12、FAR6、FAR8、FAR18、FAR38和FAR17组成的组,且所述去饱和酶选自上面列出的去饱和酶的组(在Ncb5or为DgNcb5or的情况下)。
细胞
本发明提供了一种细胞,其已经被修饰或工程改造以产生去饱和的和/或饱和的化合物,特别是产生去饱和的和/或饱和的脂肪醇;去饱和的和/或饱和的脂肪醇乙酸酯;和/或去饱和的和/或饱和的脂肪醛。这些中的一些是信息素的组分,特别是蛾信息素的组分。因此,本文公开的细胞提供了用于环境友好的蛾信息素生产的改进平台。
在一个实施方案中,本文描述的细胞能够生产碳链长度为8、9、10、11、12、13、14、15、16、17、18、19、20、21或22的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和/或饱和的脂肪醇乙酸酯。在优选的实施方案中,所述碳链具有11、12、13、14、15、16、17或18的长度。
因此,本发明的一个实施方案提供了一种细胞,其表达
i)第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和
ii)异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);
由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产所述化合物。
在一个实施方案中,所述第一种酶或第一组酶由一种或多种能够将脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A的去饱和酶组成,由此当在相同条件下培养时,与表达所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的脂肪酰基辅酶A。
在一个实施方案中,所述第一种酶或第一组酶由一种或多种能够将脂肪酰基辅酶A转化为饱和的脂肪醇的脂肪酰基还原酶(FAR)组成,由此当在相同条件下培养时,与表达所述一种或多种FAR、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产饱和的脂肪醇。
在一个实施方案中,所述第一种酶或第一组酶由一种或多种脂肪酰基还原酶(FAR)和一种或多种能够将脂肪酰基辅酶A转化为去饱和的脂肪醇的去饱和酶组成,由此当在相同条件下培养时,与表达所述一种或多种FAR和所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的脂肪醇。
在一个实施方案中,所述细胞进一步表达乙酰基转移酶,其能够将去饱和的或饱和的脂肪醇分别转化为去饱和的或饱和的脂肪醇乙酸酯,由此当在相同条件下培养时,与表达所述第一组酶和所述乙酰基转移酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的或饱和的脂肪醇乙酸酯。
所述细胞可以表达本文描述的Ncb5or和第一种酶或第一组酶(特别是任何去饱和酶或FAR)的任何组合。
在一个实施方案中,所述细胞表达选自由SEQ ID NO:111至114、SEQ ID NO:124和SEQ ID NO:182至185组成的组的异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or),选自由SEQID NO:1至38和SEQ ID NO:126至139组成的组的异源去饱和酶,以及选自由SEQ ID NO:77至93和SEQ ID NO:154-167组成的组的异源脂肪酰基辅酶A还原酶(FAR);例如在SEQ IDNO:32中所示的来自斜纹夜蛾的去饱和酶(Desat38)和在SEQ ID NO:83中所示的来自棉铃虫的脂肪酰基辅酶A还原酶(FAR)(FAR1);或在SEQ ID NO:20中所示的来自葡萄花翅小卷蛾的去饱和酶(Desat30)和在SEQ ID NO:83中所示的来自棉铃虫的脂肪酰基辅酶A还原酶(FAR)(FAR1);或在SEQ ID NO:15中所示的来自大果蝇的去饱和酶(Desat61)和在SEQ IDNO:83中所示的来自棉铃虫的脂肪酰基辅酶A还原酶(FAR)(FAR1)。
在一个实施方案中,所述细胞表达:
a.在SEQ ID NO:32中所示的来自斜纹夜蛾的去饱和酶(Desat38);
b.如上文描述的脂肪酰基辅酶A还原酶(FAR),诸如棉铃虫FAR,例如在SEQ ID NO:83中所示的FAR1,或诸如来自黄地老虎的FAR,例如在SEQ ID NO:77中所示的FAR12;和
c.NAD(P)H细胞色素b5氧化还原酶(Nc5bor),其选自由以下组成的组:来自黑腹果蝇的Ncb5or诸如在SEQ ID NO:112中所示的DmNcb5or,来自斜纹夜蛾的Ncb5or诸如在SEQID NO:114中所示的SlitNcb5or,来自Drosophila grimshawi的Ncb5or诸如在SEQ ID NO:111中所示的DgNcb5or,来自苹果蠹蛾的Ncb5or诸如在SEQ ID NO:182中所示的CpNcb5or,来自黄地老虎的Ncb5or诸如在SEQ ID NO:183中所示的AseNcb5or,来自欧洲熊蜂的Ncb5or诸如在SEQ ID NO:184中所示的BterNcb5or,来自葡萄花翅小卷蛾的Ncb5or诸如在SEQ IDNO:185中所示的LboNcb5or,和来自智人的Ncb5or诸如在SEQ ID NO:113中所示的HsNcb5or,
或与其具有至少60%同一性的其变体。在某些实施方案中,所述FAR是FAR1且所述Ncb5or是DmNcb5or或SlitNcb5or;在其它实施方案中,所述FAR是FAR12且所述Ncb5or是DmNcb5or。
在其它实施方案中,所述细胞表达:
a.来自葡萄花翅小卷蛾的去饱和酶诸如在SEQ ID NO:20中所示的Desat30;
b.来自棉铃虫的脂肪酰基辅酶A还原酶(FAR)诸如在SEQ ID NO:83中所示的FAR1;和
c.NAD(P)H细胞色素b5氧化还原酶(Nc5bor),其选自由以下组成的组:来自黑腹果蝇的Ncb5or诸如在SEQ ID NO:112中所示的DmNcb5or,来自斜纹夜蛾的Ncb5or诸如在SEQID NO:114中所示的SlitNcb5or,来自Drosophila grimshawi的Ncb5or诸如在SEQ ID NO:111中所示的DgNcb5or,来自苹果蠹蛾的Ncb5or诸如在SEQ ID NO:182中所示的CpNcb5or,来自黄地老虎的Ncb5or诸如在SEQ ID NO:183中所示的AseNcb5or,来自欧洲熊蜂的Ncb5or诸如在SEQ ID NO:184中所示的BterNcb5or,来自葡萄花翅小卷蛾的Ncb5or诸如在SEQ IDNO:185中所示的LboNcb5or,和来自智人的Ncb5or诸如在SEQ ID NO:113中所示的HsNcb5or,优选DmNcb5or或SlitNcb5or,
或与其具有至少60%同一性的其变体。
在其它实施方案中,所述细胞表达:
a.来自大果蝇的去饱和酶诸如在SEQ ID NO:15中所示的Desat61;
b.来自棉铃虫的脂肪酰基辅酶A还原酶(FAR)诸如在SEQ ID NO:83中所示的FAR1;和
c.NAD(P)H细胞色素b5氧化还原酶(Nc5bor),其选自由以下组成的组:来自黑腹果蝇的Ncb5or诸如在SEQ ID NO:112中所示的DmNcb5or,来自斜纹夜蛾的Ncb5or诸如在SEQID NO:114中所示的SlitNcb5or,来自Drosophila grimshawi的Ncb5or诸如在SEQ ID NO:111中所示的DgNcb5or,来自苹果蠹蛾的Ncb5or诸如在SEQ ID NO:182中所示的CpNcb5or,来自黄地老虎的Ncb5or诸如在SEQ ID NO:183中所示的AseNcb5or,来自欧洲熊蜂的Ncb5or诸如在SEQ ID NO:184中所示的BterNcb5or,来自葡萄花翅小卷蛾的Ncb5or诸如在SEQ IDNO:185中所示的LboNcb5or,和来自智人的Ncb5or诸如在SEQ ID NO:113中所示的HsNcb5or,优选HsNcb5or或SlitNcb5or,
或与其具有至少60%同一性的其变体。
相对于给定的酶术语“具有至少60%同一性的其变体”应当理解为表示与所述酶具有60%同一性或更多的变体,诸如与所述酶具有至少61%同一性,诸如至少62%同一性,诸如至少63%同一性,诸如至少64%同一性,诸如至少65%同一性,诸如至少66%同一性,诸如至少67%同一性,诸如至少68%同一性,诸如至少69%同一性,诸如至少70%同一性,诸如至少71%同一性,诸如至少72%,诸如至少73%,诸如至少74%,诸如至少75%,诸如至少76%,诸如至少77%,诸如至少78%,诸如至少79%,诸如至少80%,诸如至少81%,诸如至少82%,诸如至少83%,诸如至少84%,诸如至少85%,诸如至少86%,诸如至少87%,诸如至少88%,诸如至少89%,诸如至少90%,诸如至少91%,诸如至少92%,诸如至少93%,诸如至少94%,诸如至少95%,诸如至少96%,诸如至少97%,诸如至少98%,诸如至少99%同一性,或更多。
脂肪醇和脂肪醇乙酸酯
表达所述Ncb5or和所述第一种酶或第一组酶的细胞能够生产碳链长度为8、9、10、11、12、13、14、15、16、17、18、19、20、21或22的脂肪醇和/或脂肪醇乙酸酯。在优选的实施方案中,所述碳链具有11、12、13、14、15、16、17或18的长度。
因而,本文提供了根据本文所述方法可得到的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和/或饱和的脂肪醇乙酸酯。
本文进一步提供了根据本文所述方法可得到的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和/或饱和的脂肪醇乙酸酯的用途。这样的化合物可以用于例如监测害虫的存在或破坏害虫的存在。
在某些实施方案中,所述去饱和的脂肪醇在至少一个位置诸如至少两个位置是去饱和的。在其它实施方案中,所述去饱和的脂肪醇在位置3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20或21是去饱和的。在优选的实施方案中,所述去饱和的脂肪醇选自由(Z)-9-十四烯-1-醇(Z9-14:OH)、(Z)-9-十六烯-1-醇(Z9-16:OH)、(Z)-11-十四烯-1-醇(Z11-14:OH)、(Z)-11-十六烯-1-醇(Z11-16:OH)和十二碳二烯醇(E8,E10-十二碳二烯-1-醇)组成的组的去饱和的脂肪醇。
在某些实施方案中,所述去饱和的脂肪醇乙酸酯在至少一个位置诸如至少两个位置是去饱和的。在其它实施方案中,所述去饱和的脂肪醇乙酸酯在位置3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20或21是去饱和的。在某些实施方案中,所述去饱和的脂肪醇乙酸酯是乙酸E8,E10-十二碳二烯酯。
在某些实施方案中,所述细胞能够进一步将去饱和的脂肪醇乙酸酯或饱和的脂肪醇乙酸酯分别转化为去饱和的脂肪醛或饱和的脂肪醛,例如通过至少一种醇脱氢酶和/或至少一种脂肪醇氧化酶在所述细胞中的表达。所述醇脱氢酶和/或所述脂肪醇氧化酶可以对所述细胞而言是天然的,或可以是异源的醇脱氢酶和/或脂肪醇氧化酶。
因而,本文进一步提供了根据本文所述方法可得到的去饱和的脂肪醛和/或饱和的脂肪醛的用途。
可替换地,乙酰基转移酶可以在体内或在体外在回收脂肪醇以后催化由细胞产生的去饱和的脂肪醇或饱和的脂肪醇向对应的去饱和的脂肪醛或饱和的脂肪醛的转化。也可以通过化学方法转化为脂肪醛。
由细胞产生的任何去饱和的脂肪醇可以进一步转化为对应的脂肪醇乙酸酯。在优选的实施方案中,乙酸(Z)-9-十四烯-1-基酯(Z9-14:OAc)、乙酸(Z)-9-十六烯-1-基酯(Z9-16:OAc)、乙酸(Z)-11-十四烯-1-基酯(Z11-14:OAc)、乙酸(Z)-11-十六烯-1-基酯(Z11-16:OAc)和乙酸E8,E10-十二碳二烯-1-基酯(E8,E10-Z11:OAc)。
在某些实施方案中,所述产物是(Z)-11-十六烯-1-醇(Z11-16:OH)。这样的产物可以如在WO 2016/207339中所公开地得到。例如,它可以通过在细胞(诸如酵母细胞或植物细胞,优选酵母细胞)中表达Δ11去饱和酶和FAR而生产,其中所述Δ11去饱和酶能够将十六烷酰基辅酶A转化为(Z)11-十六烯酰基辅酶A,且所述FAR能够将(Z)11-十六烯酰基辅酶A转化为(Z)-11-十六烯-1-醇。具体地,已经发现下述去饱和酶和FAR允许在酵母中以高滴度生产这些化合物:脐橙螟蛾去饱和酶,诸如Desat16;海灰翅夜蛾去饱和酶,诸如Desat20;甜菜夜蛾去饱和酶,诸如Desat37;黄地老虎去饱和酶,诸如Desat19;粉纹夜蛾去饱和酶诸如Desat21;棉铃虫FAR诸如FAR1;Heliothhis subflexa FAR诸如FAR4和烟夜蛾FAR诸如FAR6;或与其具有至少60%同一性的其变体。
在某些实施方案中,所述产物是十二碳二烯醇(E8,E10-十二碳二烯-1-醇)。这样的产物可以如在相同申请人于2020年12月18日提交且名称为“Yeast cells and methodsfor production of E8,E10-dodecadienyl coenzyme A,codlemone and derivativesthereof(用于生产E8,E10-十二碳二烯基辅酶A、十二碳二烯醇及其衍生物的酵母细胞和方法)”的申请PCT/EP2020/086975中所公开地得到。例如,可以在细胞(诸如酵母细胞或植物细胞,优选酵母细胞)中生产E8,E10-十二碳二烯-1-醇,所述细胞表达至少一种异源去饱和酶,其能够在碳链长度为12的脂肪酰基辅酶A中引入一个或多个双键,从而将所述脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A,其中所述去饱和的脂肪酰基辅酶A的至少一部分是E8,E10-十二碳二烯基辅酶A(E8,E10-C12:辅酶A)。具体地,可以在酵母中表达下述去饱和酶以便以高滴度生产十二碳二烯醇:单独的Desat4,或Desat4(SEQ ID NO:9)和一种另外的异源去饱和酶诸如Desat2(SEQ ID NO:10)或Desat1(SEQ ID NO:11)或与其具有至少60%同一性的其变体。所述去饱和酶可以有利地与下述FAR中的至少一种一起表达:选自由FAR12(SEQ ID NO:77)、FAR18(SEQ ID NO:78)、FAR4(SEQ ID NO:85)、FAR6(SEQ ID NO:84)、FAR5(SEQ ID NO:86)、FAR1(SEQ ID NO:83)、FAR23(SEQ ID NO:82)或与其具有至少60%同一性的其变体的脂肪酰基辅酶A还原酶。
为了改善如在本文中公开的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛或饱和的脂肪醛的生产,例如E8,E10-十二碳二烯基辅酶A和任选的E8,E10-十二碳二烯-1-醇及其衍生物的生产,可能有利的是,在细胞中引入另外的修饰以便增加所需前体的可得性。这样的修饰公开在相同申请人于2020年12月18日提交且名称为“Yeast cells and methods for production of E8,E10-dodecadienyl coenzyme A,codlemone and derivatives thereof(用于生产E8,E10-十二碳二烯基辅酶A、十二碳二烯醇及其衍生物的酵母细胞和方法)”的申请PCT/EP2020/086975中,并且可以用于生产除十二碳二烯醇外的多种去饱和的化合物。例如,可以进一步修饰所述细胞以表达异源细胞色素b5;和/或表达异源细胞色素b5还原酶;和/或表达血红蛋白;和/或通过天然延长酶的失活;和/或通过天然硫酯酶的失活;和/或通过天然脂肪醛脱氢酶、脂肪醇氧化酶、过氧化物酶体生物发生因子和/或脂肪酰基合酶的失活或活性改变;和/或通过异源硫酯酶基因的表达;和/或通过脂肪酰基合酶和硫酯酶的融合蛋白的表达。具体地,异源细胞色素b5、异源细胞色素b5还原酶和/或血红蛋白的表达和/或天然脂肪醛脱氢酶、脂肪醇氧化酶、过氧化物酶体生物发生因子和/或脂肪酰基合酶的失活或活性降低是特别相关的,并且在申请PCT/EP2020/086975中详细描述。
在某些实施方案中,特别是其中所述细胞是酵母细胞的实施方案中,所述细胞被进一步修饰以便通过链缩短来增加给定链长度的脂肪酰基辅酶A的可得性,如在WO 2020/169389中所公开的。不受理论的约束,预期这样的修饰会增加具有期望的碳链长度(特别是具有12的碳链长度)的底物的可得性,由此可以增加去饱和的脂肪醇和任选的去饱和的脂肪醇乙酸酯和去饱和的脂肪醛的生产。这可以通过降低微生物生产细胞中天然酰基辅酶A氧化酶的活性以及通过表达特定的酰基辅酶A氧化酶、去饱和酶、还原酶和乙酰基转移酶来实现。这样的修饰详细描述于WO 2020/169389中。
可以组合任何上述修饰,即所述细胞可以包含所述修饰中的几种。
脂肪醛
虽然本公开内容提供了用于生产去饱和的和饱和的脂肪醇以及去饱和的和饱和的脂肪醇乙酸酯的方法,但可能感兴趣的是进一步将所述脂肪醇转化为对应的去饱和的或饱和的醛。因此,在某些实施方案中,所述方法可以进一步包括将至少一部分脂肪醇转化为脂肪醛从而生产脂肪醛的步骤。这可以通过化学方法或通过对酵母细胞的进一步工程改造来实现。
在某些实施方案中,所述将至少一部分脂肪醇转化为对应的醛的步骤是化学转化步骤。所述化学转化是基于将脂肪醇氧化为对应的醛。进行这种转化的方法是本领域已知的。优选的方法是环境友好的并且最大限度地减少危险废物的量。
因此,在某些实施方案中,所述化学转化可以是无金属的,从而避免有毒的基于重金属的试剂,诸如氧化锰、氧化铬(Jones ox.PDC,PCC)或钌化合物(TPAP,Ley-Griffithox.)。在某些实施方案中,所述转化不涉及与活化的二甲亚砜的反应,诸如Swern氧化或Pfitzner-Moffat型。这样的反应可能涉及痕量的强烈气味的有机硫化合物(诸如二甲硫醚)的固有形成,其可能难以从目标产物中除去。
在某些实施方案中,所述方法包含Dess-Martin反应(Yadav等人,2004,Meyer等人,1994)。在某些实施方案中,所述方法包括铜(I)/ABNO-催化的好氧性的醇氧化反应(Steves和Stahl,2013)。
在其它实施方案中,所述化学转化包含在水/有机两相条件下用次氯酸钠氧化(Okada等人,2014;Tamura等人,2012;Li等人,2009)。在某些实施方案中,所述化学氧化可以在含有25%吡啶的二氯甲烷介质中用1-氯苯并三唑进行(Ferrell和Yao,1972)。
可替换地,可以通过醇脱氢酶酶促地将脂肪醇氧化成对应的脂肪醛。技术人员将知道如何进行酶促氧化。例如,酶促氧化可以通过使纯化的酶、细胞提取物或全细胞与脂肪醇接触来进行。
通过引入编码形成醛的脂肪酰基辅酶A还原酶EC 1.2.1.50(FAR’)的基因,可以将通过本文描述的细胞和方法可获得的脂肪醇进一步转化为脂肪醛。以此方式,至少一部分脂肪酰基辅酶A可以被形成醛的脂肪酰基辅酶A还原酶(FAR’)转化为对应的脂肪醛。能够催化这种转化的酶可以催化还原反应,其中脂肪酰基辅酶A被还原为脂肪醛。这样的酶是形成醛的脂肪酰基辅酶A还原酶,在本文中也被称作FAR’或“形成醛的FAR’”,具有EC编号1.2.1.50。它们催化下述反应:
脂肪酰基辅酶A+NADPH=脂肪醛+NADP++辅酶A。
酵母细胞
在本发明的某些实施方案中,本文提供的细胞是酵母细胞。
因此,本发明的一个实施方案提供了一种酵母细胞,其表达
第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的酵母细胞相比,所述酵母细胞能够以更高滴度生产所述化合物。
所述酵母细胞可以是非天然存在的酵母细胞,例如已经被工程改造以产生去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的酵母细胞。
在某些实施方案中,所述细胞已经在基因组水平上被修饰,例如通过基因组中的基因编辑。还可以通过插入至少一种核酸构建体诸如至少一种载体来修饰所述细胞。可以如技术人员已知的那样将所述载体设计成能够将核酸序列整合到基因组中,或者能够在没有基因组整合的情况下表达由被包含在载体中的核酸序列编码的多肽。
所述酵母细胞可以是选自酵母属(Saccharomyces)、毕赤酵母属(Pichia)、驹形氏酵母(Komagataella)、耶氏酵母属(Yarrowia)、克鲁维酵母属(Kluyveromyces)、假丝酵母属(Candida)、红酵母属(Rhodotorula)、红冬孢酵母属(Rhodosporidium)、隐球菌属(Cryptococcus)、毛孢子菌属(Trichosporon)和油脂酵母属(Lipomyces)的属。在一个优选的实施方案中,所述属是酵母属或耶氏酵母属,最优选地所述属是耶氏酵母属。
所述酵母细胞可以是选自酿酒酵母(Saccharomyces cerevisiae)、布拉氏酵母(Saccharomyces boulardi)、巴斯德毕赤酵母(Pichia pastoris)、法夫驹形氏酵母(Komagataella phaffi)、巴斯德驹形氏酵母(Komagataella pastoris)、假巴斯德驹形氏酵母(Komagataella pseudopastoris)、马克思克鲁维酵母(Kluyveromyces marxianus)、热带假丝酵母(Candida tropicalis)、浅白隐球菌(Cryptococcus albidus)、产油油脂酵母(Lipomyces lipofera)、斯氏油脂酵母(Lipomyces starkeyi)、圆红冬孢酵母(Rhodosporidium toruloides)、粘红酵母(Rhodotorula glutinis)、出芽毛孢子菌(Trichosporon pullulan)和解脂耶氏酵母(Yarrowia lipolytica)的种。在优选的实施方案中,所述酵母细胞是酿酒酵母细胞或解脂耶氏酵母细胞,最优选地所述酵母细胞是解脂耶氏酵母细胞。
要修饰的酵母细胞(其也被称作宿主细胞)可以表达与为了生产去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A所必需的酶属于同一类的天然酶。但是,在某些情况下,这样的天然酶可能对可获得的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的滴度具有负面影响;因此,可以通过本领域已知的方法(诸如基因编辑)来使天然酶失活。例如,编码对滴度具有负面影响的天然酶的基因可以被删除或突变,从而导致天然酶的活性的全部或部分丧失。
在某些实施方案中,所述酵母细胞具有如在WO 2018/109163和欧洲专利3555268中所公开的一种或多种蛋白的降低的活性。例如,所述酵母细胞可能具有导致Pex10、Hfd1、Hfd4、Fao1和/或GPAT的活性降低(即下调)的突变。优选地,所述酵母细胞具有至少一种突变,其导致至少Fao1以及Hfd1、Hfd4、Pex10和/或GPAT中的一种或多种的活性降低。这样的突变可以增加表达异源去饱和酶和异源脂肪酰基辅酶A还原酶的酵母细胞中去饱和的脂肪醇和/或去饱和的脂肪醇乙酸酯的生产。
因此,本文提供了一种酵母细胞,其表达:第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的酵母细胞相比,所述酵母细胞能够以更高滴度生产所述化合物。
所述第一种酶或第一组酶可以是在“去饱和酶”部分中定义的去饱和酶;在“脂肪酰基辅酶A还原酶”部分中定义的FAR;分别在“去饱和酶”和“脂肪酰基辅酶A还原酶”部分中所定义的去饱和酶和FAR去饱和酶。所述Ncb5or可以如在“NAD(P)H细胞色素b5氧化还原酶”部分中所定义。所述酵母细胞可以表达异源Ncb5or和异源去饱和酶;异源FAR;或异源FAR和异源去饱和酶,如在“细胞”部分中所公开的。
在某些实施方案中,编码所述去饱和酶、FAR和/或Ncb5or的基因已经针对所述酵母细胞进行了密码子优化。在其它实施方案中,编码所述去饱和酶、FAR和/或Ncb5or的基因处于诱导型启动子的控制下。在某些实施方案中,编码所述去饱和酶、FAR和/或Ncb5or的基因以高拷贝数存在,和/或它们各自独立地包含在酵母细胞的基因组内或被包含在酵母细胞中的载体内。
在某些实施方案中,所述酵母细胞包含载体系统,如在“核酸”部分中所述。
根据本发明的酵母细胞可以被包含在发酵液、发酵系统和/或催化系统中。换而言之,发酵液、发酵系统和/或催化系统可以包含根据本发明的酵母细胞。
植物细胞
在本发明的某些实施方案中,本文提供的细胞是植物细胞。
因此,本发明的一个实施方案提供了一种植物细胞,其表达第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的植物细胞相比,所述植物细胞能够以更高滴度生产所述化合物。
所述植物细胞可以是非天然存在的植物细胞,例如已经被工程改造以产生去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的植物细胞。
在某些实施方案中,所述植物细胞已经在基因组水平被修饰,例如通过基因组中的基因编辑。还可以通过插入至少一种核酸构建体诸如至少一种载体来修饰所述植物细胞。可以如技术人员已知的那样将所述载体设计成能够将核酸序列整合到基因组中,或者能够在没有基因组整合的情况下表达由被包含在载体中的核酸序列编码的多肽。例如,可以使用水平基因转移、基因枪和/或本领域已知的其它技术来修饰所述植物细胞。
在某些实施方案中,所述植物细胞来自选自由烟草属(Nicotiana)和亚麻荠属(Camelina)组成的组的属。在某些实施方案中,所述植物细胞来自选自由烟草(Nicotianatabacum)、本氏烟草(Nicotiana benthamiana)和亚麻荠(Camelina sativa)组成的组的种。
要修饰的植物细胞(其也被称作宿主细胞)可以表达与为了生产去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A所必需的酶属于同一类的天然酶。但是,在某些情况下,这样的天然酶可能对可获得的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的滴度具有负面影响;因此,可以通过本领域已知的方法(诸如基因编辑)来使所述天然酶失活。例如,编码对滴度具有负面影响的天然酶的基因可以被删除或突变,从而导致天然酶的活性的全部或部分丧失。
所述植物细胞可以是植物(诸如遗传修饰的植物)的一部分。换而言之,所述植物细胞可以是转基因植物的一部分。转基因植物是表达转基因的植物,即已经被遗传工程改造的植物。植物基因组可以通过物理方法或通过使用土壤杆菌属(Agrobacterium)递送序列进行工程改造。
基因枪或生物弹道颗粒递送系统是物理植物基因工程方法的一个例子。基因枪可以用于将外源性DNA、RNA或蛋白递送至植物细胞。通过用感兴趣的基因涂布颗粒并使用机械力将这些微射弹发射到细胞中,可以诱导期望的遗传信息整合到细胞中。所述基因枪能够转化几乎任何类型的植物细胞,并且不限于细胞核的转化;它还可以转化细胞器,包括质体和线粒体。
土壤杆菌属是使用水平基因转移在植物中造成肿瘤的革兰氏阴性细菌的一个属。土壤杆菌属因其在自身和植物之间转移DNA的能力而闻名,并由于该原因已经成为植物基因工程的重要工具。可以使用土壤杆菌属来工程改造植物的基因组,以递送在转移-二元载体(T-二元载体)中携带的序列。土壤杆菌属转化可以通过多种方式实现。可以将原生质体或叶盘与土壤杆菌属一起温育,并如下所述产生完整植物。在土壤杆菌属渗透中,可以将土壤杆菌属直接注射到植物的叶组织中。
许多植物是多能的,这意味着可以收获成熟植物的单个细胞并用于形成新植物。这可以在制备转基因植物时利用。可以收获已经在成年植物中成功转化的细胞并在植物组织培养物中生长以产生新植物,其中遗传修饰存在于所述植物的每个细胞中。
本公开内容的植物不是天然存在的植物。优选地,本文公开的植物不是通过实质上生物学方法获得,而是通常通过靶向基因组编辑方法获得,如本领域已知的。
因而,本文提供了一种植物细胞,其表达第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的植物细胞相比,所述植物细胞能够以更高滴度生产所述化合物。
所述第一种酶或第一组酶可以是在“去饱和酶”部分中定义的去饱和酶;在“脂肪酰基辅酶A还原酶”部分中定义的FAR;分别在“去饱和酶”和“脂肪酰基辅酶A还原酶”部分中所定义的去饱和酶和FAR去饱和酶。所述Ncb5or可以如在“NAD(P)H细胞色素b5氧化还原酶”部分中所定义。所述植物细胞可以表达异源Ncb5or和异源去饱和酶;异源FAR;或异源FAR和异源去饱和酶,如在“细胞”部分中所公开的。
在某些实施方案中,编码所述去饱和酶、FAR和/或Ncb5or的基因已经针对所述植物细胞进行了密码子优化。在其它实施方案中,编码所述去饱和酶、FAR和/或Ncb5or的基因处于诱导型启动子的控制下。在某些实施方案中,编码所述去饱和酶、FAR和/或Ncb5or的基因以高拷贝数存在,和/或它们各自独立地包含在植物细胞的基因组内或被包含在植物细胞中的载体内。
在某些实施方案中,所述植物细胞包含载体系统,如在“核酸”部分中所述。
用于生产去饱和的脂肪酰基辅酶A、去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和/或饱和的脂肪醇乙酸酯的方法
本文提供了一种用于在细胞中生产选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物的方法,所述方法包括以下步骤:
a.提供细胞并在培养基中温育所述细胞;和
b.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
c.在所述细胞中表达NAD(P)H细胞色素b5氧化还原酶(Ncb5or);
d.任选地,回收所述化合物。
在某些实施方案中,本文呈现的方法以至少1mg/L的滴度产生所述去饱和的脂肪醇和任选的所述脂肪醇乙酸酯和/或脂肪酸,诸如至少1.5mg/L,诸如至少5mg/L,诸如至少10mg/L,诸如至少25mg/L,诸如至少50mg/L,诸如至少100mg/L,诸如至少250mg/L,诸如至少500mg/L,诸如至少750mg/L,诸如至少1g/L,诸如至少2g/L,诸如至少3g/L,诸如至少4g/L,诸如至少5g/L,诸如至少6g/L,诸如至少7g/L,诸如至少8g/L,诸如至少9g/L,诸如至少10g/L,诸如至少11g/L,诸如至少12g/L,诸如至少13g/L,诸如至少14g/L,诸如至少15g/L,诸如至少16g/L,诸如至少17g/L,诸如至少18g/L,诸如至少19g/L,诸如至少20g/L,诸如至少25g/L,诸如至少30g/L,诸如至少35g/L,诸如至少40g/L,诸如至少45g/L,诸如至少50g/L,诸如至少55g/L,诸如至少60g/L,诸如至少65g/L,诸如至少70g/L,诸如至少75g/L,诸如至少80g/L,诸如至少85g/L,诸如至少90g/L,诸如至少95g/L,诸如至少100g/L,诸如至少125g/L,诸如至少150g/L,诸如至少175g/L,诸如至少200g/L,或更多。
本文进一步提供了一种增加在细胞中生产的选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、去饱和的脂肪酸以及去饱和的脂肪酰基辅酶A的化合物的滴度的方法,所述细胞能够合成一种或多种脂肪酰基辅酶A和/或能够从其环境中输入脂肪酰基辅酶A,所述方法包括以下步骤:
a.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
b.在所述细胞中表达NAD(P)H细胞色素b5还原酶(Ncb5or),从而与在相同条件下来自不表达所述Ncb5or的细胞的滴度相比,增加所述化合物的滴度;
c.任选地,回收所述化合物。
换言之,本文提供了一种增加选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、去饱和的脂肪酸以及去饱和的脂肪酰基辅酶A的化合物在细胞中的生产的方法,其中所述细胞表达第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为所述化合物中的任一种,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物中的任一种;并在所述细胞中表达NAD(P)H细胞色素b5还原酶(Ncb5or);其中所述化合物在所述细胞中的生产与表达相同酶或第一组酶、但不表达Ncb5or的所述细胞中的所述化合物的生产相比增加,其中在相同条件下培养所述细胞。
本文中还公开了一种用于增加在细胞中生产的选自去饱和的脂肪醇、去饱和的脂肪酸以及去饱和的脂肪酰基辅酶A的化合物的纯度的方法,所述细胞能够合成一种或多种脂肪酰基辅酶A和/或能够从其环境中输入脂肪酰基辅酶A,所述方法包括以下步骤:
a.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
b.在所述细胞中表达Ncb5or,从而与在相同条件下来自不表达所述Ncb5or的细胞生产相比增加所述化合物的生产;
其中所述化合物的纯度是所述化合物相对于所述细胞生产的相同化合物组内的所有化合物的比率或百分比,诸如所述去饱和的脂肪醇相对于所述细胞生产的所有去饱和的脂肪醇的百分比,诸如去饱和的脂肪酸相对于所述细胞生产的所有脂肪酸的百分比,和/或诸如去饱和的脂肪酰基辅酶A相对于所述细胞生产的所有脂肪酰基辅酶A的百分比。
与从不表达所述Ncb5or的细胞得到的相同化合物的纯度相比,去饱和的脂肪醇、去饱和的脂肪酸和/或去饱和的脂肪酰基辅酶A的纯度可以增加至少3%,诸如至少4%,诸如至少5%,诸如至少10%,诸如至少15%,诸如至少20%,诸如至少25%,诸如至少30%,诸如至少35%,诸如至少40%,诸如至少45%,诸如至少50%,诸如至少55%,诸如至少60%,诸如至少70%,诸如至少80%,诸如至少90%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%。
在一个实施方案中,所述第一种酶或第一组酶由一种或多种能够将脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A的去饱和酶组成,且其中所述化合物是去饱和的脂肪酰基辅酶A。脂肪酰基辅酶A不会在所述细胞中积累,但是其存在可以通过确定对应的脂肪酸的存在来确定。
在一个实施方案中,所述第一种酶或第一组酶由一种或多种能够将脂肪酰基辅酶A转化为饱和的脂肪醇的脂肪酰基还原酶(FAR)组成,且其中所述化合物是饱和的脂肪醇。
在一个实施方案中,所述第一种酶或第一组酶由能够将脂肪酰基辅酶A转化为去饱和的脂肪醇的一种或多种脂肪酰基还原酶(FAR)和一种或多种去饱和酶组成,且其中所述化合物是去饱和的脂肪醇。
在一个实施方案中,所述化合物是去饱和的或饱和的脂肪醇,且其中所述方法进一步包含将去饱和的或饱和的脂肪醇分别转化为去饱和的或饱和的脂肪醇乙酸酯的步骤。
在一个实施方案中,在体外进行所述去饱和的或饱和的脂肪醇向去饱和的或饱和的脂肪醇乙酸酯的转化。
在一个实施方案中,通过在细胞中进一步表达能够将去饱和的或饱和的脂肪醇分别转化为去饱和的或饱和的脂肪醇乙酸酯的乙酰基转移酶,在体内进行所述去饱和的或饱和的脂肪醇向去饱和的或饱和的脂肪醇乙酸酯的转化。
在一个实施方案中,化合物是饱和的脂肪醇或去饱和的脂肪醇,且其中所述方法进一步包括将饱和的脂肪醇或去饱和的脂肪醇分别转化为饱和的脂肪醛或去饱和的脂肪醛的步骤。
在一个实施方案中,所述向醛的转化是化学或酶促转化。
在某些实施方案中,所述细胞是在“酵母细胞”部分中描述的酵母细胞。在某些实施方案中,所述细胞是在“植物细胞”部分中描述的植物细胞。
去饱和酶、FAR和Ncb5or可以分别如在“去饱和酶”、“脂肪酰基辅酶A还原酶”和“NAD(P)H细胞色素b5氧化还原酶”部分中所描述。
在某些实施方案中,去饱和的脂肪醇的总滴度和任选的去饱和的脂肪醇乙酸酯和/或去饱和的脂肪酸的总滴度增加。在其它实施方案中,饱和的脂肪醇的总滴度和任选的饱和的脂肪醇乙酸酯和/或去饱和的脂肪酸的总滴度增加。
在某些实施方案中,与来自不表达所述Ncb5or的细胞(诸如酵母细胞或植物细胞)的滴度相比,去饱和的脂肪醇的滴度增加至少3%,诸如至少4%,诸如至少5%,诸如至少10%,诸如至少15%,诸如至少20%,诸如至少25%,诸如至少30%,诸如至少35%,诸如至少40%,诸如至少45%,诸如至少50%,诸如至少55%,诸如至少60%,诸如至少70%,诸如至少80%,诸如至少90%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%。
在某些实施方案中,与来自不表达所述Ncb5or的细胞(诸如酵母细胞或植物细胞)的滴度相比,饱和的脂肪醇乙酸酯的滴度增加至少3%,诸如至少4%,诸如至少5%,诸如至少10%,诸如至少15%,诸如至少20%,诸如至少25%,诸如至少30%,诸如至少35%,诸如至少40%,诸如至少45%,诸如至少50%,诸如至少55%,诸如至少60%,诸如至少70%,诸如至少80%,诸如至少90%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%。
在某些实施方案中,与来自不表达所述Ncb5or的细胞(诸如酵母细胞或植物细胞)的滴度相比,饱和的脂肪醇酸的滴度增加至少3%,诸如至少4%,诸如至少5%,诸如至少10%,诸如至少15%,诸如至少20%,诸如至少25%,诸如至少30%,诸如至少35%,诸如至少40%,诸如至少45%,诸如至少50%,诸如至少55%,诸如至少60%,诸如至少70%,诸如至少80%,诸如至少90%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%。
本文进一步提供了一种用于生产至少1mg/L的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、饱和的脂肪酸、去饱和的脂肪酸、去饱和的脂肪醛和/或饱和的脂肪醛的方法,诸如至少1.5mg/L,诸如至少5mg/L,诸如至少10mg/L,诸如至少25mg/L,诸如至少50mg/L,诸如至少100mg/L,诸如至少250mg/L,诸如至少500mg/L,诸如至少750mg/L,诸如至少1g/L,诸如至少2g/L,诸如至少3g/L,诸如至少4g/L,诸如至少5g/L,诸如至少6g/L,诸如至少7g/L,诸如至少8g/L,诸如至少9g/L,诸如至少10g/L,诸如至少11g/L,诸如至少12g/L,诸如至少13g/L,诸如至少14g/L,诸如至少15g/L,诸如至少16g/L,诸如至少17g/L,诸如至少18g/L,诸如至少19g/L,诸如至少20g/L,诸如至少25g/L,诸如至少30g/L,诸如至少35g/L,诸如至少40g/L,诸如至少45g/L,诸如至少50g/L,或更多。
用于测定滴度的方法是本领域已知的。
本文公开的任何方法可以进一步包括将去饱和的或饱和的脂肪醇乙酸酯转化为去饱和的或饱和的脂肪醛的步骤。这可以按照上面详细描述来完成,例如通过在所述细胞中表达至少一种醇脱氢酶和/或至少一种脂肪醇氧化酶。所述醇脱氢酶和/或所述脂肪醇氧化酶可以对所述细胞而言是天然的,或者可以是异源醇脱氢酶和/或脂肪醇氧化酶。
本文公开的任何方法可以进一步包含在体内或在体外在回收脂肪醇以后将所述细胞产生的去饱和的或饱和的脂肪醇转化为对应的饱和的或去饱和的脂肪醛的步骤。也可以通过化学方法转化为去饱和的或饱和的脂肪醛。
在某些实施方案中,所述细胞(诸如酵母细胞或植物细胞)被进一步修饰,以便通过链缩短来增加给定链长度的脂肪酰基辅酶A的可及性,如在WO 2020/169389中所公开的。不受理论的约束,预期这样的修饰会增加具有期望碳链长度、特别是具有12的碳链长度的底物的可及性,由此可以增加去饱和的脂肪醇和任选的去饱和的脂肪醇乙酸酯和去饱和的脂肪醛的生产。这可以如下实现:通过降低在微生物生产细胞中的天然酰基辅酶A氧化酶的活性,以及通过表达特定酰基辅酶A氧化酶、去饱和酶、还原酶和乙酰基转移酶。这样的修饰详细描述在WO 2020/169389中。
技术人员可获得其它相关的修饰,其中一些详述在上文“脂肪醇和脂肪醇乙酸酯”部分中。
用于增加去饱和酶和/或脂肪酰基辅酶A还原酶的活性的方法
本文提供了一种用于增加至少一种酶的活性的方法,所述酶选自去饱和酶和脂肪酰基辅酶A还原酶(FAR)组成的组,所述方法包括以下步骤:
a.提供去饱和酶,其能够在脂肪酰基辅酶A中引入至少一个双键,从而将所述脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪酰基辅酶A;和/或
b.提供脂肪酰基辅酶A还原酶(FAR),其能够将所述去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇,从而生产所述去饱和的脂肪醇;和
c.使所述去饱和酶和/或FAR与NAD(P)H细胞色素b5氧化还原酶(Ncb5or)接触,从而与在没有所述Ncb5or存在下所述去饱和酶和/或FAR的活性相比,增加所述去饱和酶和/或FAR的活性,其中在相同条件下测量所述活性;
其中通过测量由所述去饱和酶和/或所述FAR形成的产物的浓度来测量活性的增加。
在某些实施方案中,在体外进行所述方法。在其它实施方案中,在体内进行所述方法。在某些实施方案中,在酵母细胞(如本文在“酵母细胞”部分中描述)中或在植物细胞(如本文在“植物细胞”部分中描述)中进行所述方法。
所述方法可以增加特定去饱和的脂肪醇、特定饱和的脂肪醇、特定去饱和的脂肪醇乙酸酯和/或特定去饱和的脂肪酸、特定去饱和的脂肪醇乙酸酯的浓度、和/或所有去饱和的脂肪醇和/或所有去饱和的脂肪醇乙酸酯的总浓度、和/或所有饱和的脂肪醇和/或所有饱和的脂肪醇乙酸酯的总浓度。
本文公开的任何方法可以进一步包括将饱和的脂肪醇或去饱和的脂肪醇分别转化为饱和的脂肪醛或去饱和的脂肪醛的步骤。这可以按照上面详细描述来完成,例如通过在所述细胞中表达至少一种醇脱氢酶和/或至少一种脂肪醇氧化酶。所述醇脱氢酶和/或所述脂肪醇氧化酶可以对所述细胞而言是天然的,或者可以是异源醇脱氢酶和/或脂肪醇氧化酶。
本文公开的任何方法可以进一步包括在回收脂肪醇以后在体内或在体外将所述细胞产生的去饱和的或饱和的脂肪醇转化为对应的去饱和的或饱和的脂肪醛的步骤。也可以通过化学方法转化为去饱和的或饱和的脂肪醛。
在某些实施方案中,与在没有Ncb5or存在下进行的测定中的浓度相比,浓度增加至少3%,诸如至少4%,诸如至少5%,诸如至少10%,诸如至少15%,诸如至少20%,诸如至少25%,诸如至少30%,诸如至少35%,诸如至少40%,诸如至少45%,诸如至少50%,诸如至少55%,诸如至少60%,诸如至少70%,诸如至少80%,诸如至少90%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%。
确定Ncb5or是否增加去饱和酶和/或FAR的活性的方法是本领域已知的。例如,给定的Ncb5or是否增加去饱和酶的活性可以通过在合适的溶液中温育以下物质来确定:(i)所述去饱和酶、所述Ncb5or和所述去饱和酶的脂肪酰基辅酶A底物,和(ii)所述去饱和酶和所述去饱和酶的脂肪酰基辅酶A底物。在相同条件下温育1小时以后,可以通过GC-MS测定产物的量(浓度),即由去饱和酶产生的去饱和的脂肪酰基辅酶A的量。如果从包含去饱和酶和Ncb5or二者的溶液获得较高浓度的产物,表明所述Ncb5or增加了所述去饱和酶的活性。
因此,本文还提供了具有Ncb5or活性的酶用于增加不同酶或酶组(诸如膜结合的酶或酶组)的活性的用途。
回收
可能需要回收通过本文公开的方法获得的产物。因此,本发明的方法可以包括回收由本发明的酵母细胞生产的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛和/或饱和的脂肪醛的进一步步骤。
在某些实施方案中,所述方法包括回收去饱和的脂肪醇和/或饱和的脂肪醇的步骤。在其它实施方案中,所述方法包括回收去饱和的脂肪醇乙酸酯和/或饱和的脂肪醇乙酸酯的步骤。
用于回收通过本发明获得的产物的方法是本领域已知的,并且可以包括用疏水溶剂(诸如癸烷、己烷或植物油)进行萃取。
回收的产物可以被进一步修饰,例如可以如上文所述将去饱和的脂肪醇和/或饱和的脂肪醇转化为对应的去饱和的脂肪醛和/或饱和的脂肪醛。在其中去饱和的脂肪醛和/或饱和的脂肪醛直接在培养基中产生(例如在体内或通过使细胞与相关酶接触)的实施方案中,也可以回收去饱和的脂肪醛和/或饱和的脂肪醛。
如相同申请人于2020年9月22日提交的名称为“Improved methods forproduction,recovery and secretion of hydrophobic compounds in afermentation(发酵中疏水化合物的生产、回收和分泌的改进方法)”的申请PCT/EP2020/076351中所述,当使用发酵系统培养能够生产去饱和的脂肪醇、去饱和的脂肪醇乙酸酯和/或去饱和的脂肪醛的细胞、特别是酵母细胞时,萃取剂向培养基中的添加可以进一步增加滴度和细胞外分泌。在某些实施方案中,所述培养基包含的萃取剂的量等于或大于其在水溶液中的混浊浓度,其中所述萃取剂是非离子表面活性剂诸如消泡剂,优选选自以下的聚乙氧基化的表面活性剂:聚氧乙烯聚氧丙烯醚,聚醚分散体的混合物,包含聚乙二醇单硬脂酸酯诸如二甲硅油的消泡剂以及乙氧基化的和丙氧基化的C16-C18醇基消泡剂和它们的组合。在某些实施方案中:
-所述非离子表面活性剂是乙氧基化的和丙氧基化的C16-C18醇基消泡剂,诸如C16-C18烷基醇乙氧基化物丙氧基化物(CAS编号68002-96-0),且其中所述培养基包含至少1%体积/体积的C16-C18烷基醇乙氧基化物丙氧基化物,诸如至少1.5%,诸如至少2%,诸如至少2.5%,诸如至少3%,诸如至少3.5%,诸如至少4%,诸如至少5%,诸如至少6%,诸如至少7%,诸如至少8%,诸如至少9%,诸如至少10%,诸如至少12.5%,诸如至少15%,诸如至少17.5%,诸如至少20%,诸如至少22.5%,诸如至少25%,诸如至少27.5%,诸如至少30%体积/体积的C16-C18烷基醇乙氧基化物丙氧基化物,或更多,
-所述非离子表面活性剂是聚氧乙烯聚氧丙烯醚,例如P407(CAS编号9003-11-6),且其中所述培养基包含至少10%体积/体积的聚氧乙烯聚氧丙烯醚诸如P407,诸如至少11%体积/体积,诸如至少12%体积/体积,诸如至少13%体积/体积,诸如至少14%体积/体积,诸如至少15%体积/体积,诸如至少16%体积/体积,诸如至少17%体积/体积,诸如至少18%体积/体积,诸如至少19%体积/体积,诸如至少20%体积/体积,诸如至少25%体积/体积,诸如至少30%体积/体积,诸如至少35%体积/体积的聚氧乙烯聚氧丙烯醚诸如/>P407,或更多,
-所述非离子表面活性剂是聚醚分散体的混合物,诸如消泡剂204,且其中所述培养基包含至少1%体积/体积的聚醚分散体的混合物诸如消泡剂204,诸如至少1.5%,诸如至少2%,诸如至少2.5%,诸如至少3%,诸如至少3.5%,诸如至少4%,诸如至少5%,诸如至少6%,诸如至少7%,诸如至少8%,诸如至少9%,诸如至少10%,诸如至少12.5%,诸如至少15%,诸如至少17.5%,诸如至少20%,诸如至少22.5%,诸如至少25%,诸如至少27.5%,诸如至少30%体积/体积的聚醚分散体的混合物诸如消泡剂204,或更多;和/或
-所述非离子表面活性剂是包含聚乙二醇单硬脂酸酯诸如二甲硅油的非离子表面活性剂,且其中所述培养基包含至少1%体积/体积的聚乙二醇单硬脂酸酯或二甲硅油,诸如至少1.5%,诸如至少2%,诸如至少2.5%,诸如至少3%,诸如至少3.5%,诸如至少4%,诸如至少5%,诸如至少6%,诸如至少7%,诸如至少8%,诸如至少9%,诸如至少10%,诸如至少12.5%,诸如至少15%,诸如至少17.5%,诸如至少20%,诸如至少22.5%,诸如至少25%,诸如至少27.5%,诸如至少30%体积/体积的聚乙二醇单硬脂酸酯或二甲硅油,或更多。
在其它实施方案中,所述培养基包含的萃取剂的量比其混浊浓度大至少50%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%,诸如至少300%,诸如至少350%,诸如至少400%,诸如至少500%,诸如至少750%,诸如至少1000%,或更多,和/或其中所述培养基包含的萃取剂的量是其混浊浓度的至少2倍,诸如其混浊浓度的至少3倍,诸如其混浊浓度的至少4倍,诸如其混浊浓度的至少5倍,诸如其混浊浓度的至少6倍,诸如其混浊浓度的至少7倍,诸如其混浊浓度的至少8倍,诸如其混浊浓度的至少9倍,诸如其混浊浓度的至少10倍,诸如其混浊浓度的至少12.5倍,诸如其混浊浓度的至少15倍,诸如其混浊浓度的至少17.5倍,诸如其混浊浓度的至少20倍,诸如其混浊浓度的至少25倍,诸如其混浊浓度的至少30倍。
也可以将回收的产物即去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和/或饱和的脂肪醇乙酸酯配制成信息素组合物,诸如在“信息素组合物”部分中所描述的。所述组合物可以进一步包含一种或多种另外的化合物诸如液体或固体载体或基质。从所述脂肪醇获得的脂肪醛也可以被包含在这样的组合物中。
通过本领域已知的方法,例如在通过本领域已知的方法均质化叶子并回收脂质之后,可以从植物中回收脂肪酸。回收的脂质被水解成游离脂肪酸并酯化成脂肪酸烷基酯,随后还原成脂肪醇或脂肪醛。
核酸
将理解,在本发明全文中,术语“编码活性的核酸”应当表示能够编码具有所述活性的肽、蛋白质或其片段的核酸分子。这样的核酸分子可以是开放读码框或基因或其片段。核酸构建体还可以是一组核酸分子,它们一起可以编码具有感兴趣的活性的几种肽、蛋白质或其片段。术语“活性”或“感兴趣的活性”可以具体表示以下活性之一:本文描述的去饱和酶、本文描述的脂肪酰基辅酶A还原酶和/或本文描述的NAD(P)H细胞色素b5还原酶(Ncb5or)。感兴趣的一种或多种活性的性质将取决于希望用本发明的方法获得的期望产物的性质。
一种核酸构建体系统,其包含编码NAD(P)H细胞色素b5氧化还原酶(Ncb5or)的核酸和:
a.能够在脂肪酰基辅酶A中引入至少一个双键的去饱和酶;和/或
b.脂肪酰基辅酶A还原酶(FAR),其能够将去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇。
在某些实施方案中,所述去饱和酶是由以下序列中的任一个编码:在SEQ ID NO:39至76和SEQ ID NO:140至153中所示的序列,或与其具有至少80%同一性的其变体,诸如与其具有至少85%同一性,诸如至少90%同一性,诸如至少91%同一性,诸如至少92%同一性,诸如至少93%同一性,诸如至少94%同一性,诸如至少95%同一性,诸如至少96%同一性,诸如至少97%同一性,诸如至少98%同一性,诸如至少99%同一性。
在某些实施方案中,所述脂肪酰基辅酶A还原酶(FAR)是由以下序列中的任一个编码:在SEQ ID NO:94至110和SEQ ID NO:168至181中所示的序列,或与其具有至少80%同一性的其变体,诸如至少85%同一性,诸如至少90%同一性,诸如至少91%同一性,与其具有诸如至少92%同一性,诸如至少93%同一性,诸如至少94%同一性,诸如至少95%同一性,诸如至少96%同一性,诸如至少97%同一性,诸如至少98%同一性,诸如至少99%同一性。
在某些实施方案中,Ncb5or是由以下序列中的任一个编码:在SEQ ID NO:115至118、SEQ ID NO:125和SEQ ID NO:186至189中所示的序列,或与其具有至少80%同一性的其变体,诸如与其具有至少85%同一性,诸如至少90%同一性,诸如至少91%同一性,诸如至少92%同一性,诸如至少93%同一性,诸如至少94%同一性,诸如至少95%同一性,诸如至少96%同一性,诸如至少97%同一性,诸如至少98%同一性,诸如至少99%同一性。
本文公开的系统可以进一步包含在细胞中(诸如在酵母细胞或植物中)表达核酸所需的所有元件。这样的元件包括但不限于内含子和调节元件诸如启动子、终止子、5’UTR、增强子和沉默子。
试剂盒
本文提供了用于执行本发明的方法的部件的试剂盒。所述部件试剂盒可以包含如本文描述的“即用型”生物体。在一个实施方案中,所述生物体是在“酵母细胞”部分中描述的酵母细胞。在一个实施方案中,所述酵母细胞是耶氏酵母属细胞,诸如解脂耶氏酵母细胞。在一个实施方案中,所述生物体是在“植物细胞”部分中描述的植物细胞。在一个实施方案中,所述植物细胞是烟草植物细胞。
在一个实施方案中,所述部件试剂盒包含编码要引入生物体中的感兴趣活性的核酸构建体,诸如本文在“核酸”部分中描述的核酸系统。所述核酸构建体可以作为多个核酸构建体(诸如多个载体)提供,其中每个载体编码一种或几种期望的活性。
所述部件试剂盒可以任选地包含要被修饰的细胞。
所述部件试剂盒还可以包含使用说明书。
在某些实施方案中,所述部件试剂盒包含上述的全部或组合。
信息素组合物
因此,本发明提供了化合物,特别是去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和饱和的脂肪醇乙酸酯、及其衍生物诸如去饱和的脂肪醛和饱和的脂肪醛,以及它们的用途。特别地,使用本发明的细胞和方法可获得的去饱和的化合物可用作信息素组合物的组分。这样的信息素组合物可用于害虫综合治理。它们可以如本领域已知的那样用于例如交配干扰。
因此,可通过本发明的方法或使用本发明的细胞(诸如酵母细胞或植物细胞)获得的去饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪醛可以配制在信息素组合物中。
这样的信息素组合物可以用作害虫综合治理产品,其可以用在监测害虫存在的方法或破坏害虫的交配的方法中。
因此,本文提供了一种用于监测害虫的存在或破坏害虫的交配的方法,所述方法包括以下步骤:
a.根据本文公开的任何方法生产去饱和的脂肪醇、去饱和的脂肪醇乙酸酯和/或去饱和的脂肪醛;和
b.将所述脂肪醇、脂肪醇乙酸酯和/或脂肪醛配制为信息素组合物;和
c.采用所述信息素组合物作为害虫综合治理组合物。
本文公开的信息素组合物可以用作生物杀虫剂。这样的组合物可以喷洒或分配在田地或果园中的培养物上。如本领域已知的,它们还可以被浸泡在例如橡胶隔片上,或与其它组分混合。在一个实施方案中,所述组合物被放置在扩散信息素组合物的装置(诸如信息素分配器)中。所述分配器可以例如以恒定的、可预先调节的速率释放信息素。这可以导致交配干扰,从而阻止害虫繁殖,或者可以与诱捕装置组合使用以诱捕害虫。本发明的信息素组合物可用于对抗的害虫的非限制性例子为:棉铃虫(棉铃虫(Helicoverpa armigera)),二化螟(二化螟(Chilo suppressalis)),菜蛾(小菜蛾(Plutella xylostella)),甘蓝夜蛾(甘蓝夜蛾(Mamestra brassicae)),大甘蓝心幼虫(泛非绒毛螟(Crocidolomiabinotalis)),欧洲玉米茎蛀虫(蛀茎夜蛾(Sesamia nonagrioides)),醋栗透翅蛾(醋栗透翅蛾(Synanthedon tipuliformis))和洋蓟羽蛾(洋蓟羽蛾(Platyptiliacarduidactylal))。因此,本发明的组合物在培养物上的使用可以导致增加的作物收率,而基本上没有环境影响。
在本发明的信息素组合物中的脂肪醇和脂肪醇乙酸酯的相对量可以根据作物和/或要控制的害虫的性质而变化;地理差异也可以存在。因此,确定最佳相对量可能需要常规优化。所述信息素组合物还可以包含脂肪醛。
用作驱避剂的组合物的例子可以参见:关于棉铃虫,Kehat和Dunkelblum(1993);关于二化螟,Alfaro等人(2009);关于蛀茎夜蛾,Eizaguirre等人(2002);关于小菜蛾,Wu等人(2012);和关于洋蓟羽蛾,Bari等人(2003)。
在某些实施方案中,所述信息素组合物可以进一步包含一种或多种另外的化合物诸如液体或固体载体或基质。例如,合适的载体或基质包括植物油、精炼矿物油或其馏分、橡胶、塑料、二氧化硅、硅藻土、蜡基质和纤维素粉末。
可以按照本领域已知的方式配制所述信息素组合物。例如,它可以是溶液、凝胶、粉末的形式。如本领域已知的,可以配制所述信息素组合物,使得其可以容易地分配。
本发明的交配干扰方法可以用在转基因作物的田地中。
本文还提供了一种用于减少或延迟对杀虫性状的抗性的出现的方法;所述方法可以是综合抗性治理方法。因此,公开了延迟害虫(诸如昆虫,例如本文列出的任何昆虫)对转基因杀虫作物和/或化学杀虫剂产生抗性的先发性和响应性方法,即先发性策略。还公开了一旦产生抗性就挽救一种或多种害虫对转基因杀虫作物和/或化学杀虫剂的敏感性的方法,即响应性策略。在某些实施方案中,所述方法包括将信息素组合物(诸如通过本文公开的方法获得)应用于包含田间群体的农业区,其中转基因作物包含一种或多种杀虫性状,诸如对本文列出的昆虫之一具有活性的转基因杀虫性状,以及任选地包含缺乏杀虫性状的作物的避难所,以破坏害虫的交配,从而延迟对杀虫性状的抗性的出现。因此,本发明的组合物可以与WO 2017/112887中描述的任何方法组合使用。
本文还提供了一种用于预防或减少害虫(诸如本文列出的昆虫)对作物损害的方法。这样的方法包含通过施用本文所公开的信息素组合物来对田地施加交配干扰,并破坏一种或多种害虫中一种或多种靶基因的表达,从而减少或防止在田地中的作物损害。可以使用RNAi来破坏一种或多种靶基因的表达,例如如WO 2017/205751中所述。因此,本发明的组合物可以与在WO 2017/205751中描述的任何方法组合使用。
实施例
实施例1-BioBricks和质粒的构建
所有异源基因由GeneArt(Life Technologies)以解脂耶氏酵母的密码子优化形式合成。使用Phusion U热启动DNA聚合酶(ThermoFisher)通过PCR扩增所有基因,以获得用于克隆到酵母表达载体中的片段。引物列于表1中,并且所得的DNA片段(BioBricks)列于表2。将PCR产物在含有Midori Green Advance(Nippon Genetics Europe GmbH)的1%-琼脂糖凝胶上分离。从凝胶切下正确大小的PCR产物,并使用Nucleospin凝胶和PCR净化试剂盒(Macherey-Nagel)进行纯化。
将带有USER盒的酵母载体用FastDigest SfaAI(ThermoFisher)在37℃线性化2小时,并然后用Nb.Bsml(New England Biolabs)在65℃切割1小时。将得到的含有粘性末端的载体通过凝胶电泳分离,从凝胶切下,并使用Nucleospin凝胶和PCR净化试剂盒(Macherey-Nagel)进行凝胶纯化。如(Holkenbrink,等人,2018)所述,通过USER克隆将DNA片段克隆到载体中。将反应物转化进化学感受态的大肠杆菌DHα细胞中,并将细胞接种在含有100mg/L氨苄西林的Lysogeny Broth(LB)琼脂平板上。将平板在37℃温育过夜,并通过菌落PCR筛选所得菌落。从过夜大肠杆菌液体培养物中纯化质粒,并通过测序确认正确的克隆。构建的载体列于表3中。
如下构建标有“***”的菌株。使用基因特异性引物扩增指示的基因,所述引物在正向引物中含有“ACTTTTTGCAGTACUAACCGCAG”的5'突出端,并在反向引物中含有“CACGCGAU”的3'突出端。省略了靶基因序列的第一个“ATG”。如(Holkenbrink,等人,2018)中所述将这些PCR产物与BB9454一起克隆到整合载体或附加型载体中。
表1.引物。
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*Holkenbrink等人,2018
表2.使用指定的模板和引物通过PCR获得的DNA片段(BioBricks)。
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*(Holkenbrink,等人,2018)
**(Holkenbrink,等人,2020)
表3.载体。
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*(Holkenbrink,等人,2018)
**(Holkenbrink,等人,2020)
***(Jensen等人,2014)
实施例2-酵母菌株的构建
如Holkenbrink等人,2018和Jensen等人,2014所述,通过DNA载体的转化构建酵母菌株。将整合载体在转化前用FastDigest NotI线性化。当需要时,将促进整合到特定基因组区域中的辅助载体与表2和表3中列出的整合质粒或DNA修复片段一起共转化。在含有适当的抗生素选择的酵母蛋白胨右旋糖(YPD)琼脂上选择菌株。通过菌落PCR确认正确的基因型,并在需要时通过测序确认。菌株ST6629描述于(Holkenbrink,等人,2020)中。所得菌株列于表4中。
表4.酵母菌株
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*(Holkenbrink,等人,2020)
**(Petkevicius,等人,2021)
***关于菌株构建的描述,参见教科书
实施例3-菌株的培养以及脂肪醇和脂肪酸甲酯(FAME)的分析
从YPD琼脂平板(10g/L酵母浸出物,10g/L蛋白胨,20g/L葡萄糖,15g/L琼脂)接种菌株到24孔板(EnzyScreen)中的2.5mL YPG培养基(10g/L酵母浸出物,10g/L蛋白胨,40g/L甘油)中,初始OD600为0.1-0.2。将平板在28℃温育,在300rpm摇动。24小时以后,将平板在3,000xg离心5分钟。弃去上清液,并将细胞重新悬浮于1.25mL生产培养基/孔(50g/L甘油,5g/L酵母浸出物,4g/L KH2PO4,1.5g/L MgSO4,0.2g/L NaCl,0.265g/L CaCl2.2H2O,2mL/L痕量元素溶液:4.5g/L CaCl2.2H2O,4.5g/L ZnSO4.7H2O,3g/L FeSO4.7H2O,1g/L H3BO3,1g/LMnCl2.4H2O,0.4g/L N Na2MoO4.2H2O,0.3g/L CoCl2.6H2O,0.1g/L CuSO4.5H2O,0.1g/L KI,15g/L EDTA)中。如果必要的话,向培养基补充抗生素。将平板在28℃温育26小时,在300rpm摇动。
为了分析脂肪醇,从每个小瓶中收获1mL发酵液,并通过在3,000xg离心5分钟来分离生物质。用990μL的乙酸乙酯:乙醇(84:15)和10μL的19:Me(2mg/mL)作为内部标准品,提取生物质沉淀物。将样品涡旋20秒,并在室温温育1小时,随后涡旋5分钟。向每个样品中添加300μL的H2O。将样品在21℃和3,000x g涡旋并离心5分钟。通过气相色谱法-质谱法(GC-MS)分析上层有机相。在与质量选择性检测器Agilent 5977B偶联的Agilent 7820A GC上进行GC-MS分析。所述GC配备了DB Fatwax柱(30m×0.25mm×0.25μm),并用氦作为载气。在电子轰击模式(70eV)下运行MS,在m/z 30和400之间扫描,并将注射器在220℃以分流模式20:1配置。将烘箱温度设定为80℃保持1分钟,然后以20℃/分钟的速率升温至210℃,接着在210℃保持7分钟,并然后以20℃/分钟的速率升温至230℃。通过对比参考化合物的保留时间和质谱图来鉴定化合物。通过离子55.1m/z对化合物进行定量。通过Agilent Masshunter软件分析数据。基于用参考标准制备的标准校正曲线来计算脂肪醇的浓度。
为了分析FAME,从每个小瓶中收获1mL发酵液,并通过在3,000xg离心5分钟来分离生物质。用1000μL的在甲醇(无水)中的1M HCl提取生物质沉淀物。将样品涡旋20秒,并置于80℃水浴中2小时。每30分钟涡旋样品10秒。将样品冷却至室温以后,加入1000μL的在甲醇(无水)中的1MNaOH、500μL的NaCl饱和的H2O、990μL的己烷和10μL的19:Me(2mg/mL)作为内部标准品。将样品涡旋并在21℃和3,000xg离心5分钟。如上所述通过GC-MS分析上层有机相。
实施例4-来自昆虫的假定的Ncb5or-编码基因
来自鳞翅目的假定的Ncb5or蛋白可见于表5中。每种蛋白含有细胞色素b5、细胞色素b5还原酶和SGD1-CHORD结构域。
表5.鳞翅目Ncb5or的非穷举列表。
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实施例5-Ncb5or共表达增加脂肪酰基辅酶A还原酶的活性
将两个昆虫Ncb5or基因分别与来自棉铃虫的脂肪酰基辅酶A还原酶(FAR1)或来自黄地老虎的脂肪酰基辅酶A还原酶(FAR12)组合在解脂耶氏酵母中共表达。如实施例3中所述,培养菌株并分析脂肪醇。
昆虫Ncb5or的存在使解脂耶氏酵母中的FAR1还原酶的活性提高了15-25%(表6),使FAR12还原酶的活性提高了16%(表7)。
表6.Ncb5or对来自棉铃虫的还原酶FAR1的活性的影响。
菌株 Ncb5or 总脂肪醇(mg/L) 改善(%)
ST10623 - 361±34 参考
ST10625 DmNcb5or 415±38 15
ST10626 SlitNcb5or 451±10 25
表7.Ncb5or对来自黄地老虎的还原酶FAR12的活性的影响。
菌株 Ncb5or 总脂肪醇(mg/L) 改善(%)
ST10665 - 80±18 参考
ST10667 DmNcb5or 93±32 16
ST10668 SlitNcb5or 62±7 NA
实施例6-Ncb5or共表达增加脂肪酰基辅酶A去饱和酶的活性
将三个昆虫和一个人Ncb5or基因分别与来自斜纹夜蛾的脂肪酰基辅酶A去饱和酶(Desat38)或来自葡萄花翅小卷蛾的脂肪酰基辅酶A去饱和酶(Desat30)或来自大果蝇的脂肪酰基辅酶A去饱和酶(Desat61)组合在解脂耶氏酵母中共表达。如在实施例3中所述培养菌株并分析FAME。
昆虫Ncb5or的存在使解脂耶氏酵母中Desat38去饱和酶的活性提高了13至42%(表8),使Desat30提高了9-36%(表9),并且使Desat61提高了3-34%(表10)。
表8.Ncb5or对来自斜纹夜蛾的去饱和酶Desat38的活性的影响。
菌株 Ncb5or Z11-16:Me纯度(%) 改善(%)
ST10615 - 26±0 参考
ST10617 DmNcb5or 36±2 38
ST10618 SlitNcb5or 36±2 42
ST10783 DgNcb5or 32±3 24
ST10785 HsNcb5or 29±2 13
表9.Ncb5or对来自葡萄花翅小卷蛾的去饱和酶Desat30的活性的影响。
在该表中的菌株携带在Fas2p中的突变,其增加十四烷酰基辅酶A生物合成。
菌株 Ncb5or Z11-14:Me(mg/L) 改善(%)
ST10610 - 11±2 参考
ST10612 DmNcb5or 15±0 36
ST10614 SlitNcb5or 12±1 9
表10.Ncb5or对来自大果蝇的去饱和酶Desat61的活性的影响。在该表中的菌株携带在Fas2p中的突变,其增加十四烷酰基辅酶A生物合成。
菌株 Ncb5or Z9-14:Me纯度(%) 改善(%)
ST10672 - 3±0 参考
ST10674 DmNcb5or 4±1 9
ST10675 SlitNcb5or 4±0 12
ST10789 DgNcb5or 3±0 3
ST10791 HsNcb5or 5±0 34
实施例7-Ncb5or共表达增加解脂耶氏酵母中Z11-16:OH的生产
将两个昆虫Ncb5or基因在先前被工程改造成生产Z11-16:OH的解脂耶氏酵母中共表达。如在实施例3中所述培养菌株并分析脂肪醇。
昆虫Ncb5or的存在使Z11-16:OH的滴度提高了69-82%(表11)。此外,两种Ncb5or蛋白DmNcb5or和SlitNcb5or增加了Z11-16:OH的纯度(表11)。
表11.Ncb5or对Z11-16:OH的生产的影响。
实施例8-Ncb5or共表达增加解脂耶氏酵母中的Z11-14:OH生产
将三个昆虫Ncb5or和一个人Ncb5or基因在先前被工程改造成生产Z11-14:OH的解脂耶氏酵母中共表达。如在实施例3中所述培养菌株并分析脂肪醇。
昆虫Ncb5or的存在使Z11-14:OH的滴度提高了8-13%(表12)。此外,几种Ncb5or蛋白(DmNcb5or、DgNcb5or)增加了Z11-14:OH的纯度(表12)。
表12.Ncb5or对Z11-14:OH的生产的影响。
实施例9-Ncb5or共表达增加解脂耶氏酵母中的Z9-14:OH生产
将两个昆虫Ncb5or基因在先前被工程改造成生产Z9-14:OH的解脂耶氏酵母中共表达。如在实施例3中所述培养菌株并分析脂肪醇。
昆虫Ncb5or的存在使Z9-14:OH的滴度提高了25-46%(表13)。此外,DmNcb5or蛋白增加了Z9-14:OH的纯度(表13)。
表13.Ncb5or对Z9-14:OH的生产的影响.
实施例10-在经工程改造以高产Z11-16:OH和Z9-14:OH的菌株中的Ncb5or表达
将来自苹果蠹蛾的Ncb5or(CpNcb5or)在经工程改造以分别生产高滴度的Z11-16:OH和Z9-14:OH的解脂耶氏酵母菌株ST9259和ST10435中表达,分别产生菌株ST10897和ST10469。如在实施例3中所述培养菌株并分析脂肪醇。菌株ST10897和ST10469分别比对照菌株T9259和ST10435多生产44%的Z11-16:OH和多生产75%的Z9-14:OH。
实施例11-多个Ncb5or在一个生产菌株中的共表达
将两个Ncb5or在菌株ST8544中和/或在生产高滴度的Z11-16:OH或Z9-14:OH的解脂耶氏酵母菌株中表达。如在实施例3中所述培养菌株并分析脂肪醇。
实施例12-Ncb5or在酿酒酵母中的表达
将昆虫Ncb5or与Desat61去饱和酶或脂肪酰基还原酶FAR1一起在酿酒酵母中共表达。将菌株接种于2.5ml酵母合成缺陷型培养基(1.39g/L不含组氨酸、亮氨酸、色氨酸和尿嘧啶的酵母合成缺陷型培养基(Sigma Aldrich,Y2001)、6.7g/L不含氨基酸的酵母氮基(Sigma Aldrich Y0626)、20g/L葡萄糖)中至0.2的OD600。将菌株一式三份地在24孔深孔板(EnzyScreen)中培养,并在250rpm摇动下温育24小时在28h。24小时以后,通过离心沉淀细胞,弃去上清液并用1.5ml新鲜酵母合成缺陷型培养基替换。如在实施例3中所述,分析脂肪醇/FAME。表达脂肪酰基还原酶FAR1的菌株ST12511产生了3.2±0.1mg/L总脂肪醇,而与FAR1一起共表达苹果蠹蛾的Ncb5or的菌株ST12514产生了3.9±0.7mg/L总脂肪醇,相当于22%改善。在表达来自大果蝇的ΔZ9-14去饱和酶Desat61的菌株ST12510中,Z9-14:Me占总脂肪酸的9.3±0.2%,而在共表达苹果蠹蛾的Ncb5or和Desat61的菌株ST12513中,Z9-14:Me占总脂肪酸的9.4±0.3%。
实施例13-鳞翅目去饱和酶和Ncb5or在植物中的共表达
使野生型本氏烟草植物在温室或生长室中生长。将昆虫Ncb5or和去饱和酶克隆进植物表达载体中,并电穿孔到根癌农杆菌(Agrobacterium tumefaciens)中。将转化的菌株培养在LB培养基中,并通过向培养基中添加乙酰丁香酮来诱导毒力基因的表达。将培养物在渗透缓冲液中稀释并施用至本氏烟草叶的下侧并对叶施加轻微的压力。使植物又生长四天。对于脂质分析,使用约100mg新鲜叶子。如在实施例3中所述的对于酵母细胞那样,进行脂质提取。
替代本氏烟草植物,并可以选择产油植物作为宿主。栽培所述植物。期望的去饱和的脂肪酸在植物脂质中积累。通过本领域已知的方法,可以从植物脂质中回收脂肪酸,例如在通过本领域已知的方法均质化植物并回收脂质之后。回收的脂质被水解成游离脂肪酸并酯化成脂肪酸烷基酯,然后还原成脂肪醇或脂肪醛。
实施例14-去饱和酶特异性
在具有OLE1和ELO1基因(分别编码Δ9-脂肪酸去饱和酶和中链酰基延长酶)缺失的酿酒酵母菌株中试验去饱和酶的活性和特异性。将菌株ST_Desat18、ST_Desat17、ST_Desat22、ST_Desat23、ST_ScOLE1和ST_DmeD9的三个单独菌落接种到1mL选择性培养基(SC-Ura-Leu)中,并在30℃和300rpm温育48小时。在补充了2mM CuSO4和0.5mM肉豆蔻酸甲酯(14:Me)的5mL选择性培养基(Larodan Fine Chemicals,瑞典)中将培养物稀释至0.4的OD600。将肉豆蔻酸甲酯储备溶液在96%乙醇中配制为100mM浓度。将酵母培养物在30℃在300rpm温育48小时。
取样1mL培养物,并添加3.12μg十九烷酸甲酯作为内部标准品。使用在玻璃瓶中的3.75mL甲醇/氯仿(2:1,v/v)提取总脂质。将1mL乙酸(0.15M)和1.25mL水加入试管中。将试管剧烈涡旋并在2,000xg离心2分钟。将含有总脂质的底部氯仿相(约1mL)转移至新的玻璃瓶中,并将溶剂蒸发至干燥。从该总脂质提取物通过酸甲醇分解制备脂肪酸甲酯(FAME)。将1mL的甲醇中的2%硫酸(v/v)加入试管中,剧烈涡旋,并在90℃温育1小时。温育后,加入1mL水并充分混合,并然后用1mL己烷提取FAME。
在与质量选择检测器HP 5973偶联的Hewlett Packard 6890GC上对甲酯样品进行GC-MS分析。GC配有INNOWax柱(30m×0.25mm×0.25μm),并使用氦气作为载气(平均速度:33cm/s)。在电子轰击模式(70eV)下运行MS,并将注射器在220℃以无分流模式配置。将烘箱温度设定为80℃保持1分钟,然后以10℃/分钟的速率升高至210℃,随后在210℃保持15分钟,并然后以10℃/分钟的速率升高至230℃,然后在230℃保持20分钟。通过将其保留时间和质谱图与合成标准品的保留时间和质谱图进行对比,鉴定单不饱和的脂肪酸产物。通过ChemStation软件(Agilent Technologies,美国)分析数据。
测量的Z9-14:Me和Z9-16:Me的浓度(表14)显示,表达来自黑腹果蝇的去饱和酶的菌株ST_DmeD9产生Z9-14:Me的最高浓度(3.67mg/L),并且产生Z9-14:Me和Z9-16:Me的最大比率。这表明在试验的去饱和酶中,黑腹果蝇去饱和酶对C14-辅酶A底物具有最高的活性和特异性。
表14.酵母中异源去饱和酶的活性和特异性.
还试验了菌株ST8377、ST8378和ST8373对去饱和的C14化合物的生产。在培养后从这些菌株提取脂肪醇并通过GC-MS进行分析。滴度如表15所示。
表15.在表达FAR1和指示的去饱和酶的菌株中获得的滴度。滴度以mg/L为单位。阴影列指示去饱和的脂肪醇E11-14:OH、Z11-14:OH、Z9-16:OH和Z11-16:OH的滴度。
可以看出,表达FAR1还原酶、但不表达去饱和酶的对照菌株能够生产C16脂肪醇Z9-16:OH和Z11-16:OH,但不生产任何可检测的C14脂肪醇(E11-14:OH和Z11-14:OH)。三个试验菌株还能够生产C16脂肪醇,并且它们另外能够生产C14脂肪醇Z11-14:OH,并且在更小程度上还能够生产E11-14:OH。上述数据还表明,当引入细胞中时,三种试验的去饱和酶都没有导致与不含去饱和酶的对照菌株相比Z11-16:OH生产的显著变化。因此,数据显示这三种去饱和酶也具有对C14底物比对C16底物更高的特异性。
实施例15-脂肪酰基辅酶A还原酶与Ncb5or的共表达
将三个昆虫Ncb5or和一个人Ncb5or基因与来自棉铃虫的脂肪酰基辅酶A还原酶(FAR1)组合地在解脂耶氏酵母中共表达,或将一个昆虫Ncb5or与来自黄地老虎的脂肪酰基辅酶A还原酶(FAR12)一起共表达。如在实施例3中所述培养菌株并分析脂肪醇。
昆虫Ncb5or的存在使解脂耶氏酵母中的FAR1还原酶的活性提高了3-10%(表16),并且使FAR12的活性提高了4%(表17)。
表16.Ncb5or对来自棉铃虫的还原酶FAR1的活性的影响.
表17.Ncb5or对来自黄地老虎的还原酶FAR12的活性的影响.
菌株 Ncb5or 总脂肪醇(mg/L) 改善(%)
ST10665 - 80±18 参考
ST10666 CpNcb5or 83±15 4
实施例16-脂肪酰基辅酶A去饱和酶与Ncb5or的共表达
将两个昆虫Ncb5or基因分别与来自斜纹夜蛾的脂肪酰基辅酶A去饱和酶(Desat38)或来自葡萄花翅小卷蛾的脂肪酰基辅酶A去饱和酶(Desat30)或来自大果蝇的脂肪酰基辅酶A去饱和酶(Desat61)组合地在解脂耶氏酵母中共表达。如在实施例3中所述培养菌株并分析FAME。
昆虫Ncb5or的存在使解脂耶氏酵母中Desat38去饱和酶的活性提高了26至36%(表18),使Desat30的活性提高了9-27%(表19),使Desat61的活性提高了11-21%(表20)。
表18.Ncb5or对来自斜纹夜蛾的去饱和酶Desat38的活性的影响.
菌株 Ncb5or Z11-16:Me纯度(%) 改善(%)
ST10615 - 26±0 参考
ST10616 CpNcb5or 36 38
ST10784 LboNcb5or 33 26
表19.Ncb5or对来自葡萄花翅小卷蛾的去饱和酶Desat30的活性的影响。在该表中的菌株携带在Fas2p中的突变,其增加十四烷酰基辅酶A生物合成。
菌株 Ncb5or Z11-14:Me(mg/L) 改善(%)
ST10610 - 11±2 参考
ST10611 CpNcb5or 14±0 27
ST10613 LboNcb5or 12±3 9
表20.Ncb5or对来自大果蝇的去饱和酶Desat61的活性的影响。在该表中的菌株携带在Fas2p中的突变,其增加十四烷酰基辅酶A生物合成。
菌株 Ncb5or Z9-14:Me纯度(%) 改善(%)
ST10672 - 3±0 参考
ST10673 CpNcb5or 4±0 21
ST10790 LboNcb5or 4±0 11
实施例17-来自高山被孢霉的细胞色素B5和细胞色素B5还原酶与去饱和酶的共表达
将分别来自高山被孢霉的细胞色素B5(MaCytB5)和细胞色素B5还原酶1或2(MaCytB5 Red1或2)或者来自苹果蠹蛾的Ncb5or(CpNcb5or)与来自粉斑螟蛾的脂肪酰基辅酶AΔ11去饱和酶(Desat70)组合地在解脂耶氏酵母中共表达。得到的菌株列于表21中。
与仅表达Desat70的菌株相比,将Desat70的表达与苹果蠹蛾Ncb5or组合使Z11-16:Me的纯度提高了46%,而当与来自高山被孢霉的细胞色素B5和细胞色素B5还原酶对组合时,纯度仅提高了14%和29%。
表21.来自苹果蠹蛾的Ncb5or或来自高山被孢霉的细胞色素B5和B5还原酶对脂肪酰基辅酶A去饱和酶Desat70的活性的影响。在该表中的菌株携带在Fas2p中的突变,其增加十四烷酰基辅酶A生物合成。
实施例18-来自苹果蠹蛾的Ncb5or与各种脂肪酰基辅酶A还原酶的共表达
将来自不同生物体的脂肪酰基辅酶A还原酶单独地(对照菌株)或与苹果蠹蛾的Ncb5or(CpNcb5or)组合地表达。如在实施例3中所述培养菌株并分析脂肪醇,不同之处在于将细胞接种到YPG培养基中而不调整光密度并且在YPG培养基中的温育从24小时延长至48小时。菌株的总脂肪醇生产滴度示于表22中。与对照相比0-50%之间的总脂肪醇生产改善用“+”标记,51-100%用“++”标记,并且>100%用“+++”标记。
来自苹果蠹蛾的Ncb5or的表达提高了解脂耶氏酵母中所有脂肪酰基辅酶A还原酶的活性(表22)。
表22.来自苹果蠹蛾的Ncb5or对通过标示的脂肪酰基辅酶A还原酶的脂肪醇生产的影响
实施例19-来自苹果蠹蛾的Ncb5or与各种脂肪酰基辅酶A去饱和酶的共表达
将来自不同生物体的脂肪酰基辅酶A去饱和酶单独地(对照菌株)或与苹果蠹蛾的Ncb5or(CpNcb5or)组合地表达。如在实施例3中所述培养菌株并进行FAME分析,不同之处在于将细胞接种到YPG培养基中而不调整光密度并且在YPG培养基中的温育时间从24小时延长至48小时。目标去饱和脂肪酸甲酯的纯度示于表23中。与对照相比0-50%之间的纯度改善用“+”标记,51-100%用“++”标记,并且>100%用“+++”标记。
当与来自苹果蠹蛾的Ncb5or组合时,下面列出的所有去饱和酶显示出更高的活性。
表23.来自苹果蠹蛾的Ncb5or对通过标示的脂肪酰基辅酶A去饱和酶的去饱和脂肪酸甲酯生产的影响
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实施例20-来自黄地老虎或欧洲熊蜂的Ncb5or与去饱和酶Desat70或脂肪酰基辅酶A还原酶的共表达
将来自黄地老虎和欧洲熊蜂的Ncb5or基因分别与粉斑螟蛾去饱和酶Desat70或来自棉铃虫的脂肪酰基辅酶A还原酶(FAR1)组合地在解脂耶氏酵母中共表达。如在实施例3中所述,培养菌株,分析FAME和脂肪醇。
来自黄地老虎和欧洲熊蜂的Ncb5or的存在分别使解脂耶氏酵母中Desat70的活性提高了26.8%和28.8%(表24)。当与来自黄地老虎和欧洲熊蜂的Ncb5or组合时,解脂耶氏酵母中的FAR1还原酶活性分别提高25.8%和0.65%(表25)。
表24.来自黄地老虎和欧洲熊蜂的Ncb5or对来自粉斑螟蛾的去饱和酶Desat70的活性的影响.
菌株 表达的基因 纯度的改善(%)
ST12195 Desat70 参考
ST12518 AseNcb5or Desat70 26.8
ST12519 BterNcb5or Desat70 28.2
表25.来自黄地老虎和欧洲熊蜂的Ncb5or对来自棉铃虫的还原酶FAR1的活性的影响.
菌株 表达的基因 总脂肪醇滴度的改善(%)
ST12118 FAR1 参考
ST12395 AseNcb5or FAR1 25.8
ST12397 BterNcb5or FAR1 0.6
序列概述
请注意,SEQ ID NO:40、43-74、94-100、104-110、115-118、125、140-153、168-180和186-189已经针对解脂耶氏酵母进行了密码子优化。SEQ ID NO:39、75、101-103和181已经针对酿酒酵母进行了密码子优化。
去饱和酶
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其它
细胞色素b5和细胞色素b5还原酶
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项目
1.一种细胞,其表达:
i)第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、去饱和的脂肪酰基辅酶A和去饱和的脂肪酸的化合物;和
ii)异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);
由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产所述化合物。
2.一种细胞,其表达
i)第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和
ii)异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);
由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产所述化合物。
3.根据项目1或2中的任一项的细胞,其中所述第一种酶或第一组酶包含一种或多种能够将脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A的去饱和酶或由其组成,由此当在相同条件下培养时,与表达所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的脂肪酰基辅酶A。
4.根据项目1或2中的任一项的细胞,其中所述第一种酶或第一组酶包含一种或多种能够将脂肪酰基辅酶A转化为脂肪醇的脂肪酰基还原酶(FAR)或由其组成,由此当在相同条件下培养时,与表达所述一种或多种FAR、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产脂肪醇。
5.根据项目1或2中的任一项的细胞,其中所述第一种酶或第一组酶包含能够将脂肪酰基辅酶A转化为去饱和的脂肪醇的一种或多种FAR和一种或多种去饱和酶或由其组成,由此当在相同条件下培养时,与表达所述一种或多种FAR和所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的脂肪醇。
6.根据前述项目中的任一项的细胞,所述细胞进一步表达能够将去饱和的或饱和的脂肪醇分别转化为去饱和的或饱和的脂肪醇乙酸酯的乙酰基转移酶,由此当在相同条件下培养时,与表达所述第一组酶和所述乙酰基转移酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高滴度生产去饱和的或饱和的脂肪醇乙酸酯。
7.根据前述项目中的任一项的细胞,其中所述Ncb5or对于植物、昆虫或哺乳动物(诸如智人)而言是天然的。
8.根据前述项目中的任一项的细胞,其中所述Ncb5or对于昆虫而言是天然的,诸如夜蛾属(Agrotis)、Amyelois、Aphantopus、灯蛾属(Arctia)、蔽眼蝶属、家蚕属(Bombyx)、熊蜂属(Bombus)、禾草螟属(Chilo)、小卷蛾属(Cydia)、斑蝶属(Danaus)、果蝇属(Drosophila)、大蓑蛾属(Eumeta)、大蜡螟属(Galleria)、棉铃虫属(Helicoverpa)、实夜蛾属(Heliothis)、海波斯莫科马属(Hyposmocoma)、小粉蝶属(Leptidea)、花翅小卷蛾属(Lobesia)、Manduca、秋尺蛾属(Operophtera)、秆野螟属(Ostrinia)、凤蝶亚属(Papilio)、凤蝶亚属(Papilio)、凤蝶亚属(Papilio)、菜粉蝶属(Pieris)、菜蛾属(Plutella)、灰翅夜蛾属(Spodoptera)、粉夜蛾属(Trichoplusia)和红蛱蝶属(Vanessa)的昆虫。
9.根据前述项目中的任一项的细胞,其中所述Ncb5or对于昆虫而言是天然的,所述昆虫选自黄地老虎(Agrotis segetum)、脐橙螟蛾(Amyelois transitella)、阿芬眼蝶(Aphantopus hyperantus)、木虎蛾(Arctia plantaginis)、偏瞳蔽眼蝶(Bicyclusanynana)、欧洲熊蜂(Bombus terrestris)、野桑蚕(Bombyx mandarina)、家蚕(Bombyxmori)、二化螟(Chilo suppressalis)、苹果蠹蛾(Cydia pomonella)、黑脉金斑蝶(Danausplexippus)、Drosophila grimshawi、黑腹果蝇(Drosophila melanogaster)、大避债蛾(Eumeta japonica)、大蜡螟(Galleria mellonella)、棉铃虫(Helicoverpa armigera)、烟芽夜蛾(Heliothis virescens)、Hyposmocoma kahamanoa、条纹小粉蝶(Leptideasinapis)、葡萄花翅小卷蛾(Lobesia botrana)、烟草天蛾(Manduca sexta)、冬尺蠖蛾(Operophtera brumata)、亚洲玉米螟(Ostrinia furnacalis)、金凤蝶(Papiliomachaon)、玉带凤蝶(Papilio polytes)、柑橘凤蝶(Papilio xuthus)、菜粉蝶(Pierisrapae)、小菜蛾(Plutella xylostella)、草地贪夜蛾(Spodoptera frugiperda)、斜纹夜蛾(Spodoptera litura)、粉纹夜蛾(Trichoplusia ni)和夏威夷红蛱蝶(Vanessatameamea)。
10.根据前述项目中的任一项的细胞,其中所述Ncb5or选自在SEQ ID NO:111至114、SEQ ID NO:124和SEQ ID NO:182至185中所示的Ncb5or,或与其具有至少70%同一性的变体,诸如与其具有至少75%同一性,诸如至少80%同一性,诸如至少85%同一性,诸如至少90%同一性,诸如至少95%同一性的组。
11.根据前述项目中的任一项的细胞,其中所述Ncb5or选自:
a.来自黑腹果蝇的Ncb5or或与其具有至少80%同一性的其变体,优选在SEQ IDNO:112中所示的来自黑腹果蝇的Ncb5or(DmNcb5or)或与其具有至少80%同一性的其功能变体;
b.来自斜纹夜蛾的Ncb5or或与其具有至少80%同一性的其变体,优选在SEQ IDNO:114中所示的来自斜纹夜蛾的Ncb5or(SlitNcb5or)或与其具有至少80%同一性的其功能变体;
c.来自Drosophila grimshawi的Ncb5or或与其具有至少80%同一性的其变体,优选在SEQ ID NO:111中所示的来自Drosophila grimshawi的Ncb5or(DmNcb5or)或与其具有至少80%同一性的其功能变体;
d.来自智人的Ncb5or或与其具有至少80%同一性的其变体,优选在SEQ ID NO:113中所示的来自智人的Ncb5or(HsNcb5or)或与其具有至少80%同一性的其功能变体;
e.来自苹果蠹蛾的Ncb5or或与其具有至少80%同一性的其变体,优选在SEQ IDNO:124(CpoNcb5or1)或SEQ ID NO:182(CpoNcb5or)中所示的来自苹果蠹蛾的Ncb5or或与其具有至少80%同一性的其功能变体;
f.来自黄地老虎的Ncb5or或与其具有至少80%同一性的其变体,优选在SEQ IDNO:183中所示的来自黄地老虎的Ncb5or(AseNcb5or)或与其具有至少80%同一性的其功能变体;
g.来自欧洲熊蜂的Ncb5or或与其具有至少80%同一性的其变体,优选在SEQ IDNO:184中所示的来自欧洲熊蜂的Ncb5or(BterNcb5or)或与其具有至少80%同一性的其功能变体;和
h.来自葡萄花翅小卷蛾的Ncb5or或与其具有至少80%同一性的其变体,优选在SEQ ID NO:185中所示的来自葡萄花翅小卷蛾的Ncb5or(LboNcb5or)或与其具有至少80%同一性的其功能变体。
12.根据前述项目中的任一项的细胞,其中所述异源Ncb5or是一个或多个异源Ncb5or,诸如多个不同的异源Ncb5or。
13.根据前述项目中的任一项的细胞,其中所述去饱和酶对于以下生物而言是天然的:植物,诸如蓖麻(Ricinus communis)或天竺葵(Pelargonium hortorum),或昆虫,诸如双翅目(Diptera)、鞘翅目(Coleoptera)或鳞翅目(Lepidoptera),诸如夜蛾属(Agrotis)、柞蚕属(Antheraea)、带卷蛾属(Argyrotaenia)、Amyelois、熊蜂属(Bombus)、家蚕属(Bombyx)、果斑螟属(Cadra)、花萤属(Chauliognathus)、禾草螟属(Chilo)、色卷蛾属(Choristoneura)、小卷蛾属(Cydia)、松毛虫属(Dendrophilus)、杆草螟属(Diatraea)、果蝇属(Drosophila)、粉斑螟属(Ephestia)、Epiphyas、小食心虫属(Grapholita)、棉铃虫属(Helicoverpa)、Lampronia、花翅小卷蛾属(Lobesia)、Manducta、秆野螟属(Ostrinia)、红铃虫属(Pectinophora)、谷斑螟属(Plodia)、菜蛾属(Plutella)、海链藻属(Thalassiosira)、异舟蛾属(Thaumetopoea)、拟谷盗属(Tribolium)、粉夜蛾属(Trichoplusia)、灰翅夜蛾属(Spodoptera)或巢蛾属(Yponomeuta),诸如黄地老虎(Agrotis segetum)、柞蚕(Antheraea pernyi)、红带卷蛾(Argyrotaenia velutiana)、脐橙螟蛾(Amyelois transitella)、红尾熊蜂(Bombus lapidarius)、家蚕(Bombyx mori)、粉斑螟蛾(Cadra cautella)、瘟疫丽艳花萤(Chauliognathus lugubris)、二化螟(Chilosupprealis)、平行带状卷叶蛾(Choristoneura parallela)、蔷薇斜条卷叶蛾(Choristoneura rosaceana)、苹果蠹蛾(Cydia pomonella)、马尾松毛虫(Dendrophiluspunctatus)、小蔗杆草螟(Diatraea saccharalis)、嗜凤梨果蝇(Drosophila ananassae)、黑腹果蝇(Drosophila melanogaster)、大果蝇(Drosophila virilis)、Drosophilayakuba、烟草粉螟(Ephestia elutella)、地中海粉斑螟(Ephestia kuehniella)、苹淡褐卷蛾(Epiphyas postvittana)、梨小食心虫(Grapholita molesta)、烟夜蛾(Helicoverpaassulta)、谷实夜蛾(Helicoverpa zea)、红醋栗穿孔蛾(Lampronia capitella)、葡萄花翅小卷蛾(Lobesia botrana)、烟草天蛾(Manducta sexta)、亚洲玉米螟(Ostriniafurnacalis)、欧洲玉米螟(Ostrinia nubilalis)、红铃麦蛾(Pectinophoragossypiella)、印度谷螟(Plodia interpunctella)、小菜蛾(Plutella xylostella)、甜菜夜蛾(Spodoptera exigua)、海灰翅夜蛾(Spodoptera littoralis)、斜纹夜蛾(Spodopteralitura)、假微型海链藻(Thalassiosira pseudonana)、松异舟蛾(Thaumetopoeapityocampa)、赤拟谷盗(Triboliumcastaneum)、粉纹夜蛾(Trichoplusia ni)或苹果巢蛾(Yponomeuta padella)。
14.根据前述项目中的任一项的细胞,其中所述去饱和酶选自由Δ3去饱和酶、Δ5去饱和酶、Δ6去饱和酶、Δ7去饱和酶、Δ8去饱和酶、Δ9去饱和酶、Δ10去饱和酶、Δ11去饱和酶、Δ12去饱和酶、Δ13去饱和酶和Δ14去饱和酶组成的组,优选地其中所述去饱和酶是Δ9去饱和酶或Δ11去饱和酶。
15.根据前述项目中的任一项的细胞,其中所述去饱和酶选自以下的组:在SEQ IDNO:1至38和SEQ ID NO:126至139中所示的去饱和酶,或与其具有至少70%同一性的变体,诸如至少75%同一性,诸如至少80%同一性,诸如至少85%同一性,诸如至少90%同一性,诸如至少95%同一性。
16.根据前述项目中的任一项的细胞,其中所述去饱和酶选自:
a.斜纹夜蛾去饱和酶,诸如在SEQ ID NO:32中所示的Desat38;
b.葡萄花翅小卷蛾去饱和酶,诸如在SEQ ID NO:20中所示的Desat30;
c.大果蝇去饱和酶,诸如在SEQ ID NO:15中所示的Desat61;
d.粉斑螟蛾去饱和酶,诸如在SEQ ID NO:134中所示的Desat70;
e.解脂耶氏酵母去饱和酶,诸如在SEQ ID NO:38中所示的Desat69;
f.脐橙螟蛾去饱和酶,诸如在SEQ ID NO:2中所示的Desat16;
g.黄地老虎去饱和酶,诸如在SEQ ID NO:1中所示的Desat19;
h.粉纹夜蛾去饱和酶,诸如在SEQ ID NO:37中所示的Desat21;
i.二化螟去饱和酶,诸如在SEQ ID NO:130中所示的Desat44;
j.小菜蛾去饱和酶,诸如在SEQ ID NO:26中所示的Desat45;
k.甜菜夜蛾去饱和酶,诸如在SEQ ID NO:29中所示的Desat37;
l.小蔗杆草螟Z11去饱和酶,诸如在SEQ ID NO:132中所示的Desat63;
m.印度谷螟去饱和酶,诸如在SEQ ID NO:137中所示的Desat65;
n.葡萄花翅小卷蛾去饱和酶,诸如在SEQ ID NO:135中所示的Desat71;
o.柞蚕去饱和酶,诸如在SEQ ID NO:126中所示的Desat72;
p.苹果巢蛾去饱和酶,诸如在SEQ ID NO:139中所示的Desat73;
q.黑腹果蝇去饱和酶,诸如在SEQ ID NO:14中所示的Desat24;
r.Drosophila yakuba去饱和酶,诸如在SEQ ID NO:133中所示的Desat56;
s.Drosophila grimshawi去饱和酶,诸如在SEQ ID NO:13中所示的Desat59;
t.嗜凤梨果蝇去饱和酶,诸如在SEQ ID NO:131中所示的Desat60;
u.大果蝇去饱和酶,诸如在SEQ ID NO:15中所示的Desat61;
v.葡萄花翅小卷蛾去饱和酶,诸如在SEQ ID NO:21中所示的Desat43;
w.赤拟谷盗去饱和酶,诸如在SEQ ID NO:138中所示的Desat27;
x.红尾熊蜂去饱和酶,诸如在SEQ ID NO:128中所示的Desat75;
y.葡萄花翅小卷蛾去饱和酶,诸如在SEQ ID NO:20中所示的Desat30;
z.蔷薇斜条卷叶蛾去饱和酶,诸如在SEQ ID NO:8中所示的Desat35;
aa.平行带状卷叶蛾去饱和酶,诸如在SEQ ID NO:7中所示的Desat36;
bb.烟草天蛾去饱和酶,诸如在SEQ ID NO:22中所示的Desat52;
cc.红带卷蛾去饱和酶,诸如在SEQ ID NO:127中所示的Desat76;
dd.亚洲玉米螟去饱和酶,诸如在SEQ ID NO:136中所示的Desat77;
ee.家蚕去饱和酶,诸如在SEQ ID NO:129中所示的Desat78;
或与其具有至少80%序列同一性的其功能变体。
17.根据前述项目中的任一项的细胞,其中所述FAR对于昆虫而言是天然的,诸如鳞翅目的昆虫,诸如夜蛾属、Amyelois、蔽眼蝶属、熊蜂属、禾草螟属、银纹夜蛾属、小卷蛾属、棉铃虫属、实夜蛾属、Manducta、秆野螟属、谷斑螟属、菜蛾属、灰翅夜蛾属、粉夜蛾属、Tyta或巢蛾属的昆虫,或其中所述FAR对于细菌而言是天然的,诸如海杆菌属的细菌。
18.根据前述项目中的任一项的细胞,其中所述FAR是对于黄地老虎、脐橙螟蛾、偏瞳蔽眼蝶、红尾熊蜂、二化螟、黄豆银纹夜蛾、苹果蠹蛾、棉铃虫、烟夜蛾、烟芽夜蛾、Heliothis subflexa、烟草天蛾、栖藻海杆菌、亚洲玉米螟、印度谷螟、小菜蛾、甜菜夜蛾、草地贪夜蛾、海灰翅夜蛾、斜纹夜蛾、粉纹夜蛾、Tyta alba或柳黑斑巢蛾而言天然的脂肪酰基还原酶,或与其具有至少80%同一性的其功能变体。
19.根据前述项目中的任一项的细胞,其中所述FAR选自以下的组:在SEQ ID NO:77至93和SEQ ID NO:154至167中所示的FAR,或与其具有至少70%同一性的变体,诸如至少75%同一性,诸如至少80%同一性,诸如至少85%同一性,诸如至少90%同一性,诸如至少95%同一性。
20.根据前述项目中的任一项的细胞,其中所述FAR选自:
a.海灰翅夜蛾FAR,诸如在SEQ ID NO:90中所示的FAR15;
b.甜菜夜蛾FAR,诸如在SEQ ID NO:88中所示的FAR(FAR16);
c.棉铃虫FAR,诸如在SEQ ID NO:83中所示的FAR(FAR1);
d.黄地老虎FAR,诸如在SEQ ID NO:77中所示的FAR(FAR12);
e.偏瞳蔽眼蝶FAR,诸如在SEQ ID NO:79中所示的FAR(FAR11);
f.苹果蠹蛾FAR,诸如在SEQ ID NO:82中所示的FAR(FAR23);
g.Heliothis subflexa FAR,诸如在SEQ ID NO:85中所示的FAR(FAR4)
h.烟夜蛾FAR,诸如在SEQ ID NO:84中所示的FAR(FAR6);
i.Tyta alba FAR,诸如在SEQ ID NO:92中所示的FAR(FAR25);
j.烟芽夜蛾FAR,诸如在SEQ ID NO:86中所示的FAR(FAR5);
k.柳黑斑巢蛾FAR,诸如在SEQ ID NO:167中所示的FAR(FAR8);
l.栖藻海杆菌FAR,诸如FAR在SEQ ID NO:中所示的(FAR159);
m.二化螟FAR,诸如在SEQ ID NO:81中所示的FAR(FAR13);
n.甜菜夜蛾FAR,诸如在SEQ ID NO:164中所示的FAR(FAR17);
o.小地老虎FAR,诸如在SEQ ID NO:78中所示的FAR(FAR18);
p.印度谷螟FAR,诸如在SEQ ID NO:162中所示的FAR(FAR28);
q.印度谷螟FAR,诸如在SEQ ID NO:163中所示的FAR(FAR30);
r.烟草天蛾FAR,诸如在SEQ ID NO:160中所示的FAR(FAR43);
s.脐橙螟蛾FAR,诸如在SEQ ID NO:154中所示的FAR(FAR33);
t.脐橙螟蛾FAR,诸如在SEQ ID NO:155中所示的FAR(FAR34);
u.脐橙螟蛾FAR,诸如在SEQ ID NO:156中所示的FAR(FAR35);
v.亚洲玉米螟FAR,诸如在SEQ ID NO:161中所示的FAR(FAR44);
w.甜菜夜蛾FAR,诸如在SEQ ID NO:165中所示的FAR(FAR45);
x.粉纹夜蛾FAR,诸如在SEQ ID NO:166中所示的FAR(FAR41);
y.苹果蠹蛾FAR,诸如在SEQ ID NO:158中所示的FAR(FAR46);
z.黄豆银纹夜蛾FAR,诸如在SEQ ID NO:157中所示的FAR(FAR47);
或与其具有至少80%同一性的其功能变体。
21.根据前述项目中的任一项的细胞,其中所述编码去饱和酶、FAR或Ncb5or的基因中的至少一种以高拷贝数存在。
22.根据前述项目中的任一项的细胞,其中所述编码去饱和酶、FAR或Ncb5or的基因中的至少一种是在诱导型启动子的控制下。
23.根据前述项目中的任一项的细胞,其中所述编码去饱和酶、FAR或Ncb5or的基因中的至少一种为针对所述细胞密码子优化的。
24.根据前述项目中的任一项的细胞,其中所述编码去饱和酶、FAR或Ncb5or的基因各自独立地被包含在所述细胞的基因组内或在所述细胞所含的载体内。
25.根据前述项目中的任一项的细胞,其中所述去饱和的脂肪醇、所述饱和的脂肪醇、所述去饱和的脂肪醇乙酸酯和/或所述饱和的脂肪醇乙酸酯具有8、9、10、11、12、13、14、15、16、17、18、19、20、21或22的碳链长度,优选地所述碳链具有11、12、13、14、15、16、17或18的长度。
26.根据前述项目中的任一项的细胞,其中所述去饱和的脂肪醇在至少一个位置诸如至少两个位置是去饱和的。
27.根据前述项目中的任一项的细胞,其中所述去饱和的脂肪醇在位置3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20或21是去饱和的。
28.根据前述项目中的任一项的细胞,其中所述去饱和的脂肪醇选自由(Z)-9-十四烯-1-醇(Z9-14:OH)、(Z)-9-十六烯-1-醇(Z9-16:OH)、(Z)-11-十四烯-1-醇(Z11-14:OH)、(Z)-11-十六烯-1-醇(Z11-16:OH)和十二碳二烯醇(E8,E10-十二碳二烯-1-醇)组成的去饱和的脂肪醇的组。
29.根据前述项目中的任一项的细胞,其中所述去饱和的脂肪醇乙酸酯在至少一个位置诸如至少两个位置是去饱和的。
30.根据前述项目中的任一项的细胞,其中所述去饱和的脂肪醇乙酸酯在位置3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20或21是去饱和的。
31.根据前述项目中的任一项的细胞,其中所述去饱和的脂肪醇乙酸酯是乙酸E8,E10-十二碳二烯酯。
32.根据前述项目中的任一项的细胞,其中所述细胞表达选自由SEQ ID NO:111至114、SEQ ID NO:124和SEQ ID NO:182至185组成的组的Ncb5or,和
a.选自由SEQ ID NO:1至38和SEQ ID NO:126至139组成的组的去饱和酶,和选自SEQ ID NO:77至93和SEQ ID NO 154至167组成的组的FAR;
b.在SEQ ID NO:32中所示的来自斜纹夜蛾的去饱和酶(Desat38),和在SEQ IDNO:83中所示的来自棉铃虫的FAR(FAR1);或
c.在SEQ ID NO:20中所示的来自葡萄花翅小卷蛾的去饱和酶(Desat30),和在SEQID NO:83中所示的来自棉铃虫的FAR(FAR1);或
d.在SEQ ID NO:15中所示的来自大果蝇的去饱和酶(Desat61)和在SEQ ID NO:83中所示的来自棉铃虫的FAR(FAR1);
或与其具有至少80%同一性的其功能变体。
33.根据前述项目中的任一项的细胞,其中所述细胞表达:
a.斜纹夜蛾去饱和酶诸如在SEQ ID NO:32中所示的Desat38;棉铃虫FAR诸如在SEQ ID NO:83中所示的FAR1;和Nc5bor,其选自由黑腹果蝇Ncb5or,诸如在SEQ ID NO:112中所示的DmNcb5or,和斜纹夜蛾Ncb5or诸如在SEQ ID NO:114中所示的SlitNcb5or组成的组;或
b.葡萄花翅小卷蛾去饱和酶诸如在SEQ ID NO:20中所示的Desat30;棉铃虫FAR诸如在SEQ ID NO:83中所示的FAR1;和Nc5bor,其选自由黑腹果蝇Ncb5or诸如在SEQ ID NO:112中所示的DmNcb5or、斜纹夜蛾Ncb5or诸如在SEQ ID NO:114中所示的SlitNcb5or、Drosophila grimshawi Ncb5or诸如在SEQ ID NO:111中所示的DgNcb5or和智人Ncb5or诸如在SEQ ID NO:113中所示的HsNcb5or组成的组;或
c.大果蝇去饱和酶诸如在SEQ ID NO:15中所示的Desat61;棉铃虫FAR诸如在SEQID NO:83中所示的FAR1;和Nc5bor,其选自由黑腹果蝇Ncb5or诸如在SEQ ID NO:112中所示的DmNcb5or和Drosophila grimshawi Ncb5or诸如在SEQ ID NO:111中所示的DgNcb5or组成的组。
34.根据前述项目中的任一项的细胞,其中所述细胞是酵母细胞,优选产油酵母细胞。
35.根据项目34的酵母细胞,其中所述酵母细胞的属选自由酵母属(Saccharomyces)、毕赤酵母属(Pichia)、耶氏酵母属(Yarrowia)、克鲁维酵母属(Kluyveromyces)、假丝酵母属(Candida)、红酵母属(Rhodotorula)、红冬孢酵母属(Rhodosporidium)、隐球菌属(Cryptococcus)、毛孢子菌属(Trichosporon)和油脂酵母属(Lipomyces)组成的组。
36.根据项目34至35中的任一项的酵母细胞,其中所述酵母选自由酿酒酵母(Saccharomyces cerevisiae)、布拉氏酵母(Saccharomyces boulardi)、巴斯德毕赤酵母(Pichia pastoris)、马克思克鲁维酵母(Kluyveromyces marxianus)、热带假丝酵母(Candida tropicalis)、浅白隐球菌(Cryptococcus albidus)、产油油脂酵母(Lipomyceslipofera)、斯氏油脂酵母(Lipomyces starkeyi)、圆红冬孢酵母(Rhodosporidiumtoruloides)、粘红酵母(Rhodotorula glutinis)、出芽毛孢子菌(Trichosporonpullulan)和解脂耶氏酵母(Yarrowia lipolytica)组成的组。
37.根据项目1至33中的任一项的细胞,其中所述细胞是植物细胞。
38.根据项目37的植物细胞,其中所述植物的属选自由烟草属(Nicotiana)和亚麻荠属(Camelina)组成的组。
39.根据项目37至38中的任一项的植物细胞,其中所述植物选自由烟草(Nicotiana tabacum)、本氏烟草(Nicotiana benthamiana)和亚麻荠(Camelina sativa)组成的组。
40.一种用于增加至少一种酶的活性的方法,所述酶选自由去饱和酶和脂肪酰基辅酶A还原酶(FAR)组成的组,所述方法包含以下步骤:
a.提供去饱和酶,其能够在脂肪酰基辅酶A中引入至少一个双键,从而将所述脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪酰基辅酶A;和/或
b.提供FAR,其能够将所述去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇,从而生产所述去饱和的脂肪醇;和
c.使所述去饱和酶和/或FAR与Ncb5or接触,从而与在没有所述Ncb5or存在下所述去饱和酶和/或FAR的活性相比,增加所述去饱和酶和/或FAR的活性,其中在相同条件下测量所述活性;
其中通过测量由所述去饱和酶和/或所述FAR形成的产物的浓度来测量活性的增加。
41.根据项目40的方法,其中在体外进行所述方法。
42.根据项目40的方法,其中在体内进行所述方法,优选地其中在以下细胞中进行所述方法:
a.根据项目34至36中的任一项的酵母细胞;或
b.根据项目37至39中的任一项的植物细胞。
43.一种用于在细胞中生产选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、去饱和的脂肪酸以及去饱和的脂肪酰基辅酶A的化合物的方法,所述方法包括以下步骤:
a.提供细胞并在培养基中温育所述细胞;和
b.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
c.在所述细胞中表达Ncb5or;
d.任选地,回收所述化合物。
44.一种用于增加在细胞中生产的选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、去饱和的脂肪酸以及去饱和的脂肪酰基辅酶A的化合物的滴度的方法,所述细胞能够合成一种或多种脂肪酰基辅酶A和/或能够从其环境中输入脂肪酰基辅酶A,所述方法包括以下步骤:
a.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
b.在所述细胞中表达Ncb5or,从而与在相同条件下来自不表达所述Ncb5or的细胞的滴度相比,增加所述化合物的滴度;
c.任选地,回收所述化合物。
45.根据项目43至44中的任一项的方法,其中所述第一种酶或第一组酶由一种或多种能够将脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A的去饱和酶组成,且其中所述化合物是去饱和的脂肪酰基辅酶A或去饱和的脂肪酸。
46.根据项目43至44中的任一项的方法,其中所述第一种酶或第一组酶由一种或多种能够将脂肪酰基辅酶A转化为饱和的脂肪醇的FAR组成,且其中所述化合物是饱和的脂肪醇。
47.根据项目43至44中的任一项的方法,其中所述第一种酶或第一组酶由能够将脂肪酰基辅酶A转化为去饱和的脂肪醇的一种或多种FAR和一种或多种去饱和酶组成,且其中所述化合物是去饱和的脂肪醇。
48.根据项目43至47中的任一项的方法,其中所述化合物是去饱和的或饱和的脂肪醇,且其中所述方法进一步包括将去饱和的或饱和的脂肪醇分别转化为去饱和的或饱和的脂肪醇乙酸酯的步骤。
49.根据项目48的方法,其中在体外进行所述去饱和的或饱和的脂肪醇向去饱和的或饱和的脂肪醇乙酸酯的转化。
50.根据项目48的方法,其中通过在所述细胞中进一步表达能够将去饱和的或饱和的脂肪醇分别转化为去饱和的或饱和的脂肪醇乙酸酯的乙酰基转移酶,在体内进行所述去饱和的或饱和的脂肪醇向去饱和的或饱和的脂肪醇乙酸酯的转化。
51.根据项目43至50中的任一项的方法,其中所述化合物是饱和的脂肪醇或去饱和的脂肪醇,且其中所述方法进一步包括将饱和的脂肪醇或去饱和的脂肪醇分别转化为饱和的脂肪醛或去饱和的脂肪醛的步骤。
52.根据项目51的方法,其中所述向醛的转化是化学转化或酶促转化。
53.根据项目43至52中的任一项的方法,其中所述细胞是如在项目34至36中的任一项中所定义的酵母细胞。
54.根据项目43至53中的任一项的方法,其中所述脂肪醇的总滴度和任选的所述脂肪醇乙酸酯的总滴度增加,其中所述脂肪醇的总滴度是去饱和的脂肪醇的滴度和饱和的脂肪醇的滴度的总和,且所述脂肪醇乙酸酯的总滴度是去饱和的脂肪醇乙酸酯的滴度和饱和的脂肪醇乙酸酯的滴度的总和。
55.根据项目43至54中的任一项的方法,其中所述饱和的脂肪醇的滴度和任选的所述饱和的脂肪醇乙酸酯的滴度增加。
56.根据项目43至55中的任一项的方法,其中与来自不表达所述Ncb5or的细胞的滴度相比,所述去饱和的脂肪醇和/或脂肪醇乙酸酯和/或脂肪酸和/或饱和的脂肪醇和/或脂肪醇乙酸酯的滴度和/或所述饱和的脂肪醇和/或脂肪醇乙酸酯的总滴度增加至少3%,诸如至少4%,诸如至少5%,诸如至少10%,诸如至少15%,诸如至少20%,诸如至少25%,诸如至少30%,诸如至少35%,诸如至少40%,诸如至少45%,诸如至少50%,诸如至少55%,诸如至少60%,诸如至少70%,诸如至少80%,诸如至少90%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%。
57.根据项目40至56中的任一项的方法,其中所述去饱和酶如在项目13至16中的任一项中所定义。
58.根据项目40至57中的任一项的方法,其中所述FAR如在项目17至20中的任一项中所定义。
59.根据项目40至58中的任一项的方法,其中所述Ncb5or如在项目7至12中的任一项中所定义。
60.根据项目40至59中的任一项的方法,其中所述去饱和的脂肪醇、所述饱和的脂肪醇、所述去饱和的脂肪醇乙酸酯和/或所述饱和的脂肪醇乙酸酯如在项目25中所定义。
61.根据项目40至60中的任一项的方法,其中所述去饱和的脂肪醇如在项目26至28中的任一项中所定义。
62.根据项目40至61中的任一项的方法,其中所述去饱和的脂肪醇乙酸酯如在项目29至31中的任一项中所定义。
63.根据项目40、42至44和54至62中的任一项的方法,其中所述细胞是如在项目37至39中的任一项中所定义的植物细胞。
64.根据项目40至63中的任一项的方法,所述方法进一步包括将所述去饱和的脂肪醇、所述去饱和的脂肪醇乙酸酯和/或所述去饱和的脂肪醛配制在信息素组合物中的步骤。
65.根据项目64的方法,其中所述信息素组合物进一步包含一种或多种另外的化合物诸如液体或固体载体或基质。
66.根据项目40至65中的任一项的方法,其中所述方法以至少1mg/L的滴度产生所述去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛和/或饱和的脂肪醛,诸如至少1.5mg/L,诸如至少5mg/L,诸如至少10mg/L,诸如至少25mg/L,诸如至少50mg/L,诸如至少100mg/L,诸如至少250mg/L,诸如至少500mg/L,诸如至少750mg/L,诸如至少1g/L,诸如至少2g/L,诸如至少3g/L,诸如至少4g/L,诸如至少5g/L,诸如至少6g/L,诸如至少7g/L,诸如至少8g/L,诸如至少9g/L,诸如至少10g/L,诸如至少11g/L,诸如至少12g/L,诸如至少13g/L,诸如至少14g/L,诸如至少15g/L,诸如至少16g/L,诸如至少17g/L,诸如至少18g/L,诸如至少19g/L,诸如至少20g/L,诸如至少25g/L,诸如至少30g/L,诸如至少35g/L,诸如至少40g/L,诸如至少45g/L,诸如至少50g/L,或更多。
67.根据项目40至66中的任一项的方法,所述方法进一步包括,通过在所述酵母细胞中表达至少一种醇脱氢酶和/或至少一种脂肪醇氧化酶,将饱和的脂肪醇或去饱和的脂肪醇分别转化为饱和的脂肪醛或去饱和的脂肪醛。
68.一种核酸构建体系统,其包含编码Ncb5or和以下的核酸:
a.能够在脂肪酰基辅酶A中引入至少一个双键的去饱和酶;和/或
b.脂肪酰基辅酶A还原酶(FAR),其能够将去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇。
69.根据项目68的系统,其中所述Ncb5or是由以下序列中的任一个编码:在SEQ IDNO:115至118、SEQ ID NO:125和SEQ ID NO:186至189中所示的序列,或与其具有至少80%同一性的其变体,诸如与其具有至少85%同一性,诸如至少90%同一性,诸如至少91%同一性,诸如至少92%同一性,诸如至少93%同一性,诸如至少94%同一性,诸如至少95%同一性,诸如至少96%同一性,诸如至少97%同一性,诸如至少98%同一性,诸如至少99%同一性。
70.根据项目68至69中的任一项的系统,其中所述去饱和酶由以下序列中的任一个编码:在SEQ ID NO:39至76和SEQ ID NO:140至153中所示的序列,或与其具有至少80%同一性的其变体,诸如与其具有至少85%同一性,诸如至少90%同一性,诸如至少91%同一性,诸如至少92%同一性,诸如至少93%同一性,诸如至少94%同一性,诸如至少95%同一性,诸如至少96%同一性,诸如至少97%同一性,诸如至少98%同一性,诸如至少99%同一性。
71.根据项目68至70中的任一项的系统,其中所述FAR由以下序列中的任一个编码:在SEQ ID NO:94至110和SEQ ID NO:168至181中所示的序列,或与其具有至少80%同一性的其变体,诸如与其具有至少85%同一性,诸如至少90%同一性,诸如至少91%同一性,诸如至少92%同一性,诸如至少93%同一性,诸如至少94%同一性,诸如至少95%同一性,诸如至少96%同一性,诸如至少97%同一性,诸如至少98%同一性,诸如至少99%同一性。
72.一种部件试剂盒,其包含:
a.根据项目1至33中的任一项的细胞;和/或
b.根据项目68至71中的任一项的核酸系统,其中所述构建体用于修饰细胞;和
c.使用说明;和
d.任选的待被修饰的细胞。
73.根据项目72的部件试剂盒,其中所述细胞是根据项目34至36中的任一项的酵母细胞。
74.根据项目72的部件试剂盒,其中所述细胞是根据项目37至39中的任一项的植物细胞。
75.Ncb5or在用于增加一种或多种酶的活性的方法中的用途。
76.根据项目75的用途,其中所述一种或多种酶是一种或多种膜结合的酶。
77.根据项目75至76中的任一项的用途,其中所述一种或多种酶选自由去饱和酶和还原酶组成的组。
78.根据项目75至77中的任一项的用途,其中所述一种或多种酶的活性的增加对于所述去饱和酶和/或所述FAR而言为至少1.2倍,诸如至少1.3倍,诸如至少1.4倍,诸如至少1.5倍,诸如至少1.6倍,诸如至少1.7倍,诸如至少1.8倍,诸如至少1.9倍,诸如至少2倍,诸如至少3倍,诸如至少4倍,诸如至少5倍,诸如至少6倍,诸如至少7倍,诸如至少8倍,诸如至少9倍,诸如至少10倍,诸如至少15倍,诸如至少20倍,诸如至少30倍,诸如至少40倍,诸如至少50倍;其中所述一种或多种酶的活性的增加是相对于在没有所述Ncb5or存在下所述一种或多种酶的活性,其中在相同条件下测量所述活性,其中通过测量由所述一种或多种酶形成的产物的浓度来测量所述增加。
79.根据项目75至78中的任一项的用途,其中所述一种或多种酶的活性的增加对于所述去饱和酶和/或所述FAR而言为至少1.2倍,诸如至少1.3倍,诸如至少1.4倍,诸如至少1.5倍,诸如至少1.6倍,诸如至少1.7倍,诸如至少1.8倍,诸如至少1.9倍,诸如至少2倍,诸如至少3倍,诸如至少4倍,诸如至少5倍,诸如至少6倍,诸如至少7倍,诸如至少8倍,诸如至少9倍,诸如至少10倍,诸如至少15倍,诸如至少20倍,诸如至少30倍,诸如至少40倍,诸如至少50倍;其中所述一种或多种酶的活性的增加是相对于在没有所述Ncb5or存在下所述一种或多种酶的活性,其中在相同条件下测量所述活性,其中通过测量由所述去饱和酶和/或所述FAR形成的产物的浓度来测量所述增加。
80.根据项目75至79中的任一项的用途,其中所述Ncb5or、所述去饱和酶和/或所述FAR如在前述权利要求中的任一项中所定义。
81.根据项目75至80中的任一项的用途,其中所述Ncb5or选自由SEQ ID NO:111至114、SEQ ID NO:124和SEQ ID NO:182至185组成的组。
82.根据项目75至81中的任一项的用途,其中所述一种或多种酶选自由SEQ IDNO:1至38、SEQ ID NO:77至93、SEQ ID NO:140至153和SEQ ID NO:168至181组成的组。
83.根据项目75至82中的任一项的用途,其中所述一种或多种酶选自:
a.在SEQ ID NO:32中所示的来自斜纹夜蛾的去饱和酶(Desat38)和在SEQ ID NO:83中所示的来自棉铃虫的FAR(FAR1);或
b.在SEQ ID NO:20中所示的来自葡萄花翅小卷蛾的去饱和酶(Desat30)和在SEQID NO:83中所示的来自棉铃虫的FAR(FAR1);或
c.在SEQ ID NO:15中所示的来自大果蝇的去饱和酶(Desat61)和在SEQ ID NO:83中所示的来自棉铃虫的FAR(FAR1);
或与其具有至少80%同一性的其功能变体。
84.根据项目75至83中的任一项的用途,其中所述Nc5bor选自由以下组成的组:黑腹果蝇Ncb5or,诸如在SEQ ID NO:112中所示的DmNcb5or;斜纹夜蛾Ncb5or诸如在SEQ IDNO:114中所示的SlitNcb5or;Drosophila grimshawi Ncb5or诸如在SEQ ID NO:111中所示的DgNcb5or;智人Ncb5or诸如在SEQ ID NO:113中所示的HsNcb5or;苹果蠹蛾Ncb5or诸如在SEQ ID NO:124中所示的CpoNcb5or1或在SEQ ID NO:182中所示的CpNcb5or;黄地老虎Ncb5or诸如在SEQ ID NO:183中所示的AseNcb5or;欧洲熊蜂Ncb5or诸如在SEQ ID NO:184中所示的BterNcb5or;葡萄花翅小卷蛾Ncb5or诸如在SEQ ID NO:185中所示的LboNcb5or;或与其具有至少80%同一性的其功能变体。
85.通过根据项目40至67中的任一项的方法可得到的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛和/或饱和的脂肪醛。
86.通过根据项目40至67中的任一项的方法可得到的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛和/或饱和的脂肪醛的用途。
87.一种监测害虫的存在或破坏害虫的交配的方法,所述方法包括以下步骤:
a.根据项目40至67中的任一项的方法生产去饱和的脂肪醇和任选的去饱和的脂肪醇乙酸酯和/或去饱和的脂肪醛;和
b.将所述脂肪醇和任选的所述脂肪醇乙酸酯和/或所述去饱和的脂肪醛配制为信息素组合物;和
c.采用所述信息素组合物作为害虫综合治理组合物。
88.一种发酵液,其含有根据项目34至36中的任一项的酵母细胞。
89.一种发酵系统或催化系统,其包含根据项目34至36中的任一项的酵母细胞。
90.一种用于扩散信息素组合物的装置,诸如信息素分配器,所述信息素组合物包含根据项目25至31或85中的任一项的去饱和的脂肪醇和/或去饱和的脂肪醇乙酸酯和/或去饱和的脂肪醛。
91.一种用于在细胞中生产至少1mg/L的去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯、饱和的脂肪醇乙酸酯、去饱和的脂肪醛和/或饱和的脂肪醛的方法,诸如至少1.5mg/L,诸如至少5mg/L,诸如至少10mg/L,诸如至少25mg/L,诸如至少50mg/L,诸如至少100mg/L,诸如至少250mg/L,诸如至少500mg/L,诸如至少750mg/L,诸如至少1g/L,诸如至少2g/L,诸如至少3g/L,诸如至少4g/L,诸如至少5g/L,诸如至少6g/L,诸如至少7g/L,诸如至少8g/L,诸如至少9g/L,诸如至少10g/L,诸如至少11g/L,诸如至少12g/L,诸如至少13g/L,诸如至少14g/L,诸如至少15g/L,诸如至少16g/L,诸如至少17g/L,诸如至少18g/L,诸如至少19g/L,诸如至少20g/L,诸如至少25g/L,诸如至少30g/L,诸如至少35g/L,诸如至少40g/L,诸如至少45g/L,诸如至少50g/L,或更多,其中所述方法是根据项目40至67中的任一项。
92.根据项目43至67或91中的任一项的方法,其中所述培养基包含萃取剂,所述萃取剂的量等于或大于其在水溶液中的混浊浓度,其中所述萃取剂是非离子表面活性剂诸如消泡剂,优选选自以下的聚乙氧基化的表面活性剂:聚氧乙烯聚氧丙烯醚,聚醚分散体的混合物,包含聚乙二醇单硬脂酸酯诸如二甲硅油的消泡剂以及乙氧基化的和丙氧基化的C16-C18醇基消泡剂和它们的组合。
93.根据项目92的方法,其中:
-所述非离子表面活性剂是乙氧基化的和丙氧基化的C16-C18醇基消泡剂,诸如C16-C18烷基醇乙氧基化物丙氧基化物(CAS编号68002-96-0),且其中所述培养基包含至少1%体积/体积的C16-C18烷基醇乙氧基化物丙氧基化物,
-所述非离子表面活性剂是聚氧乙烯聚氧丙烯醚,例如P407(CAS编号9003-11-6),且其中所述培养基包含至少10%体积/体积的聚氧乙烯聚氧丙烯醚诸如P407,
-所述非离子表面活性剂是聚醚分散体的混合物,诸如消泡剂204,且其中所述培养基包含至少1%体积/体积的聚醚分散体的混合物诸如消泡剂204;和/或
-所述非离子表面活性剂是包含聚乙二醇单硬脂酸酯诸如二甲硅油的非离子表面活性剂,且其中所述培养基包含至少1%体积/体积的聚乙二醇单硬脂酸酯或二甲硅油。
94.根据项目43至67或91至93中的任一项的方法,其中所述培养基包含萃取剂,所述萃取剂的量比其混浊浓度大至少50%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%,诸如至少300%,诸如至少350%,诸如至少400%,诸如至少500%,诸如至少750%,诸如至少1000%,或更多,和/或其中所述培养基包含的萃取剂的量是其混浊浓度的至少2倍,诸如其混浊浓度的至少3倍,诸如其混浊浓度的至少4倍,诸如其混浊浓度的至少5倍,诸如其混浊浓度的至少6倍,诸如其混浊浓度的至少7倍,诸如其混浊浓度的至少8倍,诸如其混浊浓度的至少9倍,诸如其混浊浓度的至少10倍,诸如其混浊浓度的至少12.5倍,诸如其混浊浓度的至少15倍,诸如其混浊浓度的至少17.5倍,诸如其混浊浓度的至少20倍,诸如其混浊浓度的至少25倍,诸如其混浊浓度的至少30倍。
95.根据项目43至67和91至94中的任一项的方法,其中所述细胞是酵母细胞且其中:
a.所述去饱和的脂肪醇是(Z)-11-十六烯-1-醇;且
b.所述去饱和酶是选自由以下组成的组的Δ11-去饱和酶:脐橙螟蛾Δ11-去饱和酶(Desat16;SEQ ID NO:2),海灰翅夜蛾Δ11-去饱和酶(Desat20;SEQ ID NO:31),黄地老虎Δ11-去饱和酶(Desat19;SEQ ID NO:1)和粉纹夜蛾Δ11-去饱和酶(Desat21;SEQ IDNO:37),或与Desat16(SEQ ID NO:2)、Desat20(SEQ ID NO:31)、Desat19(SEQ ID NO:1)或Desat21(SEQ ID NO:37)具有至少65%同一性、诸如至少70%同一性、诸如至少71%同一性、诸如至少72%、诸如至少73%、诸如至少74%、诸如至少75%、诸如至少80%、诸如至少85%、诸如至少90%、诸如至少95%、诸如100%同一性的其变体;且
c.所述FAR选自FAR1(SEQ ID NO:83)、FAR4(SEQ ID NO:85)和FAR6(SEQ ID NO:84),或与FAR1(SEQ ID NO:83)、FAR4(SEQ ID NO:85)或FAR6(SEQ ID NO:84)具有至少80%同一性、诸如至少85%、诸如至少90%、诸如至少95%、诸如100%同一性的其变体;
其中所述Δ11-去饱和酶能够将十六烷酰基辅酶A的至少一部分转化为(Z)11-十六烯酰基辅酶A,且所述FAR能够将(Z)11-十六烯酰基辅酶A的至少一部分转化为(Z)-11-十六烯醇,
由此以至少0.2mg/L的滴度得到(Z)-11-十六烯-1-醇。
96.根据项目34至36中的任一项的酵母细胞,其中所述酵母细胞是产油酵母细胞,其中所述产油酵母细胞具有导致脂肪醇氧化酶Fao1(SEQ ID NO:119)的活性降低的突变以及导致脂肪醛脱氢酶Hfd1(SEQ ID NO:121)、脂肪醛脱氢酶Hfd4(SEQ ID NO:122)、过氧化物酶体生物发生因子Pex10(SEQ ID NO:123)和甘油-3-磷酸酰基转移酶GPAT(SEQ ID NO:120)中至少一种的活性降低的突变,或具有导致与Fao1(SEQ ID NO:119)具有至少60%同一性的至少一种蛋白质的活性降低的突变以及导致Hfd1(SEQ ID NO:121)、Hfd4(SEQ IDNO:122)、Pex10(SEQ ID NO:123)和GPAT(SEQ ID NO:120)中的至少一种的活性降低的突变,与Fao1(SEQ ID NO:119)以及Hfd1(SEQ ID NO:121)、Hfd4(SEQ ID NO:122)、Pex10(SEQID NO:123)和GPAT(SEQ ID NO:120)中的至少一种具有诸如至少65%同一性,诸如至少70%同一性,诸如至少75%同一性,诸如至少80%同一性,诸如至少81%同一性,诸如至少82%同一性,诸如至少83%同一性,诸如至少84%同一性,诸如至少85%同一性,诸如至少86%同一性,诸如至少87%同一性,诸如至少88%同一性,诸如至少89%同一性,诸如至少90%同一性,诸如至少91%同一性,诸如至少92%同一性,诸如至少93%同一性,诸如至少94%同一性,诸如至少95%同一性,诸如至少96%同一性,诸如至少97%同一性,诸如至少98%同一性,诸如至少99%同一性,优选地其中所述酵母细胞至少具有导致Fao1的活性降低的突变以及导致Hfd1、Hfd4、Pex10和GPAT的活性降低的至少一种突变。
97.根据项目34至36中的任一项的酵母细胞,其中所述酵母细胞表达对十四烷酰基辅酶A比对十六烷酰基辅酶A具有更高特异性的去饱和酶,和/或其中所述FAR对去饱和的十四烷酰基辅酶A比对去饱和的十六烷酰基辅酶A具有更高特异性。
98.根据项目34至36中的任一项的酵母细胞,其中所述酵母细胞:
a.具有一种或多种突变,所述突变导致一种或多种天然酰基辅酶A氧化酶的活性降低;且
b.表达至少一种第一组酶,所述第一组酶包含至少一种能够氧化脂肪酰基辅酶A的酰基辅酶A氧化酶,其中所述第一组酶能够将第一碳链长度X的脂肪酰基辅酶A缩短至具有第二碳链长度X′的缩短的脂肪酰基辅酶A,其中X′≤X-2;且
c.表达至少一种异源去饱和酶,其能够在所述脂肪酰基辅酶A中和/或在所述缩短的脂肪酰基辅酶A中引入至少一个双键;且
d.表达至少一种异源FAR,其能够将所述去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇;且
e.任选地表达至少一种能够将所述去饱和的脂肪醇的至少一部分转化为去饱和的脂肪醇乙酸酯的乙酰基转移酶,和/或至少一种能够将所述去饱和的脂肪醇的至少一部分转化为去饱和的脂肪醛的醇脱氢酶和/或脂肪醇氧化酶。
99.根据项目34至36中的任一项的酵母细胞,其中所述酵母细胞能够生产E8,E10-十二碳二烯基辅酶A和任选的E8,E10-十二碳二烯-1-醇,所述酵母细胞表达至少一种异源去饱和酶,其能够在碳链长度为12的脂肪酰基辅酶A中引入一个或多个双键,从而将所述脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A,其中所述去饱和的脂肪酰基辅酶A的至少一部分是E8,E10-十二碳二烯基辅酶A(E8,E10-C12:辅酶A),其中:
a.所述至少一种去饱和酶是Desat4(SEQ ID NO:9),或与其具有至少80%同一性的其功能变体,诸如与SEQ ID NO:9具有至少81%、诸如至少82%、诸如至少83%、诸如至少84%、诸如至少85%、诸如至少86%、诸如至少87%、诸如至少88%、诸如至少89%、诸如至少90%、诸如至少91%、诸如至少92%、诸如至少93%、诸如至少94%、诸如至少95%、诸如至少96%、诸如至少97%、诸如至少98%、诸如至少99%同一性;或
b.所述至少一种去饱和酶是至少两种去饱和酶,其中所述两种去饱和酶中的至少一种是Desat4(SEQ ID NO:9),或与其具有至少80%同一性的其功能变体,诸如与SEQ IDNO:9具有至少81%、诸如至少82%、诸如至少83%、诸如至少84%、诸如至少85%、诸如至少86%、诸如至少87%、诸如至少88%、诸如至少89%、诸如至少90%、诸如至少91%、诸如至少92%、诸如至少93%、诸如至少94%、诸如至少95%、诸如至少96%、诸如至少97%、诸如至少98%、诸如至少99%同一性,且另一种去饱和酶是能够在碳链长度为12的脂肪酰基辅酶A中引入至少一个双键的去饱和酶,诸如Z9-12去饱和酶。
100.一种用于增加在细胞中生产的选自去饱和的脂肪醇、去饱和的脂肪酸以及去饱和的脂肪酰基辅酶A的化合物的纯度的方法,所述细胞能够合成一种或多种脂肪酰基辅酶A和/或能够从其环境中输入脂肪酰基辅酶A,所述方法包括以下步骤:
a.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
b.在所述细胞中表达Ncb5or,从而与在相同条件下来自不表达所述Ncb5or的细胞生产相比增加所述化合物的生产;
其中所述化合物的纯度是所述化合物相对于所述细胞生产的相同化合物组内的所有化合物的比率或百分比,诸如所述去饱和的脂肪醇相对于所述细胞生产的所有去饱和的脂肪醇的百分比,诸如去饱和的脂肪酸相对于所述细胞生产的所有脂肪酸的百分比,和/或诸如去饱和的脂肪酰基辅酶A相对于所述细胞生产的所有脂肪酰基辅酶A的百分比。
101.根据项目100的方法,其中与来自不表达所述Ncb5or的细胞的纯度相比,去饱和的脂肪醇、去饱和的脂肪酸和/或去饱和的脂肪酰基辅酶A的纯度增加至少3%,诸如至少4%,诸如至少5%,诸如至少10%,诸如至少15%,诸如至少20%,诸如至少25%,诸如至少30%,诸如至少35%,诸如至少40%,诸如至少45%,诸如至少50%,诸如至少55%,诸如至少60%,诸如至少70%,诸如至少80%,诸如至少90%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%。
102.根据项目100至101中的任一项的方法,其中所述第一种酶或第一组酶包含
a.如在项目13至16中的任一项中所定义的去饱和酶;和/或
b.如在项目17至20中的任一项中所定义的FAR。
103.根据项目100至102中的任一项的方法,其中所述Ncb5or如在项目7至12中的任一项中所定义。
104.根据项目100至103中的任一项的方法,其中所述细胞是酵母,其中所述酵母细胞的属选自由以下组成的组:酵母属(Saccharomyces)、毕赤酵母属(Pichia)、耶氏酵母属(Yarrowia)、克鲁维酵母属(Kluyveromyces)、假丝酵母属(Candida)、红酵母属(Rhodotorula)、红冬孢酵母属(Rhodosporidium)、隐球菌属(Cryptococcus)、毛孢子菌属(Trichosporon)和油脂酵母属(Lipomyces),诸如选自由以下组成的组的酵母:酿酒酵母(Saccharomyces cerevisiae)、布拉氏酵母(Saccharomyces boulardi)、巴斯德毕赤酵母(Pichia pastoris)、马克思克鲁维酵母(Kluyveromyces marxianus)、热带假丝酵母(Candida tropicalis)、浅白隐球菌(Cryptococcus albidus)、产油油脂酵母(Lipomyceslipofera)、斯氏油脂酵母(Lipomyces starkeyi)、圆红冬孢酵母(Rhodosporidiumtoruloides)、粘红酵母(Rhodotorula glutinis)、出芽毛孢子菌(Trichosporonpullulan)和解脂耶氏酵母(Yarrowia lipolytica)。
105.根据项目100至103中的任一项的方法,其中所述细胞是植物细胞,其中所述植物的属选自由烟草属和亚麻荠属组成的组,诸如选自由烟草、本氏烟草和亚麻荠组成的组的植物。
106.根据项目100至105中的任一项的方法,其中所述化合物:
a.具有8、9、10、11、12、13、14、15、16、17、18、19、20、21或22的碳链长度,优选地所述碳链具有11、12、13、14、15、16、17或18的长度;
b.在位置3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20或21是去饱和的;
c.在至少一个位置诸如至少两个位置是去饱和的;和/或
d.选自由(Z)-9-十四烯-1-醇(Z9-14:OH)、(Z)-9-十六烯-1-醇(Z9-16:OH)、(Z)-11-十四烯-1-醇(Z11-14:OH)、(Z)-11-十六烯-1-醇(Z11-16:OH)和十二碳二烯醇(E8,E10-十二碳二烯-1-醇)的Z9-14:酸、Z9-16:酸、Z11-14:酸、Z11-16:酸、E8,E10-12:酸组成的组。
序列表
<110> 拜奥菲罗公司
<120> 用于增加酶活性和昆虫信息素的生产的改进的方法和细胞
<130> P5860PC00
<160> 192
<170> PatentIn 3.5版
<210> 1
<211> 336
<212> PRT
<213> 黄地老虎(Agrotis segetum)
<400> 1
Met Ala Gln Gly Val Gln Thr Thr Thr Ile Leu Arg Glu Glu Glu Pro
1 5 10 15
Ser Leu Thr Phe Val Val Pro Gln Glu Pro Arg Lys Tyr Gln Ile Val
20 25 30
Tyr Pro Asn Leu Ile Thr Phe Gly Tyr Trp His Ile Ala Gly Leu Tyr
35 40 45
Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Gln Thr Ile Leu Phe
50 55 60
Ser Phe Met Leu Val Val Leu Ala Glu Leu Gly Ile Thr Ala Gly Ala
65 70 75 80
His Arg Leu Trp Ala His Lys Thr Tyr Lys Ala Lys Leu Pro Leu Gln
85 90 95
Ile Ile Leu Met Ile Leu Asn Ser Ile Ala Phe Gln Asn Ser Ala Ile
100 105 110
Asp Trp Val Arg Asp His Arg Leu His His Lys Tyr Ser Asp Thr Asp
115 120 125
Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Tyr Ser His Val Gly
130 135 140
Trp Leu Leu Val Arg Lys His Pro Glu Val Lys Arg Arg Gly Lys Glu
145 150 155 160
Leu Asp Met Ser Asp Ile Tyr Asn Asn Pro Val Leu Arg Phe Gln Lys
165 170 175
Lys Tyr Ala Ile Pro Phe Ile Gly Ala Met Cys Phe Gly Leu Pro Thr
180 185 190
Phe Ile Pro Val Tyr Phe Trp Gly Glu Thr Trp Ser Asn Ala Trp His
195 200 205
Ile Thr Met Leu Arg Tyr Ile Leu Asn Leu Asn Ile Thr Phe Leu Val
210 215 220
Asn Ser Ala Ala His Ile Trp Gly Tyr Lys Pro Tyr Asp Ile Lys Ile
225 230 235 240
Leu Pro Ala Gln Asn Ile Ala Val Ser Ile Val Thr Gly Gly Glu Val
245 250 255
Ser Ile Thr Thr Thr Thr Phe Phe Pro Trp Asp Tyr Arg Ala Ala Glu
260 265 270
Leu Gly Asn Asn Tyr Leu Asn Leu Thr Thr Lys Phe Ile Asp Phe Phe
275 280 285
Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ser Ser Asp Val
290 295 300
Ile Lys Ser Lys Ala Glu Arg Thr Gly Asp Gly Thr Asn Leu Trp Gly
305 310 315 320
Leu Glu Asp Lys Gly Glu Glu Asp Phe Leu Lys Ile Trp Lys Asp Asn
325 330 335
<210> 2
<211> 326
<212> PRT
<213> 脐橙螟蛾(Amyelois transitella)
<400> 2
Met Val Pro Asn Lys Gly Ser Ser Asp Val Leu Ser Glu His Ser Glu
1 5 10 15
Pro Gln Phe Thr Lys Leu Ile Ala Pro Gln Ala Gly Pro Arg Lys Tyr
20 25 30
Lys Ile Val Tyr Arg Asn Leu Leu Thr Phe Gly Tyr Trp His Leu Ser
35 40 45
Ala Val Tyr Gly Leu Tyr Leu Cys Phe Thr Cys Ala Lys Trp Ala Thr
50 55 60
Ile Leu Phe Ala Phe Phe Leu Tyr Val Ile Ala Glu Ile Gly Ile Thr
65 70 75 80
Gly Gly Ala His Arg Leu Trp Ala His Arg Thr Tyr Lys Ala Lys Leu
85 90 95
Pro Leu Glu Ile Leu Leu Leu Ile Met Asn Ser Ile Ala Phe Gln Asp
100 105 110
Thr Ala Phe Thr Trp Ala Arg Asp His Arg Leu His His Lys Tyr Ser
115 120 125
Asp Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Tyr Ser
130 135 140
His Val Gly Trp Leu Leu Val Lys Lys His Pro Glu Val Lys Ala Arg
145 150 155 160
Gly Lys Tyr Leu Ser Leu Asp Asp Leu Lys Asn Asn Pro Leu Leu Lys
165 170 175
Phe Gln Lys Lys Tyr Ala Ile Leu Val Ile Gly Thr Leu Cys Phe Leu
180 185 190
Met Pro Thr Phe Val Pro Val Tyr Phe Trp Gly Glu Gly Ile Ser Thr
195 200 205
Ala Trp Asn Ile Asn Leu Leu Arg Tyr Val Met Asn Leu Asn Met Thr
210 215 220
Phe Leu Val Asn Ser Ala Ala His Ile Phe Gly Asn Lys Pro Tyr Asp
225 230 235 240
Lys Ser Ile Ala Ser Val Gln Asn Ile Ser Val Ser Leu Ala Thr Phe
245 250 255
Gly Glu Gly Phe His Asn Tyr His His Thr Tyr Pro Trp Asp Tyr Arg
260 265 270
Ala Ala Glu Leu Gly Asn Asn Arg Leu Asn Met Thr Thr Ala Phe Ile
275 280 285
Asp Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Ser Val Pro
290 295 300
Gln Glu Ala Ile Ala Lys Arg Cys Ala Lys Thr Gly Asp Gly Thr Asp
305 310 315 320
Met Trp Gly Arg Lys Arg
325
<210> 3
<211> 351
<212> PRT
<213> 脐橙螟蛾(Amyelois transitella)
<400> 3
Met Pro Pro Gln Gly Gln Asp Arg Glu Ser Trp Val Leu Tyr Glu Thr
1 5 10 15
Asp Asp Lys Thr Gln Asp Gly Gly Thr His Val Val Pro Pro Ser Ala
20 25 30
Glu Lys Arg Val Trp Lys Ile Val Trp Arg Asn Val Ile Ala Phe Ala
35 40 45
Leu Leu His Ile Gly Gly Val Tyr Gly Ala Tyr Leu Phe Leu Phe Lys
50 55 60
Ala Met Trp Leu Thr Asp Leu Phe Ala Val Phe Leu Tyr Leu Cys Ser
65 70 75 80
Gly Leu Gly Val Thr Ala Gly Ala His Arg Leu Trp Ala His Lys Ser
85 90 95
Tyr Lys Ala Arg Leu Pro Leu Arg Leu Leu Leu Thr Val Phe Asn Thr
100 105 110
Ile Ala Phe Gln Asp Ala Val Ile Asp Trp Ala Arg Asp His Arg Leu
115 120 125
His His Lys Tyr Ser Glu Thr Asp Ala Asp Pro His Asn Ala Thr Arg
130 135 140
Gly Phe Phe Phe Ser His Ile Gly Trp Leu Leu Val Arg Lys His Pro
145 150 155 160
Gln Ile Lys Glu Lys Gly Pro Thr Ile Asp Leu Asn Asp Leu Arg Ala
165 170 175
Asp Pro Val Leu His Phe Gln Lys Lys Tyr Tyr Leu Tyr Leu Met Pro
180 185 190
Leu Ala Cys Phe Val Met Pro Thr Leu Val Pro Thr Leu Trp Gly Glu
195 200 205
Ser Leu Trp Asn Ala Tyr Phe Val Cys Ala Ile Phe Arg Tyr Ile Tyr
210 215 220
Val Leu Asn Val Thr Trp Leu Val Asn Ser Ala Ala His Ala Trp Gly
225 230 235 240
Ser Lys Pro Tyr Asp Lys Asn Ile Asn Pro Val Glu Thr Lys Pro Val
245 250 255
Ser Leu Val Val Leu Gly Glu Gly Phe His Asn Tyr His His Thr Phe
260 265 270
Pro Trp Asp Tyr Lys Thr Ala Glu Leu Gly Asp Tyr Ser Leu Asn Phe
275 280 285
Ser Lys Leu Phe Ile Asp Ala Met Ala Lys Ile Gly Trp Ala Tyr Asp
290 295 300
Leu Lys Thr Val Ser Pro Asp Val Ile Glu Lys Arg Val Lys Arg Thr
305 310 315 320
Gly Asp Gly Ser His His Val Trp Gly Trp Asp Asp Lys Asp Val Pro
325 330 335
Val Glu Glu Lys Glu Glu Ala Thr Ile Phe Asn Pro Ser Lys Asp
340 345 350
<210> 4
<211> 352
<212> PRT
<213> 脐橙螟蛾(Amyelois transitella)
<400> 4
Met Ala Pro Asn Ala Thr Asp Ala Asn Gly Val Leu Phe Glu Thr Asp
1 5 10 15
Ala Ala Thr Pro Asp Leu Ala Leu Pro His Ala Pro Val Gln Gln Ala
20 25 30
Asp Asn Tyr Pro Lys Lys Tyr Val Trp Arg Asn Ile Ile Leu Phe Ala
35 40 45
Tyr Leu His Ile Ala Ala Leu Tyr Gly Gly Tyr Leu Phe Leu Phe His
50 55 60
Ala Lys Trp Gln Thr Asp Ile Phe Ala Tyr Ile Leu Tyr Val Met Ser
65 70 75 80
Gly Leu Gly Ile Thr Ala Gly Ala His Arg Leu Trp Ala His Lys Ser
85 90 95
Tyr Lys Ala Lys Trp Pro Leu Arg Leu Ile Leu Val Ile Phe Asn Thr
100 105 110
Leu Ala Phe Gln Asp Ser Ala Ile Asp Trp Ser Arg Asp His Arg Met
115 120 125
His His Lys Tyr Ser Glu Thr Asp Ala Asp Pro His Asn Ala Thr Arg
130 135 140
Gly Phe Phe Phe Ser His Ile Gly Trp Leu Leu Val Arg Lys His Pro
145 150 155 160
Glu Leu Lys Arg Lys Gly Lys Gly Leu Asp Leu Ser Asp Leu Tyr Ala
165 170 175
Asp Pro Ile Leu Arg Phe Gln Lys Lys Tyr Tyr Leu Ile Leu Met Pro
180 185 190
Leu Thr Cys Phe Val Leu Pro Thr Val Ile Pro Val Tyr Tyr Trp Gly
195 200 205
Glu Thr Trp Thr Asn Ala Phe Phe Val Ala Ala Leu Phe Arg Tyr Ala
210 215 220
Phe Ile Leu Asn Val Thr Trp Leu Val Asn Ser Ala Ala His Lys Trp
225 230 235 240
Gly Asp Lys Pro Tyr Asp Arg Asn Ile Lys Pro Ser Glu Asn Ile Ser
245 250 255
Val Ser Met Phe Ala Leu Gly Glu Gly Phe His Asn Tyr His His Thr
260 265 270
Phe Pro Trp Asp Tyr Lys Thr Ala Glu Leu Gly Asn Asn Met Leu Asn
275 280 285
Phe Thr Thr Asn Phe Ile Asn Phe Phe Ala Lys Ile Gly Trp Ala Tyr
290 295 300
Asp Leu Lys Thr Val Ser Asp Glu Ile Val Arg Ser Arg Ala Lys Arg
305 310 315 320
Thr Gly Asp Gly Ser His His Leu Trp Gly Trp Gly Asp Lys Asp His
325 330 335
Ser Arg Glu Glu Met Ala Ala Ala Ile Arg Ile His Pro Lys Asp Asp
340 345 350
<210> 5
<211> 349
<212> PRT
<213> 瘟疫丽艳花萤(Chauliognathus lugubris)
<400> 5
Met Ala Pro Asn Ser Asn Asp Ala Thr Gly Val Leu Gln Glu Thr Asp
1 5 10 15
Asp Asp Val Ser Ser Asn Gln Val Leu Gln Gln Ile Thr Lys Ser Glu
20 25 30
Lys Ser Lys Leu Ile Ile Val Trp Ser Asn Val Met Tyr Phe Val Ile
35 40 45
Leu His Val Gly Ala Leu Tyr Gly Leu Trp Leu Leu Leu Thr Ser Ala
50 55 60
Gln Ile Trp Thr Cys Leu Trp Val Phe Ala Met Tyr Glu Phe Gly Glu
65 70 75 80
Ile Cys Ile Thr Ala Gly Val His Arg Leu Trp Ser His Arg Ser Tyr
85 90 95
Lys Ala Lys Trp Pro Leu Arg Leu Phe His Thr Met Gly Gln Thr Leu
100 105 110
Ala Phe Gln Asp Ala Val Val Asp Trp Ala Arg Asp His Arg Val His
115 120 125
His Lys Tyr Ser Glu Thr Asp Ala Asp Pro His Asn Ala Lys Arg Gly
130 135 140
Phe Phe Phe Ser His Met Gly Trp Leu Met Cys Arg Lys Ser Lys Gln
145 150 155 160
Val Lys Glu Lys Gly Lys Glu Pro Asp Ile Ser Asp Leu Tyr Ala Asp
165 170 175
Pro Ile Leu Arg Tyr Gln Lys Lys Tyr Tyr Met Leu Phe Met Pro Leu
180 185 190
Met Cys Phe Ala Phe Pro Thr Val Val Pro Leu Tyr Phe Trp Asn Glu
195 200 205
Ser Leu Lys Thr Ala Phe Phe Val Asn Ile Phe Arg Tyr Ile Phe Ser
210 215 220
Leu His Ala Thr Trp Leu Val Asn Ser Ala Ala His Leu Tyr Gly Glu
225 230 235 240
Lys Pro Tyr Asn Lys His Ile Asn Pro Ala Glu Asn Leu Ala Val Ser
245 250 255
Leu Ile Val Asn Gly Glu Arg Trp His Asn Tyr His His Thr Phe Pro
260 265 270
Trp Asp Tyr Lys Ala Gly Glu Phe Gly Arg Tyr Gly Thr Asn Leu Thr
275 280 285
Thr Val Phe Ile Asn Ala Met Ala Lys Ile Gly Leu Ala Tyr Asp Leu
290 295 300
Lys Phe Val Pro Glu Asp Val Val Lys Arg Arg Val His Lys Thr Gly
305 310 315 320
Asp Gly Ser His Ala Val Trp Gly Trp Gly Asp Lys Asp Gln Thr Val
325 330 335
Glu Glu Ile Ser Lys Thr Ile Val Ala Tyr Asn Gln Ser
340 345
<210> 6
<211> 371
<212> PRT
<213> 二化螟(Chilo supprealis)
<400> 6
Met Asp Phe Glu Ser Glu Leu Gln Asn Cys Ser Asn Lys Ser Gln Lys
1 5 10 15
Arg Asn Ile Met Ala Pro Asn Ala Ser Asp Val Asn Gly Val Leu Phe
20 25 30
Glu Asp Asp Ala Ala Thr Pro Asp Met Ala Leu Ser Asn Thr Pro Val
35 40 45
Gln Lys Ala Asp Asn Tyr Pro Lys Lys Leu Val Trp Arg Asn Ile Ile
50 55 60
Ala Phe Ala Tyr Leu His Ile Ala Ala Val Tyr Gly Gly Tyr Leu Phe
65 70 75 80
Leu Phe Ala Ala Lys Trp Gln Thr Asp Ile Phe Ala Tyr Ile Leu Tyr
85 90 95
Val Met Ser Gly Leu Gly Ile Thr Ala Gly Ala His Arg Leu Trp Ala
100 105 110
His Lys Ser Tyr Lys Ala Lys Trp Pro Leu Arg Leu Ile Leu Val Phe
115 120 125
Phe Asn Thr Leu Ala Phe Gln Asp Ser Ala Ile Asp Trp Ala Arg Asp
130 135 140
His Arg Met His His Lys Tyr Ser Glu Thr Asp Ala Asp Pro His Asn
145 150 155 160
Ala Thr Arg Gly Phe Phe Phe Ser His Ile Gly Trp Leu Leu Val Arg
165 170 175
Lys His Pro Glu Leu Lys Gln Lys Gly Lys Gly Leu Asp Leu Ser Asp
180 185 190
Leu Tyr Ala Asp Pro Ile Leu Arg Phe Gln Lys Lys Tyr Tyr Leu Ile
195 200 205
Leu Met Pro Ile Ala Cys Phe Ile Leu Pro Thr Val Ile Pro Leu Tyr
210 215 220
Tyr Trp Gly Glu Asn Trp Val Thr Ala Phe Phe Val Ala Ala Leu Phe
225 230 235 240
Arg Tyr Ala Phe Ile Leu Asn Val Thr Trp Leu Val Asn Ser Ala Ala
245 250 255
His Lys Trp Gly Asp Lys Pro Tyr Asp Lys Asn Ile Lys Pro Ser Glu
260 265 270
Asn Ile Ser Val Ser Ile Phe Ala Leu Gly Glu Gly Phe His Asn Tyr
275 280 285
His His Thr Phe Pro Trp Asp Tyr Lys Thr Ala Glu Leu Gly Asn Asn
290 295 300
Arg Leu Asn Phe Thr Thr Asn Phe Ile Asn Phe Phe Ala Lys Ile Gly
305 310 315 320
Trp Ala Tyr Asp Met Lys Thr Val Ser Asp Glu Ile Val Gln Ser Arg
325 330 335
Val Lys Arg Thr Gly Asp Gly Ser His His Leu Trp Gly Trp Gly Asp
340 345 350
Lys Asp His Cys Lys Glu Glu Val Ala Ala Ala Ile Arg Ile Asn Pro
355 360 365
Lys Asp Asp
370
<210> 7
<211> 334
<212> PRT
<213> 平行带状卷叶蛾(Choristoneura parallela)
<400> 7
Met Ala Pro Asn Val Glu Asp Met Glu Ser Asp Met Pro Glu Ser Glu
1 5 10 15
Lys Trp Glu Lys Leu Val Ala Pro Gln Ala Ala Pro Arg Lys Tyr Glu
20 25 30
Ile Ile Tyr Thr Asn Leu Leu Thr Phe Gly Tyr Gly His Ile Ala Gly
35 40 45
Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Gln Thr Val
50 55 60
Ile Leu Ala Ile Ile Leu Asn Glu Met Ala Ile Leu Gly Ile Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Ser His Arg Ser Tyr Lys Ala Ala Val Pro
85 90 95
Leu Gln Ile Ile Leu Met Ile Phe Asn Ser Leu Ala Phe Gln Asn Ser
100 105 110
Ala Ile Asn Trp Val Arg Asp His Arg Met His His Lys Tyr Ser Asp
115 120 125
Thr Asp Gly Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser His
130 135 140
Val Gly Trp Leu Leu Val Lys Lys His Pro Glu Val Lys Lys Arg Gly
145 150 155 160
Lys Met Ile Asp Met Ser Asp Ile Tyr Ser Asn Pro Val Leu Arg Phe
165 170 175
Gln Lys Lys Tyr Ala Ile Pro Phe Ile Gly Met Ile Cys Phe Val Leu
180 185 190
Pro Thr Ile Ile Pro Met Tyr Phe Trp Gly Glu Thr Leu Ser Asn Ala
195 200 205
Trp His Ile Thr Met Leu Arg Tyr Val Phe Ser Leu Asn Ser Ile Phe
210 215 220
Leu Val Asn Ser Ala Ala His Leu Tyr Gly Tyr Arg Pro Tyr Asp Lys
225 230 235 240
Asn Ile Leu Pro Ala Glu Asn Lys Ile Ala Leu Ile Ala Cys Leu Gly
245 250 255
Asp Ser Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Ala
260 265 270
Ser Glu Leu Gly Asn Ile Gly Met Asn Trp Thr Ala Gln Phe Ile Asp
275 280 285
Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Ala Ser Asp
290 295 300
Glu Asn Ile Asn Ser Arg Met Lys Arg Thr Gly Asp Gly Thr Asp Ile
305 310 315 320
Ser Gly Gln Lys Tyr Ser Cys Glu Ser Ser Glu Val Leu Gln
325 330
<210> 8
<211> 335
<212> PRT
<213> 蔷薇斜条卷叶蛾(Choristoneura rosaceana)
<400> 8
Met Ala Pro Asn Val Glu Asp Met Glu Ser Asp Leu Pro Glu Ser Glu
1 5 10 15
Glu Lys Leu Glu Lys Leu Val Ala Pro Gln Ala Ala Pro Arg Lys Tyr
20 25 30
Gln Ile Ile Tyr Thr Asn Leu Leu Thr Phe Gly Tyr Trp His Ile Ala
35 40 45
Gly Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Gln Thr
50 55 60
Ile Ile Leu Ala Leu Ile Leu Asn Glu Met Ala Ile Leu Gly Ile Thr
65 70 75 80
Ala Gly Ala His Arg Leu Trp Ala His Arg Ser Tyr Lys Ala Thr Val
85 90 95
Pro Leu Gln Ile Ile Leu Ile Ile Phe Asn Ser Leu Ser Phe Gln Asn
100 105 110
Ser Ala Ile His Trp Ile Arg Asp His Arg Met His His Lys Tyr Ser
115 120 125
Asp Thr Asp Gly Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser
130 135 140
His Val Gly Trp Leu Leu Val Lys Lys His Pro Glu Val Lys Lys Arg
145 150 155 160
Ala Lys Thr Ile Asp Met Ser Asp Ile Tyr Ser Asn Pro Ile Leu Arg
165 170 175
Phe Gln Lys Lys Tyr Ala Ile Pro Phe Ile Gly Met Ile Cys Phe Val
180 185 190
Leu Pro Thr Ile Ile Pro Met Tyr Phe Trp Gly Glu Thr Leu Ser Asn
195 200 205
Ala Trp His Ile Thr Met Leu Arg Tyr Val Phe Ser Leu Asn Ser Ile
210 215 220
Phe Leu Val Asn Ser Ala Ala His Leu Tyr Gly Tyr Arg Pro Tyr Asp
225 230 235 240
Lys Asn Ile Leu Pro Ala Glu Asn Lys Met Thr Phe Ile Ala Cys Leu
245 250 255
Gly Glu Asn Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg
260 265 270
Ala Ser Glu Leu Gly Asn Ile Gly Met Asn Trp Thr Ala Lys Phe Ile
275 280 285
Asp Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Ala Ser
290 295 300
Asp Glu Asn Ile Lys Ser Arg Met Lys Arg Thr Gly Asp Gly Thr Asp
305 310 315 320
Val Ser Gly Gln Lys Tyr Ser Cys Glu Ser Ser Glu Val Leu Gln
325 330 335
<210> 9
<211> 348
<212> PRT
<213> 苹果蠹蛾(Cydia pomonella)
<400> 9
Met Pro Pro Arg Glu Ser Lys Lys Val Ala Leu Arg Ser Tyr Glu Thr
1 5 10 15
Pro Val Ala Ser Leu Pro Pro Arg Lys Tyr Glu Ile Ile Tyr Leu Asn
20 25 30
Leu Phe Leu His Ile Ala Gly His Ile Ser Ala Val Tyr Gly Leu Tyr
35 40 45
Leu Cys Phe Thr Ala Ala Gln Trp Lys Thr Ile Phe Phe Ala Tyr Leu
50 55 60
Trp Leu Leu Met Gly Glu Leu Gly Val Val Cys Gly Ala His Arg Leu
65 70 75 80
Trp Ser His Arg Ser Phe Lys Val Lys Pro Pro Leu Glu Ile Met Leu
85 90 95
Met Leu Phe Asn Cys Ile Gly Phe Gln Asn Thr Ala Thr Asp Trp Val
100 105 110
Arg Asn His Arg Leu His His Lys His Ser Asp Thr Asp Ala Asp Pro
115 120 125
His Asn Ser Asn Arg Gly Met Leu Phe Ser His Ile Gly Trp Leu Cys
130 135 140
Val Arg Lys His Pro Asp Val Lys Glu Arg Gly Lys Thr Thr Asp Met
145 150 155 160
Ser Asp Ile Tyr Ser Asn Pro Val Leu Arg Phe Gln Lys Lys His Lys
165 170 175
Val Pro Leu Phe Gly Ala Met Cys Phe Gly Leu Pro Thr Leu Ile Pro
180 185 190
Thr Leu Trp Gly Glu Asp Ile Val Thr Ala Trp His Val Asn Leu Leu
195 200 205
Arg Phe Val Leu Asn Leu Asn Ser Ile Leu Leu Val Asn Ser Ile Ala
210 215 220
His Lys Tyr Gly Thr Arg Pro Tyr Asp Arg Thr Ile Cys Pro Arg Gln
225 230 235 240
Asn Thr Thr Cys Asn Met Met Thr Leu Gly Glu Gly Phe His Asn Tyr
245 250 255
His His Thr Phe Pro Trp Asp Tyr Arg Ser Ala Glu Leu Gly Lys Asn
260 265 270
Tyr Leu Asn Phe Thr Lys Trp Phe Ile Asp Phe Phe Ala Leu Ile Gly
275 280 285
Trp Ala Tyr Asp Leu Lys Thr Val Pro Asp Asp Met Ile Gln Arg Arg
290 295 300
Met Lys Arg Thr Gly Asp Gly Ser Asn Ser Trp Gly Trp Gly Asp Lys
305 310 315 320
Asp Met Thr Lys Glu Glu Arg Asp Ser Ala Thr Ile Ile Tyr Pro Glu
325 330 335
Lys Lys Asp Asp Ile Lys Met Ile Ser Lys Lys Asn
340 345
<210> 10
<211> 349
<212> PRT
<213> 苹果蠹蛾(Cydia pomonella)
<400> 10
Met Pro Pro Gln Gly Gln Pro Pro Ala Trp Val Leu Asp Glu Ser Asp
1 5 10 15
Ala Val Thr Glu Asp Lys Asp Val Ala Thr Pro Ala Pro Glu Ala Glu
20 25 30
Lys Arg Lys Leu Gln Ile Val Trp Arg Asn Val Thr Leu Phe Val Phe
35 40 45
Leu His Ile Gly Ala Leu Tyr Gly Gly Tyr Leu Phe Phe Thr Lys Ala
50 55 60
Met Trp Thr Thr Arg Ile Phe Thr Val Leu Leu Tyr Ile Met Ser Gly
65 70 75 80
Leu Gly Ile Thr Ala Gly Ala His Arg Leu Trp Ala His Lys Ser Tyr
85 90 95
Lys Ala Arg Leu Pro Leu Arg Leu Leu Leu Thr Leu Phe Asn Thr Ile
100 105 110
Ala Phe Gln Asp Ser Val Leu Asp Trp Ala Arg Asp His Arg Met His
115 120 125
His Lys Tyr Ser Glu Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly
130 135 140
Phe Phe Phe Ser His Val Gly Trp Leu Leu Val Arg Lys His Pro Gln
145 150 155 160
Ile Lys Ala Lys Gly His Thr Ile Asp Met Ser Asp Leu Leu Ala Asp
165 170 175
Pro Val Leu Arg Phe Gln Lys Lys Tyr Tyr Leu Thr Leu Met Pro Leu
180 185 190
Cys Cys Phe Ile Leu Pro Ser Tyr Ile Pro Thr Leu Trp Gly Glu Ser
195 200 205
Leu Trp Asn Ala Tyr Phe Val Cys Ala Ile Phe Arg Tyr Cys Tyr Val
210 215 220
Leu Asn Val Thr Trp Leu Val Asn Ser Ala Ala His Lys Trp Gly Asp
225 230 235 240
Arg Pro Tyr Asp Lys Asn Ile Asn Pro Val Glu Thr Lys Pro Val Ser
245 250 255
Leu Val Val Phe Gly Glu Gly Phe His Asn Tyr His His Thr Phe Pro
260 265 270
Trp Asp Tyr Lys Thr Ala Glu Leu Gly Gly Tyr Ser Leu Asn Leu Ser
275 280 285
Lys Leu Phe Ile Asp Thr Met Ser Lys Ile Gly Trp Ala Tyr Asp Leu
290 295 300
Lys Ser Val Ser Pro Asp Ile Val Glu Lys Arg Val Lys Arg Thr Gly
305 310 315 320
Asp Gly Ser His His Val Trp Gly Trp Asp Asp Ala Pro Ser Glu Gln
325 330 335
Lys Val Ala Ala Thr Ile Val Asn Pro Asp Lys Thr Glu
340 345
<210> 11
<211> 334
<212> PRT
<213> 苹果蠹蛾(Cydia pomonella)
<400> 11
Met Ala Pro Tyr Ser Glu Glu Tyr Glu Ile Leu Lys Glu Asn Thr Lys
1 5 10 15
Pro Val Ser Pro Gln Ala Ala Pro Arg Glu Tyr Thr Val Val Tyr Ser
20 25 30
Val Val Leu Ile Phe Val Tyr Trp His Ile Gly Ala Leu Tyr Gly Leu
35 40 45
Tyr Leu Gly Phe Thr Ser Ala Lys Trp Ala Thr Ile Ile Phe Asn Tyr
50 55 60
Leu Ile Tyr Val Ser Gly Gly Phe Ala Ile Thr Ala Gly Ser His Arg
65 70 75 80
Leu Trp Ser His Arg Ala Phe Lys Ala Lys Leu Pro Leu Gln Ile Leu
85 90 95
Leu Met Leu Leu Gln Thr Met Ser Cys Gln Lys Ser Val Leu Asn Trp
100 105 110
Val Arg Asp His Arg Leu His His Met Tyr Cys Asp Thr Asp Ala Asp
115 120 125
Pro Tyr Asn Ser Thr Arg Gly Ile Phe Tyr Ser His Ile Gly Trp Leu
130 135 140
Met Val Lys Lys His Pro Glu Val Ile Arg Lys Gly Arg Thr Ile Asp
145 150 155 160
Met Ser Asp Leu Glu Asn Asn Pro Val Leu Lys Phe Gln Lys Lys Phe
165 170 175
Tyr Pro Ile Leu Val Thr Leu Met Ala Phe Ile Leu Pro Ala Leu Ile
180 185 190
Pro Val Ile Phe Trp Gln Glu Ser Leu Asn Ile Ala His His Val Ser
195 200 205
Leu Val His Leu Val Val Gly Ser His Met Thr Phe Ala Ile Asn Ser
210 215 220
Ile Ala His Ala Phe Gly Ser Lys Pro Cys Asp Lys Thr Ile Ser Pro
225 230 235 240
Thr Gln Ser Ile Ser Leu Ser Leu Val Thr Phe Gly Glu Gly Tyr His
245 250 255
Asn Tyr His His Val Phe Pro Phe Asp Tyr Arg Val Ala Glu Leu Gly
260 265 270
Asn Asn Tyr Leu Asn Leu Thr Thr Asn Phe Ile Asp Phe Phe Ala Trp
275 280 285
Ile Gly Trp Ala Tyr Asp Leu Lys Tyr Ala Ser Pro Asp Met Val Ala
290 295 300
Lys Arg Ala Lys Arg Thr Gly Asp Gly Thr Asp Leu Trp Gly Arg Ala
305 310 315 320
Ile Glu His Ala Asp Ile Gln Ala Lys Arg Val His Pro Ser
325 330
<210> 12
<211> 352
<212> PRT
<213> 马尾松毛虫(Dendrolimus punctatus)
<400> 12
Met Ala Pro Lys Glu Ala Asp Val Asn Gly Val Leu Phe Glu Ser Asp
1 5 10 15
Ala Thr Thr Pro Asp Met Ala Leu Pro Thr Thr Pro Val Gln Gln Ala
20 25 30
Asp Asn Tyr Pro Lys Lys Leu Val Trp Arg Asn Ile Leu Leu Phe Ala
35 40 45
Tyr Leu His Leu Ala Ala Leu Tyr Gly Gly Tyr Leu Phe Leu Phe Ser
50 55 60
Ala Lys Trp Gln Thr Asp Ile Phe Ala Tyr Ile Leu Tyr Ile Met Ser
65 70 75 80
Gly Leu Gly Ile Thr Ala Gly Ala His Arg Leu Trp Ala His Lys Ser
85 90 95
Tyr Lys Ala Lys Trp Pro Leu Arg Leu Ile Leu Val Leu Phe Asn Thr
100 105 110
Leu Ala Phe Gln Asp Ser Ala Ile Asp Trp Ala Arg Asp His Arg Met
115 120 125
His His Lys Tyr Ser Glu Thr Asp Ala Asp Pro His Asn Ala Thr Arg
130 135 140
Gly Phe Phe Phe Ser His Ile Gly Trp Leu Leu Val Arg Lys His Pro
145 150 155 160
Glu Leu Lys Lys Lys Gly Lys Gly Leu Asp Ile Ser Asp Leu Tyr Ala
165 170 175
Asp Pro Ile Leu Arg Phe Gln Lys Lys Tyr Tyr Leu Leu Leu Met Pro
180 185 190
Leu Gly Cys Phe Ile Leu Pro Thr Val Ile Pro Val Tyr Leu Trp Asn
195 200 205
Glu Thr Trp Ser Asn Ala Phe Leu Val Ala Ala Leu Phe Arg Tyr Ala
210 215 220
Val Ile Leu Asn Val Thr Trp Leu Val Asn Ser Ala Ala His Lys Trp
225 230 235 240
Gly Asp Lys Pro Tyr Asp Lys Ser Ile Lys Pro Ser Glu Asn Leu Ser
245 250 255
Val Ala Leu Phe Ala Leu Gly Glu Gly Phe His Asn Tyr His His Thr
260 265 270
Phe Pro Trp Asp Tyr Lys Thr Ala Glu Leu Gly Asn Asn Arg Leu Asn
275 280 285
Phe Thr Thr Thr Phe Ile Asn Phe Phe Ala Lys Ile Gly Trp Ala Tyr
290 295 300
Asp Met Lys Thr Val Ser Asp Glu Ile Ile Gln Asn Arg Val Lys Arg
305 310 315 320
Thr Gly Asp Gly Ser His His Leu Trp Gly Trp Gly Asp Lys Asp His
325 330 335
Ser Lys Glu Glu Ile Asn Ala Ala Ile Arg Ile Asn Pro Lys Asp Asp
340 345 350
<210> 13
<211> 416
<212> PRT
<213> Drosophila grimshawi
<400> 13
Met Phe Ser Glu Tyr Tyr Val Tyr Arg Arg Lys Leu Leu Gly Ile Ser
1 5 10 15
Ser Val Gln Ile Ala Arg Gln Ile Asp Arg Leu Ile Lys Pro Ser Thr
20 25 30
Leu Lys Met Pro Pro Asn Ala Ile Ser Ser Pro Pro Asp Ala Leu Pro
35 40 45
Thr Cys Pro Glu Asp Gln Val Leu Ser Gly Ser Gln Ser Gly Ala Gly
50 55 60
Gly Ala Ser Lys Gln Thr Gly Val Leu Phe Glu Ala Asp Ala Asp Thr
65 70 75 80
Asn Asp Gly Gly Leu Thr Met Asp Ile Thr Gln Phe Lys Asn Ala Glu
85 90 95
Lys Arg Lys Leu Lys Trp Val Trp Arg Asn Ile Val Leu Phe Ala Tyr
100 105 110
Val His Val Ala Ala Leu Tyr Gly Gly Tyr Leu Leu Val Thr Gln Ala
115 120 125
Lys Trp Ala Thr Ile Val Phe Ser Met Phe Leu Tyr Ser Ala Gly Met
130 135 140
Ile Gly Ile Thr Gly Gly Ala His Arg Leu Trp Ala His Arg Ser Tyr
145 150 155 160
Lys Ala Lys Trp Pro Leu Arg Val Ile Leu Val Ala Phe Asn Ser Ile
165 170 175
Ala Phe Gln Asp Ala Ala Tyr His Trp Ala Arg Asp His Arg Val His
180 185 190
His Lys Phe Ser Glu Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly
195 200 205
Phe Phe Phe Ser His Val Gly Trp Leu Leu Cys Lys Lys His Pro Asp
210 215 220
Val Val Ala Lys Gly Lys Ser Leu Asp Leu Ser Asp Leu Arg Ala Asp
225 230 235 240
Arg Val Leu Met Phe Gln Lys Lys His Tyr Phe Val Leu Met Pro Leu
245 250 255
Ala Cys Phe Ile Leu Pro Thr Cys Ile Pro Met Leu Cys Trp Asn Glu
260 265 270
Ser Leu Leu Cys Ser Val Leu Val Pro Thr Ile Phe Arg Trp Cys Leu
275 280 285
Gln Leu Asn Met Thr Trp Leu Val Asn Ser Ala Ala His Lys Phe Gly
290 295 300
Gly Arg Pro Tyr Asp Lys Asn Ile Asn Pro Ser Gln Ser Pro Tyr Val
305 310 315 320
Ser Leu Phe Thr Leu Gly Glu Gly Trp His Asn Tyr His His Val Phe
325 330 335
Pro Trp Asp Tyr Lys Thr Ala Glu Trp Gly Asn Tyr Ser Leu Asn Met
340 345 350
Thr Thr Ala Phe Ile Asp Leu Phe Ala Lys Ile Gly Trp Ala Tyr Asp
355 360 365
Leu Lys Ser Val Val Pro Glu Thr Val Glu Arg Arg Val Arg Arg Thr
370 375 380
Gly Asp Gly Ser His Glu Leu Trp Gly Trp Gly Asp Lys Asp Leu Thr
385 390 395 400
Pro Glu Asp Gly Gln Ser Val Leu His Val Leu Asp Lys Lys Ser Asn
405 410 415
<210> 14
<211> 361
<212> PRT
<213> 黑腹果蝇(Drosophila melanogaster)
<400> 14
Met Ala Pro Tyr Ser Arg Ile Tyr His Gln Asp Lys Ser Ser Arg Glu
1 5 10 15
Thr Gly Val Leu Phe Glu Asp Asp Ala Gln Thr Val Asp Ser Asp Leu
20 25 30
Thr Thr Asp Arg Phe Gln Leu Lys Arg Ala Glu Lys Arg Arg Leu Pro
35 40 45
Leu Val Trp Arg Asn Ile Ile Leu Phe Ala Leu Val His Leu Ala Ala
50 55 60
Leu Tyr Gly Leu His Ser Ile Phe Thr Arg Ala Lys Leu Ala Thr Thr
65 70 75 80
Leu Phe Ala Ala Gly Leu Tyr Ile Ile Gly Met Leu Gly Val Thr Ala
85 90 95
Gly Ala His Arg Leu Trp Ala His Arg Thr Tyr Lys Ala Lys Trp Pro
100 105 110
Leu Arg Leu Leu Leu Val Ile Phe Asn Thr Ile Ala Phe Gln Asp Ala
115 120 125
Val Tyr His Trp Ala Arg Asp His Arg Val His His Lys Tyr Ser Glu
130 135 140
Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Phe Ser His
145 150 155 160
Val Gly Trp Leu Leu Cys Lys Lys His Pro Asp Ile Lys Glu Lys Gly
165 170 175
Arg Gly Leu Asp Leu Ser Asp Leu Arg Ala Asp Pro Ile Leu Met Phe
180 185 190
Gln Arg Lys His Tyr Tyr Ile Leu Met Pro Leu Ala Cys Phe Val Leu
195 200 205
Pro Thr Val Ile Pro Met Val Tyr Trp Asn Glu Thr Leu Ala Ser Ser
210 215 220
Trp Phe Val Ala Thr Met Phe Arg Trp Cys Phe Gln Leu Asn Met Thr
225 230 235 240
Trp Leu Val Asn Ser Ala Ala His Lys Phe Gly Asn Arg Pro Tyr Asp
245 250 255
Lys Thr Met Asn Pro Thr Gln Asn Ala Phe Val Ser Ala Phe Thr Phe
260 265 270
Gly Glu Gly Trp His Asn Tyr His His Ala Phe Pro Trp Asp Tyr Lys
275 280 285
Thr Ala Glu Trp Gly Cys Tyr Ser Leu Asn Ile Thr Thr Ala Phe Ile
290 295 300
Asp Leu Phe Ala Lys Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ala
305 310 315 320
Pro Asp Val Ile Gln Arg Arg Val Leu Arg Thr Gly Asp Gly Ser His
325 330 335
Glu Leu Trp Gly Trp Gly Asp Lys Asp Leu Thr Ala Glu Asp Ala Arg
340 345 350
Asn Val Leu Leu Val Asp Lys Ser Arg
355 360
<210> 15
<211> 381
<212> PRT
<213> 大果蝇(Drosophila virilis)
<400> 15
Met Pro Pro Asn Ala Ile Thr Ser Pro Ser Asn Val Leu Ala Thr Cys
1 5 10 15
Pro Glu Val Glu Gln Leu Pro Ser Gly Glu Cys Ala Ser Thr Ala Ser
20 25 30
Ser Lys Gln Thr Gly Val Leu Phe Glu Gly Asp Ala Asp Thr Ala Asp
35 40 45
Cys Ala Leu Asp Val Asp Val Lys Lys Leu Lys Lys Ala Glu Lys Arg
50 55 60
Lys Leu Lys Leu Val Trp Arg Asn Ile Met Leu Phe Gly Tyr Leu His
65 70 75 80
Leu Ala Ala Val Tyr Gly Gly Tyr Leu Met Leu Thr Gln Ala Lys Trp
85 90 95
Ala Thr Val Val Phe Ser Phe Phe Leu Tyr Thr Ala Gly Met Ile Gly
100 105 110
Ile Thr Gly Gly Ala His Arg Leu Trp Ala His Arg Ser Tyr Lys Ala
115 120 125
Lys Trp Pro Leu Arg Val Ile Leu Val Thr Phe Asn Thr Ile Ala Phe
130 135 140
Gln Asp Ala Ala Phe His Trp Ala Arg Asp His Arg Val His His Lys
145 150 155 160
Phe Ser Glu Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe
165 170 175
Phe Ser His Val Gly Trp Leu Leu Cys Lys Lys His Pro Asp Val Val
180 185 190
Ala Lys Gly Lys Ser Leu Asp Val Thr Asp Leu Arg Ala Asp Arg Ile
195 200 205
Leu Met Phe Gln Leu Lys His Tyr Phe Val Leu Met Pro Leu Ala Cys
210 215 220
Phe Ile Leu Pro Thr Ile Ile Pro Met Ile Cys Trp Asn Glu Ser Leu
225 230 235 240
Leu Cys Ser Trp Phe Val Ala Thr Met Phe Arg Trp Cys Phe Gln Leu
245 250 255
Asn Met Thr Trp Leu Val Asn Ser Ala Ala His Lys Phe Gly Gly Arg
260 265 270
Pro Tyr Asp Lys Asn Ile Asn Pro Ser Gln Ser Pro Tyr Val Ser Ala
275 280 285
Phe Thr Phe Gly Glu Gly Trp His Asn Tyr His His Val Phe Pro Trp
290 295 300
Asp Tyr Lys Thr Ala Glu Trp Gly Arg Tyr Ser Leu Asn Met Thr Thr
305 310 315 320
Ala Phe Ile Asp Phe Phe Ala Lys Ile Gly Trp Ala Tyr Glu Leu Lys
325 330 335
Ser Val Ala Pro Glu Thr Ile Glu Arg Arg Val Arg Arg Thr Gly Asp
340 345 350
Gly Thr His Glu Leu Trp Gly Trp Gly Asp Lys Asp Leu Thr Ala Glu
355 360 365
Asp Ala Gln His Val Leu Phe Val Asp Lys Lys Ala Ala
370 375 380
<210> 16
<211> 332
<212> PRT
<213> 苹淡褐卷蛾(Epiphyas postvittana)
<400> 16
Met Ala Pro Asn Val Glu Glu Ile Glu Thr Asp Leu Thr Glu Thr Glu
1 5 10 15
Glu Lys Trp Glu Lys Leu Val Ala Pro Gln Ala Ala Pro Arg Lys His
20 25 30
Glu Ile Leu Tyr Thr Asn Leu Leu Ile Phe Gly Tyr Gly His Leu Ala
35 40 45
Gly Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Arg Leu Gln Thr
50 55 60
Ile Ile Leu Ala Phe Ile Leu His Ala Met Ala Ile Leu Gly Ile Thr
65 70 75 80
Ala Gly Ala His Arg Leu Trp Thr His Arg Ser Tyr Lys Ala Thr Met
85 90 95
Pro Leu Gln Ile Ile Leu Ile Ile Phe Asn Ser Leu Ser Phe Gln Asn
100 105 110
Ser Ala Ile Asn Trp Val Arg Asp His Arg Ser His His Lys Tyr Cys
115 120 125
Asp Thr Asp Ala Asp Pro His Asn Ala Ala Arg Gly Leu Phe Tyr Ser
130 135 140
His Ile Gly Trp Leu Leu Val Lys Lys His Pro Glu Val Lys Lys Arg
145 150 155 160
Gly Lys Met Thr Asp Met Ser Asp Val Tyr Arg Asn Pro Val Leu Arg
165 170 175
Phe Gln Lys Lys Tyr Ala Val Pro Phe Ile Gly Thr Ile Cys Phe Val
180 185 190
Leu Pro Thr Ile Ile Pro Met Tyr Phe Trp Gly Glu Ser Leu Asn Asn
195 200 205
Ala Trp His Ile Thr Leu Leu Arg Tyr Ile Phe Ser Met His Thr Ile
210 215 220
Phe Leu Val Asn Ser Val Ala His Leu Trp Gly Asn Arg Pro Tyr Asp
225 230 235 240
Lys Asn Ile Leu Pro Ala Asp Asn Arg Thr Leu Ser Ile Ala Thr Leu
245 250 255
Gly Glu Ala Ser His Asn Tyr His His Thr Phe Pro Trp Asp Tyr Arg
260 265 270
Ser Thr Glu Leu Gly Tyr Leu Pro Thr Asn Phe Thr Thr Asn Phe Ile
275 280 285
Asp Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Thr Ser
290 295 300
Gly Glu Ile Ile Asn Ser Arg Ile Gln Arg Thr Gly Asp Gly Thr His
305 310 315 320
Ser Arg Ser Lys Lys Asn Ile Ser Thr Gln Asp Glu
325 330
<210> 17
<211> 346
<212> PRT
<213> 梨小食心虫(Grapholita molesta)
<400> 17
Met Pro Pro Glu Ser Lys Asn Val Pro Ile Gln Gln Asn Phe Arg Lys
1 5 10 15
Pro Leu Glu Phe Leu Pro Arg Lys Tyr Asp Val Val Tyr Glu Asn Val
20 25 30
Phe Leu His Ile Ala Gly His Ile Ser Ala Ala Tyr Gly Leu Tyr Leu
35 40 45
Cys Phe Thr Val Ala Lys Trp Gln Thr Ile Ala Leu Ala Phe Val Trp
50 55 60
Tyr His Leu Gly Lys Ile Gly Ile Ile Cys Gly Ala His Arg Leu Trp
65 70 75 80
Ser His Arg Cys Tyr Lys Ala Lys Met Pro Leu His Ile Ile Leu Met
85 90 95
Ile Cys Asn Cys Ile Gly Phe Glu Asn Thr Ala Ile Asn Trp Val Arg
100 105 110
Asn His Arg Met His His Lys His Ser Asp Thr Asp Gly Asp Pro His
115 120 125
Asn Ser Asn Arg Gly Ala Phe Phe Ser His Ile Gly Trp Leu Cys Val
130 135 140
Arg Lys His Pro Glu Thr Arg Asn Cys Lys Val Asp Met Ser Asp Ile
145 150 155 160
Tyr Ser Asn Pro Val Leu Val Phe Gln Lys Arg Tyr Lys Tyr Pro Leu
165 170 175
Val Gly Phe Leu Cys Tyr Gly Leu Pro Thr Phe Ile Pro Met Tyr Phe
180 185 190
Trp Gly Glu Thr Leu Val Thr Ala Trp His Val Asn Ile Leu Arg Tyr
195 200 205
Phe Leu Ser Met Asn Ala Val Phe Leu Val Asn Ser Leu Ala His Leu
210 215 220
Tyr Gly Asn Lys Pro Tyr Asp Ile Ser Ile Cys Pro Arg Gln Ser Pro
225 230 235 240
Phe Val Ser Leu Leu Thr Ile Gly Glu Gly Phe His Asn Tyr His His
245 250 255
Thr Phe Pro Trp Asp Tyr Arg Ala Ala Glu Leu Gly Asn Asn Tyr Leu
260 265 270
Asn Val Gly Lys Trp Val Ile Asp Phe Phe Ala Met Ile Gly Trp Ala
275 280 285
Tyr Asp Leu Lys Thr Val Pro Asp Glu Thr Ile Lys Arg Arg Met Lys
290 295 300
Arg Thr Gly Asp Gly Thr Asn Cys Trp Gly Trp Gly Asp Lys Asp Met
305 310 315 320
Thr Arg Glu Asp Arg Asp Ile Ala Lys Ile Ile Tyr Pro Glu Ser Ile
325 330 335
Ser Lys Glu Glu Arg Asp Ile Ile Ala Met
340 345
<210> 18
<211> 341
<212> PRT
<213> 梨小食心虫(Grapholita molesta)
<400> 18
Met Thr Pro Asp Ala Arg Glu Glu Thr Leu Leu Glu Asp Asp Gly Tyr
1 5 10 15
Val Arg Leu Val Ala Pro Gln Ala Ser Ser Gly Lys Gln Glu Ala Ser
20 25 30
Tyr Leu Asn Ile Ala Met Tyr Ser Phe Phe His Thr Ala Gly Ala Tyr
35 40 45
Gly Leu Tyr Leu Ala Ala Thr Glu Ala Lys Trp Ala Thr Ile Phe Leu
50 55 60
Ala Phe Ile Leu His Glu Ala Ala Ile Leu Gly Val Thr Ala Gly Ala
65 70 75 80
His Arg Leu Trp Ala His Arg Thr Tyr Lys Ala Lys Leu Pro Leu Gln
85 90 95
Ile Phe Leu Met Leu Leu His Ser Phe Ala Cys Arg Tyr Ser Ala Phe
100 105 110
His Trp Ala Arg Asp His Arg Leu His His Lys Tyr Ser Asp Thr Asp
115 120 125
Gly Asp Pro His Asn Ala Ser Arg Gly Leu Phe Phe Ser His Ile Gly
130 135 140
Trp Leu Met Phe Lys Lys His Pro Glu Ala Lys Lys Arg Met Gly Lys
145 150 155 160
Ile Asp Val Ser Asp Leu Lys Ala Asn Lys Val Leu Met Phe Gln Lys
165 170 175
Lys Tyr Ser Ile Pro Phe Ile Gly Thr Ile Cys Phe Ile Leu Pro Thr
180 185 190
Leu Ile Pro Met Tyr Phe Trp Asp Glu Thr Phe Ser Ser Ala Phe Phe
195 200 205
Val Thr Val Leu Arg Val Ile Val Ser Leu His Val Thr Phe Leu Val
210 215 220
Asn Ser Phe Ala His Ala Phe Gly Asn Arg Pro Tyr Asp Arg Tyr Ile
225 230 235 240
Lys Pro Ser Gln Ser Ile Pro Ile Ser Leu Ala Thr Leu Gly Glu Gly
245 250 255
Tyr His Asn Tyr His His Ala Phe Pro Trp Asp Tyr Lys Ala Ser Glu
260 265 270
Phe Gly Asn Thr Ile Gly Asn Phe Thr Thr Met Val Ile Asn Phe Phe
275 280 285
Ala Trp Leu Gly Trp Ala Tyr Asp Leu Lys Ser Val Gly Ala Asp Met
290 295 300
Ile Ala Lys Lys Lys Glu Lys Thr Gly Asp Gly Thr Asn Leu Trp Gly
305 310 315 320
Trp Gly Asp Lys Asp Met Ser Lys Glu His Lys Glu Ile Ala Asn Val
325 330 335
Thr Tyr Lys Glu Lys
340
<210> 19
<211> 338
<212> PRT
<213> 谷实夜蛾(Helicoverpa zea)
<400> 19
Met Ala Gln Ser Tyr Gln Ser Thr Thr Val Leu Ser Glu Glu Lys Glu
1 5 10 15
Leu Thr Leu Gln His Leu Val Pro Gln Ala Ser Pro Arg Lys Tyr Gln
20 25 30
Ile Val Tyr Pro Asn Leu Ile Thr Phe Gly Tyr Trp His Ile Ala Gly
35 40 45
Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Ala Thr Ile
50 55 60
Leu Phe Ser Tyr Ile Leu Phe Val Leu Ala Glu Ile Gly Ile Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Ala His Lys Thr Tyr Lys Ala Lys Leu Pro
85 90 95
Leu Glu Ile Leu Leu Met Val Phe Asn Ser Ile Ala Phe Gln Asn Ser
100 105 110
Ala Ile Asp Trp Val Arg Asp His Arg Leu His His Lys Tyr Ser Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser His
130 135 140
Val Gly Trp Leu Leu Val Arg Lys His Pro Glu Val Lys Lys Arg Gly
145 150 155 160
Lys Glu Leu Asn Met Ser Asp Ile Tyr Asn Asn Pro Val Leu Arg Phe
165 170 175
Gln Lys Lys Tyr Ala Ile Pro Phe Ile Gly Ala Val Cys Phe Ala Leu
180 185 190
Pro Thr Met Ile Pro Val Tyr Phe Trp Gly Glu Thr Trp Ser Asn Ala
195 200 205
Trp His Ile Thr Met Leu Arg Tyr Ile Met Asn Leu Asn Val Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Ile Trp Gly Asn Lys Pro Tyr Asp Ala
225 230 235 240
Lys Ile Leu Pro Ala Gln Asn Val Ala Val Ser Val Ala Thr Gly Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Ala
260 265 270
Ala Glu Leu Gly Asn Asn Ser Leu Asn Leu Thr Thr Lys Phe Ile Asp
275 280 285
Leu Phe Ala Ala Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ser Glu
290 295 300
Asp Met Ile Lys Gln Arg Ile Lys Arg Thr Gly Asp Gly Thr Asp Leu
305 310 315 320
Trp Gly His Glu Gln Asn Cys Asp Glu Val Trp Asp Val Lys Asp Lys
325 330 335
Ser Ser
<210> 20
<211> 337
<212> PRT
<213> 葡萄花翅小卷蛾(Lobesia botrana)
<400> 20
Met Val Pro Arg Ala Ala Ser Glu Glu Thr Asp Leu Lys Glu Ala Thr
1 5 10 15
Gln Leu Glu Pro Arg Lys Tyr Glu Ile Val Tyr Thr Asn Val Ile Tyr
20 25 30
Phe Thr Tyr Trp His Ile Ala Gly Leu Tyr Gly Leu Tyr Leu Cys Phe
35 40 45
Thr Ser Ala Lys Trp Glu Thr Ile Val Phe Ala Trp Ala Trp Tyr Val
50 55 60
Leu Gly Glu Leu Gly Val Ile Ala Gly Ala His Arg Leu Trp Ala His
65 70 75 80
Arg Thr Tyr Lys Ala Lys Met Pro Leu Gln Ile Ile Leu Met Leu Phe
85 90 95
Asn Cys Ile Gly Phe Gln Asn Thr Ala Thr Asp Trp Val Arg Asp His
100 105 110
Arg Val His His Lys His Ser Asp Thr Asp Ala Asp Pro His Asn Ser
115 120 125
Gln Arg Gly Phe Phe Phe Ser His Val Gly Trp Leu Leu Thr Arg Lys
130 135 140
His Arg Leu Val Lys Glu Lys Gly Glu Ala Val Asp Met Thr Asp Ile
145 150 155 160
Tyr Ser Asn Pro Val Leu Arg Phe Gln Lys Lys Tyr Ser Leu Pro Leu
165 170 175
Ile Gly Thr Leu Cys Phe Ala Leu Pro Thr Leu Leu Pro Ala Tyr Cys
180 185 190
Trp Gly Glu Ala Val Gly Thr Ala Trp Asn Ile Asn Leu Leu Arg Tyr
195 200 205
Cys Leu Asn Leu Asn Gly Thr Phe Leu Thr Asn Ser Ala Ala His Lys
210 215 220
Phe Gly Ser Lys Pro Tyr Asp Lys Thr Ile Pro Pro Thr Gln Asn Leu
225 230 235 240
Leu Val Ser Phe Met Thr Leu Gly Glu Gly Phe His Asn Tyr His His
245 250 255
Val Phe Ser Trp Asp Tyr Arg Ala Ala Glu Leu Gly Asn Thr Tyr Leu
260 265 270
Asn Met Thr Thr Ile Phe Ile Asp Phe Phe Ala Leu Ile Gly Trp Ala
275 280 285
Tyr Asp Leu Lys Thr Val Pro Glu Asp Val Ile Lys Lys Arg Met Ala
290 295 300
Arg Thr Gly Asp Gly Thr Asn Leu Trp Gly Trp Gly Asp Lys Asp Met
305 310 315 320
Thr Lys Glu Asp Val Val Asp Thr Glu Ile Arg Phe His Ala Lys Lys
325 330 335
Glu
<210> 21
<211> 352
<212> PRT
<213> 葡萄花翅小卷蛾(Lobesia botrana)
<400> 21
Met Pro Pro Asn Val Thr Asp Val Asn Gly Val Leu Phe Glu Ser Asp
1 5 10 15
Ala Ala Thr Pro Asp Leu Ala Leu Ala Thr Pro Pro Val Gln Lys Ala
20 25 30
Asp Asn Thr Pro Arg Val Tyr Val Trp Arg Asn Ile Ile Leu Phe Gly
35 40 45
Tyr Leu His Ile Ala Ala Leu Tyr Gly Gly Tyr Leu Phe Leu Val Ser
50 55 60
Ala Lys Trp Gln Thr Asp Ile Phe Ala Tyr Leu Leu Tyr Val Ala Ser
65 70 75 80
Gly Leu Gly Ile Thr Ala Gly Ala His Arg Leu Trp Ala His Lys Ser
85 90 95
Tyr Lys Ala Lys Trp Pro Leu Arg Val Ile Leu Thr Ile Phe Asn Thr
100 105 110
Ile Ala Phe Gln Asp Ser Ala Ile Asp Trp Ala Arg Asp His Arg Met
115 120 125
His His Lys Tyr Ser Glu Thr Asp Ala Asp Pro His Asn Ala Thr Arg
130 135 140
Gly Phe Phe Phe Ser His Ile Gly Trp Leu Leu Val Arg Lys His Pro
145 150 155 160
Glu Leu Lys Arg Lys Gly Lys Gly Leu Asp Leu Ser Asp Leu Tyr Ala
165 170 175
Asp Pro Ile Leu Arg Phe Gln Lys Lys Tyr Tyr Leu Ile Leu Met Pro
180 185 190
Leu Ala Cys Phe Ile Met Pro Thr Leu Ile Pro Val Tyr Phe Trp Gly
195 200 205
Glu Thr Trp Thr Asn Ala Phe Phe Val Ala Ala Leu Phe Arg Tyr Ala
210 215 220
Phe Ile Leu Asn Ile Thr Trp Leu Val Asn Ser Ala Ala His Lys Trp
225 230 235 240
Gly Asp Lys Pro Tyr Asp Lys Thr Ile Lys Pro Ser Glu Asn Leu Ser
245 250 255
Val Ser Leu Phe Ala Phe Gly Glu Gly Phe His Asn Tyr His His Thr
260 265 270
Phe Pro Trp Asp Tyr Lys Thr Ala Glu Leu Gly Asn His Arg Leu Asn
275 280 285
Phe Thr Thr Lys Phe Ile Asn Phe Phe Ala Lys Leu Gly Trp Ala Tyr
290 295 300
Asp Met Lys Thr Val Ser Asp Glu Ile Val Gln Lys Arg Val Gln Arg
305 310 315 320
Thr Gly Asp Gly Ser His His Leu Trp Gly Trp Gly Asp Lys Asp Gln
325 330 335
Ser Lys Asp Glu Val Asp Ala Ala Ile Arg Ile Asn Pro Lys Asp Asp
340 345 350
<210> 22
<211> 341
<212> PRT
<213> 烟草天蛾(Manducta sexta)
<400> 22
Met Ala Pro Asn Phe Gly Asn Glu Val Ser Ser Pro Ile Val Ala Glu
1 5 10 15
Glu Ser Tyr Glu Lys Leu Ile Pro Pro Gln Ala Ala Pro Arg Lys Tyr
20 25 30
Lys Tyr Leu Tyr Ala Asn Met Ile Tyr Phe Thr Tyr Trp His Ile Ala
35 40 45
Gly Leu Tyr Gly Ile Tyr Leu Ala Ile Thr Thr Ala Lys Trp Ala Thr
50 55 60
Ile Ile Leu Ala Tyr Leu Leu Phe Val Ala Gly Glu Ile Gly Ile Thr
65 70 75 80
Ala Gly Ala His Arg Leu Trp Ala His Lys Ser Tyr Lys Ala Lys Leu
85 90 95
Pro Leu Gln Ile Leu Leu Met Leu Phe Asn Ser Thr Ala Phe Gln Asn
100 105 110
Ser Val Ile Thr Trp Val Lys Asp His Arg Met His His Lys Tyr Ser
115 120 125
Asp Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Tyr Ser
130 135 140
His Val Gly Trp Leu Met Val Lys Arg His Pro Glu Ala Ile Lys Arg
145 150 155 160
Gly Lys Ser Leu Asp Met Ser Asp Ile Tyr Asn Asn Pro Val Leu Lys
165 170 175
Phe Gln Lys Lys Tyr Ala Ile Pro Leu Ile Thr Thr Val Ala Phe Val
180 185 190
Leu Pro Thr Ile Ile Pro Met Tyr Phe Trp Asp Glu Ser Phe Asn Val
195 200 205
Ala Trp His Met Thr Met Leu Arg Tyr Ile Ile Asn Leu Asn Thr Ile
210 215 220
Phe Leu Val Asn Ser Val Ala His Met Trp Gly Tyr Lys Pro Tyr Asp
225 230 235 240
Lys Asn Ile Ala Pro Thr Gln Asn Tyr Ile Ala Thr Phe Ala Thr Leu
245 250 255
Gly Glu Gly Phe His Asn Tyr His His Ala Phe Pro Trp Asp Tyr Arg
260 265 270
Ala Ser Glu Leu Gly Asn Asn Tyr Leu Asn Leu Thr Thr Lys Phe Ile
275 280 285
Asp Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Pro
290 295 300
Glu Asp Leu Leu Gln Lys Arg Met Glu Arg Thr Gly Asp Gly Thr Asn
305 310 315 320
Leu Trp Gly Arg Gly Asp Lys Asn Met Lys Lys Asp Tyr Val Lys Ser
325 330 335
Thr Asp Val His Glu
340
<210> 23
<211> 329
<212> PRT
<213> 欧洲玉米螟(Ostrinia nubilalis)
<400> 23
Met Val Pro Tyr Ala Thr Thr Ala Asp Gly His Pro Glu Lys Asp Glu
1 5 10 15
Cys Phe Glu Asp Asn Glu Ile Lys Ser Asn Ser Leu Pro Lys Leu Glu
20 25 30
Ile Leu Tyr Phe Asn Val Met Thr Phe Thr Phe Leu His Leu Ser Ala
35 40 45
Leu Tyr Gly Leu Tyr Leu Gly Phe Thr Ser Val Lys Trp Ala Thr Ile
50 55 60
Gly Leu Gly Ile Ile Phe Tyr Phe Phe Ala Glu Ile Gly Ile Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Ser His Arg Ser Tyr Lys Ala Lys Leu Pro
85 90 95
Leu Glu Ile Leu Leu Met Val Phe Asn Ser Met Ala Phe Gln Asn Thr
100 105 110
Ala Leu Ser Trp Ala Arg Asp His Arg Val His His Lys Cys Pro Asp
115 120 125
Thr Asn Gly Asp Pro His Asn Ala Asn Arg Gly Phe Phe Tyr Ser His
130 135 140
Val Gly Trp Leu Met Thr Lys Lys Ser Asp Glu Val Ile Lys Gln Gly
145 150 155 160
Lys Leu Cys Asp Val Ala Asp Leu Tyr Ser Asn Pro Val Leu Arg Phe
165 170 175
Gln Lys Lys Tyr Ala Val Pro Phe Ile Gly Thr Leu Cys Phe Val Leu
180 185 190
Pro Thr Leu Ile Pro Met Tyr Phe Trp Gly Glu Thr Leu Asn Asn Ala
195 200 205
Trp His Phe Asn Met Phe Arg Tyr Val Ile Asn Leu Asn Ala Thr Phe
210 215 220
Cys Val Asn Ser Val Val His Lys Trp Gly Tyr Lys Pro Tyr Asp Lys
225 230 235 240
Asn Ile Cys Pro Thr Gln Asn Val Leu Leu Asn Leu Ala Val Leu Gly
245 250 255
Glu Ala Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Ala
260 265 270
Ala Glu Leu Gly Asn Gln Lys Met Asn Pro Thr Thr Leu Phe Ile Asp
275 280 285
Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Ala Ser Lys
290 295 300
Glu Met Ile Lys Ser Arg Ser Glu Arg Thr Gly Asp Gly Thr Asp Leu
305 310 315 320
Trp Gly His Ser Ala Asp Lys Leu Lys
325
<210> 24
<211> 339
<212> PRT
<213> 红铃麦蛾(Pectinophora gossypiella)
<400> 24
Met Ala Pro Asn Thr Lys Thr Ser Glu Ser Leu Leu Lys Thr Pro Glu
1 5 10 15
Asp Leu Lys Ser Ser Glu Asp Thr Lys Gln Lys Leu Val His Leu Asn
20 25 30
Leu Leu Thr Phe Gly Tyr Gly His Leu Ala Gly Leu Tyr Gly Leu Tyr
35 40 45
Leu Cys Phe Thr Ser Ala Lys Trp Pro Thr Ile Phe Leu Asn Tyr Val
50 55 60
Leu Leu Ile Ile Ser Glu Leu Gly Val Thr Ala Gly Ala His Arg Leu
65 70 75 80
Trp Ala His Lys Thr Tyr Lys Ala Lys Leu Pro Leu Gln Ile Leu Leu
85 90 95
Met Ile Phe Asn Ser Val Ala Phe Gln Asn Thr Ala Thr Asp Trp Val
100 105 110
Arg Asp His Arg Met His His Lys Tyr Ser Asp Thr Asp Ala Asp Pro
115 120 125
His Asn Ser Asn Arg Gly Phe Phe Tyr Ser His Val Gly Trp Leu Leu
130 135 140
Met Arg Lys His Pro Glu Val Lys Arg Leu Gly Lys Gly Ile Glu Met
145 150 155 160
Arg Asp Ile Tyr Ser Asn Pro Val Leu Arg Phe Gln Lys Arg Tyr Ala
165 170 175
Leu Pro Val Ile Gly Ala Ala Cys Phe Ile Leu Pro Thr Val Ile Pro
180 185 190
Val Tyr Cys Trp Gly Glu Thr Leu Ser Asn Ser Trp His Val Thr Ile
195 200 205
Phe Arg Tyr Val Val Asn Leu Asn Val Thr Phe Leu Val Asn Ser Ala
210 215 220
Ala His Ile Trp Gly Asn Lys Pro Tyr Asp Lys Thr Leu Arg Pro Ala
225 230 235 240
Gln Asn Ile Pro Val Ala Leu Leu Thr Leu Gly Glu Gly Phe His Asn
245 250 255
Tyr His His Val Phe Pro Trp Asp Tyr Arg Thr Ala Glu Leu Gly Asn
260 265 270
Asn Lys Leu Asn Val Thr Thr Phe Phe Ile Asn Phe Phe Ala Trp Ile
275 280 285
Gly Trp Ala Tyr Asp Leu Lys Thr Ala Pro Asp Asp Ile Ile Arg Lys
290 295 300
Arg Val Glu Arg Thr Gly Asp Gly Thr Asn Met Trp Gly Trp Gly Asp
305 310 315 320
Lys Asp Met Ser Lys Asp Asp Arg Glu Ser Val Lys Ile Leu Gly Glu
325 330 335
Lys Phe Leu
<210> 25
<211> 368
<212> PRT
<213> 天竺葵(Pelargonium hortorum)
<400> 25
Met Gly Val Leu Leu Asn Ile Cys Ser Ser Pro Phe Pro Val Val Ala
1 5 10 15
Ser Ala Ala Ser Thr Ser Ile Ser Lys Val Asn His Ile Arg Lys Val
20 25 30
Gly Val Thr Gly Val Met Ala Pro Gln Lys Ile Glu Ile Phe Lys Ser
35 40 45
Met Glu Glu Trp Gly Lys His Asn Ile Leu Pro Leu Ala Lys Pro Val
50 55 60
Glu Lys Ser Trp Gln Pro Thr Asp Phe Leu Pro Asp Pro Ser Ser Glu
65 70 75 80
Gly Phe Met Glu Glu Tyr Asn Ala Phe Lys Glu Arg Thr Arg Glu Leu
85 90 95
Pro Asp Glu Tyr Phe Val Val Leu Ala Gly Asp Met Ile Thr Glu Glu
100 105 110
Ala Leu Pro Thr Tyr Gln Thr Leu Val Asn Arg Pro Asp Glu Val Ala
115 120 125
Asp Glu Thr Gly His Ser Glu Ser Pro Trp Ala Val Trp Ser Arg Ala
130 135 140
Trp Thr Ala Glu Glu Asn Arg His Gly Asp Leu Leu Asn Lys Tyr Leu
145 150 155 160
Tyr Leu Ser Gly Lys Leu Asp Met Arg Gln Val Glu Lys Thr Ile Gln
165 170 175
Tyr Leu Ile Ala Leu Gly Gln Asp Ile Gly Thr Glu Lys Asn Pro Tyr
180 185 190
His Leu Phe Ile Tyr Thr Ser Phe Gln Glu Arg Ala Thr Phe Ile Ser
195 200 205
His Ala Asn Thr Ala Lys Leu Ala Gln Gln His Gly Asp Lys Gln Leu
210 215 220
Ala Gln Ile Cys Gly Thr Ile Ala Ala Asp Glu Lys Arg His Glu Thr
225 230 235 240
Ala Tyr Thr Arg Ile Val Asp Lys Leu Phe Glu Leu Asp Pro Asp Glu
245 250 255
Thr Met Ser Cys Leu Ala His Met Met Lys Arg Lys Ile Thr Met Pro
260 265 270
Ala His Leu Met Arg Asp Gly Arg Asp Pro His Leu Phe Gln His Phe
275 280 285
Ser Val Val Ala Ser Arg Thr Gly Val Tyr Thr Val Met Asp Tyr Ile
290 295 300
Asn Ile Leu Glu His Phe Val Glu Lys Trp Asn Ile Glu Lys Ile Thr
305 310 315 320
Ala Gly Leu Ser Asp Lys Gly Arg Glu Ala Gln Asp Tyr Val Cys Lys
325 330 335
Leu Gly Glu Arg Leu Arg Lys Val Glu Glu Arg Ala His Gln Arg Val
340 345 350
Val Gln Ala Asp Pro Ile Pro Phe Ser Trp Ile Phe Asp Arg Lys Val
355 360 365
<210> 26
<211> 348
<212> PRT
<213> 小菜蛾(Plutella xylostella)
<400> 26
Met Cys Pro Lys Ser Pro Glu Gln Ala Ser Val Val Glu Glu Arg Glu
1 5 10 15
Glu Lys Ser Ala Glu Phe Glu Lys Leu Ile Ala Pro Gln Ala Gly Pro
20 25 30
Arg Lys Phe Asn Ile Val Tyr Phe Asn Leu Leu Thr Phe Gly Tyr Trp
35 40 45
His Leu Ala Gly Ala Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys
50 55 60
Phe Ala Thr Val Leu Phe Ala Ile Leu Thr Tyr Thr Ala Ala Glu Ile
65 70 75 80
Gly Ile Thr Ala Gly Ala His Arg Leu Trp Ser His Lys Ala Tyr Lys
85 90 95
Ala Lys Leu Pro Leu Gln Ile Ile Leu Met Thr Phe Asn Thr Leu Ala
100 105 110
Phe Gln Asn Ser Ala Ile Glu Trp Val Arg Asp His Arg Leu His His
115 120 125
Lys Tyr Ser Asp Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe
130 135 140
Phe Tyr Ser His Val Gly Trp Leu Leu Val Arg Lys His Ser Glu Val
145 150 155 160
Lys Lys Arg Gly Lys Thr Ile Asp Met Ser Asp Met Tyr Ser Asn Pro
165 170 175
Val Leu Ala Phe Gln Lys Arg Tyr Ile Val Pro Trp Val Ile Leu Val
180 185 190
Thr Phe Leu Leu Pro Thr Ile Ile Pro Val Tyr Leu Trp Asn Glu Ser
195 200 205
Leu Trp Thr Ser Trp His Val Thr Met Leu Arg Tyr Val Ala Asn Leu
210 215 220
Asn Ala Thr Phe Leu Val Asn Ser Ala Ala His Leu Trp Gly Tyr Lys
225 230 235 240
Pro Tyr Asp Lys Asn Ile Met Pro Ala Gln Asn Ile Ser Val Ser Leu
245 250 255
Ala Thr Phe Gly Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp
260 265 270
Asp Tyr Lys Ala Ala Glu Leu Gly Asn Asn Arg Tyr Asn Leu Thr Thr
275 280 285
Lys Phe Ile Asp Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys
290 295 300
Ser Val Ser Glu Glu Leu Val Val Asn Arg Met Arg Arg Thr Gly Asp
305 310 315 320
Gly Ser Asn Leu Trp Gly Trp Gly Asp Lys Asp Met Thr Glu Glu Asp
325 330 335
Arg Asn Gly Ala Leu Leu Thr Thr Lys Ser Val Val
340 345
<210> 27
<211> 396
<212> PRT
<213> 蓖麻(Ricinus communis)
<400> 27
Met Ala Leu Lys Leu Asn Pro Phe Leu Ser Gln Thr Gln Lys Leu Pro
1 5 10 15
Ser Phe Ala Leu Pro Pro Met Ala Ser Thr Arg Ser Pro Lys Phe Tyr
20 25 30
Met Ala Ser Thr Leu Lys Ser Gly Ser Lys Glu Val Glu Asn Leu Lys
35 40 45
Lys Pro Phe Met Pro Pro Arg Glu Val His Val Gln Val Thr His Ser
50 55 60
Met Pro Pro Gln Lys Ile Glu Ile Phe Lys Ser Leu Asp Asn Trp Ala
65 70 75 80
Glu Glu Asn Ile Leu Val His Leu Lys Pro Val Glu Lys Cys Trp Gln
85 90 95
Pro Gln Asp Phe Leu Pro Asp Pro Ala Ser Asp Gly Phe Asp Glu Gln
100 105 110
Val Arg Glu Leu Arg Glu Arg Ala Lys Glu Ile Pro Asp Asp Tyr Phe
115 120 125
Val Val Leu Val Gly Asp Met Ile Thr Glu Glu Ala Leu Pro Thr Tyr
130 135 140
Gln Thr Ala Leu Asn Arg Gly Asp Gly Val Arg Asp Glu Thr Gly Ala
145 150 155 160
Ser Pro Thr Ser Trp Ala Ile Trp Thr Arg Ala Trp Thr Ala Glu Glu
165 170 175
Asn Arg His Gly Asp Leu Leu Asn Lys Tyr Leu Tyr Leu Ser Gly Arg
180 185 190
Val Asp Met Arg Gln Ile Glu Lys Thr Ile Gln Tyr Leu Ile Gly Ser
195 200 205
Gly Met Asp Val Arg Val Glu Asn Ser Pro Tyr Leu Leu Phe Ile Tyr
210 215 220
Thr Ser Phe Gln Glu Arg Ala Thr Phe Ile Ser His Gly Asn Thr Ala
225 230 235 240
Arg Gln Ala Lys Glu His Gly Asp Ile Lys Leu Ala Gln Ile Cys Gly
245 250 255
Thr Ile Ala Ala Asp Glu Lys Arg His Glu Thr Ala Tyr Thr Lys Ile
260 265 270
Val Glu Lys Leu Phe Glu Ile Asp Pro Asp Gly Thr Val Leu Ala Phe
275 280 285
Ala Asp Met Met Arg Lys Lys Ile Ser Met Pro Ala His Leu Met Tyr
290 295 300
Asp Gly Arg Asp Asp Asn Leu Phe Asp His Phe Ser Ala Val Ala Gln
305 310 315 320
Arg Leu Gly Val Tyr Thr Ala Lys Asp Tyr Ala Asp Ile Leu Glu Phe
325 330 335
Leu Val Gly Arg Trp Lys Val Asp Lys Leu Thr Gly Leu Ser Ala Glu
340 345 350
Gly Gln Lys Ala Gln Asp Tyr Val Cys Arg Leu Pro Pro Arg Ile Arg
355 360 365
Arg Leu Glu Glu Arg Ala Gln Gly Arg Ala Lys Glu Ala Pro Thr Met
370 375 380
Pro Phe Ser Trp Ile Phe Asp Arg Gln Val Lys Leu
385 390 395
<210> 28
<211> 510
<212> PRT
<213> 酿酒酵母(Saccharomyces cerevisiae)
<400> 28
Met Pro Thr Ser Gly Thr Thr Ile Glu Leu Ile Asp Asp Gln Phe Pro
1 5 10 15
Lys Asp Asp Ser Ala Ser Ser Gly Ile Val Asp Glu Val Asp Leu Thr
20 25 30
Glu Ala Asn Ile Leu Ala Thr Gly Leu Asn Lys Lys Ala Pro Arg Ile
35 40 45
Val Asn Gly Phe Gly Ser Leu Met Gly Ser Lys Glu Met Val Ser Val
50 55 60
Glu Phe Asp Lys Lys Gly Asn Glu Lys Lys Ser Asn Leu Asp Arg Leu
65 70 75 80
Leu Glu Lys Asp Asn Gln Glu Lys Glu Glu Ala Lys Thr Lys Ile His
85 90 95
Ile Ser Glu Gln Pro Trp Thr Leu Asn Asn Trp His Gln His Leu Asn
100 105 110
Trp Leu Asn Met Val Leu Val Cys Gly Met Pro Met Ile Gly Trp Tyr
115 120 125
Phe Ala Leu Ser Gly Lys Val Pro Leu His Leu Asn Val Phe Leu Phe
130 135 140
Ser Val Phe Tyr Tyr Ala Val Gly Gly Val Ser Ile Thr Ala Gly Tyr
145 150 155 160
His Arg Leu Trp Ser His Arg Ser Tyr Ser Ala His Trp Pro Leu Arg
165 170 175
Leu Phe Tyr Ala Ile Phe Gly Cys Ala Ser Val Glu Gly Ser Ala Lys
180 185 190
Trp Trp Gly His Ser His Arg Ile His His Arg Tyr Thr Asp Thr Leu
195 200 205
Arg Asp Pro Tyr Asp Ala Arg Arg Gly Leu Trp Tyr Ser His Met Gly
210 215 220
Trp Met Leu Leu Lys Pro Asn Pro Lys Tyr Lys Ala Arg Ala Asp Ile
225 230 235 240
Thr Asp Met Thr Asp Asp Trp Thr Ile Arg Phe Gln His Arg His Tyr
245 250 255
Ile Leu Leu Met Leu Leu Thr Ala Phe Val Ile Pro Thr Leu Ile Cys
260 265 270
Gly Tyr Phe Phe Asn Asp Tyr Met Gly Gly Leu Ile Tyr Ala Gly Phe
275 280 285
Ile Arg Val Phe Val Ile Gln Gln Ala Thr Phe Cys Ile Asn Ser Leu
290 295 300
Ala His Tyr Ile Gly Thr Gln Pro Phe Asp Asp Arg Arg Thr Pro Arg
305 310 315 320
Asp Asn Trp Ile Thr Ala Ile Val Thr Phe Gly Glu Gly Tyr His Asn
325 330 335
Phe His His Glu Phe Pro Thr Asp Tyr Arg Asn Ala Ile Lys Trp Tyr
340 345 350
Gln Tyr Asp Pro Thr Lys Val Ile Ile Tyr Leu Thr Ser Leu Val Gly
355 360 365
Leu Ala Tyr Asp Leu Lys Lys Phe Ser Gln Asn Ala Ile Glu Glu Ala
370 375 380
Leu Ile Gln Gln Glu Gln Lys Lys Ile Asn Lys Lys Lys Ala Lys Ile
385 390 395 400
Asn Trp Gly Pro Val Leu Thr Asp Leu Pro Met Trp Asp Lys Gln Thr
405 410 415
Phe Leu Ala Lys Ser Lys Glu Asn Lys Gly Leu Val Ile Ile Ser Gly
420 425 430
Ile Val His Asp Val Ser Gly Tyr Ile Ser Glu His Pro Gly Gly Glu
435 440 445
Thr Leu Ile Lys Thr Ala Leu Gly Lys Asp Ala Thr Lys Ala Phe Ser
450 455 460
Gly Gly Val Tyr Arg His Ser Asn Ala Ala Gln Asn Val Leu Ala Asp
465 470 475 480
Met Arg Val Ala Val Ile Lys Glu Ser Lys Asn Ser Ala Ile Arg Met
485 490 495
Ala Ser Lys Arg Gly Glu Ile Tyr Glu Thr Gly Lys Phe Phe
500 505 510
<210> 29
<211> 338
<212> PRT
<213> 甜菜夜蛾(Spodoptera exigua)
<400> 29
Met Ala Gln Thr Ile Gln Thr Thr Thr Ile Leu Glu Gln Lys Glu Glu
1 5 10 15
Lys Thr Val Thr Leu Leu Val Pro Gln Ala Gly Lys Arg Lys Phe Glu
20 25 30
Phe Val Tyr Gln Asn Leu Ile Thr Phe Ala Tyr Trp His Ile Ala Gly
35 40 45
Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Ala Thr Ile
50 55 60
Leu Phe Ser Phe Ile Leu Phe Val Ile Ala Glu Ile Gly Ile Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Ser His Lys Ser Tyr Lys Val Lys Leu Pro
85 90 95
Leu Glu Ile Leu Leu Met Val Met Asn Ser Ile Ala Phe Gln Asn Thr
100 105 110
Val Ile Asp Trp Val Arg Asp His Arg Leu His His Lys Tyr Ser Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser His
130 135 140
Ile Gly Trp Leu Phe Val Arg Lys His Pro Glu Val Lys Lys Arg Gly
145 150 155 160
Lys Glu Leu Asp Met Ser Asp Ile Tyr Asn Asn Pro Val Leu Arg Phe
165 170 175
Gln Arg Lys Tyr Ala Val Pro Phe Ile Gly Ala Val Cys Phe Gly Leu
180 185 190
Pro Thr Leu Ile Pro Val Tyr Cys Trp Gly Glu Ser Trp Thr Asn Ala
195 200 205
Trp His Ile Thr Met Leu Arg Tyr Ile Met Asn Leu Asn Ala Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Ile Tyr Gly Lys Arg Pro Tyr Asp Lys
225 230 235 240
Lys Ile Leu Pro Ala Gln Asn Ile Gly Val Ser Ile Ala Thr Phe Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Ala
260 265 270
Ala Glu Leu Gly Asn Asn Gly Leu Asn Leu Thr Thr Lys Phe Ile Asp
275 280 285
Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ser Lys
290 295 300
Glu Met Ile Lys Gln Arg Ser Lys Arg Thr Gly Asp Gly Thr Asn Leu
305 310 315 320
Trp Gly Leu Glu Asp Lys Asp Thr Pro Glu Asn Leu Lys Asn Ile Lys
325 330 335
Gly Glu
<210> 30
<211> 338
<212> PRT
<213> 海灰翅夜蛾(Spodoptera littoralis)
<400> 30
Met Ala Gln Cys Val Gln Thr Thr Thr Ile Leu Glu Gln Lys Glu Glu
1 5 10 15
Lys Thr Val Thr Leu Leu Val Pro Gln Ala Gly Lys Arg Lys Phe Glu
20 25 30
Ile Val Tyr Phe Asn Ile Ile Thr Phe Ala Tyr Trp His Ile Ala Gly
35 40 45
Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Thr Lys Trp Ala Thr Val
50 55 60
Leu Phe Ser Phe Phe Leu Phe Val Val Ala Glu Val Gly Val Thr Ala
65 70 75 80
Gly Ser His Arg Leu Trp Ser His Lys Thr Tyr Lys Ala Lys Leu Pro
85 90 95
Leu Gln Ile Leu Leu Met Val Met Asn Ser Leu Ala Phe Gln Asn Thr
100 105 110
Val Ile Asp Trp Val Arg Asp His Arg Leu His His Lys Tyr Ser Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser His
130 135 140
Val Gly Trp Leu Leu Val Arg Lys His Pro Asp Val Lys Lys Arg Gly
145 150 155 160
Lys Glu Ile Asp Ile Ser Asp Ile Tyr Asn Asn Pro Val Leu Arg Phe
165 170 175
Gln Lys Lys Tyr Ala Ile Pro Phe Ile Gly Ala Val Cys Phe Val Leu
180 185 190
Pro Thr Leu Ile Pro Val Tyr Gly Trp Gly Glu Thr Trp Thr Asn Ala
195 200 205
Trp His Val Ala Met Leu Arg Tyr Ile Met Asn Leu Asn Val Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Ile Tyr Gly Lys Arg Pro Tyr Asp Lys
225 230 235 240
Lys Ile Leu Pro Ser Gln Asn Ile Ala Val Ser Ile Ala Thr Phe Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Ala
260 265 270
Ala Glu Leu Gly Asn Asn Ser Leu Asn Phe Pro Thr Lys Phe Ile Asp
275 280 285
Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ser Lys
290 295 300
Glu Met Ile Lys Gln Arg Ser Lys Arg Thr Gly Asp Gly Thr Asn Leu
305 310 315 320
Trp Gly Leu Glu Asp Val Asp Thr Pro Glu Asp Leu Lys Asn Thr Lys
325 330 335
Gly Glu
<210> 31
<211> 338
<212> PRT
<213> 海灰翅夜蛾(Spodoptera littoralis)
<400> 31
Met Ala Gln Cys Val Gln Thr Thr Thr Ile Leu Glu Gln Lys Glu Glu
1 5 10 15
Lys Thr Val Thr Leu Leu Val Pro Gln Ala Gly Lys Arg Lys Phe Glu
20 25 30
Ile Val Tyr Phe Asn Ile Ile Thr Phe Ala Tyr Trp His Ile Ala Gly
35 40 45
Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Thr Lys Trp Ala Thr Val
50 55 60
Leu Phe Ser Phe Phe Leu Phe Val Val Ala Glu Val Gly Val Thr Ala
65 70 75 80
Gly Ser His Arg Leu Trp Ser His Lys Thr Tyr Lys Ala Lys Leu Pro
85 90 95
Leu Gln Ile Leu Leu Met Val Met Asn Ser Leu Ala Phe Gln Asn Thr
100 105 110
Val Ile Asp Trp Val Arg Asp His Arg Leu His His Lys Tyr Ser Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser His
130 135 140
Val Gly Trp Leu Leu Val Arg Lys His Pro Asp Val Lys Lys Arg Gly
145 150 155 160
Lys Glu Ile Asp Ile Ser Asp Ile Tyr Asn Asn Pro Val Leu Arg Phe
165 170 175
Gln Lys Lys Tyr Ala Ile Pro Phe Ile Gly Ala Val Cys Phe Val Leu
180 185 190
Pro Thr Leu Ile Pro Val Tyr Gly Trp Gly Glu Thr Trp Thr Asn Ala
195 200 205
Trp His Val Ala Met Leu Arg Tyr Ile Met Asn Leu Asn Val Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Ile Tyr Gly Lys Arg Pro Tyr Asp Lys
225 230 235 240
Lys Ile Leu Pro Ser Gln Asn Ile Ala Val Ser Ile Ala Thr Phe Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Ala
260 265 270
Ala Glu Leu Gly Asn Asn Ser Leu Asn Phe Pro Thr Lys Phe Ile Asp
275 280 285
Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ser Lys
290 295 300
Glu Met Ile Lys Gln Arg Ser Lys Arg Thr Gly Asp Gly Thr Asn Leu
305 310 315 320
Trp Gly Leu Glu Asp Val Asp Thr Pro Glu Asp Leu Lys Asn Thr Lys
325 330 335
Gly Glu
<210> 32
<211> 338
<212> PRT
<213> 斜纹夜蛾(Spodoptera litura)
<400> 32
Met Ala Gln Thr Ile Gln Thr Thr Thr Ile Leu Glu Gln Lys Glu Glu
1 5 10 15
Lys Thr Val Thr Leu Leu Val Pro Gln Ala Gly Lys Arg Lys Phe Glu
20 25 30
Ile Val Tyr Phe Asn Leu Val Ser Phe Ala Tyr Trp His Ile Ala Gly
35 40 45
Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Ala Thr Ile
50 55 60
Leu Phe Ser Phe Phe Leu Phe Val Val Ala Glu Val Gly Val Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Ser His Lys Thr Tyr Lys Ala Lys Leu Pro
85 90 95
Leu Gln Ile Leu Leu Met Val Met Asn Ser Leu Ala Phe Gln Asn Thr
100 105 110
Ala Ile Asp Trp Val Arg Asp His Arg Leu His His Lys Tyr Ser Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser His
130 135 140
Ile Gly Trp Leu Phe Val Arg Lys His Pro Asp Val Lys Lys Arg Gly
145 150 155 160
Lys Glu Ile Asp Ile Ser Asp Ile Tyr Asn Asn Pro Val Leu Arg Phe
165 170 175
Gln Lys Lys Tyr Ala Ile Pro Phe Ile Gly Ala Val Cys Phe Ala Leu
180 185 190
Pro Thr Leu Ile Pro Val Tyr Gly Trp Gly Glu Thr Trp Thr Asn Ala
195 200 205
Trp His Val Ala Met Leu Arg Tyr Ile Met Asn Leu Asn Val Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Ile Tyr Gly Lys Arg Pro Tyr Asp Lys
225 230 235 240
Lys Ile Leu Pro Ser Gln Asn Ile Ala Val Ser Ile Ala Thr Phe Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Ala
260 265 270
Ala Glu Leu Gly Asn Asn Cys Leu Asn Phe Thr Thr Lys Phe Ile Asp
275 280 285
Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ser Lys
290 295 300
Glu Met Ile Lys Gln Arg Ser Lys Arg Thr Gly Asp Gly Thr Asn Leu
305 310 315 320
Trp Gly Leu Glu Asp Val Asp Thr Pro Glu Asp Leu Lys Asn Thr Lys
325 330 335
Gly Glu
<210> 33
<211> 353
<212> PRT
<213> 斜纹夜蛾(Spodoptera litura)
<400> 33
Met Ala Pro Asn Ile Ser Glu Asp Val Asn Gly Val Leu Phe Glu Ser
1 5 10 15
Asp Ala Ala Thr Pro Asp Leu Ala Leu Ala Arg Pro Pro Val Gln Lys
20 25 30
Ala Asp Asn Lys Pro Lys Gln Leu Val Trp Arg Asn Ile Ile Leu Phe
35 40 45
Ala Tyr Leu His Leu Ala Ala Leu Tyr Gly Gly Tyr Leu Phe Leu Phe
50 55 60
Ser Ala Lys Trp Gln Thr Asp Ile Phe Ala Tyr Ile Leu Tyr Val Ile
65 70 75 80
Ser Gly Leu Gly Ile Thr Ala Gly Ala His Arg Leu Trp Ala His Lys
85 90 95
Ser Tyr Lys Ala Lys Trp Pro Leu Lys Val Ile Leu Ile Ile Phe Asn
100 105 110
Thr Val Ala Phe Gln Asp Ala Ala Met Asp Trp Ala Arg Asp His Arg
115 120 125
Met His His Lys Tyr Ser Glu Thr Asp Ala Asp Pro His Asn Ala Thr
130 135 140
Arg Gly Phe Phe Phe Ser His Ile Gly Trp Leu Leu Val Arg Lys His
145 150 155 160
Pro Asp Leu Lys Glu Lys Gly Lys Gly Leu Asp Met Ser Asp Leu Leu
165 170 175
Ala Asp Pro Val Leu Arg Phe Gln Lys Lys Tyr Tyr Leu Leu Leu Met
180 185 190
Pro Leu Ala Cys Phe Val Met Pro Thr Val Ile Pro Val Tyr Leu Trp
195 200 205
Gly Glu Thr Trp Thr Asn Ala Phe Phe Val Ala Ala Met Phe Arg Tyr
210 215 220
Ala Phe Ile Leu Asn Val Thr Trp Leu Val Asn Ser Ala Ala His Lys
225 230 235 240
Trp Gly Asp Lys Pro Tyr Asp Lys Ser Ile Lys Pro Ser Glu Asn Met
245 250 255
Ser Val Ala Met Phe Ala Leu Gly Glu Gly Phe His Asn Tyr His His
260 265 270
Thr Phe Pro Trp Asp Tyr Lys Thr Ala Glu Phe Gly Asn Asn Lys Leu
275 280 285
Asn Phe Thr Thr Ala Phe Ile Asn Phe Phe Ala Lys Ile Gly Trp Ala
290 295 300
Tyr Asp Met Lys Thr Val Ser Glu Asp Ile Val Lys Asn Arg Val Lys
305 310 315 320
Arg Thr Gly Asp Gly Ser His His Leu Trp Gly Trp Gly Asp Glu Asn
325 330 335
Gln Pro Lys Glu Glu Ile Glu Ala Ala Ile Arg Ile Asn Pro Lys Asp
340 345 350
Asp
<210> 34
<211> 347
<212> PRT
<213> 松异舟蛾(Thaumetopoea pityocampa)
<400> 34
Met Ala Pro Asn Thr Arg Glu Asn Glu Thr Ile Tyr Asp Glu Val Glu
1 5 10 15
His Lys Leu Glu Lys Leu Val Pro Pro Gln Ala Gly Pro Trp Asn Tyr
20 25 30
Lys Ile Val Tyr Leu Asn Leu Leu Thr Phe Ser Tyr Trp Leu Ile Ala
35 40 45
Gly Ala Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Ala Thr
50 55 60
Ile Ile Phe Glu Phe Ile Leu Phe Phe Phe Ala Glu Met Gly Ile Thr
65 70 75 80
Ala Gly Ala His Arg Leu Trp Thr His Lys Ser Tyr Lys Ala Lys Leu
85 90 95
Pro Leu Glu Ile Phe Leu Met Val Leu Asn Ser Val Ala Phe Gln Asn
100 105 110
Thr Ala Thr Asp Trp Val Arg Asp His Arg Leu His His Lys Tyr Ser
115 120 125
Asp Thr Asp Ala Asp Pro His Asn Ala Ala Arg Gly Leu Phe Phe Ser
130 135 140
His Val Gly Trp Leu Leu Val Arg Lys His Asp Glu Val Lys Lys Arg
145 150 155 160
Gly Lys Phe Thr Asp Met Ser Asp Ile Tyr Asn Asn Pro Val Leu Lys
165 170 175
Phe Gln Lys Lys Tyr Ala Ile Pro Phe Ile Gly Ala Val Cys Phe Ile
180 185 190
Leu Pro Thr Val Ile Pro Met Tyr Phe Trp Gly Glu Ser Leu Asn Asn
195 200 205
Ala Trp His Ile Cys Ile Leu Arg Tyr Ala Met Asn Leu Asn Val Thr
210 215 220
Phe Ser Val Asn Ser Leu Ala His Ile Trp Gly Asn Lys Pro Tyr Asp
225 230 235 240
Lys Asp Ile Lys Pro Ala Gln Asn Phe Gly Val Thr Leu Ala Thr Phe
245 250 255
Gly Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg
260 265 270
Thr Ser Glu Leu Gly Asp Asn Lys Phe Asn Phe Thr Thr Lys Phe Ile
275 280 285
Asn Phe Phe Glu Arg Ile Gly Leu Ala Tyr Asp Leu Lys Thr Val Ser
290 295 300
Asp Asp Val Ile Ala Gln Arg Ala Lys Arg Thr Gly Asp Gly Thr His
305 310 315 320
Leu Trp Asp Cys Ala Asp Lys Asn Asn Asn Asp Val Val Gln Thr Lys
325 330 335
Ala Gln Ile Asp Thr Leu Cys Thr Lys His Glu
340 345
<210> 35
<211> 302
<212> PRT
<213> 赤拟谷盗(Tribolium castaneum)
<400> 35
Met Phe Leu Arg Thr Ile Thr Ser Lys Phe Tyr Ser Asp Gln Ile Val
1 5 10 15
Trp Arg Asn Val Phe Leu Leu Leu Ile Leu His Ile Ile Ser Leu Gln
20 25 30
Gly Trp Tyr Phe Val Leu Thr Thr Thr Asn Trp Pro Thr Leu Ile Tyr
35 40 45
Gly Phe Ile Phe Gly Ala Leu Thr Gly Gln Gly Ile Lys Leu Gly Ala
50 55 60
His Arg Leu Trp Ala His Arg Cys Tyr Lys Ala Lys Leu Pro Leu Arg
65 70 75 80
Ile Phe Leu Cys Phe Leu Gln Thr Val Thr Leu Gln Asn Pro Leu Tyr
85 90 95
Glu Trp Val Arg Asp His Gln Val His His Lys Tyr Thr Asp Thr Asn
100 105 110
Ala Asp Pro Leu Asn Ala Thr Arg Gly Phe Phe Phe Ser His Met Gly
115 120 125
Trp Leu Leu Val Arg Lys His Pro Asn Val Ile Ala Lys Gly Lys Thr
130 135 140
Leu Asp Leu Ser Asp Leu Glu Glu Asp Pro Val Val Met Phe Gln Lys
145 150 155 160
Lys Tyr Tyr Lys Ile Ile Ala Pro Val Leu Thr Leu Ala Ile Pro Ala
165 170 175
Leu Ile Pro Trp Tyr Phe Phe Gly Glu Asp Leu Tyr Leu Ser Trp Val
180 185 190
Thr Thr Cys Val Leu Pro Tyr Phe Ile Thr Leu His Ser Thr Trp Ala
195 200 205
Val Asn Ser Val Ala His Ile Trp Gly Thr Lys Pro Tyr Asn Lys Asn
210 215 220
Ile Leu Pro Thr Glu Asn Ile Ala Val Ala Ile Val Ala Tyr Gly Glu
225 230 235 240
Gly Trp His Asn Tyr His His Val Phe Pro Trp Asp Tyr Lys Ala Ala
245 250 255
Glu Leu Gly Asn Tyr Arg Pro Asn Leu Ser Thr Ala Phe Ile Asp Phe
260 265 270
Met Ala Lys Ile Ala Trp Ala Tyr Asp Leu Lys Ser Val Ser Pro Glu
275 280 285
Met Leu Arg Lys Arg Lys Met Arg Thr Gly Asp Cys Asp Tyr
290 295 300
<210> 36
<211> 389
<212> PRT
<213> 赤拟谷盗(Tribolium castaneum)
<400> 36
Met Ala Pro Asn Leu Leu Gly Asn Ser Thr Leu Phe Leu Ala Glu Thr
1 5 10 15
Asn Ser Ala Glu Pro Ile Gln Ile Ile Ser Lys Pro Gly Leu Gln Asp
20 25 30
Val Leu Pro Gln Val Lys Pro Gln Ile Ser Ser Arg Ser Ser Val Ser
35 40 45
Gln Tyr Arg Trp Gln Ile Val Trp Arg Asn Val Leu Ile Phe Ile Tyr
50 55 60
Leu His Ile Ala Gly Ile Tyr Gly Leu Tyr Tyr Ala Ile Ala Gln Ala
65 70 75 80
Gln Trp Lys Thr Leu Leu Trp Gly Tyr Leu Val Ile Leu Ala Ser Gly
85 90 95
Ile Gly Val Thr Ala Gly Ala His Arg Leu Trp Ala His Arg Thr Tyr
100 105 110
Lys Ala Lys Leu Pro Leu Arg Ile Tyr Leu Ala Phe Cys Gln Thr Val
115 120 125
Ala Leu Gln Asn Asp Ile Tyr Glu Trp Val Arg Asp His Arg Val His
130 135 140
His Lys Phe Thr Asp Thr Asp Ala Asp Pro His Asn Ser Asn Arg Gly
145 150 155 160
Phe Phe Phe Ser His Met Gly Trp Leu Leu Val Lys Lys His Lys Asp
165 170 175
Val Phe Val Lys Gly Lys Thr Val Asp Met Ser Asp Val Glu Ala Asp
180 185 190
Pro Val Val Arg Phe Gln Arg Lys Tyr Tyr Ile Ile Leu Thr Pro Ile
195 200 205
Leu Thr Phe Val Phe Pro Ala Ile Val Pro Trp Tyr Phe Trp Asn Glu
210 215 220
Thr Pro Thr Val Cys Phe Tyr Ser Val Ala Ile Phe Arg Tyr Ile Leu
225 230 235 240
Thr Leu His Gly Thr Trp Leu Val Asn Ser Ala Ala His Ile Trp Gly
245 250 255
Tyr Arg Pro Tyr Asp Lys Asn Ile Asn Ala Thr Glu Asn Lys Ser Val
260 265 270
Ser Ile Leu Ala Phe Gly Glu Gly Trp His Asn Tyr His His Val Phe
275 280 285
Pro Trp Asp Tyr Lys Ala Ala Glu Leu Gly Asn Tyr Arg Met Asn Phe
290 295 300
Thr Thr Ala Phe Leu Asp Leu Met Ser Lys Ile Gly Gln Ala Tyr Asp
305 310 315 320
Leu Lys Thr Val Ser Val Asp Met Ile Asn Lys Arg Arg Lys Arg Thr
325 330 335
Gly Asp Gly Thr Gly Leu Val Asp Glu Glu Leu Leu Glu Asn Glu Asp
340 345 350
Lys His His His His His Asp Asp Ser Ile Trp Gly Trp Gly Asp Lys
355 360 365
Asp Met Lys Gln Asp Asp Met Asp Met Val Gln Val His Asn Pro Ser
370 375 380
Arg Glu Lys Phe Asp
385
<210> 37
<211> 349
<212> PRT
<213> 粉纹夜蛾(Trichoplusia ni)
<400> 37
Met Ala Val Met Ala Gln Thr Val Gln Glu Thr Ala Thr Val Leu Glu
1 5 10 15
Glu Glu Ala Arg Thr Val Thr Leu Val Ala Pro Lys Thr Thr Pro Arg
20 25 30
Lys Tyr Lys Tyr Ile Tyr Thr Asn Phe Leu Thr Phe Ser Tyr Ala His
35 40 45
Leu Ala Ala Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp
50 55 60
Glu Thr Leu Leu Phe Ser Phe Val Leu Phe His Met Ser Asn Ile Gly
65 70 75 80
Ile Thr Ala Gly Ala His Arg Leu Trp Thr His Lys Thr Phe Lys Ala
85 90 95
Lys Leu Pro Leu Glu Ile Val Leu Met Ile Phe Asn Ser Leu Ala Phe
100 105 110
Gln Asn Thr Ala Ile Thr Trp Ala Arg Glu His Arg Leu His His Lys
115 120 125
Tyr Ser Asp Thr Asp Ala Asp Pro His Asn Ala Ser Arg Gly Phe Phe
130 135 140
Tyr Ser His Val Gly Trp Leu Leu Val Lys Lys His Pro Asp Val Leu
145 150 155 160
Lys Tyr Gly Lys Thr Ile Asp Met Ser Asp Val Tyr Asn Asn Pro Val
165 170 175
Leu Lys Phe Gln Lys Lys Tyr Ala Val Pro Leu Ile Gly Thr Val Cys
180 185 190
Phe Ala Leu Pro Thr Leu Ile Pro Val Tyr Cys Trp Gly Glu Ser Trp
195 200 205
Asn Asn Ala Trp His Ile Ala Leu Phe Arg Tyr Ile Phe Asn Leu Asn
210 215 220
Val Thr Phe Leu Val Asn Ser Ala Ala His Ile Trp Gly Asn Lys Pro
225 230 235 240
Tyr Asp Lys Ser Ile Leu Pro Ala Gln Asn Leu Leu Val Ser Phe Leu
245 250 255
Ala Ser Gly Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp
260 265 270
Tyr Arg Thr Ala Glu Leu Gly Asn Asn Phe Leu Asn Leu Thr Thr Leu
275 280 285
Phe Ile Asp Phe Cys Ala Trp Phe Gly Trp Ala Tyr Asp Leu Lys Ser
290 295 300
Val Ser Glu Asp Ile Ile Lys Gln Arg Ala Lys Arg Thr Gly Asp Gly
305 310 315 320
Ser Ser Gly Val Ile Trp Gly Trp Asp Asp Lys Asp Met Asp Arg Asp
325 330 335
Ile Lys Ser Lys Ala Asn Ile Phe Tyr Ala Lys Lys Glu
340 345
<210> 38
<211> 482
<212> PRT
<213> 解脂耶氏酵母(Yarrowia lipolytica)
<400> 38
Met Val Lys Asn Val Asp Gln Val Asp Leu Ser Gln Val Asp Thr Ile
1 5 10 15
Ala Ser Gly Arg Asp Val Asn Tyr Lys Val Lys Tyr Thr Ser Gly Val
20 25 30
Lys Met Ser Gln Gly Ala Tyr Asp Asp Lys Gly Arg His Ile Ser Glu
35 40 45
Gln Pro Phe Thr Trp Ala Asn Trp His Gln His Ile Asn Trp Leu Asn
50 55 60
Phe Ile Leu Val Ile Ala Leu Pro Leu Ser Ser Phe Ala Ala Ala Pro
65 70 75 80
Phe Val Ser Phe Asn Trp Lys Thr Ala Ala Phe Ala Val Gly Tyr Tyr
85 90 95
Met Cys Thr Gly Leu Gly Ile Thr Ala Gly Tyr His Arg Met Trp Ala
100 105 110
His Arg Ala Tyr Lys Ala Ala Leu Pro Val Arg Ile Ile Leu Ala Leu
115 120 125
Phe Gly Gly Gly Ala Val Glu Gly Ser Ile Arg Trp Trp Ala Ser Ser
130 135 140
His Arg Val His His Arg Trp Thr Asp Ser Asn Lys Asp Pro Tyr Asp
145 150 155 160
Ala Arg Lys Gly Phe Trp Phe Ser His Phe Gly Trp Met Leu Leu Val
165 170 175
Pro Asn Pro Lys Asn Lys Gly Arg Thr Asp Ile Ser Asp Leu Asn Asn
180 185 190
Asp Trp Val Val Arg Leu Gln His Lys Tyr Tyr Val Tyr Val Leu Val
195 200 205
Phe Met Ala Ile Val Leu Pro Thr Leu Val Cys Gly Phe Gly Trp Gly
210 215 220
Asp Trp Lys Gly Gly Leu Val Tyr Ala Gly Ile Met Arg Tyr Thr Phe
225 230 235 240
Val Gln Gln Val Thr Phe Cys Val Asn Ser Leu Ala His Trp Ile Gly
245 250 255
Glu Gln Pro Phe Asp Asp Arg Arg Thr Pro Arg Asp His Ala Leu Thr
260 265 270
Ala Leu Val Thr Phe Gly Glu Gly Tyr His Asn Phe His His Glu Phe
275 280 285
Pro Ser Asp Tyr Arg Asn Ala Leu Ile Trp Tyr Gln Tyr Asp Pro Thr
290 295 300
Lys Trp Leu Ile Trp Thr Leu Lys Gln Val Gly Leu Ala Trp Asp Leu
305 310 315 320
Gln Thr Phe Ser Gln Asn Ala Ile Glu Gln Gly Leu Val Gln Gln Arg
325 330 335
Gln Lys Lys Leu Asp Lys Trp Arg Asn Asn Leu Asn Trp Gly Ile Pro
340 345 350
Ile Glu Gln Leu Pro Val Ile Glu Phe Glu Glu Phe Gln Glu Gln Ala
355 360 365
Lys Thr Arg Asp Leu Val Leu Ile Ser Gly Ile Val His Asp Val Ser
370 375 380
Ala Phe Val Glu His His Pro Gly Gly Lys Ala Leu Ile Met Ser Ala
385 390 395 400
Val Gly Lys Asp Gly Thr Ala Val Phe Asn Gly Gly Val Tyr Arg His
405 410 415
Ser Asn Ala Gly His Asn Leu Leu Ala Thr Met Arg Val Ser Val Ile
420 425 430
Arg Gly Gly Met Glu Val Glu Val Trp Lys Thr Ala Gln Asn Glu Lys
435 440 445
Lys Asp Gln Asn Ile Val Ser Asp Glu Ser Gly Asn Arg Ile His Arg
450 455 460
Ala Gly Leu Gln Ala Thr Arg Val Glu Asn Pro Gly Met Ser Gly Met
465 470 475 480
Ala Ala
<210> 39
<211> 1011
<212> DNA
<213> 黄地老虎(Agrotis segetum)
<400> 39
atggctcaag gtgttcaaac taccaccatt ttgagagaag aagaaccatc tttgaccttc 60
gttgttccac aagaacctag aaagtaccaa atcgtttacc caaacttgat cactttcggt 120
tactggcata ttgctggttt gtacggtttg tatttgtgtt tcacttctgc taagtggcaa 180
actatcttgt tctccttcat gttggttgtt ttggccgaat tgggtattac tgctggtgct 240
catagattgt gggctcataa gacttacaaa gctaagttgc cattgcaaat catcttgatg 300
atcttgaact ccattgcctt ccaaaactct gctattgatt gggttagaga tcacagattg 360
catcacaagt actctgatac tgatgctgat ccacataatg ctactagagg ttttttctac 420
tctcacgtcg gttggttatt ggttagaaaa catccagaag tcaagagaag aggtaaagaa 480
ttggatatgt ccgacatcta caacaaccca gttttgagat tccaaaagaa gtacgccatt 540
ccattcattg gtgctatgtg ttttggtttg ccaactttca tcccagttta cttttggggt 600
gaaacttggt ctaatgcttg gcatattacc atgttgagat atatcttgaa tttgaacatc 660
actttcttgg tcaactccgc tgctcatatt tggggttaca aaccatacga cattaagatt 720
ttgccagccc aaaacattgc cgtttctata gttactggtg gtgaagtttc tattaccacc 780
actacatttt ttccatggga ttacagagct gccgaattag gtaacaatta cttgaacttg 840
accaccaagt tcatcgattt ctttgcttgg attggttggg cctacgattt gaaaactgtt 900
tcctctgatg tcatcaagtc caaggctgaa agaactggtg atggtactaa tttgtggggt 960
ttggaagata agggtgaaga agatttcttg aagatctgga aggacaacta a 1011
<210> 40
<211> 981
<212> DNA
<213> 脐橙螟蛾(Amyelois transitella)
<400> 40
atggtgccca acaagggttc ttccgacgtc ctgtctgagc actccgagcc ccagttcacc 60
aagctgattg ctccccaggc tggcccccga aagtacaaga tcgtgtaccg aaacctgctg 120
accttcggat actggcacct gtctgccgtc tacggtctgt acctgtgttt cacctgcgcc 180
aagtgggcta ccattctgtt cgccttcttc ctgtacgtga tcgctgagat cggcattacc 240
ggcggagccc accgactgtg ggctcaccga acctacaagg ccaagctgcc cctggagatc 300
ctgctgctga ttatgaactc tatcgctttc caggacaccg ccttcacctg ggctcgagat 360
caccgactgc accacaagta ctctgacacc gacgctgacc ctcacaacgc tacccgaggt 420
ttcttctact cccacgtggg ctggctgctg gtcaagaagc accccgaggt gaaggcccgg 480
ggaaagtacc tgtccctgga cgacctgaag aacaaccccc tgctgaagtt ccagaagaag 540
tacgctatcc tggtcattgg caccctgtgt ttcctgatgc ccaccttcgt gcccgtctac 600
ttctggggtg agggcatttc taccgcctgg aacatcaacc tgctgcgata cgtgatgaac 660
ctgaacatga ccttcctggt caactccgcc gctcacattt tcggcaacaa gccctacgac 720
aagtctattg cctccgtgca gaacatctct gtctccctgg ctaccttcgg agagggtttc 780
cacaactacc accacaccta cccttgggac taccgagctg ctgagctggg caacaaccga 840
ctgaacatga ccaccgcctt cattgacttc ttcgcctgga tcggatgggc ttacgacctg 900
aagtccgtcc cccaggaagc catcgctaag cgatgcgcta agaccggcga cggaaccgac 960
atgtggggac gaaagcgata g 981
<210> 41
<211> 1059
<212> DNA
<213> 脐橙螟蛾(Amyelois transitella)
<400> 41
atgccgcctc agggtcaaga tcgcgagtcc tgggttctgt acgagaccga cgacaagacg 60
caagatggtg gcactcacgt ggtgcctccc tccgccgaga aaagagtgtg gaaaatcgtc 120
tggaggaatg tcatcgcatt tgctctgctc cacatcggag gcgtttacgg cgcttatttg 180
ttcctcttca aagctatgtg gctgaccgat ttgtttgcgg tatttctgta cctgtgctcc 240
ggcctgggcg tcactgcggg cgcgcaccgg ctgtgggcac acaagtcgta caaggcgcgg 300
ctgcctctcc gcctgttgct tactgtcttc aacaccatag cttttcagga tgccgtgatc 360
gactgggctc gcgaccaccg cctgcaccat aagtactcgg agacggacgc cgatccccac 420
aacgcaacaa gggggttctt cttctcccac attggctggt tgctcgtcag gaaacaccca 480
caaatcaagg agaaagggcc caccatcgac ctgaacgact tgagggccga tcccgtactc 540
cacttccaga agaaatacta tttatacctt atgcccttgg catgtttcgt catgcccaca 600
ttagtaccta cactctgggg tgaatctcta tggaacgcgt atttcgtatg cgctatcttc 660
agatacatat atgttctaaa cgtcacttgg ctcgtaaact cagctgcgca cgcttgggga 720
agcaaaccgt acgacaaaaa catcaaccct gtggaaacca agcctgtatc cttggtggtc 780
cttggagaag gcttccacaa ttaccaccac actttcccgt gggattacaa gactgccgaa 840
ttaggagatt actctttaaa cttctccaaa ttattcatcg atgctatggc aaaaataggt 900
tgggcttatg acctgaaaac ggtctctcct gatgtgatcg agaagcgtgt gaagaggacg 960
ggagacggca gtcaccacgt ctggggctgg gacgacaaag acgtcccggt tgaagaaaaa 1020
gaagaagcca ccatctttaa cccttcgaaa gatgaataa 1059
<210> 42
<211> 1059
<212> DNA
<213> 脐橙螟蛾(Amyelois transitella)
<400> 42
atggctccaa atgccacaga tgctaatggg gttctgtttg agacggatgc agctacccca 60
gacctggccc tacctcacgc ccctgtacag caagcggaca attaccctaa aaaatatgtg 120
tggagaaata taatattatt tgcctatctc cacattgctg cactctatgg tggctacttg 180
ttcttgttcc atgctaaatg gcagacagat atatttgctt acattctgta tgtgatgtca 240
ggcttgggaa taacggcagg agcccatcgt ctgtgggccc acaagtccta caaagctaaa 300
tggccactca gattgatact tgtcatcttt aacactctgg cattccagga ctctgcaatc 360
gactggtctc gcgaccaccg aatgcaccac aaatactcgg aaactgatgc tgatccccac 420
aacgcgaccc gcggtttctt cttctcccac attggctggc tgctggttag gaagcaccct 480
gaacttaaga ggaaaggcaa aggtctggac cttagtgact tatatgctga ccccattttg 540
agattccaaa agaagtacta cttgatcctg atgcccctca cttgcttcgt gttacctacg 600
gtcatccccg tgtattactg gggcgagact tggaccaacg ccttcttcgt ggccgctctt 660
ttccggtatg ccttcatcct taacgtcacc tggctggtca attctgctgc tcacaagtgg 720
ggcgataagc cttacgatag aaacatcaag ccttcggaaa atatttccgt ctccatgttc 780
gcgctcggag aaggcttcca caactaccac catactttcc cctgggacta caagaccgcg 840
gaacttggca acaacatgct caatttcacg actaacttca tcaatttctt tgctaaaatc 900
ggttgggcgt acgatctgaa aactgtttcc gatgaaattg ttaggagccg cgctaagaga 960
acaggagatg gttctcacca tctatggggc tggggtgata aggatcactc tcgtgaggaa 1020
atggccgccg ctataaggat acacccgaaa gatgactag 1059
<210> 43
<211> 1050
<212> DNA
<213> 瘟疫丽艳花萤(Chauliognathus lugubris)
<400> 43
atggctccca actctaacga cgccaccggc gtgctgcaag agactgacga cgacgtgtcc 60
tctaaccagg tcctgcagca gatcaccaag tctgagaagt ctaagctgat catcgtgtgg 120
tctaacgtga tgtacttcgt gatcctgcac gtgggcgccc tgtacggcct gtggctgctg 180
ctgacctctg ctcagatctg gacctgcctg tgggtgttcg ccatgtacga gttcggcgag 240
atctgcatca ccgctggcgt gcaccgactg tggtcccacc gatcttacaa ggccaagtgg 300
cccctgcgac tgttccacac catgggacag accctggcct tccaggacgc cgtggtggac 360
tgggcccgag atcaccgagt gcaccacaag tactctgaaa ccgacgctga ccctcacaac 420
gccaagcgag gcttcttctt ctctcacatg ggctggctga tgtgccgaaa gtccaagcag 480
gtcaaggaaa agggcaagga acccgacatc tctgacctgt acgctgatcc catcctgcga 540
taccaaaaga agtactacat gctgttcatg cccctgatgt gcttcgcttt ccccaccgtg 600
gtgcccctgt acttctggaa cgagtctctc aagaccgcct tcttcgtgaa catcttccgg 660
tacatcttct ccctgcacgc cacctggctg gtgaactctg ccgctcacct ctacggcgag 720
aagccctaca acaagcacat taaccccgcc gagaacctgg ccgtgtctct gatcgtgaac 780
ggcgaacgat ggcacaacta ccaccacaca ttcccttggg actacaaggc cggcgagttc 840
ggacgatacg gcaccaacct gaccaccgtg ttcatcaacg ccatggccaa gatcggcctg 900
gcctacgacc tgaagttcgt gcccgaggac gtggtgaagc gacgagtgca caagaccggc 960
gacggctctc acgccgtgtg gggctggggc gacaaggacc agaccgtgga agagatttct 1020
aagaccatcg tggcctacaa ccagtcttaa 1050
<210> 44
<211> 1116
<212> DNA
<213> 二化螟(Chilo supprealis)
<400> 44
atggacttcg agtctgagct gcagaactgc tctaacaagt ctcaaaagcg aaacatcatg 60
gctcccaacg cctctgacgt gaacggcgtg ctgttcgagg acgacgccgc tactcccgac 120
atggccctgt ctaacacccc tgtgcagaag gccgacaact accccaagaa gctggtctgg 180
cgaaacatta tcgccttcgc ctacctgcac attgccgccg tgtacggcgg atacctgttc 240
ctgttcgccg ccaagtggca gaccgacatt ttcgcctaca tcctgtacgt gatgtctggc 300
ctgggcatca ccgctggcgc ccaccgactg tgggctcaca agtcttacaa ggctaagtgg 360
cccctgcgac tgatcctggt gttcttcaac accctggcct tccaggactc tgccatcgac 420
tgggcccgag atcaccgaat gcaccacaag tactctgaga ctgacgctga ccctcacaac 480
gctacccgag gcttcttctt ctctcacatc ggctggctgc tggtgcgaaa gcaccccgag 540
ctgaagcaga agggcaaggg cctcgacctg tctgacctgt acgctgatcc catcctgcga 600
ttccagaaga agtactacct gattctgatg cccattgcct gcttcattct gcccaccgtg 660
attcctctgt actactgggg cgagaactgg gtgaccgcct tcttcgtggc cgctctgttc 720
cgatacgcct ttatcctgaa cgtgacctgg ctggtgaact ctgctgccca caagtggggc 780
gacaagccct acgacaagaa catcaagccc tctgagaaca tctctgtgtc tatcttcgcc 840
ctcggcgagg gattccacaa ctaccaccac acattccctt gggactacaa gaccgccgag 900
ctgggcaaca accgactgaa cttcactacc aacttcatca actttttcgc caagatcggc 960
tgggcctacg acatgaagac cgtgtctgac gagatcgtgc agtctcgagt gaagcgaacc 1020
ggcgacggct ctcaccacct gtggggctgg ggagacaagg accactgcaa ggaagaggtg 1080
gccgctgcca tccgaatcaa ccccaaggac gactag 1116
<210> 45
<211> 1005
<212> DNA
<213> 平行带状卷叶蛾(Choristoneura parallela)
<400> 45
atggctccca acgtcgagga catggaatct gacatgcccg agtctgagaa gtgggagaag 60
ctggtggctc cccaggctgc tccccgaaag tacgagatca tctacaccaa cctgctgacc 120
ttcggctacg gccacattgc cggcctgtac ggactgtacc tgtgcttcac ctctgccaag 180
tggcagaccg tgatcctggc catcatcctg aacgagatgg ccattctggg catcaccgct 240
ggcgcccacc gactgtggtc ccaccgatct tacaaggccg ctgtgcccct gcagatcatt 300
ctgatgatct tcaactctct ggccttccag aactctgcca tcaactgggt gcgagatcac 360
cgaatgcacc acaagtactc tgacaccgac ggcgaccctc acaacgcctc tcgaggcttc 420
ttctactctc acgtcggctg gctgctggtg aagaagcacc ccgaggtcaa aaagcgaggc 480
aagatgatcg acatgagcga catctactct aaccccgtgc tgcgattcca gaagaagtac 540
gctatcccct tcatcggcat gatctgcttc gtgctgccca ctattatccc tatgtacttc 600
tggggcgaga ctctgtctaa cgcctggcac atcaccatgc tgcgatacgt gttctctctg 660
aactctatct tcctggtgaa ctccgccgct cacctgtacg gctaccgacc ttacgacaag 720
aacattctgc ccgccgagaa caagatcgcc ctgatcgcct gcctgggcga ctctttccac 780
aactaccacc acgtgttccc ttgggactac cgagcctctg agctgggcaa catcggaatg 840
aactggaccg ctcagttcat cgactttttc gcctggatcg gctgggccta cgacctcaag 900
accgcctctg acgagaacat caactctcga atgaagcgaa ccggcgacgg caccgacatc 960
tctggacaga agtactcttg cgagtcctct gaggtgctgc agtaa 1005
<210> 46
<211> 1008
<212> DNA
<213> 蔷薇斜条卷叶蛾(Choristoneura rosaceana)
<400> 46
atggctccca acgtcgagga catggaatct gacctgcctg agtctgagga aaagctcgag 60
aagctggtgg ctccccaggc tgctccccga aagtaccaga tcatctacac caacctgctg 120
accttcggct actggcacat tgccggcctg tacggactgt acctgtgctt cacctctgcc 180
aagtggcaga ccatcattct ggccctgatc ctgaacgaga tggccattct gggcatcacc 240
gctggcgccc accgactgtg ggctcaccga tcttacaagg ccaccgtgcc tctgcagatc 300
atcctgatca tcttcaactc cctgtctttc cagaactctg ccatccactg gatccgagat 360
caccgaatgc accacaagta ctctgacacc gacggcgacc ctcacaacgc ctctcgaggc 420
ttcttctact ctcacgtcgg ctggctgctg gtgaagaagc accccgaggt caagaagcga 480
gccaagacca tcgacatgtc tgacatctac tctaacccca tcctgcgatt ccagaagaag 540
tacgctatcc ccttcatcgg catgatctgc ttcgtgctgc ccactattat ccctatgtac 600
ttctggggcg agactctgtc taacgcctgg cacatcacca tgctgcgata cgtgttctct 660
ctgaactcta tcttcctggt gaactccgcc gctcacctgt acggctaccg accttacgac 720
aagaacattc tgcccgccga gaacaagatg accttcattg cctgcctggg cgagaacttc 780
cacaactacc accacgtgtt cccttgggac taccgagcct ctgagctggg caacatcgga 840
atgaactgga ccgccaagtt catcgacttt ttcgcctgga tcggctgggc ctacgacctc 900
aagaccgcct ctgacgagaa catcaagtct cgaatgaagc gaaccggcga cggcaccgac 960
gtgtctggac agaagtactc ttgcgagtcc tctgaggtgc tgcagtaa 1008
<210> 47
<211> 1047
<212> DNA
<213> 苹果蠹蛾(Cydia pomonella)
<400> 47
atgcctcccc gagagtctaa gaaggtggcc ctgcgatctt acgagacccc tgtcgcttct 60
ctccctcctc gaaagtacga gattatctac ctcaacctct tcctgcacat cgctggacat 120
atctccgccg tctacggcct gtatctgtgc ttcaccgccg cccagtggaa gaccatcttc 180
tttgcctacc tgtggctgtt gatgggcgag ctcggcgtgg tgtgtggcgc tcacagattg 240
tggtctcacc gttctttcaa ggtgaagcct cctctcgaga tcatgctgat gctgttcaac 300
tgtattggat tccagaacac cgccactgac tgggtccgaa accaccggct ccatcacaag 360
cactctgaca ctgacgccga cccccataac tctaaccgag gaatgctgtt ctcccacatt 420
ggctggctgt gtgtgcgaaa gcacccagat gttaaagaac gaggcaagac caccgacatg 480
tctgacatct actctaaccc cgtgctccga ttccagaaga agcacaaggt accccttttc 540
ggcgccatgt gtttcggcct gcccaccctt attcccaccc tgtggggaga ggacatcgtc 600
accgcttggc acgtcaacct gctgcgattc gttcttaatc tgaactctat cctgctggtc 660
aactccattg ctcataagta cggcacccga ccctacgatc gaaccatctg ccctcgacaa 720
aacaccacct gtaacatgat gactcttgga gagggcttcc acaactacca ccacaccttt 780
ccttgggact accgatctgc cgagctggga aagaactacc tgaacttcac caagtggttc 840
atcgacttct tcgccctgat tggatgggcc tacgacctga agaccgttcc tgacgatatg 900
atccagcgac gaatgaaaag aaccggagac ggatccaact cgtggggatg gggagacaag 960
gacatgacta aggaggagcg agactctgct actatcattt atcccgagaa gaaggatgat 1020
attaagatga tctccaaaaa gaactaa 1047
<210> 48
<211> 1050
<212> DNA
<213> 苹果蠹蛾(Cydia pomonella)
<400> 48
atgccccctc agggacagcc tcccgcctgg gtcctggacg agtccgatgc agtgaccgag 60
gacaaggacg tggccacccc cgctcccgaa gccgagaagc gaaagctgca gatcgtttgg 120
agaaacgtga ccctgttcgt gtttctgcac atcggagctc tgtacggagg atacctgttc 180
tttaccaagg ccatgtggac tacccgaatt ttcactgtgc tgctgtacat tatgtctggg 240
ctgggtatca ccgccggcgc ccatcgactc tgggctcaca agtcttacaa ggcccgactg 300
cccctgcgac tgctgctgac cctcttcaac accatcgcct ttcaggactc cgttctggat 360
tgggcccgag atcaccgaat gcaccataag tactctgaaa ccgacgcaga tccccacaat 420
gctacccgag gcttcttctt ctctcacgtg ggctggctgc tggtgcgaaa gcacccccag 480
atcaaggcca agggacatac tatcgacatg tctgacctgc tggccgatcc cgtgctgcga 540
ttccagaaga agtactacct gacactgatg cccttgtgct gcttcatcct gccctcttac 600
attcccaccc tctggggaga gtctctgtgg aacgcttact ttgtgtgcgc catcttccga 660
tactgttacg ttctgaacgt gacttggctg gtgaactccg ctgcccacaa atggggtgac 720
cgaccttacg acaagaacat caaccctgtg gagactaagc ctgtgtctct ggtggttttc 780
ggagagggat tccacaacta ccaccacacc ttcccctggg attacaagac cgccgagctg 840
ggcggatact ctctgaacct ttccaaactg ttcatcgata ctatgtccaa gattggatgg 900
gcctacgacc tgaagtccgt ttcccctgac atcgtggaga agcgagtgaa gcgcaccggc 960
gacggatctc accacgtgtg gggatgggac gatgctccct ctgagcaaaa ggtggctgcc 1020
accatcgtga accccgataa gaccgagtaa 1050
<210> 49
<211> 1005
<212> DNA
<213> 苹果蠹蛾(Cydia pomonella)
<400> 49
atggccccct actctgagga gtacgagatc ctgaaggaga atactaagcc cgtatctccc 60
caggccgccc ccagagagta caccgttgtg tactctgtgg tgcttatctt tgtttactgg 120
cacatcggag ccctgtacgg actgtacctg ggcttcacct ccgccaagtg ggccaccatc 180
atctttaact acctgatcta cgtgtctggc ggcttcgcca ttactgctgg atcccatcga 240
ctgtggtctc accgagcctt caaggctaag ctccccctgc agatcctgct catgcttctg 300
cagaccatgt cttgtcagaa gtctgtgctg aactgggtgc gagatcaccg actgcaccac 360
atgtactgtg ataccgatgc cgacccttac aactctactc gaggaatctt ctactctcac 420
atcggctggc tgatggtgaa gaagcatcct gaggtgatcc gaaagggccg aaccatcgac 480
atgtccgatc tggagaacaa ccctgtgctg aagttccaga agaagttcta ccccatcctc 540
gtgaccctga tggcctttat cctgcctgcc ctgatccccg ttattttctg gcaggagtct 600
ctgaacatcg ctcaccacgt ttctcttgtg cacctggtcg tgggctccca catgaccttt 660
gccattaact ctattgccca cgccttcgga tctaagcctt gcgacaagac catctctccc 720
actcagtcca tttccctgtc tctggtgacc ttcggcgaag gctaccataa ctaccaccac 780
gtgttcccct ttgattaccg agtggccgag ctgggcaaca actacctgaa cctgaccacc 840
aacttcatcg acttcttcgc ctggattggc tgggcctacg acctgaagta cgcctctccc 900
gatatggttg ctaagcgagc caagcgaacc ggcgacggaa ctgacctgtg gggacgagct 960
attgagcacg ccgatattca ggctaagcgg gtgcacccct cttaa 1005
<210> 50
<211> 1059
<212> DNA
<213> 马尾松毛虫(Dendrolimus punctatus)
<400> 50
atggctccca aggaagccga cgtcaacggc gtgctgttcg agtctgacgc caccactcct 60
gacatggctc tgcccactac tcccgtgcag caggccgaca actaccccaa gaagctggtc 120
tggcgaaaca tcctgctgtt cgcctacctg cacctggccg ctctgtacgg cggctacctg 180
ttcctgttct ctgccaagtg gcagaccgac atcttcgcct acatcctgta catcatgtct 240
ggcctgggca tcaccgctgg cgcccaccga ctgtgggctc acaagtctta caaggctaag 300
tggcccctgc gactgatcct ggtgctgttc aacaccctgg ccttccagga ctctgccatc 360
gactgggccc gagatcaccg aatgcaccac aagtactctg agactgacgc tgaccctcac 420
aacgctaccc gaggcttctt cttctctcac atcggctggc tgctggtgcg aaagcacccc 480
gagcttaaga agaagggcaa gggcctcgac atctctgacc tgtacgctga tcccatcctg 540
cgattccaga agaagtacta cctgctgctg atgcccctgg gctgcttcat cctgcctacc 600
gtgattcccg tgtacctgtg gaacgagact tggtctaacg ccttcctggt ggctgccctg 660
ttccgatacg ccgtgatcct gaacgtgacc tggctggtga actctgctgc ccacaagtgg 720
ggcgacaagc cctacgacaa gtctatcaag ccctctgaga acctgtctgt ggccctgttc 780
gccctcggcg agggattcca caactaccac cacacattcc cttgggacta caagaccgcc 840
gagctgggca acaaccgact gaacttcact actaccttca tcaacttttt cgccaagatc 900
ggctgggcct acgacatgaa gaccgtgtct gacgagatca tccagaaccg agtgaagcga 960
accggcgacg gctctcacca cctgtggggc tggggagaca aggaccactc taaggaagag 1020
atcaacgccg ccatccgaat caaccccaag gacgactaa 1059
<210> 51
<211> 1149
<212> DNA
<213> Drosophila grimshawi
<400> 51
atgcctccaa acgctatctc ttctcctcct gacgctctgc ccacctgtcc tgaggaccag 60
gtcctgtctg gctctcagtc tggcgctggc ggagcctcta agcagaccgg cgtgctgttc 120
gaggccgacg ccgacaccaa cgacggcggc ctgaccatgg acatcaccca gttcaagaac 180
gccgagaagc gaaagctgaa gtgggtgtgg cgaaacatcg tcctgttcgc ctacgtccac 240
gtggccgctc tgtacggcgg ctacctgctg gtgacccagg ccaagtgggc cactatcgtg 300
ttctctatgt tcctgtactc tgccggcatg atcggcatca ccggcggagc ccaccgactg 360
tgggctcacc gatcttacaa ggctaagtgg cccctgcgag tgatcctggt ggccttcaac 420
tctatcgcct tccaggacgc cgcctaccac tgggcccgag atcaccgagt gcaccacaag 480
ttctctgaga ctgacgctga ccctcacaac gctacccgag gcttcttctt ctctcacgtc 540
ggctggctgc tgtgcaagaa gcaccccgac gtcgtcgcca agggcaagtc tctggacctg 600
tctgacctgc gagccgaccg agtgctgatg ttccaaaaga agcactactt cgttctgatg 660
cccctggcct gcttcattct gcctacctgc attcccatgc tgtgctggaa cgagtctctg 720
ctgtgctctg tgctggtgcc caccatcttc cgatggtgcc tgcagctgaa catgacctgg 780
ctggtgaact ctgccgctca caagttcggc ggacgaccct acgacaagaa catcaaccct 840
tctcagtctc cctacgtgtc tctgttcacc ctcggcgaag gctggcacaa ctaccaccac 900
gtgttccctt gggactacaa gaccgccgag tggggcaact actctctcaa catgaccacc 960
gccttcattg acctgttcgc taagatcggc tgggcctacg acctgaagtc tgtggtgccc 1020
gagactgtcg agcgacgagt gcgacgaacc ggcgacggct ctcacgagct gtggggctgg 1080
ggcgacaagg acctgacacc tgaggacggc cagtctgtgc tgcacgtgct ggacaagaag 1140
tctaactag 1149
<210> 52
<211> 1086
<212> DNA
<213> 黑腹果蝇(Drosophila melanogaster)
<400> 52
atggctccct actctcgaat ctaccaccag gacaagtcgt cccgagagac tggcgtgctg 60
ttcgaggacg acgcccagac cgtggactct gacctgacca ccgaccgatt ccagctgaag 120
cgagccgaga agcgacgact gcccctggtg tggcgaaaca tcatcctgtt cgccctggtg 180
cacctggccg ctctgtacgg cctgcactct atcttcaccc gagccaagct ggccaccact 240
ctgttcgctg ccggcctgta catcatcggc atgctgggcg tgaccgctgg cgcccaccga 300
ctgtgggctc accgaaccta caaggccaag tggcccctgc gactgctgct ggtgatcttc 360
aacaccattg ccttccagga cgccgtgtac cactgggccc gagatcaccg agtgcaccac 420
aagtactctg agactgacgc tgaccctcac aacgctaccc gaggcttctt cttctctcac 480
gtcggctggc tgctgtgcaa gaagcacccc gacatcaagg aaaagggccg aggcctggac 540
ctgtctgacc tgcgagctga ccccatcctg atgttccagc gaaagcacta ctacattctg 600
atgcccctgg cctgcttcgt gctgcccacc gtgattccca tggtgtactg gaacgagact 660
ctggcctctt cctggttcgt ggccaccatg ttccgatggt gcttccagct caacatgacc 720
tggctggtga actctgccgc tcacaagttc ggcaaccgac cttacgacaa gactatgaac 780
cccactcaga acgccttcgt gtctgccttc accttcggcg aaggctggca caactaccac 840
cacgcattcc cttgggacta caagaccgcc gagtggggct gctactctct gaacatcacc 900
accgccttca tcgacctgtt cgctaagatc ggctgggcct acgacctcaa gaccgtggct 960
cccgacgtga tccagcgacg agtgctgcga accggcgacg gctctcacga gctgtggggc 1020
tggggcgaca aggacctgac cgctgaggac gcccgaaacg tcctgctggt ggacaagtct 1080
cgataa 1086
<210> 53
<211> 1146
<212> DNA
<213> 大果蝇(Drosophila virilis)
<400> 53
atgcctccaa acgccatcac ttctccctct aacgtgctgg ccacctgtcc tgaggtcgag 60
cagctgccct ctggcgagtg cgcctctacc gcctcttcta agcagaccgg cgtgctgttc 120
gagggcgacg ccgacaccgc cgactgcgcc ctggacgtgg acgtgaagaa gctgaagaag 180
gccgagaagc gaaagctgaa gctggtgtgg cgaaacatca tgctgttcgg ctacctgcac 240
ctggccgccg tgtacggcgg atacctgatg ctgacccagg ccaagtgggc taccgtggtg 300
ttctctttct tcctgtacac cgccggcatg atcggcatca ccggcggagc ccaccgactg 360
tgggctcacc gatcttacaa ggctaagtgg cccctgcgag tgatcctggt gaccttcaac 420
accattgcct tccaggacgc cgccttccac tgggcccgag atcaccgagt gcaccacaag 480
ttctctgaga ctgacgctga ccctcacaac gctacccgag gcttcttctt ctctcacgtc 540
ggctggctgc tgtgcaagaa gcaccccgac gtcgtcgcca agggcaagtc tctggacgtg 600
accgacctgc gagccgaccg aatcctgatg ttccagctga agcactactt cgtgctgatg 660
cccctggcct gcttcattct gcccaccatc attcccatga tctgctggaa cgagtctctg 720
ctgtgctcct ggttcgtggc caccatgttc cgatggtgct tccagctcaa catgacctgg 780
ctggtgaact ctgccgctca caagttcggc ggacgaccct acgacaagaa catcaacccc 840
tctcagtctc cctacgtgtc tgccttcacc ttcggcgaag gctggcacaa ctaccaccac 900
gtgttccctt gggactacaa gaccgccgag tggggccgat actctctgaa catgactacc 960
gccttcatcg actttttcgc caagatcggc tgggcctacg agctgaagtc tgtggctccc 1020
gagactatcg agcgacgagt gcgacgaacc ggcgacggca cccacgagct gtggggctgg 1080
ggcgacaagg acctgaccgc tgaggacgcc cagcacgtcc tgttcgtgga caagaaggct 1140
gcctag 1146
<210> 54
<211> 999
<212> DNA
<213> 苹淡褐卷蛾(Epiphyas postvittana)
<400> 54
atggccccca acgtggagga gatcgagact gacctcaccg agactgagga gaaatgggag 60
aagctggtgg ctccccaggc cgcccctaga aagcacgaga tcctgtacac caacctgctg 120
attttcggct acggacacct ggccggactg tatggactgt acctgtgttt cacctctgcc 180
cgacttcaga ccatcatcct ggccttcatt ctgcacgcca tggccatcct gggaattact 240
gccggcgctc accgactgtg gactcaccgt tcttacaagg ccaccatgcc cctgcagatt 300
atcctgatta tcttcaactc tctgtccttt caaaactccg ccatcaactg ggtccgagat 360
caccgatctc accacaagta ctgtgacacc gacgcagatc ctcataacgc cgctcgaggc 420
ctgttctaca gccatatcgg atggctgctg gtgaagaagc accccgaggt caagaagcga 480
ggaaagatga ccgacatgtc tgatgtgtat cgaaaccccg tgctgcgatt ccagaagaag 540
tacgctgtgc cttttatcgg aaccatctgc ttcgtcctgc ctaccatcat tcccatgtac 600
ttctggggcg agtccctgaa caacgcctgg catatcaccc tcctgcgata cattttctcc 660
atgcacacta ttttcctggt gaactctgtg gcccatctgt ggggcaaccg accctacgac 720
aagaacattc ttcccgctga caaccgaacc ctgtctatcg ccaccctcgg ggaggcctcc 780
cacaactacc accacacctt cccttgggat taccggtcca ctgagctggg atacctgccc 840
acgaacttta ccaccaactt tatcgacttc ttcgcctgga tcggctgggc ttacgacctg 900
aagaccacct ctggagagat catcaattct agaatccagc gaaccggcga tggaacccat 960
tctcgatcta agaagaacat ctccacccag gacgagtaa 999
<210> 55
<211> 1042
<212> DNA
<213> 梨小食心虫(Grapholita molesta)
<400> 55
atgcctcccg agtccaagaa cgtgcccatc cagcagaact ttcgaaagcc ccttgagttc 60
ctgccccgaa agtacgacgt cgtgtacgag aacgtgttcc tgcacatcgc cggccatatc 120
tcggccgcct acggactgta cctgtgcttt accgttgcta agtggcagac tatcgccctg 180
gccttcgtgt ggtaccatct gggaaagatc ggaatcatct gcggagctca cagactgtgg 240
tctcaccgat gctacaaggc caagatgcct ctgcacatca tcctgatgat ctgcaactgt 300
attggatttg aaaacaccgc catcaattgg gttcgaaacc accgaatgca ccacaagcac 360
tctgacaccg acggcgatcc ccacaactct aaccgaggtg ccttcttctc ccacatcggc 420
tggctgtgcg tgcgaaagca tcctgaaact cgaaactgta aggtggacat gtctgatatt 480
tactctaacc ccgtgctggt gttccagaag cgctacaagt atcccctggt gggcttcctg 540
tgctatggac ttcccacctt catccccatg tacttctggg gcgaaactct ggtgaccgct 600
tggcacgtga acatcctgcg gtacttcctg tcgatgaacg ccgtcttcct ggtgaattcc 660
cttgcccatc tgtacggcaa caagccctac gacatttcca tctgcccccg gcagtctccc 720
ttcgtgtctc tcctgaccat cggagagggc tttcacaact accaccacac cttcccttgg 780
gactaccgag ccgccgagct gggcaataac taccttaacg tgggaaagtg ggtgatcgac 840
ttcttcgcca tgattggatg ggcctacgac ctgaagactg tgcccgatga gaccattaag 900
cgacgaatga agcgaactgg agacggaacc aactgctggg gatggggcga caaggacatg 960
actcgagagg accgagacat cgccaaaatt atttaccccg agtctatttc taaggaagag 1020
cgagacatta tcgccatgtt aa 1042
<210> 56
<211> 1026
<212> DNA
<213> 梨小食心虫(Grapholita molesta)
<400> 56
atgacccctg acgctcgaga ggaaaccctg ctcgaggacg acggctacgt gcgactggtg 60
gctccccagg cctcttctgg aaagcaagag gcctcctacc tgaacattgc catgtactcg 120
ttcttccaca ccgctggcgc ctacggcctg tacctggccg ccaccgaggc caagtgggct 180
accatcttcc tggccttcat cctgcacgag gccgccatcc tgggcgtgac cgccggtgct 240
caccgactgt gggctcaccg aacctacaag gccaagctgc ccctgcagat cttcctgatg 300
ctgctgcact ctttcgcctg ccgatactct gccttccact gggcccgaga tcaccgactc 360
caccacaagt actctgacac cgacggcgac cctcacaacg cctctcgagg cctgttcttc 420
tctcacatcg gctggctgat gttcaagaag caccccgagg ctaagaagcg aatgggcaag 480
atcgacgtgt ctgacctgaa ggccaacaag gtcctgatgt ttcagaagaa gtactctatc 540
cccttcatcg gcaccatctg cttcattctg cccactctga tccctatgta cttctgggac 600
gagactttct cttctgcctt cttcgtgacc gtgctgcgag tgatcgtgtc tctgcacgtg 660
acctttctgg tgaactcctt cgctcacgcc ttcggcaacc gaccttacga ccggtacatc 720
aagccctctc agtctatccc catctctctg gctaccctcg gcgagggcta ccacaactac 780
caccacgcat tcccttggga ctacaaggct tctgagttcg gcaacaccat cggcaacttc 840
actactatgg tgatcaactt cttcgcctgg ctcggctggg cttacgacct gaagtctgtg 900
ggcgccgaca tgatcgccaa gaagaaggaa aagaccggcg acggcaccaa cctgtggggc 960
tggggcgaca aggacatgtc taaggaacac aaggaaatcg ccaacgtcac ttacaaggaa 1020
aagtag 1026
<210> 57
<211> 1017
<212> DNA
<213> 谷实夜蛾(Helicoverpa zea)
<400> 57
atggcccagt cttaccagtc taccaccgtg ctgtctgagg aaaaggaact gaccctgcag 60
cacctggtgc ctcaggcttc gccccgaaag taccagatcg tgtaccccaa cctgatcacc 120
ttcggctact ggcacattgc cggcctgtac ggactgtacc tgtgcttcac ctctgccaag 180
tgggccacca tcctgttctc ttacattctg ttcgtgctgg ccgagatcgg catcaccgct 240
ggcgcccacc gactgtgggc tcacaagacc tacaaggcca agctgcccct cgagatcctg 300
ctgatggtgt tcaactctat cgccttccag aactctgcca tcgactgggt gcgagatcac 360
cgactgcacc acaagtactc tgacaccgac gctgaccctc acaacgcctc tcgaggcttc 420
ttctactctc acgtcggctg gctgctggtg cgaaagcacc ccgaggtgaa gaagcgaggc 480
aaggaactca acatgtctga catctacaac aaccccgtgc tgcgattcca gaagaagtac 540
gctatcccct tcatcggcgc cgtgtgcttc gctctgccca ctatgatccc cgtgtacttc 600
tggggcgaga cttggtctaa cgcctggcac atcaccatgc tgcggtacat catgaacctg 660
aacgtgacct tcctggtgaa ctctgctgcc cacatctggg gcaacaagcc ctacgacgcc 720
aagattctgc ccgctcagaa cgtggccgtg tctgtggcca ccggcggaga gggcttccac 780
aactaccacc acgtgttccc ttgggactac cgagccgccg agctgggcaa caactctctg 840
aacctgacca ccaagttcat cgacctgttc gccgccatcg gctgggccta cgacctcaag 900
accgtgtccg aggacatgat caagcagcga atcaagcgaa ccggcgacgg caccgacctc 960
tggggccacg agcagaactg cgacgaggtg tgggacgtga aggacaagtc ctcttaa 1017
<210> 58
<211> 1014
<212> DNA
<213> 葡萄花翅小卷蛾(Lobesia botrana)
<400> 58
atggtgcctc gagccgcttc ggaggagacc gaccttaagg aggctaccca gcttgagccc 60
cgaaagtacg agatcgtgta cactaacgtg atctacttca cctattggca tatcgccgga 120
ctgtacggtc tgtacctgtg ttttacctcc gctaaatggg agaccatcgt gttcgcttgg 180
gcttggtatg tgctcggaga gctgggagtg attgccggcg ctcatagatt gtgggcccac 240
cgaacctaca aggcaaagat gcccctgcag atcatcctga tgctgtttaa ttgtatcggt 300
tttcagaaca ccgctaccga ttgggttcga gatcaccgag tgcatcacaa gcactctgac 360
accgacgccg acccccataa ctctcagcga ggcttctttt tctctcacgt gggctggctg 420
ctgacccgaa agcatcggct ggtgaaggag aagggagaag ctgttgacat gactgatatc 480
tactctaacc ctgttttaag attccagaag aagtactctc tccccctgat cggcactctt 540
tgctttgctc tgcccaccct gctgcccgct tactgctggg gagaggccgt cggcaccgct 600
tggaacatta acctgctgcg atactgtctt aacctgaacg gaaccttcct gactaactcc 660
gccgctcaca agtttggctc taagccctat gacaagacca ttcctcccac ccagaacttg 720
ctggtgtctt tcatgactct gggagaagga tttcataatt accaccacgt cttctcgtgg 780
gactaccgag ctgctgagct tggcaacacc tacctgaaca tgaccactat ctttatcgac 840
ttcttcgctc ttattggatg ggcctacgac ctgaagaccg ttcctgagga tgttattaaa 900
aagcgaatgg cccgaactgg agatggtact aacctgtggg gttggggaga caaggacatg 960
accaaggagg acgtggtgga caccgagata cgattccacg ctaagaagga gtaa 1014
<210> 59
<211> 1059
<212> DNA
<213> 葡萄花翅小卷蛾(Lobesia botrana)
<400> 59
atgcctccaa acgtgaccga cgtgaacggc gtgctgttcg agtctgacgc cgctactccc 60
gacctggctc tggctacccc tcctgtgcag aaggccgaca acacccctcg agtctacgtg 120
tggcgaaaca tcatcctgtt cggctacctg cacattgccg ctctgtacgg cggatacctg 180
ttcctggtgt ctgctaagtg gcagaccgac atcttcgcct acctgctgta cgtggcctct 240
ggcctgggca tcaccgctgg cgcccaccga ctgtgggctc acaagtctta caaggccaag 300
tggcccctgc gagtgatcct gaccatcttc aacaccattg ccttccagga ctctgccatc 360
gactgggccc gagatcaccg aatgcaccac aagtactctg agactgacgc tgaccctcac 420
aacgctaccc gaggcttctt cttctctcac atcggctggc tgctggtgcg aaagcacccc 480
gagctgaagc gaaagggcaa gggcctcgac ctgtctgacc tgtacgctga tcccatcctg 540
cgattccaga agaagtacta cctgattctg atgcccctgg cctgcttcat catgcccact 600
ctgatccccg tgtacttctg gggcgagact tggaccaacg ccttcttcgt ggctgccctg 660
ttccgatacg ccttcatcct gaacatcacc tggctggtga actctgctgc ccacaagtgg 720
ggcgacaagc cctacgacaa gaccatcaag ccctctgaga acctgtctgt gtctctgttc 780
gccttcggcg agggcttcca caactaccac cacacattcc cttgggacta caagaccgcc 840
gagctgggca accaccgact caacttcact accaagttca tcaacttttt cgccaagctc 900
ggctgggcct acgacatgaa gaccgtgtct gacgagatcg tgcagaagcg agtccagcga 960
accggcgacg gctctcacca cctgtggggc tggggagaca aggaccagtc taaggacgag 1020
gtggacgccg ccatccgaat caaccccaag gacgactag 1059
<210> 60
<211> 1026
<212> DNA
<213> 烟草天蛾(Manducta sexta)
<400> 60
atggctccca acttcggcaa cgaggtgtcg tcgcccatcg tggccgagga atcttacgag 60
aagctgatcc ctcctcaggc tgctccccga aagtacaagt acctgtacgc caacatgatc 120
tacttcacct actggcacat tgccggcctg tacggcatct acctggccat caccaccgcc 180
aagtgggcca ccatcatcct ggcctacctg ctgttcgtgg ccggcgagat cggcatcacc 240
gctggcgccc accgactgtg ggctcacaag tcttacaagg ccaagctgcc cctgcagatc 300
ctgctgatgc tgttcaactc taccgccttc cagaactctg tgatcacctg ggtgaaggac 360
caccgaatgc accacaagta ctctgacacc gacgctgacc ctcacaacgc tacccgaggc 420
ttcttctact ctcacgtcgg ctggctgatg gtgaagcgac accccgaggc catcaagcga 480
ggcaagtctc tggacatgtc tgacatctac aacaaccccg tgctgaagtt ccagaagaag 540
tacgctattc ccctgattac caccgtggcc ttcgtgctgc ccactattat ccctatgtac 600
ttctgggacg agtctttcaa cgtggcctgg cacatgacca tgctgcggta catcatcaac 660
ctgaacacca tctttctggt gaactctgtc gctcacatgt ggggctacaa gccctacgac 720
aagaacattg ctcccactca gaactacatt gccaccttcg ctaccctcgg cgagggcttc 780
cacaactacc accacgcatt cccttgggac taccgagcct ctgagctggg caacaactac 840
ctgaacctga ctaccaagtt catcgacttt ttcgcctgga tcggctgggc ctacgacctc 900
aagaccgtgc ctgaggacct gctgcaaaag cgaatggaac gaaccggcga cggcaccaac 960
ctgtggggcc gaggcgataa gaacatgaag aaggactacg tcaagtctac cgacgtgcac 1020
gagtaa 1026
<210> 61
<211> 990
<212> DNA
<213> 欧洲玉米螟(Ostrinia nubilalis)
<400> 61
atggtcccct acgccactac cgccgacggc caccccgaaa aggacgagtg cttcgaggac 60
aacgagatca agtctaattc tctacctaag ctggagattc tgtactttaa cgttatgacc 120
ttcaccttcc tgcacctgtc tgctctgtac ggtctgtacc tgggcttcac ctctgtgaag 180
tgggctacca tcggactggg catcattttc tacttcttcg ccgagatcgg aattaccgcc 240
ggagcccatc gactgtggtc tcaccgatct tacaaggcca agttgccctt ggagatcctg 300
ctgatggtgt tcaactccat ggccttccag aacaccgccc tgtcttgggc tcgagaccat 360
cgagttcacc acaagtgccc cgacaccaac ggagaccctc ataacgctaa tcgaggattc 420
ttctactccc acgttggctg gttgatgacc aagaagtctg acgaggtgat taagcaggga 480
aagctgtgtg acgtggctga cctgtattct aaccccgttc tgcgattcca gaagaagtac 540
gctgttcctt tcattggaac tctgtgcttc gtcctgccca ccctcatccc catgtacttc 600
tggggagaga ccctgaacaa tgcttggcat ttcaacatgt tccgatacgt gattaacctg 660
aacgccacct tctgcgtgaa ctctgtcgtg cacaagtggg gatacaagcc ctacgacaag 720
aacatctgtc ccacccagaa cgtgctgctg aacttggctg ttctgggtga ggcctttcat 780
aactaccacc atgtgttccc ttgggactac cgagccgctg agctgggtaa tcagaagatg 840
aaccccacta ctctgttcat tgatttcttt gcctggattg gctgggccta cgaccttaag 900
actgcctcca aggagatgat caagtctcga tctgaacgaa ccggtgacgg aaccgacctg 960
tggggtcact cggccgacaa gctgaagtaa 990
<210> 62
<211> 1020
<212> DNA
<213> 红铃麦蛾(Pectinophora gossypiella)
<400> 62
atggctccca acaccaagac ctctgagtct ctgctcaaga cccctgagga cctgaagtcc 60
tctgaggaca ccaagcagaa gctggtccac ctgaacctgc tgaccttcgg ctacggccac 120
ctggccggcc tgtacggact gtacctgtgc ttcacctctg ccaagtggcc taccatcttc 180
ctgaactacg tgctgctgat catctctgag ctgggcgtga ccgctggcgc ccaccgactg 240
tgggctcaca agacctacaa ggccaagctg cccctgcaga tcctgctgat gatcttcaac 300
tctgtggcct tccagaacac cgctaccgac tgggtgcgag atcaccgaat gcaccacaag 360
tactctgaca ccgacgctga ccctcacaac tctaaccgag gcttcttcta ctctcacgtc 420
ggctggctgc tgatgcgaaa gcaccccgag gtcaagcgac tcggcaaggg catcgagatg 480
cgagacatct actctaaccc cgtgctgcga ttccagaagc gatacgctct gcccgtgatc 540
ggagccgcct gcttcattct gcccaccgtg attcccgtgt actgctgggg cgagactctg 600
tctaactctt ggcacgtgac cattttccga tacgtggtga acctgaacgt gaccttcctg 660
gtgaactctg ccgctcacat ctggggcaac aagccctacg acaagaccct gcgacctgct 720
cagaacatcc ccgtggctct gctcaccctc ggcgagggct tccacaacta ccaccacgtg 780
ttcccttggg actaccgaac cgccgagctg ggcaacaaca agctcaacgt gactaccttc 840
ttcatcaact ttttcgcctg gatcggctgg gcctacgacc tcaagaccgc tcctgacgac 900
atcatccgaa agcgagtcga gcgaaccggc gacggcacca acatgtgggg ctggggagac 960
aaggacatgt ctaaggacga ccgagagtct gtgaagatcc tgggcgagaa gttcctgtaa 1020
<210> 63
<211> 1107
<212> DNA
<213> 天竺葵(Pelargonium hortorum)
<400> 63
atgggcgtgc tgctgaacat ctgttcgtct cccttccccg tggtggcctc tgccgcctct 60
acctctatct ctaaggtgaa ccacatccga aaggtgggcg tgaccggcgt gatggctccc 120
cagaagatcg agatcttcaa gtctatggag gagtggggca agcacaacat cctgcccctg 180
gccaagcccg tcgagaagtc ttggcagcct accgacttcc tgcccgaccc ctcgtctgag 240
ggcttcatgg aggagtacaa cgccttcaag gagcgaactc gagagctgcc cgacgagtac 300
ttcgtggtgc tggccggcga catgatcacc gaggaggccc tgcccaccta ccagaccctg 360
gtgaaccgac ccgacgaggt ggccgacgag actggccact ctgagtctcc ctgggccgtg 420
tggtcccgag cctggaccgc cgaggagaac cgacacggcg acctgctgaa caagtacctg 480
tacctgtctg gcaagctgga catgcgacag gtcgagaaga ccatccagta cctgatcgct 540
ctgggccagg acatcggcac cgagaagaac ccctaccacc tgttcatcta cacctcgttc 600
caggagcgag ccaccttcat ctctcacgcc aacaccgcca agctggccca gcagcacggc 660
gacaagcagc tggctcagat ctgcggcacc attgccgccg acgagaagcg acatgagact 720
gcctacaccc gaatcgtgga caagctgttc gagctggacc ccgacgagac tatgtcttgc 780
ctggcccaca tgatgaagcg aaagatcacc atgcccgccc acctgatgcg agatggccga 840
gatccccacc tgttccagca cttctctgtg gtggcctccc gaaccggcgt gtacaccgtg 900
atggactaca tcaacatcct cgagcacttc gtcgagaagt ggaacatcga gaagatcacc 960
gccggactgt ctgacaaggg ccgagaggcc caggactacg tgtgcaagct gggcgagcga 1020
ctgcgaaagg tcgaggagcg agctcatcag cgagtggtgc aggccgaccc catccccttc 1080
tcttggatct tcgaccgaaa ggtgtaa 1107
<210> 64
<211> 1050
<212> DNA
<213> 小菜蛾(Plutella xylostella)
<400> 64
atgtgcccca agtctcccga gcaggcctct gtggtcgagg aacgagagga aaagtctgcc 60
gagttcgaga agctgatcgc tccccaggct ggaccccgaa agttcaacat cgtgtacttc 120
aacctgctga ccttcggcta ctggcacctg gctggcgcct acggcctgta cctgtgcttc 180
acctctgcca agttcgccac cgtgctgttc gccatcctga cctacaccgc cgctgagatc 240
ggcatcaccg ctggcgccca ccgactgtgg tcccacaagg cctacaaggc caagctgccc 300
ctgcagatca tcctgatgac cttcaacacc ctggccttcc agaactctgc catcgagtgg 360
gtgcgagatc accgactgca ccacaagtac tctgacaccg acgctgaccc tcacaacgct 420
acccgaggct tcttctactc tcacgtcggc tggctgctgg tgcgaaagca ctctgaggtg 480
aagaagcgag gcaagaccat cgacatgtct gatatgtact ctaaccccgt gctggctttc 540
caaaagcggt acatcgtgcc ctgggtgatt ctggtgacct tcctgctgcc taccatcatt 600
cccgtctacc tgtggaacga gtctctgtgg acctcttggc acgtgaccat gctgcgatac 660
gtggccaacc tgaacgccac cttcctggtg aactctgctg cccacctgtg gggctacaag 720
ccctacgaca agaacatcat gcccgctcag aacatctctg tgtctctggc caccttcggc 780
gagggcttcc acaactacca ccacgtgttc ccttgggact acaaggctgc cgagctgggc 840
aacaaccgat acaacctgac taccaagttc atcgactttt tcgcctggat cggatgggcc 900
tacgacctga agtctgtgtc tgaggaactg gtggtgaacc gaatgcgacg aaccggcgac 960
ggctctaacc tctggggctg gggcgacaag gacatgaccg aagaggaccg aaacggcgcc 1020
ctgctcacca ccaagtccgt ggtcgagtag 1050
<210> 65
<211> 1191
<212> DNA
<213> 蓖麻(Ricinus communis)
<400> 65
atggccctga agctgaaccc cttcctgtct caaacccaga agctgccctc tttcgccctg 60
cctcccatgg cctctacccg atctcccaag ttctacatgg cctccaccct gaagtctggc 120
tctaaggagg tcgagaacct gaagaagccc ttcatgcctc cccgagaggt gcacgtgcag 180
gtcacccact ctatgcctcc ccagaagatc gagatcttca agtctctgga caactgggcc 240
gaggagaaca tcctggtcca cctgaagccc gtcgagaagt gctggcagcc ccaggacttc 300
ctgcccgacc ccgcctctga cggcttcgac gagcaggtcc gagagctgcg agagcgagcc 360
aaggagatcc ccgacgacta cttcgtggtg ctggtgggcg acatgatcac cgaggaggcc 420
ctgcccacct accagaccgc cctgaaccga ggcgacggcg tgcgagatga gactggcgcc 480
tctcccacct cttgggccat ctggacccga gcctggaccg ctgaggagaa ccgacacggc 540
gacctgctga acaagtacct gtacctgtct ggccgagtgg acatgcgaca gatcgagaag 600
accatccagt acctgatcgg ctctggcatg gacgtgcgag tcgagaactc tccctacctg 660
ctgttcatct acacctcgtt ccaggagcga gccaccttca tctctcacgg caacaccgcc 720
cgacaggcca aggagcacgg cgacatcaag ctggcccaga tctgcggcac cattgccgcc 780
gacgagaagc gacacgagac tgcctacacc aagatcgtcg agaagctgtt cgagatcgac 840
cccgacggca ccgtgctggc cttcgccgac atgatgcgaa agaagatctc tatgcccgcc 900
cacctgatgt acgacggccg agatgacaac ctgttcgacc acttctctgc cgtggctcag 960
cgactgggcg tgtacaccgc caaggactac gccgacatcc tcgagtttct ggtgggccga 1020
tggaaggtgg acaagctgac cggcctgtct gccgagggcc agaaggccca ggactacgtc 1080
tgccgactgc ctccccgaat ccgacgactc gaggagcgag ctcagggccg agctaaggag 1140
gctcccacca tgcccttctc ttggatcttc gaccgacagg tgaagctgta a 1191
<210> 66
<211> 1533
<212> DNA
<213> 酿酒酵母(Saccharomyces cerevisiae)
<400> 66
atgcccacct ctggcaccac catcgagctg attgacgatc agttccccaa ggacgactct 60
gcctcttctg gcatcgtgga cgaggtggac ctgaccgagg ccaacatcct ggccaccggc 120
ctgaacaaga aggctccccg aatcgtcaac ggcttcggct ctctgatggg ctctaaggaa 180
atggtgtctg tcgagttcga caagaagggc aacgagaaga agtctaacct ggaccgactg 240
ctcgagaagg acaaccagga aaaggaagag gccaagacca agatccacat ctctgagcag 300
ccctggactc tgaacaactg gcaccagcac ctgaactggc tgaacatggt gctggtctgc 360
ggcatgccca tgatcggctg gtacttcgcc ctgtctggca aggtgcccct gcacctcaac 420
gtgtttctgt tctctgtgtt ctactacgcc gtcggcggcg tgtctatcac cgccggctac 480
caccgactgt ggtcccaccg atcttactct gctcactggc ccctgcgact gttctacgcc 540
atcttcggct gcgcctctgt cgagggctct gccaagtggt ggggccactc tcaccgaatc 600
caccaccgat acaccgacac tctgcgagat ccctacgacg cccgacgagg cctgtggtac 660
tctcacatgg gctggatgct gctgaagccc aaccctaagt acaaggcccg agccgacatc 720
accgacatga ctgacgactg gaccatccga ttccagcacc gacattacat cctgctgatg 780
ctgctcaccg ccttcgtgat ccccactctg atctgcggct acttcttcaa cgactacatg 840
ggcggcctga tctacgccgg cttcatccga gtgttcgtga ttcagcaggc taccttctgt 900
atcaactctc tggcccacta catcggcacc cagcctttcg acgaccgacg aacccctcga 960
gacaactgga tcaccgccat tgtgaccttc ggcgagggct accacaactt ccaccacgag 1020
ttccccaccg actaccgaaa cgccatcaag tggtatcagt acgaccccac caaggtgatt 1080
atctacctga cctctctggt cggcctggcc tacgacctga agaagttctc tcagaacgcc 1140
atcgaggaag ccctgatcca gcaagagcag aagaagatca acaagaagaa ggcaaagatc 1200
aactggggac ccgtgctgac cgacctgcct atgtgggaca agcagacctt cctggccaag 1260
tccaaggaaa acaagggcct cgtcatcatc tctggcattg tgcacgacgt gtctggctac 1320
atttctgagc accccggtgg cgagactctg atcaagaccg ctctcggcaa ggacgccacc 1380
aaggccttct ctggcggagt gtaccgacat tctaacgccg ctcagaacgt gctggccgac 1440
atgcgagtgg ccgtgatcaa ggaatctaag aactctgcca tccgaatggc ctctaagcga 1500
ggcgagatct acgagactgg caagttcttt tag 1533
<210> 67
<211> 1017
<212> DNA
<213> 甜菜夜蛾(Spodoptera exigua)
<400> 67
atggcccaga ctatccagac caccaccatt ctggagcaga aggaggaaaa gaccgtgacc 60
ctcctggtgc cccaagccgg taagcgaaag ttcgagttcg tctaccagaa ccttattact 120
ttcgcttact ggcacatcgc tggtctgtac ggcctctacc tgtgcttcac ctccgccaag 180
tgggctacca tccttttctc cttcatcctg ttcgtgatcg ctgagattgg tatcaccgcc 240
ggtgctcacc gattatggtc ccacaagtct tacaaggtca agctgcctct ggagattctg 300
ctgatggtca tgaactccat tgcttttcag aacaccgtca ttgactgggt ccgagaccac 360
cgactgcatc acaagtactc cgacaccgac gctgaccccc acaacgcctc ccgaggcttc 420
ttctactctc acattggttg gctgtttgtt cgaaagcacc ccgaggtcaa gaagcgaggc 480
aaggagctgg atatgtccga catctacaac aaccctgtct tgcgattcca gcggaagtac 540
gccgttccct tcattggagc tgtctgcttc ggcctgccta cccttattcc tgtgtactgc 600
tggggcgagt cctggactaa cgcctggcat atcaccatgc tgcgatacat catgaacctg 660
aacgccactt tcctggtgaa ctccgccgct cacatttacg gcaagcgacc ctacgacaag 720
aagattcttc ctgcccagaa catcggcgtc tccatcgcca ccttcggtga aggttttcac 780
aactaccacc acgtgttccc ctgggactac cgagctgctg agctgggcaa caacggtctg 840
aacctgacta ccaagttcat cgacttcttc gcctggattg gatgggccta cgatctgaag 900
accgtctcca aggagatgat caagcagcga tccaagagaa ccggcgacgg cactaacctt 960
tggggtttgg aggacaagga cacccctgaa aacctgaaga atatcaaggg agagtaa 1017
<210> 68
<211> 1017
<212> DNA
<213> 海灰翅夜蛾(Spodoptera littoralis)
<400> 68
atggcccagt gcgtccagac caccaccatc ctcgagcaga aggaagagaa aaccgtgacc 60
ctcctggtgc cccaggccgg aaagcgaaag ttcgagatcg tgtacttcaa cattattacc 120
ttcgcttact ggcacattgc cggactttac ggcctgtacc tgtgcttcac ctctaccaag 180
tgggccaccg ttcttttctc tttcttcctg ttcgtggtgg ctgaggttgg agttaccgcc 240
ggctctcacc gactttggtc tcataagacc tacaaggcca agctccccct gcagattctt 300
cttatggtga tgaactctct ggcttttcaa aatactgtta tcgactgggt gcgagaccat 360
cggctgcacc ataagtactc tgacaccgac gctgatcccc acaacgcttc tcgaggattc 420
ttctactctc acgtgggatg gcttctggtg cgaaagcacc ccgacgtcaa gaagcgagga 480
aaggagatcg acatttctga catctacaac aatcccgtgc ttcgattcca gaagaagtac 540
gctatcccct tcattggcgc cgtgtgtttc gtgctgccca ccctcatccc tgtttacggc 600
tggggagaga cctggaccaa cgcctggcat gtggccatgc tgcgatacat tatgaacctg 660
aacgtgactt tcctggtgaa ctctgccgct cacatttacg gcaagcgacc ctacgataag 720
aagatccttc cctctcagaa catcgccgtc tctatcgcca ccttcggaga gggatttcac 780
aactaccacc acgtgttccc ctgggattac cgagctgctg agctgggaaa caactctctg 840
aacttcccta ccaagtttat tgacttcttc gcctggattg gatgggccta cgacctgaag 900
accgtgtcta aggagatgat caagcagcga tcgaagcgaa ccggcgacgg cacaaacctg 960
tggggactgg aggacgtcga cactcccgag gaccttaaga acaccaaggg cgagtaa 1017
<210> 69
<211> 1017
<212> DNA
<213> 海灰翅夜蛾(Spodoptera littoralis)
<400> 69
atggcccagt gcgtccagac caccaccatc ctcgagcaga aggaagagaa aaccgtgacc 60
ctcctggtgc cccaggccgg aaagcgaaag ttcgagatcg tgtacttcaa cattattacc 120
ttcgcttact ggcacattgc cggactttac ggcctgtacc tgtgcttcac ctctaccaag 180
tgggccaccg ttcttttctc tttcttcctg ttcgtggtgg ctgaggttgg agttaccgcc 240
ggctctcacc gactttggtc tcataagacc tacaaggcca agctccccct gcagattctt 300
cttatggtga tgaactctct ggcttttcaa aatactgtta tcgactgggt gcgagaccat 360
cggctgcacc ataagtactc tgacaccgac gctgatcccc acaacgcttc tcgaggattc 420
ttctactctc acgtgggatg gcttctggtg cgaaagcacc ccgacgtcaa gaagcgagga 480
aaggagatcg acatttctga catctacaac aatcccgtgc ttcgattcca gaagaagtac 540
gctatcccct tcattggcgc cgtgtgtttc gtgctgccca ccctcatccc tgtttacggc 600
tggggagaga cctggaccaa cgcctggcat gtggccatgc tgcgatacat tatgaacctg 660
aacgtgactt tcctggtgaa ctctgccgct cacatttacg gcaagcgacc ctacgataag 720
aagatccttc cctctcagaa catcgccgtc tctatcgcca ccttcggaga gggatttcac 780
aactaccacc acgtgttccc ctgggattac cgagctgctg agctgggaaa caactctctg 840
aacttcccta ccaagtttat tgacttcttc gcctggattg gatgggccta cgacctgaag 900
accgtgtcta aggagatgat caagcagcga tcgaagcgaa ccggcgacgg cacaaacctg 960
tggggactgg aggacgtcga cactcccgag gaccttaaga acaccaaggg cgagtaa 1017
<210> 70
<211> 1017
<212> DNA
<213> 斜纹夜蛾(Spodoptera litura)
<400> 70
atggctcaga ccatccagac caccaccatc ctcgagcaga aggaggagaa gaccgtgacc 60
ctgctggtcc ctcaggctgg taagagaaag ttcgagatcg tctatttcaa cctggtctct 120
tttgcctact ggcatatcgc tggcctgtac ggtctttacc tgtgcttcac ctccgccaag 180
tgggccacca ttctgttctc cttcttcctg ttcgtcgtcg ccgaggttgg agttaccgcc 240
ggagctcacc gactgtggtc ccacaagact tacaaggcca agctccccct tcagatcctt 300
ctgatggtca tgaactccct ggccttccag aataccgcca ttgactgggt ccgagaccac 360
cggcttcacc ataagtactc cgacaccgat gccgaccctc ataacgcctc ccgaggcttc 420
ttctactccc acatcggctg gctgttcgtg cgaaagcacc ccgatgtcaa gaagcgaggt 480
aaggagattg acatctccga catctacaat aaccccgtcc tgagattcca gaagaagtac 540
gccatccctt tcattggcgc tgtctgcttc gccctgccca cccttatccc cgtctatggt 600
tggggcgaga cctggaccaa cgcctggcac gtcgccatgc tgcgatacat catgaacctc 660
aatgttacct tcctggtcaa ctctgccgcc cacatctacg gaaagcgacc ctacgacaag 720
aagatccttc cctctcagaa catcgccgtc tccattgcca cctttggtga gggtttccac 780
aactaccacc acgtgttccc ttgggattac cgagctgccg agctgggcaa caactgcctg 840
aacttcacca ccaagttcat tgacttcttc gcttggatcg gatgggccta cgacctcaag 900
acggtctcca aggagatgat caagcagcga tccaagcgaa ctggcgacgg aactaacctg 960
tggggcctgg aggacgtcga tactcctgag gacctgaaga acaccaaggg cgagtaa 1017
<210> 71
<211> 1062
<212> DNA
<213> 斜纹夜蛾(Spodoptera litura)
<400> 71
atggctccca acatctctga ggacgtgaac ggcgtgctgt tcgagtctga cgccgctact 60
cccgacctgg ctctggcccg acctcctgtg cagaaggccg acaacaagcc caagcagctg 120
gtgtggcgaa acatcatcct gttcgcctac ctgcacctgg ccgctctgta cggcggctac 180
ctgttcctgt tctctgccaa gtggcagacc gacatcttcg cctacatcct gtacgtgatc 240
tctggcctgg gcatcaccgc tggcgcccac cgactgtggg ctcacaagtc ttacaaggct 300
aagtggcccc tgaaggtgat cctgatcatc ttcaacaccg tggccttcca ggacgccgcc 360
atggactggg cccgagatca ccgaatgcac cacaagtact ctgagactga cgctgaccct 420
cacaacgcta cccgaggctt cttcttctct cacatcggct ggctgctggt gcgaaagcac 480
cccgacctga aggaaaaggg caagggcctc gacatgtctg acctgctggc tgaccccgtg 540
ctgcgattcc agaagaagta ctacctgctg ctgatgcccc tggcctgctt cgtcatgccc 600
accgtgattc ccgtgtacct gtggggcgag acttggacca acgccttctt cgtggccgcc 660
atgttccgat acgccttcat tctgaacgtg acctggctgg tgaactctgc tgcccacaag 720
tggggcgaca agccctacga caagtctatc aagccctctg agaacatgtc tgtggccatg 780
ttcgccctcg gcgagggatt ccacaactac caccacacat tcccttggga ctacaagacc 840
gccgagttcg gcaacaacaa gctgaacttc actaccgcct tcatcaactt tttcgccaag 900
atcggctggg cttacgacat gaagaccgtg tctgaggaca tcgtgaagaa ccgagtgaag 960
cgaaccggcg acggctctca ccacctctgg ggctggggcg acgagaacca gcctaaggaa 1020
gagatcgagg ccgccatccg aatcaacccc aaggacgact aa 1062
<210> 72
<211> 1044
<212> DNA
<213> 松异舟蛾(Thaumetopoea pityocampa)
<400> 72
atggccccca acacccgaga gaacgagact atctacgatg aggtggaaca caagctggag 60
aagctggtgc ctccccaggc cggcccgtgg aactacaaga tcgtgtacct caacctgtta 120
accttctcct actggctgat cgctggcgct tacggcctgt acctgtgttt cacctctgcc 180
aagtgggcca ccatcatctt tgagttcatc ctgttcttct tcgctgagat gggcatcacc 240
gccggtgctc accgactgtg gacccacaag tcctacaagg ccaagctgcc cctggagatt 300
tttctgatgg tgctcaactc tgtggctttt cagaacactg ctactgattg ggtgcgagac 360
caccgactcc atcacaagta ttcggacact gacgccgacc cccacaacgc cgcccgagga 420
ctgttcttct ctcacgtggg atggctgctt gtccgaaaac acgacgaggt caagaagcga 480
ggcaagttca ccgacatgtc tgacatctac aacaaccctg tgctgaagtt ccagaagaag 540
tacgccatcc cctttatcgg agccgtgtgt ttcatcctgc ccaccgtgat tcctatgtac 600
ttctggggcg agtctctgaa caacgcttgg catatttgta tcttgcgata cgccatgaac 660
ttaaacgtta ccttctctgt gaactctcta gcccatatct ggggtaacaa gccctacgac 720
aaggacatca agcccgcaca gaacttcggc gtgaccctgg ccacctttgg tgagggcttc 780
cacaactacc accacgtgtt tccctgggac tatagaacct ctgagctcgg cgacaacaag 840
tttaacttca ccaccaagtt catcaatttc ttcgagagaa ttggactggc ctacgacctg 900
aagactgtgt ccgacgacgt gatcgcccag cgagctaagc gaactggaga tggcacccac 960
ctgtgggact gtgccgataa gaacaacaac gacgtggtgc aaaccaaggc ccagattgac 1020
accctctgta ccaagcacga gtaa 1044
<210> 73
<211> 909
<212> DNA
<213> 赤拟谷盗(Tribolium castaneum)
<400> 73
atgttcctgc gaaccatcac ctctaagttc tactctgacc agatcgtgtg gcgaaacgtg 60
ttcctgctgc tgatcctgca catcatctcc ctgcaaggct ggtacttcgt gctgaccacc 120
accaactggc ccactctgat ctacggcttc atcttcggcg ccctgaccgg ccagggaatc 180
aagctgggag cccaccgact gtgggctcac cgatgctaca aggccaagct gcccctgcga 240
atcttcctgt gcttcctgca gaccgtgact ctgcagaacc ctctgtacga gtgggtgcga 300
gatcaccagg tgcaccacaa gtacaccgac accaacgctg accctctgaa cgctacccga 360
ggcttcttct tctctcacat gggctggctg ctggtgcgaa agcaccccaa cgtgatcgcc 420
aagggcaaga ccctggacct gtctgacctg gaagaggacc ccgtggtgat gttccagaag 480
aagtactaca agatcattgc ccctgtgctg accctggcta tccccgctct gatcccctgg 540
tactttttcg gcgaggacct gtacctgtct tgggtgacca cctgtgtgct gccctacttc 600
atcaccctgc actctacctg ggccgtgaac tctgtggccc acatctgggg caccaagcct 660
tacaacaaga acattctgcc caccgagaac attgccgtgg ccattgtggc ctacggcgaa 720
ggctggcaca actaccacca cgtgttccct tgggactaca aggctgccga gctgggcaac 780
taccgaccta acctgtctac cgccttcatc gacttcatgg ccaagatcgc ctgggcctac 840
gacctgaagt ctgtgtctcc cgagatgctg cgaaagcgaa agatgcgaac cggcgactgc 900
gactactaa 909
<210> 74
<211> 1170
<212> DNA
<213> 赤拟谷盗(Tribolium castaneum)
<400> 74
atggctccca acctgctggg caactctacc ctgttcctgg ccgagactaa ctctgctgag 60
cccatccaga tcatctctaa gcccggcctg caggacgtgc tgccccaggt gaagccccag 120
atctcttctc gatcttctgt gtctcagtac cgatggcaga tcgtgtggcg aaacgtgctg 180
atcttcatct acctgcacat tgccggcatc tacggcctgt actacgccat tgctcaggcc 240
cagtggaaga ccctgctgtg gggctacctg gtgatcctgg cctctggcat cggcgtgacc 300
gctggcgccc accgactgtg ggctcaccga acctacaagg ccaagctgcc cctgcgaatc 360
tacctggcct tctgccagac cgtggctctg cagaacgaca tctacgagtg ggtgcgagat 420
caccgagtgc accacaagtt caccgacacc gacgctgacc ctcacaactc taaccgaggc 480
ttcttcttct ctcacatggg ctggctgctg gtgaagaagc acaaggacgt tttcgtgaag 540
ggcaagaccg tggacatgtc tgacgtcgag gctgaccccg tggtgcgatt ccagcgaaag 600
tactacatca ttctgacccc tatcctgacc ttcgtgttcc ccgctatcgt gccctggtac 660
ttctggaacg agactcccac cgtgtgcttc tactctgtgg ccatcttccg atatatcctg 720
actctgcacg gcacctggct ggtgaactct gccgctcaca tctggggata ccgaccttac 780
gacaagaaca tcaacgccac cgagaacaag tctgtgtcta ttctggcctt cggcgaagga 840
tggcacaact accaccacgt gttcccttgg gactacaagg ctgccgagct gggaaactac 900
cgaatgaact tcaccaccgc ctttctggac ctgatgtcta agatcggcca ggcctacgac 960
ctcaagactg tgtctgtgga catgatcaac aagcgacgaa agcgaaccgg cgacggaacc 1020
ggcctggtgg acgaggaact gctcgagaac gaggacaagc accaccacca tcacgacgac 1080
tctatttggg gctggggcga caaggacatg aagcaggacg acatggacat ggtccaggtg 1140
cacaaccctt ctcgagagaa gttcgactaa 1170
<210> 75
<211> 1050
<212> DNA
<213> 粉纹夜蛾(Trichoplusia ni)
<400> 75
atggctgtta tggctcaaac tgttcaagaa actgctaccg ttttggaaga agaagctaga 60
actgttactt tggttgctcc aaaaactacc ccaagaaagt acaagtacat ctacaccaat 120
ttcttgacct tctcctatgc tcatttggct gcattatatg gtttgtactt gtgtttcact 180
tccgctaagt gggaaacttt gttgttctct ttcgttttgt tccacatgtc caacattggt 240
attactgctg gtgctcatag attgtggact cataagactt ttaaggccaa gttgccattg 300
gaaatcgtct tgatgatttt caactccttg gctttccaaa acactgctat tacttgggct 360
agagaacata gattgcatca caagtactct gatactgatg ctgatccaca taatgcttct 420
agaggtttct tctactctca tgttggttgg ttgttggtta agaaacaccc agatgttttg 480
aagtacggta agaccattga tatgtccgat gtttacaaca acccagtctt gaagttccaa 540
aagaaatacg ccgttccatt gattggtact gtttgttttg ctttgccaac cttgattcca 600
gtttactgtt ggggtgaatc ttggaacaat gcttggcata ttgctttgtt cagatatatc 660
ttcaacttga acgtcacctt cttggttaat tccgctgctc atatttgggg taacaagcca 720
tatgataagt ccattttgcc agcccaaaac ttgttggttt cttttttggc ttctggtgaa 780
ggtttccata actaccatca tgtttttcca tgggattaca gaactgctga attgggtaac 840
aacttcttga acttgaccac cttgttcatt gatttctgtg cttggtttgg ttgggcttac 900
gatttgaaat ctgtctccga agatatcatc aagcaaagag ctaaaagaac cggtgatggt 960
tcttctggtg ttatatgggg ttgggatgat aaggatatgg atagagatat taagtccaag 1020
gccaacattt tctacgctaa gaaagaatga 1050
<210> 76
<211> 1449
<212> DNA
<213> 解脂耶氏酵母(Yarrowia lipolytica)
<400> 76
atggtgaaaa acgtggacca agtggatctc tcgcaggtcg acaccattgc ctccggccga 60
gatgtcaact acaaggtcaa gtacacctcc ggcgttaaga tgagccaggg cgcctacgac 120
gacaagggcc gccacatttc cgagcagccc ttcacctggg ccaactggca ccagcacatc 180
aactggctca acttcattct ggtgattgcg ctgcctctgt cgtcctttgc tgccgctccc 240
ttcgtctcct tcaactggaa gaccgccgcg tttgctgtcg gctattacat gtgcaccggt 300
ctcggtatca ccgccggcta ccaccgaatg tgggcccatc gagcctacaa ggccgctctg 360
cccgttcgaa tcatccttgc tctgtttgga ggaggagctg tcgagggctc catccgatgg 420
tgggcctcgt ctcaccgagt ccaccaccga tggaccgact ccaacaagga cccttacgac 480
gcccgaaagg gattctggtt ctcccacttt ggctggatgc tgcttgtgcc caaccccaag 540
aacaagggcc gaactgacat ttctgacctc aacaacgact gggttgtccg actccagcac 600
aagtactacg tttacgttct cgtcttcatg gccattgttc tgcccaccct cgtctgtggc 660
tttggctggg gcgactggaa gggaggtctt gtctacgccg gtatcatgcg atacaccttt 720
gtgcagcagg tgactttctg tgtcaactcc cttgcccact ggattggaga gcagcccttc 780
gacgaccgac gaactccccg agaccacgct cttaccgccc tggtcacctt tggagagggc 840
taccacaact tccaccacga gttcccctcg gactaccgaa acgccctcat ctggtaccag 900
tacgacccca ccaagtggct catctggacc ctcaagcagg ttggtctcgc ctgggacctc 960
cagaccttct cccagaacgc catcgagcag ggtctcgtgc agcagcgaca gaagaagctg 1020
gacaagtggc gaaacaacct caactggggt atccccattg agcagctgcc tgtcattgag 1080
tttgaggagt tccaagagca ggccaagacc cgagatctgg ttctcatttc tggcattgtc 1140
cacgacgtgt ctgcctttgt cgagcaccac cctggtggaa aggccctcat tatgagcgcc 1200
gtcggcaagg acggtaccgc tgtcttcaac ggaggtgtct accgacactc caacgctggc 1260
cacaacctgc ttgccaccat gcgagtttcg gtcattcgag gcggcatgga ggttgaggtg 1320
tggaagactg cccagaacga aaagaaggac cagaacattg tctccgatga gagtggaaac 1380
cgaatccacc gagctggtct ccaggccacc cgggtcgaga accccggtat gtctggcatg 1440
gctgcttag 1449
<210> 77
<211> 458
<212> PRT
<213> 黄地老虎(Agrotis segetum)
<400> 77
Met Pro Val Leu Thr Ser Arg Glu Asp Glu Lys Leu Ser Val Pro Glu
1 5 10 15
Phe Tyr Ala Gly Lys Ser Ile Phe Val Thr Gly Gly Thr Gly Phe Leu
20 25 30
Gly Lys Val Phe Ile Glu Lys Leu Leu Tyr Cys Cys Pro Asp Ile Asp
35 40 45
Lys Ile Tyr Met Leu Ile Arg Glu Lys Lys Asn Leu Ser Ile Asp Glu
50 55 60
Arg Met Ser Lys Phe Leu Asp Asp Pro Leu Phe Ser Arg Leu Lys Glu
65 70 75 80
Glu Arg Pro Gly Asp Leu Glu Lys Ile Val Leu Ile Pro Gly Asp Ile
85 90 95
Thr Ala Pro Asn Leu Gly Leu Ser Ala Glu Asn Glu Arg Ile Leu Leu
100 105 110
Glu Lys Val Ser Val Ile Ile Asn Ser Ala Ala Thr Val Lys Phe Asn
115 120 125
Glu Pro Leu Pro Ile Ala Trp Lys Ile Asn Val Glu Gly Thr Arg Met
130 135 140
Leu Leu Ala Leu Ser Arg Arg Met Lys Arg Ile Glu Val Phe Ile His
145 150 155 160
Ile Ser Thr Ala Tyr Ser Asn Ala Ser Ser Asp Arg Ile Val Val Asp
165 170 175
Glu Ile Leu Tyr Pro Ala Pro Ala Asp Met Asp Gln Val Tyr Gln Leu
180 185 190
Val Lys Asp Gly Val Thr Glu Glu Glu Thr Glu Arg Leu Leu Asn Gly
195 200 205
Leu Pro Asn Thr Tyr Thr Phe Thr Lys Ala Leu Thr Glu His Leu Val
210 215 220
Ala Glu His Gln Thr Tyr Val Pro Thr Ile Ile Ile Arg Pro Ser Val
225 230 235 240
Val Ala Ser Ile Lys Asp Glu Pro Ile Arg Gly Trp Leu Cys Asn Trp
245 250 255
Phe Gly Ala Thr Gly Ile Ser Val Phe Thr Ala Lys Gly Leu Asn Arg
260 265 270
Val Leu Leu Gly Lys Ala Ser Asn Ile Val Asp Val Ile Pro Val Asp
275 280 285
Tyr Val Ala Asn Leu Val Ile Val Ala Gly Ala Lys Ser Gly Gly Gln
290 295 300
Lys Ser Asp Glu Leu Lys Ile Tyr Asn Cys Cys Ser Ser Asp Cys Asn
305 310 315 320
Pro Val Thr Leu Lys Lys Ile Ile Lys Glu Phe Thr Glu Asp Thr Ile
325 330 335
Lys Asn Lys Ser His Ile Met Pro Leu Pro Gly Trp Phe Val Phe Thr
340 345 350
Lys Tyr Lys Trp Leu Leu Thr Leu Leu Thr Ile Ile Phe Gln Met Leu
355 360 365
Pro Met Tyr Leu Ala Asp Val Tyr Arg Val Leu Thr Gly Lys Ile Pro
370 375 380
Arg Tyr Met Lys Leu His His Leu Val Ile Gln Thr Arg Leu Gly Ile
385 390 395 400
Asp Phe Phe Thr Ser His Ser Trp Val Met Lys Thr Asp Arg Val Arg
405 410 415
Glu Leu Phe Gly Ser Leu Ser Leu Ala Glu Lys His Met Phe Pro Cys
420 425 430
Asp Pro Ser Ser Ile Asp Trp Thr Asp Tyr Leu Gln Ser Tyr Cys Tyr
435 440 445
Gly Val Arg Arg Phe Leu Glu Lys Lys Lys
450 455
<210> 78
<211> 458
<212> PRT
<213> 小地老虎(Agrotis ipsilon)
<400> 78
Met Ala Val Ile Ile Ser Arg Glu Glu Glu Lys Leu Ser Val Pro Glu
1 5 10 15
Phe Tyr Ala Gly Lys Ser Ile Phe Ile Thr Gly Gly Thr Gly Phe Leu
20 25 30
Gly Lys Val Phe Ile Glu Lys Leu Leu Tyr Ser Cys Pro Asp Ile Asp
35 40 45
Lys Ile Tyr Met Leu Ile Arg Glu Lys Lys Asn Leu Ser Ile Asp Glu
50 55 60
Arg Met Thr Met Phe Leu Asp Asp Pro Leu Phe Ser Arg Leu Lys Glu
65 70 75 80
Lys Arg Pro Gly Asp Val Glu Lys Ile Val Leu Ile Pro Gly Asp Ile
85 90 95
Ser Ser Pro Asn Leu Gly Leu Ser Ala Glu Asn Glu Arg Ile Leu Ile
100 105 110
Glu Asn Val Ser Val Ile Ile His Ser Ala Ala Thr Ile Lys Phe Asn
115 120 125
Glu Pro Leu Pro Ile Ala Trp Lys Ile Asn Val Glu Gly Thr Arg Met
130 135 140
Leu Met Asp Leu Ser Arg Arg Met Lys Arg Ile Lys Val Phe Ile His
145 150 155 160
Ile Ser Thr Ala Tyr Ser Asn Ala Asn Ser Glu Arg Ala Ala Val Glu
165 170 175
Glu Ile Leu Tyr Pro Ala Pro Ala Asp Met Asp Gln Val Tyr Gln Leu
180 185 190
Val Lys Asp Gly Val Thr Glu Glu Glu Thr Glu Ile Leu Leu Asn Gly
195 200 205
Leu Pro Asn Thr Tyr Thr Phe Thr Lys Ala Leu Ala Glu His Leu Ala
210 215 220
Ala Glu His Gln Val His Val Pro Thr Val Ile Ile Arg Pro Ser Ile
225 230 235 240
Val Gly Ser Ile Lys Asp Glu Pro Ile Arg Gly Trp Leu Cys Asn Trp
245 250 255
Phe Gly Ala Thr Gly Ile Ser Val Phe Thr Ala Lys Gly Leu Asn Arg
260 265 270
Val Leu Leu Gly Lys Ala Ser Asn Ile Val Asp Val Ile Pro Val Asp
275 280 285
Tyr Val Ala Asn Leu Val Ile Val Ala Gly Ala Lys Asn Gly Gly Glu
290 295 300
Lys Ser Glu Glu Leu Lys Ile Tyr Asn Cys Cys Ser Ser Asp Cys Asn
305 310 315 320
Pro Val Thr Val Lys Lys Ile Leu Lys Glu Phe Ile Asp Asp Thr Ile
325 330 335
Lys Asn Lys Ser His Ile Met Pro Leu Pro Gly Trp Phe Val Phe Thr
340 345 350
Lys Tyr Lys Trp Leu Met Thr Leu Leu Thr Ile Ile Phe Gln Met Ile
355 360 365
Pro Met Tyr Leu Ala Asp Val Tyr Arg Val Leu Met Gly Lys Asn Pro
370 375 380
Arg Tyr Met Lys Leu His His Leu Val Ile Gln Thr Arg Leu Val Ile
385 390 395 400
Asn Phe Phe Thr Phe His Ser Trp Val Met Lys Thr Asp Arg Ala Arg
405 410 415
Glu Leu Phe Gly Ser Leu Ser Pro Val Glu Lys His Met Phe Pro Trp
420 425 430
Asp Pro Ser Gly Ile Asp Trp Thr Glu Tyr Leu Gln Ser Tyr Cys Tyr
435 440 445
Gly Val Arg His Phe Leu Glu Lys Arg Lys
450 455
<210> 79
<211> 478
<212> PRT
<213> 偏瞳蔽眼蝶(Bicyclus anynana)
<400> 79
Met Tyr Arg Asn Val Asn Asn Asn Tyr Lys Gly His Ser Val Tyr Thr
1 5 10 15
Asn Gly Ala Gly Ser Arg Val Lys Ser Leu Leu Ser Ser Ala Thr Asp
20 25 30
Asn Thr Asn Glu Tyr Gln Ser Ile Ala Glu Cys Tyr Lys Gly Gln Ser
35 40 45
Val Phe Ile Thr Gly Gly Thr Gly Phe Val Gly Lys Val Leu Leu Glu
50 55 60
Lys Leu Leu Tyr Ser Cys Pro Gly Ile Asp Lys Val Tyr Leu Leu Val
65 70 75 80
Arg Glu Thr Gln Gly Ala Thr Ala His Gln Arg Met Gln Lys Leu Leu
85 90 95
Glu Glu Pro Ala Phe Ser Arg Ile Lys Glu Glu Asn Pro Gln Ala Phe
100 105 110
Glu Lys Val Ile Pro Ile Val Gly Asp Ile Thr Gln Pro Gln Leu Gly
115 120 125
Ile Met Ala Glu Asn Glu Glu Leu Leu Ile Lys Glu Val Ser Phe Val
130 135 140
Tyr His Val Ala Ala Thr Thr Lys Phe Asn Glu Thr Leu Asp Ile Ala
145 150 155 160
Met Asn Val Asn Val Ala Gly Thr Gly Arg Val Leu Asp Leu Ser Lys
165 170 175
Arg Met Glu Asn Ile Lys Ala Phe Val Tyr Val Ser Thr Ala Tyr Ser
180 185 190
Asn Thr Asp Arg Glu Val Val Glu Glu Val Leu Tyr Pro Ala Pro Val
195 200 205
Ser Leu Asn Glu Val His Lys Leu Leu Lys Ile Gly Ile Thr Asp Ala
210 215 220
Gln Val Lys Glu Leu Ile Lys Gly Arg Pro Asn Thr Tyr Thr Phe Thr
225 230 235 240
Lys Ala Leu Ala Glu Asn Leu Val Ala Asp Asn His Gly His Val Pro
245 250 255
Ala Ile Ile Val Arg Pro Ser Ile Val Ser Ser Ser Lys Lys Glu Pro
260 265 270
Ile Thr Gly Trp Ile Asp Ser Trp Tyr Gly Ala Thr Phe Leu Ala Thr
275 280 285
Val Thr Met Lys Gly Phe Asn Arg Val Phe Val Ser Ser Tyr Glu Tyr
290 295 300
Asn Leu Asp Phe Ile Pro Val Asp Tyr Val Ser Asn Leu Ile Ile Val
305 310 315 320
Ala Ala Ala Arg Cys Lys Cys Ser Asp Lys Val Asp Val Tyr Asn Ser
325 330 335
Ser Thr Ser Gly Glu Asn Pro Leu Lys Ile Gly Ala Phe Phe Asp Asp
340 345 350
Ile Ile Ala Tyr Ser Cys Lys His Lys Phe Tyr Asp Ile Pro Leu Pro
355 360 365
Met Ala Tyr Leu Thr Arg Tyr Arg Trp Val Met Phe Leu Ile Thr Leu
370 375 380
Leu Leu Gln Thr Leu Pro Ala Tyr Ile Ala Asp Leu Phe Leu Leu Ile
385 390 395 400
Val Gly Lys Lys Pro Arg Tyr Val Lys Leu Ala Ser Lys Ile Ser Ala
405 410 415
Ala His Glu Val Leu Asp Tyr Phe Pro Ser Arg Thr Trp Ser Met Ser
420 425 430
Ala Arg Gln Thr Thr Ala Leu Phe Gln Ser Leu Ser Pro Ser Asp Arg
435 440 445
Asp Gln Phe Pro Cys Asp Pro Thr Asp Ile Asp Trp Lys Glu Tyr Ile
450 455 460
Val Thr Tyr Cys Gln Gly Ile Arg Gln Phe Leu Cys Lys Ser
465 470 475
<210> 80
<211> 482
<212> PRT
<213> 红尾熊蜂(Bombus lapidarius)
<400> 80
Met Ser His His His His His His Gly Ser Asn Thr Lys Leu Asn Glu
1 5 10 15
Asn Glu Ile Asn Glu Lys Leu Arg Asn Val Asn Ser Ile Gly Gly Phe
20 25 30
Tyr Ala Gly Thr Gly Ile Leu Ile Thr Gly Gly Thr Gly Phe Val Gly
35 40 45
Lys Gly Leu Leu Glu Lys Leu Ile Arg Thr Cys Ser His Ile Ala Ala
50 55 60
Ile Phe Ile Leu Ile Arg Pro Lys Arg Asn Gln Thr Ile Glu Gln Arg
65 70 75 80
Phe Lys Lys Ile Ile Asp Asp Pro Ile Phe Asp Gly Val Arg Ala Gln
85 90 95
Asn Pro Ala Ile Phe Tyr Lys Ile His Leu Val Glu Gly Asp Val Thr
100 105 110
Leu Pro Asp Leu Gly Leu Leu Gln Lys Asp Arg Asp Met Leu Ile Glu
115 120 125
Asn Val Asn Ile Val Phe His Ile Ala Ala Thr Ile Asn Phe His Gln
130 135 140
Pro Leu Asp Met Ile Val Asn Val Asn Val Lys Gly Thr Ala Asn Ile
145 150 155 160
Ile Lys Leu Cys Lys Glu Leu Lys His Val Ile Ser Val Val Tyr Val
165 170 175
Ser Thr Ala Tyr Ser Asn Pro Asn Leu Ser Asp Ile Glu Glu Lys Val
180 185 190
Tyr Thr Thr Asn Leu Asp Pro Ser Leu Val Met Asp Ile Cys Asp Arg
195 200 205
Gln Asp Lys Glu Leu Ile Asn Leu Ile Glu Glu Arg Ile Leu Lys Thr
210 215 220
His Pro Asn Thr Tyr Thr Phe Thr Lys Asn Leu Ala Glu Gln Thr Ile
225 230 235 240
Ser Asn Asn Ser Lys Gly Leu Thr Val Ala Ile Val Arg Pro Ser Ile
245 250 255
Ile Ser Ser Ser Leu Lys Glu Pro Phe Pro Gly Trp Leu Val Ser Phe
260 265 270
Ala Gly Gln Ser Gly Ile Phe Lys Asn Ile Gly Asn Gly Met Ala Lys
275 280 285
Val Leu Leu Gly Arg Gly Asp Val Ile Ser Asp Ile Val Pro Val Asp
290 295 300
Tyr Val Val Asp Ala Ile Met Cys Ala Ala Trp His Val Thr Leu Gln
305 310 315 320
Ile Asp Asn Asn Val Lys Val Tyr Asn Cys Thr Ser Ser Ala Arg Pro
325 330 335
Ile Lys Leu Gly Glu Ile Val Asn Ile Phe Val Glu Cys Ser Arg Glu
340 345 350
Ile Pro Met Lys Asn Thr Leu Trp Tyr Pro Ser Cys Thr Ile Val Ala
355 360 365
Asn Arg Phe Val Tyr Asn Val Leu Asn Ile Leu Leu Asn Val Leu Pro
370 375 380
Ala Phe Ala Val Asp Ile Phe Leu Arg Leu Arg Gly Gly Lys Pro Met
385 390 395 400
Ala Met Asn Met Asn Lys Tyr Tyr Asn Lys Leu Val Val Ala Thr Ser
405 410 415
Tyr Phe Asn Ser Asn Glu Trp Ser Phe Lys Arg Asp Asn Ile Ala Asp
420 425 430
Met Ile Asn Lys Val Asn Thr Leu Glu Asp Gly Asn Ile Val Lys Leu
435 440 445
Asp Leu Gln Asp Met Val Trp Arg Lys Tyr Ile Ala Asn Tyr Leu Ala
450 455 460
Gly Ile Lys Lys Phe Ile Leu Lys Glu Asp Pro Lys Ser Ile Asn Ala
465 470 475 480
Ala Pro
<210> 81
<211> 468
<212> PRT
<213> 二化螟(Chilo suppressalis)
<400> 81
Met Glu Pro Tyr Lys Ser Asp Glu Glu Ile Lys Ser Lys Leu Phe Ser
1 5 10 15
Pro Val Val Asn Phe Tyr Thr Gly Lys Ser Val Phe Ile Thr Gly Ala
20 25 30
Thr Gly Phe Leu Gly Thr Val Leu Leu Glu Lys Leu Met Phe Thr Cys
35 40 45
Ala His Asn Ile Lys Asn Ile Tyr Ile Leu Ile Lys Pro Thr Asp Gly
50 55 60
Gln Ser Ile Asp Glu Lys Met Ser Lys Phe Phe Asp Ser Arg Ala Phe
65 70 75 80
Glu Arg Leu Arg Glu His Asn Pro Asn Phe Arg Ser Lys Ile Ile Pro
85 90 95
Leu Thr Gly Asp Ile Thr Lys Lys Ser Ile Gly Leu Ser Glu Asn Asp
100 105 110
Ile Phe Ile Leu Arg Lys Glu Val Ser Val Val Phe His Ser Ala Ala
115 120 125
Asp Thr Ser Phe Gln Leu Ser Leu Ser Glu Ala Ile Ile Ile Asn Thr
130 135 140
Lys Ala Thr Glu Glu Leu Leu Lys Ile Cys Lys Asp Met His Gln Leu
145 150 155 160
Lys Ala Phe Val Tyr Val Ser Thr Ala Tyr Ser Asn Cys Asn Arg Pro
165 170 175
Ile Ile Asp Glu Lys Val Tyr Pro Thr Asp Val Ser Leu Glu Thr Val
180 185 190
Tyr Glu Leu Leu Glu Tyr Ser Lys Ser Asp Lys Leu Ile Glu Phe Leu
195 200 205
Phe Asn Gly Arg Pro Asn Ala Tyr Thr Tyr Ser Lys Ala Leu Ser Glu
210 215 220
Glu Leu Val Gln Asn Tyr Gly Asn Ile Ile Pro Ser Ile Ile Ile Arg
225 230 235 240
Pro Ser Ile Ile Thr Ser Ser Ile Lys Glu Pro Tyr Pro Gly Trp Leu
245 250 255
Ser Gly Trp Asn Gly Leu Asn Gln Val Ile Leu Ser Gly Met Lys Gly
260 265 270
Tyr Leu Arg Cys Trp Phe Ala Asp Asp Ser Cys Ile Ala Asp Thr Ile
275 280 285
Pro Val Asp Tyr Thr Ala Asn Val Met Ile Val Ser Ala Trp Asp Ala
290 295 300
His Glu Arg Arg Leu Lys Asn Asp Lys Gln Leu Lys Val Phe Asn Cys
305 310 315 320
Cys Ser Gly Leu Gln Asn Pro Ile Asp Thr Gly Asn Met Met Ser Ile
325 330 335
Cys Leu Glu His Asn Lys Lys His Glu Lys Asp Lys Ser Lys Ala Asn
340 345 350
Thr Met Phe Ile Ile Arg Lys Asn Phe Tyr Val Tyr Phe Phe Tyr Phe
355 360 365
Leu Val Leu His Leu Ile Pro Ala Leu Ile Ile Asp Val Phe Tyr Phe
370 375 380
Leu Leu Gly Arg Glu Met Leu Met Cys Thr Asn Leu Lys Lys Ile Lys
385 390 395 400
Arg Phe Ser Ser Ile Leu Lys Val Phe Cys Phe Asn Gln Phe Leu Phe
405 410 415
Ile Asp Lys Asn Val Arg Arg Leu His Gln Ala Leu Asn Glu Thr Asp
420 425 430
Lys Val Leu Phe Asp Phe Asp Val Arg Asn Ile Gln Trp Arg Val Tyr
435 440 445
Leu Lys Asp Phe Val Ile Ala Leu Lys Glu Tyr Asp Lys Thr Ser Arg
450 455 460
Thr Val Lys Ile
465
<210> 82
<211> 507
<212> PRT
<213> 苹果蠹蛾(Cydia pomonella)
<400> 82
Met Asp Met Ile Asp Glu Ala Glu Ala Arg Gly Glu Ser Gln Ile Gln
1 5 10 15
Lys Phe Leu Ser Gly Ser Thr Ile Leu Leu Thr Gly Gly Thr Gly Phe
20 25 30
Leu Gly Lys Leu Leu Val Glu Lys Leu Leu Arg Thr Cys Pro Asp Ile
35 40 45
Lys Lys Ile Tyr Leu Leu Ala Arg Pro Lys Lys Asn Lys Glu Ile Gln
50 55 60
Lys Arg Leu Gln Glu Gln Phe Glu Asp Pro Leu Tyr Glu Arg Leu Arg
65 70 75 80
Lys Gln Val Pro Asp Phe Met Ser Lys Ile Gly Val Val Glu Gly Asp
85 90 95
Val Gly Lys Leu Gly Leu Gly Ile Ser Glu Ser Asp Arg Gln Thr Val
100 105 110
Val Asp Glu Val Asp Val Ile Phe His Gly Ala Ala Thr Leu Arg Phe
115 120 125
Asn Glu Pro Leu Arg Asp Ala Val Phe Ile Asn Val Arg Gly Thr Arg
130 135 140
Glu Met Met Leu Leu Ala Arg Ala Cys Thr Lys Leu Lys Ala Met Val
145 150 155 160
His Ile Ser Thr Ala Tyr Ser Asn Cys Thr Leu Ser Glu Ile Asp Glu
165 170 175
Val Phe Tyr Glu Ser Pro Ile Pro Gly Asp Lys Leu Ile Asp Leu Ala
180 185 190
Glu Ser Leu Asp Glu Lys Thr Ile Asn Ser Ile Thr Pro Gly Leu Ile
195 200 205
Gly Asp Phe Pro Asn Thr Tyr Ala Tyr Thr Lys Gly Val Ala Glu Asp
210 215 220
Val Leu Gln Lys Tyr Ser Gln Gly Leu Pro Val Ala Val Val Arg Pro
225 230 235 240
Ser Ile Val Ile Gly Thr Ala Lys Asp Pro Val Ala Gly Trp Ile Asp
245 250 255
Asn Val Tyr Gly Pro Thr Gly Val Ile Val Gly Ala Glu Leu Gly Leu
260 265 270
Leu His Val Leu His Ala Ala Pro Asn Ala Ser Ala Ser Leu Val Pro
275 280 285
Gly Asp Ala Val Ala Ala Ala Cys Val Ala Ala Ala Trp Ser Val Ser
290 295 300
Arg Ala Glu Asn His Gln Ala Pro Ala Arg Asp Ala Pro Pro Leu Tyr
305 310 315 320
His Cys Val Cys Ser Glu Lys Ala Pro Ile Thr Trp Ser Gln Phe Met
325 330 335
Ser Leu Ala Glu Thr His Gly Leu Val Val Pro Pro Met Gln Ala Met
340 345 350
Trp Tyr Tyr Met Leu Thr Leu Thr Asn Ser Lys Ala Met Tyr Thr Leu
355 360 365
Leu Ala Leu Leu Met His Trp Ile Pro Ala Tyr Ile Ile Asp Gly Val
370 375 380
Cys Met Val Leu Gly Lys Lys Pro Gln Leu Arg Lys Ala Tyr Thr Lys
385 390 395 400
Ile Glu Gln Phe Ala Ala Val Ile Glu Phe Phe Ala Leu Arg Glu Trp
405 410 415
Arg Phe His Asn Asn Asn Met Thr Arg Leu Tyr Asn Glu Leu Cys Asp
420 425 430
Ala Asp Lys His Ile Tyr Asp Phe Asp Thr Ser Ala Ile Asp Trp Asn
435 440 445
Glu Phe Phe Ala Asn Tyr Met Lys Gly Ile Arg Val Tyr Leu Leu Lys
450 455 460
Asp Pro Val Ser Thr Ile Pro Glu Ser Leu Lys Arg His Lys Arg Leu
465 470 475 480
Lys Trp Leu His Tyr Ala Leu Leu Thr Val Leu Ser Leu Leu Val Leu
485 490 495
Arg Leu Leu Trp Phe Phe Val Ser Phe Leu Phe
500 505
<210> 83
<211> 455
<212> PRT
<213> 棉铃虫(Helicoverpa armigera)
<400> 83
Met Val Val Leu Thr Ser Lys Glu Thr Lys Pro Ser Val Ala Glu Phe
1 5 10 15
Tyr Ala Gly Lys Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Leu Gly
20 25 30
Lys Val Phe Ile Glu Lys Leu Leu Tyr Ser Cys Pro Asp Ile Gly Asn
35 40 45
Ile Tyr Met Leu Ile Arg Glu Lys Lys Gly Leu Ser Val Ser Glu Arg
50 55 60
Ile Lys His Phe Leu Asp Asp Pro Leu Phe Thr Arg Leu Lys Glu Lys
65 70 75 80
Arg Pro Ala Asp Leu Glu Lys Ile Val Leu Ile Pro Gly Asp Ile Thr
85 90 95
Ala Pro Asp Leu Gly Ile Thr Ser Glu Asn Glu Lys Met Leu Ile Glu
100 105 110
Lys Val Ser Val Ile Ile His Ser Ala Ala Thr Val Lys Phe Asn Glu
115 120 125
Pro Leu Pro Thr Ala Trp Lys Ile Asn Val Glu Gly Thr Arg Met Met
130 135 140
Leu Ala Leu Ser Arg Arg Met Lys Arg Ile Glu Val Phe Ile His Ile
145 150 155 160
Ser Thr Ala Tyr Thr Asn Thr Asn Arg Glu Val Val Asp Glu Ile Leu
165 170 175
Tyr Pro Ala Pro Ala Asp Ile Asp Gln Val His Arg Tyr Val Lys Asp
180 185 190
Gly Ile Ser Glu Glu Glu Thr Glu Lys Ile Leu Asn Gly Arg Pro Asn
195 200 205
Thr Tyr Thr Phe Thr Lys Ala Leu Thr Glu His Leu Val Ala Glu Asn
210 215 220
Gln Ala Tyr Val Pro Thr Ile Ile Val Arg Pro Ser Val Val Ala Ala
225 230 235 240
Ile Lys Asp Glu Pro Ile Lys Gly Trp Leu Gly Asn Trp Tyr Gly Ala
245 250 255
Thr Gly Leu Thr Val Phe Thr Ala Lys Gly Leu Asn Arg Val Ile Tyr
260 265 270
Gly His Ser Ser Asn Ile Val Asp Leu Ile Pro Val Asp Tyr Val Ala
275 280 285
Asn Leu Val Ile Ala Ala Gly Ala Lys Ser Ser Lys Ser Thr Glu Leu
290 295 300
Lys Val Tyr Asn Cys Cys Ser Ser Ala Cys Asn Pro Ile Thr Ile Gly
305 310 315 320
Lys Leu Met Ser Met Phe Ala Glu Asp Ala Ile Lys Gln Lys Ser Tyr
325 330 335
Ala Met Pro Leu Pro Gly Trp Tyr Ile Phe Thr Lys Tyr Lys Trp Leu
340 345 350
Val Leu Leu Leu Thr Ile Leu Phe Gln Val Ile Pro Ala Tyr Ile Thr
355 360 365
Asp Leu Tyr Arg His Leu Ile Gly Lys Asn Pro Arg Tyr Ile Lys Leu
370 375 380
Gln Ser Leu Val Asn Gln Thr Arg Ser Ser Ile Asp Phe Phe Thr Ser
385 390 395 400
His Ser Trp Val Met Lys Ala Asp Arg Val Arg Glu Leu Phe Ala Ser
405 410 415
Leu Ser Pro Ala Asp Lys Tyr Leu Phe Pro Cys Asp Pro Thr Asp Ile
420 425 430
Asn Trp Thr His Tyr Ile Gln Asp Tyr Cys Trp Gly Val Arg His Phe
435 440 445
Leu Glu Lys Lys Ser Tyr Glu
450 455
<210> 84
<211> 456
<212> PRT
<213> 烟夜蛾(Helicoverpa assulta)
<400> 84
Met Val Val Leu Thr Ser Lys Glu Thr Lys Pro Ser Val Ala Glu Phe
1 5 10 15
Tyr Ala Gly Lys Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Leu Gly
20 25 30
Lys Ile Phe Ile Glu Lys Leu Leu Tyr Ser Cys Pro Asp Ile Gly Asn
35 40 45
Ile Tyr Met Leu Ile Arg Glu Lys Lys Gly Leu Ser Val Ser Glu Arg
50 55 60
Ile Lys Gln Phe Leu Asp Asp Pro Leu Phe Thr Arg Leu Lys Glu Lys
65 70 75 80
Arg Pro Ala Asp Leu Glu Lys Ile Val Leu Ile Pro Gly Asp Ile Thr
85 90 95
Ala Pro Asp Leu Gly Ile Thr Ser Glu Asn Glu Lys Met Leu Ile Glu
100 105 110
Lys Val Ser Val Ile Ile His Ser Ala Ala Thr Val Lys Phe Asn Glu
115 120 125
Pro Leu Pro Thr Ala Trp Lys Ile Asn Val Glu Gly Thr Arg Met Met
130 135 140
Leu Ala Leu Ser Arg Arg Met Lys Arg Ile Glu Val Phe Ile His Ile
145 150 155 160
Ser Thr Ala Tyr Thr Asn Thr Asn Arg Glu Val Val Asp Glu Ile Leu
165 170 175
Tyr Pro Ala Pro Ala Asp Ile Asp Gln Val His Gln Tyr Val Lys Asp
180 185 190
Gly Ile Ser Glu Glu Glu Thr Glu Lys Ile Leu Asn Gly Arg Pro Asn
195 200 205
Thr Tyr Thr Phe Thr Lys Ala Leu Thr Glu His Leu Val Ala Glu Asn
210 215 220
Gln Ala Tyr Val Pro Thr Ile Ile Val Arg Pro Ser Val Val Ala Ala
225 230 235 240
Ile Lys Asp Glu Pro Ile Lys Gly Trp Leu Gly Asn Trp Tyr Gly Ala
245 250 255
Thr Gly Leu Thr Val Phe Thr Ala Lys Gly Leu Asn Arg Val Ile Tyr
260 265 270
Gly His Ser Ser Tyr Ile Val Asp Leu Ile Pro Val Asp Tyr Val Ala
275 280 285
Asn Leu Val Ile Ala Ala Gly Ala Lys Ser Ser Lys Ser Thr Glu Leu
290 295 300
Lys Val Tyr Asn Cys Cys Ser Ser Ala Cys Asn Pro Ile Thr Ile Gly
305 310 315 320
Lys Leu Met Ser Met Phe Ala Glu Asp Ala Ile Lys Gln Lys Ser Tyr
325 330 335
Ala Met Pro Leu Pro Gly Trp Tyr Val Phe Thr Lys Tyr Lys Trp Leu
340 345 350
Val Leu Leu Leu Thr Ile Leu Phe Gln Val Ile Pro Ala Tyr Ile Thr
355 360 365
Asp Leu Tyr Arg His Leu Ile Gly Lys Asn Pro Arg Tyr Ile Lys Leu
370 375 380
Gln Ser Leu Val Asn Gln Thr Arg Ser Ser Ile Asp Phe Phe Thr Ser
385 390 395 400
His Ser Trp Val Met Lys Ala Asp Arg Val Arg Glu Leu Phe Ala Ser
405 410 415
Leu Ser Pro Ala Asp Lys Tyr Leu Phe Pro Cys Asp Pro Thr Asp Ile
420 425 430
Asn Trp Thr His Tyr Ile Gln Asp Tyr Cys Trp Gly Val Arg His Phe
435 440 445
Leu Glu Lys Lys Thr Thr Asn Lys
450 455
<210> 85
<211> 453
<212> PRT
<213> Heliothis subflexa
<400> 85
Met Val Val Leu Thr Ser Lys Glu Thr Lys Pro Ser Val Ala Glu Phe
1 5 10 15
Tyr Ala Gly Lys Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Leu Gly
20 25 30
Lys Val Phe Ile Glu Lys Leu Leu Tyr Ser Cys Pro Asp Ile Gly Asn
35 40 45
Ile Tyr Met Leu Ile Arg Glu Lys Lys Gly Leu Ser Val Ser Glu Arg
50 55 60
Ile Lys His Phe Leu Asp Asp Pro Leu Phe Thr Arg Leu Lys Glu Lys
65 70 75 80
Arg Pro Ala Asp Leu Glu Lys Ile Val Leu Ile Pro Gly Asp Ile Thr
85 90 95
Ala Pro Asp Leu Gly Ile Thr Ser Glu Asn Glu Lys Met Leu Ile Glu
100 105 110
Lys Val Ser Val Ile Ile His Ser Ala Ala Thr Val Lys Phe Asn Glu
115 120 125
Pro Leu Pro Thr Ala Trp Lys Ile Asn Val Glu Gly Thr Arg Met Met
130 135 140
Leu Ala Leu Ser Arg Arg Met Lys Arg Ile Glu Val Phe Ile His Ile
145 150 155 160
Ser Thr Ala Tyr Thr Asn Thr Asn Arg Glu Val Val Asp Glu Ile Leu
165 170 175
Tyr Pro Ala Pro Ala Asp Ile Asp Gln Val His Gln Tyr Val Lys Asp
180 185 190
Gly Ile Ser Glu Glu Glu Thr Glu Lys Ile Leu Asn Gly Arg Pro Asn
195 200 205
Thr Tyr Thr Phe Thr Lys Ala Leu Thr Glu His Leu Val Ala Glu Asn
210 215 220
Gln Ala Tyr Val Pro Thr Ile Ile Val Arg Pro Ser Val Val Ala Ala
225 230 235 240
Ile Lys Asp Glu Pro Ile Lys Gly Trp Leu Gly Asn Trp Tyr Gly Ala
245 250 255
Thr Gly Leu Thr Val Phe Thr Ala Lys Gly Leu Asn Arg Val Ile Tyr
260 265 270
Gly His Ser Ser Asn Ile Val Asp Leu Ile Pro Val Asp Tyr Val Ala
275 280 285
Asn Leu Val Ile Ala Ala Gly Ala Lys Ser Ser Lys Ser Thr Glu Leu
290 295 300
Lys Val Tyr Asn Cys Cys Ser Ser Ala Cys Asn Pro Ile Thr Ile Gly
305 310 315 320
Lys Leu Met Ser Met Phe Ala Glu Asp Ala Ile Lys Gln Lys Ser Tyr
325 330 335
Ala Met Pro Leu Pro Gly Trp Tyr Ile Phe Thr Lys Tyr Lys Trp Leu
340 345 350
Val Leu Leu Leu Thr Ile Leu Phe Gln Val Ile Pro Ala Tyr Ile Thr
355 360 365
Asp Leu Tyr Arg His Leu Ile Gly Lys Asn Pro Arg Tyr Ile Lys Leu
370 375 380
Gln Ser Leu Val Asn Gln Thr Arg Ser Ser Ile Asp Phe Phe Thr Asn
385 390 395 400
His Ser Trp Val Met Lys Ala Asp Arg Val Arg Glu Leu Phe Ala Ser
405 410 415
Leu Ser Pro Ala Asp Lys Tyr Leu Phe Pro Cys Asp Pro Val Asn Ile
420 425 430
Asn Trp Arg Gln Tyr Ile Gln Asp Tyr Cys Trp Gly Val Arg His Phe
435 440 445
Leu Glu Lys Lys Thr
450
<210> 86
<211> 453
<212> PRT
<213> 烟芽夜蛾(Heliothis virescens)
<400> 86
Met Val Val Leu Thr Ser Lys Glu Thr Lys Pro Ser Val Ala Glu Phe
1 5 10 15
Tyr Ala Gly Lys Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Leu Gly
20 25 30
Lys Val Phe Ile Glu Lys Leu Leu Tyr Ser Cys Pro Asp Ile Val Asn
35 40 45
Ile Tyr Met Leu Ile Arg Glu Lys Lys Gly Leu Ser Val Ser Glu Arg
50 55 60
Ile Lys Gln Phe Leu Asp Asp Pro Leu Phe Thr Arg Leu Lys Asp Lys
65 70 75 80
Arg Pro Ala Asp Leu Glu Lys Ile Val Leu Ile Pro Gly Asp Ile Thr
85 90 95
Ala Pro Asp Leu Gly Ile Thr Ala Ala Asn Glu Lys Met Leu Ile Glu
100 105 110
Lys Val Ser Val Ile Ile His Ser Ala Ala Thr Val Lys Phe Asn Glu
115 120 125
Pro Leu Pro Thr Ala Trp Lys Ile Asn Val Glu Gly Thr Arg Met Met
130 135 140
Leu Ala Leu Ser Arg Arg Met Lys Arg Ile Glu Val Phe Ile His Ile
145 150 155 160
Ser Thr Ala Tyr Thr Asn Thr Asn Arg Glu Val Val Asp Glu Ile Leu
165 170 175
Tyr Pro Ala Pro Ala Asp Ile Asp Gln Val Tyr Gln Tyr Val Lys Glu
180 185 190
Gly Ile Ser Glu Glu Asp Thr Glu Lys Ile Leu Asn Gly Arg Pro Asn
195 200 205
Thr Tyr Thr Phe Thr Lys Ala Leu Thr Glu His Leu Val Ala Glu Asn
210 215 220
Gln Ala Tyr Val Pro Thr Ile Ile Val Arg Pro Ser Val Val Ala Ala
225 230 235 240
Ile Lys Asp Glu Pro Leu Lys Gly Trp Leu Gly Asn Trp Phe Gly Ala
245 250 255
Thr Gly Leu Thr Val Phe Thr Ala Lys Gly Leu Asn Arg Val Ile Tyr
260 265 270
Gly His Ser Asn Tyr Ile Val Asp Leu Ile Pro Val Asp Tyr Val Ala
275 280 285
Asn Leu Val Ile Ala Ala Gly Ala Lys Ser Asn Thr Ser Ser Glu Leu
290 295 300
Lys Val Tyr Asn Cys Cys Ser Ser Ser Cys Asn Pro Val Lys Ile Gly
305 310 315 320
Thr Leu Met Ser Met Phe Ala Asp Asp Ala Ile Lys Gln Lys Ser Tyr
325 330 335
Ala Met Pro Leu Pro Gly Trp Tyr Ile Phe Thr Lys Tyr Lys Trp Leu
340 345 350
Val Leu Leu Leu Thr Phe Leu Phe Gln Val Ile Pro Ala Tyr Ile Thr
355 360 365
Asp Leu Ser Arg His Leu Val Gly Lys Ser Pro Arg Tyr Ile Lys Leu
370 375 380
Gln Ser Leu Val Asn Gln Thr Arg Ser Ser Ile Asp Phe Phe Thr Asn
385 390 395 400
His Ser Trp Val Met Lys Ala Asp Arg Val Arg Glu Leu Tyr Ala Ser
405 410 415
Leu Ser Pro Ala Asp Lys Tyr Leu Phe Pro Cys Asp Pro Val Asn Ile
420 425 430
Asn Trp Thr Gln Tyr Leu Gln Asp Tyr Cys Trp Gly Val Arg Asn Phe
435 440 445
Leu Glu Lys Lys Thr
450
<210> 87
<211> 468
<212> PRT
<213> 小菜蛾(Plutella xylostella)
<400> 87
Met Lys Leu Gly Thr Phe Gly Asn Met Ala Ala Asn Gly Gly Ser Val
1 5 10 15
Cys Asp Phe Tyr Ala Asn Ser Thr Val Phe Ile Thr Gly Gly Thr Gly
20 25 30
Phe Leu Gly Lys Val Leu Ile Glu Lys Leu Leu Arg Ser Cys Arg Lys
35 40 45
Ile Asp Lys Ile Tyr Val Leu Leu Arg Gly Thr Thr Asn Lys Thr Ala
50 55 60
Gln Glu Arg Leu Glu Asp Leu Ser His Glu Val Leu Phe Glu Lys Val
65 70 75 80
Arg Gln Asp Asp Pro Asn Ile Met Lys Lys Leu Ile Pro Val Asn Gly
85 90 95
Asp Leu Thr Leu Pro Asn Leu Gly Met Asn Asn Glu Asp Tyr Ser Leu
100 105 110
Ile Val Lys Asn Val Ser Ile Val Phe His Ala Ala Ala Ser Ile Arg
115 120 125
Phe Asn Leu Lys Ile Lys Glu Ala Leu His Cys Asn Val Glu Gly Thr
130 135 140
Lys Lys Val Ile Glu Leu Cys His Lys Ala Arg Cys Ile Lys Ala Phe
145 150 155 160
Val His Ile Ser Thr Ala Tyr Ser Asn Thr Asp Lys Thr Phe Val Lys
165 170 175
Glu Glu Val Tyr Pro Ala Pro Glu Asn Leu Asp Lys Ile Tyr Val Ile
180 185 190
Ile Gly Gln Asn Gly Asp Asp Thr Glu Ala Asp Asp Leu Thr Ser Ser
195 200 205
Arg Pro Asn Thr Tyr Thr Tyr Ala Lys Ala Val Ala Glu Tyr Glu Val
210 215 220
Leu Arg Asn His Gly Ser Val Pro Thr Ala Ile Ile Arg Pro Ser Ile
225 230 235 240
Val Thr Pro Ile Trp Arg Asp Pro Thr Pro Gly Trp Leu Asp Lys Trp
245 250 255
Ser Gly Gly Thr Pro Ile Ile Phe Gly Leu Cys Lys Gly Leu Leu Arg
260 265 270
Cys Leu Asp Thr Gln Pro Ser Asn Val Ile Asp Phe Ile Pro Ala Asp
275 280 285
Ile Ala Val Asn Leu Ser Ile Val Ala Ala Ala Lys Cys His Val Asp
290 295 300
Thr Pro Lys Ile Arg Val Tyr Asn Cys Cys Ser Gly Pro Thr Asn Pro
305 310 315 320
Met Thr Phe Lys Met Leu Ser Asp Tyr Cys His Glu Asn Ser Ile Lys
325 330 335
His Gly Leu His Trp Phe Pro Tyr Pro Lys Ile Phe Leu Ser Thr Asn
340 345 350
Arg Val Phe Leu Lys Ile Val Arg Leu Val Leu Gln Phe Leu Pro Leu
355 360 365
Phe Leu Ala Asp Met Trp Leu Lys Ile Arg Gly Lys Gln Pro Arg Phe
370 375 380
Val Lys Met Leu Glu Lys Leu Thr Lys Val Glu Lys Thr Leu His Phe
385 390 395 400
Phe Ile Lys Asn Gln Trp Gln Phe Glu Asn His Asn Val Glu Ala Leu
405 410 415
Ile Ser Thr Leu Ser Pro Ser Asp Arg Val Gln Phe Pro Cys Asp Pro
420 425 430
Ser Glu Ile Cys Trp Lys Thr His Phe Glu Asp Tyr Cys Leu Gly Ile
435 440 445
Asp Lys Tyr Leu Met Asn Thr Ser Val Lys Ser Ala Asn Ile Asn Ser
450 455 460
Gly Met Tyr Lys
465
<210> 88
<211> 454
<212> PRT
<213> 甜菜夜蛾(Spodoptera exigua)
<400> 88
Met Val Val Leu Thr Ser Lys Glu Lys Ser Asn Met Ser Val Ala Asp
1 5 10 15
Phe Tyr Ala Gly Lys Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Leu
20 25 30
Gly Lys Val Phe Ile Glu Lys Leu Leu Tyr Ser Cys Pro Asp Ile Asp
35 40 45
Lys Ile Tyr Met Leu Ile Arg Glu Lys Lys Gly Gln Ser Ile Arg Glu
50 55 60
Arg Leu Thr Lys Ile Val Asp Asp Pro Leu Phe Asn Arg Leu Lys Glu
65 70 75 80
Lys Arg Pro Gly Asp Leu Asp Lys Ile Val Leu Ile Pro Gly Asp Val
85 90 95
Thr Val Pro Gly Leu Gly Ile Ser Asp Glu Asn Glu Ala Ile Leu Ile
100 105 110
Asp Lys Val Ser Val Val Ile His Ser Ala Ala Thr Val Lys Phe Asn
115 120 125
Glu Pro Leu Glu Thr Ala Trp Asn Val Asn Val Glu Gly Thr Arg Met
130 135 140
Ile Met Ala Leu Ser Arg Lys Met Lys Arg Ile Glu Ile Phe Ile His
145 150 155 160
Ile Ser Thr Ala Tyr Thr Asn Thr Asn Arg Ala Val Val Asp Glu Val
165 170 175
Leu Tyr Pro Pro Pro Ala Asp Ile Asn Glu Val His Gln Tyr Val Lys
180 185 190
Asn Gly Ile Thr Glu Glu Glu Thr Glu Lys Ile Leu Asn Gly Arg Pro
195 200 205
Asn Thr Tyr Thr Phe Thr Lys Ala Leu Thr Glu His Leu Val Ala Glu
210 215 220
Asn Gln Ala Tyr Met Pro Thr Ile Ile Val Arg Pro Ser Ile Val Gly
225 230 235 240
Ala Ile Lys Asp Asp Pro Ile Arg Gly Trp Leu Ala Asn Trp Tyr Gly
245 250 255
Ala Thr Gly Leu Ser Val Phe Thr Ala Lys Gly Leu Asn Arg Val Ile
260 265 270
Tyr Gly Gln Ser Ser His Val Val Asp Leu Ile Pro Val Asp Tyr Val
275 280 285
Ala Asn Leu Val Ile Val Ala Gly Ala Lys Thr Tyr Arg Ser Asn Glu
290 295 300
Val Thr Ile Tyr Asn Ser Cys Ser Ser Ser Cys Asn Pro Ile Thr Met
305 310 315 320
Glu Arg Leu Val Gly Leu Phe Ile Asp Asp Thr Val Lys His Asn Ser
325 330 335
Tyr Val Met Pro Leu Pro Gly Trp Tyr Val Tyr Ser Asn Tyr Arg Trp
340 345 350
Leu Val Tyr Leu Val Thr Ile Ile Phe Gln Met Ile Pro Ala Tyr Leu
355 360 365
Ala Asp Ile Gly Arg Arg Leu Leu Gly Lys Asn Pro Arg Tyr Tyr Lys
370 375 380
Leu Gln Ser Leu Val Ala Gln Thr Gln Glu Ala Val His Phe Phe Thr
385 390 395 400
Ser His Thr Trp Glu Ile Lys Ser Lys Arg Thr Ser Glu Leu Phe Ala
405 410 415
Ser Leu Ser His Thr Asp Gln Arg Ile Phe Pro Cys Asp Ala Lys Lys
420 425 430
Ile Asp Trp Thr Asp Tyr Ile Thr Asp Tyr Cys Ser Gly Val Arg Gln
435 440 445
Phe Leu Glu Lys Lys Lys
450
<210> 89
<211> 450
<212> PRT
<213> 草地贪夜蛾(Spodoptera frugiperda)
<400> 89
Met Ser Lys Ala Asn Cys Ser Asn Val Ala Ser Phe Tyr Ala Gly Lys
1 5 10 15
Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Val Gly Lys Thr Leu Ile
20 25 30
Glu Lys Leu Leu Tyr Ser Cys Ser Gly Ile Asp Lys Ile Tyr Val Leu
35 40 45
Val Arg Asp Lys Tyr Gly Lys Gln Ala Ser Glu Arg Leu Ala Arg Val
50 55 60
Thr Ser Thr Pro Val Phe Asp Arg Leu Lys Thr Ser Lys Ser Glu Glu
65 70 75 80
Leu Lys Lys Ile Val Val Ile Ser Gly Asp Ile Thr Arg Glu Asn Leu
85 90 95
Gly Leu Gln Glu Asp Val Leu Lys Thr Leu Glu Asn Glu Val Ser Val
100 105 110
Val Phe His Leu Ala Ala Thr Val Ala Phe Lys Leu Pro Leu Lys Asp
115 120 125
Ala Met Arg Ile Asn Val Asn Gly Thr Glu Asn Val Ile Glu Leu Cys
130 135 140
Arg Arg Met Lys Lys Leu Gln Ala Phe Val His Val Ser Thr Ala Phe
145 150 155 160
Thr Asn Ser Asp Arg Lys Glu Ile Asn Glu Met Val Tyr Pro Met Pro
165 170 175
Ile Asn Leu Glu Glu Ala Arg His Val Ala Tyr Thr Tyr Ser His Asp
180 185 190
Asp Val Ile Val Ser Ala Phe Met Gly Lys Lys Pro Asn Thr Tyr Thr
195 200 205
Phe Ser Lys Ala Phe Ala Glu Gln Gln Val Met Lys Gln Cys Glu Asp
210 215 220
Leu Pro Thr Ala Ile Ile Arg Pro Ser Ile Val Met Ser Ser Val Lys
225 230 235 240
Glu Pro Cys Pro Gly Trp Ile Asp Thr Trp Asn Gly Ser Thr Gly Leu
245 250 255
Phe Val Gly Met Pro Ala Gly Ile Leu Arg Val Val Leu Gly Arg Gly
260 265 270
Ser Asn Val Thr Asp Leu Val Pro Val Asp Ile Val Thr Asn Leu Ile
275 280 285
Val Val Ala Ala Thr Glu Cys Gln Lys Ser Lys Glu Ile Lys Val Tyr
290 295 300
Asn Cys Cys Thr Gly Thr Ser Asn Pro Ile Thr Cys Asp Glu Ala Thr
305 310 315 320
Thr Ile Ser Arg Lys Val Ala Leu Lys Tyr Ser Leu Asn Glu Leu Pro
325 330 335
Trp Pro Phe Leu Met Phe Thr Pro Ser Val Phe Leu Tyr Thr Leu Ile
340 345 350
Thr Phe Leu Leu Gln Ile Val Pro Ala Tyr Leu Ile Asp Leu Trp Cys
355 360 365
Ile Leu Thr Gly Arg Lys Ala Thr Gln Ile Lys Leu Gln Arg Arg Leu
370 375 380
Lys Lys Val Val Asp Ala Val Lys Phe Phe Leu Leu Asn Glu Trp Lys
385 390 395 400
Phe Ser Asp Asp Asn Ile Arg Asp Leu Leu Lys Thr Met Ser Pro Val
405 410 415
Asp Lys Glu Ile Phe Asn Phe Asp Val Lys Thr Ile Asn Trp Glu Thr
420 425 430
Cys Ile Glu Asp Tyr Ile Leu Gly Ala Arg Lys Tyr Leu Leu Lys Ser
435 440 445
Glu Lys
450
<210> 90
<211> 454
<212> PRT
<213> 海灰翅夜蛾(Spodoptera littoralis)
<400> 90
Met Val Val Leu Thr Ser Lys Glu Lys Ser Asn Met Ser Val Ala Asp
1 5 10 15
Phe Tyr Ala Gly Lys Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Leu
20 25 30
Gly Lys Val Phe Ile Glu Lys Leu Leu Tyr Ser Cys Pro Asp Ile Asp
35 40 45
Lys Ile Tyr Met Leu Ile Arg Glu Lys Lys Gly Gln Ser Ile Arg Glu
50 55 60
Arg Leu Thr Lys Ile Val Asp Asp Pro Leu Phe Asn Arg Leu Lys Asp
65 70 75 80
Lys Arg Pro Gly Asp Leu Gly Lys Ile Val Leu Ile Pro Gly Asp Ile
85 90 95
Thr Val Pro Gly Leu Gly Ile Ser Glu Glu Asn Glu Thr Ile Leu Thr
100 105 110
Glu Lys Val Ser Val Val Ile His Ser Ala Ala Thr Val Lys Phe Asn
115 120 125
Glu Pro Leu Ala Thr Ala Trp Asn Val Asn Val Glu Gly Thr Arg Met
130 135 140
Ile Met Ala Leu Ser Arg Arg Met Lys Arg Ile Glu Val Phe Ile His
145 150 155 160
Ile Ser Thr Ala Tyr Thr Asn Thr Asn Arg Ala Val Ile Asp Glu Val
165 170 175
Leu Tyr Pro Pro Pro Ala Asp Ile Asn Asp Val His Gln His Val Lys
180 185 190
Asn Gly Val Thr Glu Glu Glu Thr Glu Lys Ile Leu Asn Gly Arg Pro
195 200 205
Asn Thr Tyr Thr Phe Thr Lys Ala Leu Thr Glu His Leu Val Ala Glu
210 215 220
Asn Gln Ser Tyr Met Pro Thr Ile Ile Val Arg Pro Ser Ile Val Gly
225 230 235 240
Ala Ile Lys Asp Asp Pro Ile Arg Gly Trp Leu Ala Asn Trp Tyr Gly
245 250 255
Ala Thr Gly Leu Ser Val Phe Thr Ala Lys Gly Leu Asn Arg Val Ile
260 265 270
Tyr Gly His Ser Asn His Val Val Asp Leu Ile Pro Val Asp Tyr Val
275 280 285
Ala Asn Leu Val Ile Val Ala Gly Ala Lys Thr Tyr His Ser Asn Glu
290 295 300
Val Thr Ile Tyr Asn Ser Cys Ser Ser Ser Cys Asn Pro Ile Thr Met
305 310 315 320
Lys Arg Leu Val Gly Leu Phe Ile Asp Tyr Thr Val Lys His Lys Ser
325 330 335
Tyr Val Met Pro Leu Pro Gly Trp Tyr Val Tyr Ser Asn Tyr Lys Trp
340 345 350
Leu Val Phe Leu Val Thr Val Ile Phe Gln Val Ile Pro Ala Tyr Leu
355 360 365
Gly Asp Ile Gly Arg Arg Leu Leu Gly Lys Asn Pro Arg Tyr Tyr Lys
370 375 380
Leu Gln Asn Leu Val Ala Gln Thr Gln Glu Ala Val His Phe Phe Thr
385 390 395 400
Ser His Thr Trp Glu Ile Lys Ser Lys Arg Thr Ser Glu Leu Phe Ser
405 410 415
Ser Leu Ser Leu Thr Asp Gln Arg Met Phe Pro Cys Asp Ala Asn Arg
420 425 430
Ile Asp Trp Thr Asp Tyr Ile Thr Asp Tyr Cys Ser Gly Val Arg Gln
435 440 445
Phe Leu Glu Lys Ile Lys
450
<210> 91
<211> 454
<212> PRT
<213> 斜纹夜蛾(Spodoptera litura)
<400> 91
Met Val Val Leu Thr Ser Lys Glu Lys Ser Asn Met Ser Val Ala Asp
1 5 10 15
Phe Tyr Ala Gly Lys Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Leu
20 25 30
Gly Lys Val Phe Ile Glu Lys Leu Leu Tyr Ser Cys Pro Asp Ile Asp
35 40 45
Lys Ile Tyr Met Leu Ile Arg Glu Lys Lys Gly Gln Ser Ile Arg Glu
50 55 60
Arg Leu Thr Lys Ile Val Asp Asp Pro Leu Phe Asn Arg Leu Lys Asp
65 70 75 80
Lys Arg Pro Gly Asp Leu Gly Lys Ile Ile Leu Ile Pro Gly Asp Ile
85 90 95
Thr Val Pro Gly Leu Gly Ile Ser Glu Glu Asn Glu Thr Ile Leu Ile
100 105 110
Glu Lys Val Ser Val Val Ile His Ser Ala Ala Thr Val Lys Phe Asn
115 120 125
Glu Pro Leu Ala Thr Ala Trp Asn Val Asn Val Glu Gly Thr Arg Met
130 135 140
Ile Met Ala Leu Ser Arg Arg Met Lys Arg Ile Glu Val Phe Ile His
145 150 155 160
Ile Ser Thr Ala Tyr Thr Asn Thr Asn Arg Ala Val Ile Asp Glu Val
165 170 175
Leu Tyr Pro Pro Pro Ala Asp Ile Asn Asp Val His Gln His Val Lys
180 185 190
Asn Gly Val Thr Glu Glu Glu Thr Glu Lys Ile Leu Asn Gly Arg Pro
195 200 205
Asn Thr Tyr Thr Phe Thr Lys Ala Leu Thr Glu His Leu Val Ala Glu
210 215 220
Asn Gln Ser Tyr Met Pro Thr Ile Ile Val Arg Pro Ser Ile Val Gly
225 230 235 240
Ala Ile Lys Asp Asp Pro Ile Arg Gly Trp Leu Ala Asn Trp Tyr Gly
245 250 255
Ala Thr Gly Leu Ser Val Phe Thr Ala Lys Gly Leu Asn Arg Val Ile
260 265 270
Tyr Gly His Ser Asn His Val Val Asp Leu Ile Pro Val Asp Tyr Val
275 280 285
Ala Asn Leu Val Ile Val Ala Gly Ala Lys Thr Tyr His Ser Asn Glu
290 295 300
Val Thr Ile Tyr Asn Ser Cys Ser Ser Ser Cys Asn Pro Ile Thr Met
305 310 315 320
Lys Arg Leu Val Gly Leu Phe Ile Asp Tyr Thr Val Lys His Lys Ser
325 330 335
Tyr Val Met Pro Leu Pro Gly Trp Tyr Val Tyr Ser Asn Tyr Arg Trp
340 345 350
Leu Val Phe Leu Val Thr Leu Ile Phe Gln Val Ile Pro Ala Tyr Leu
355 360 365
Gly Asp Ile Gly Arg Arg Leu Leu Gly Lys Asn Pro Arg Tyr Tyr Lys
370 375 380
Leu Gln Asn Leu Val Ala Gln Thr Gln Glu Ala Val His Phe Phe Thr
385 390 395 400
Ser His Thr Trp Glu Ile Lys Ser Lys Arg Thr Ser Glu Leu Phe Ser
405 410 415
Ser Leu Ser Leu Thr Asp Gln Arg Met Phe Pro Cys Asp Ala Asn Arg
420 425 430
Ile Asp Trp Thr Asp Tyr Ile Thr Asp Tyr Cys Ser Gly Val Arg Gln
435 440 445
Phe Leu Glu Lys Ile Lys
450
<210> 92
<211> 515
<212> PRT
<213> Tyta alba
<400> 92
Met Val Ser Ile Pro Glu Tyr Tyr Glu Gly Lys Asn Ile Leu Leu Thr
1 5 10 15
Gly Ala Thr Gly Phe Met Gly Lys Val Leu Leu Glu Lys Leu Leu Arg
20 25 30
Ser Cys Pro Lys Val Lys Ala Val Tyr Val Leu Val Arg His Lys Ala
35 40 45
Gly Gln Thr Pro Glu Ala Arg Ile Glu Glu Ile Thr Asn Cys Lys Leu
50 55 60
Phe Asp Arg Leu Arg Asp Glu Gln Pro Asp Phe Lys Ala Lys Ile Ile
65 70 75 80
Val Ile Thr Ser Glu Leu Thr Gln Pro Glu Leu Asp Leu Ser Glu Pro
85 90 95
Ile Lys Glu Lys Leu Ile Glu Arg Ile Asn Ile Ile Phe His Cys Ala
100 105 110
Ala Thr Val Arg Phe Asn Glu Thr Leu Arg Asp Ala Val Gln Leu Asn
115 120 125
Val Thr Ala Thr Gln Gln Leu Leu Phe Leu Ala Gln Arg Met Lys Asn
130 135 140
Leu Glu Val Phe Met His Val Ser Thr Ala Tyr Ala Tyr Cys Asn Arg
145 150 155 160
Lys Gln Ile Glu Glu Ile Val Tyr Pro Pro Pro Val Asp Pro Lys Lys
165 170 175
Leu Ile Asp Ser Leu Glu Trp Met Asp Asp Gly Leu Val Asn Asp Ile
180 185 190
Thr Pro Lys Leu Ile Gly Asp Arg Pro Asn Thr Tyr Thr Tyr Thr Lys
195 200 205
Ala Leu Ala Glu Tyr Val Val Gln Gln Glu Gly Ala Lys Leu Asn Thr
210 215 220
Ala Ile Ile Arg Pro Ser Ile Val Gly Ala Ser Trp Lys Glu Pro Phe
225 230 235 240
Pro Gly Trp Ile Asp Asn Phe Asn Gly Pro Ser Gly Leu Phe Ile Ala
245 250 255
Ala Gly Lys Gly Ile Leu Arg Thr Met Arg Ala Ser Asn Ser Ala Val
260 265 270
Ala Asp Leu Val Pro Val Asp Val Val Val Asn Thr Thr Leu Ala Ala
275 280 285
Ala Trp Tyr Ser Gly Val Asn Arg Pro Arg Asn Val Met Ile Tyr Asn
290 295 300
Cys Thr Thr Gly Gly Thr Asn Pro Phe His Trp Gly Glu Val Gly Tyr
305 310 315 320
His Ile Asn Leu Asn Phe Lys Ile Asn Pro Leu Glu Asn Ala Val Arg
325 330 335
His Pro Asn Cys Ser Leu Gln Ser Asn Pro Leu Leu His Gln Tyr Trp
340 345 350
Thr Ala Val Ser His Thr Met Pro Ala Phe Leu Leu Asp Leu Leu Leu
355 360 365
Arg Leu Thr Gly His Lys Pro Trp Met Met Lys Thr Ile Thr Arg Leu
370 375 380
His Lys Ala Met Met Leu Leu Glu Tyr Phe Thr Ser Asn Ser Trp Ile
385 390 395 400
Trp Asn Thr Glu Asn Met Thr Met Leu Met Asn Gln Leu Asn Pro Glu
405 410 415
Asp Lys Lys Thr Phe Asn Phe Asp Val Arg Gln Leu His Trp Ala Glu
420 425 430
Tyr Met Glu Asn Tyr Cys Met Gly Thr Lys Lys Tyr Val Leu Asn Glu
435 440 445
Glu Met Ser Gly Leu Pro Ala Ala Arg Lys His Leu Asn Lys Leu Arg
450 455 460
Asn Ile Arg Tyr Gly Phe Asn Thr Val Leu Val Ile Leu Ile Trp Arg
465 470 475 480
Ile Phe Ile Ala Arg Ser Gln Met Ala Arg Asn Ile Trp Tyr Phe Val
485 490 495
Val Ser Leu Cys Tyr Lys Phe Leu Ser Tyr Phe Arg Ala Ser Ser Thr
500 505 510
Met Arg Tyr
515
<210> 93
<211> 453
<212> PRT
<213> 粉纹夜蛾(Trichoplusia ni)
<400> 93
Met Ile Ala Val Thr Ser His Glu Asn Glu Ala Ser Ile Val Asp Phe
1 5 10 15
Tyr Glu Gly Lys Ser Val Phe Ile Thr Gly Gly Thr Gly Phe Leu Gly
20 25 30
Lys Val Phe Ile Glu Lys Leu Leu Tyr Cys Cys Pro Gly Leu Val Lys
35 40 45
Ile Tyr Met Leu Ile Arg Glu Lys Lys Gly Leu Thr Ile Lys Glu Arg
50 55 60
Ile Asp Arg Phe Val Asp Asp Ser Leu Phe Asp Arg Leu Lys Thr Gln
65 70 75 80
Arg Pro Lys Asp Leu Asp Lys Ile Val Leu Ile Pro Gly Asp Ile Thr
85 90 95
Ala Pro Ser Leu Gly Ile Ser Gln Glu Gln Glu Asn Ile Leu Ile Glu
100 105 110
Glu Val Ser Val Ile Ile His Ser Ala Ala Thr Ile Lys Phe Asn Ala
115 120 125
Pro Leu Glu Glu Ala Trp Ser Ile Asn Val Asp Gly Thr Arg Arg Ile
130 135 140
Leu Asp Leu Cys Arg Asn Met Lys Lys Val Glu Val Phe Leu His Ile
145 150 155 160
Ser Thr Ala Tyr Thr Asn Ile Asn Arg Asn Val Ile Glu Glu Val Leu
165 170 175
Tyr Pro Pro Pro Ala Asp Ile Lys Glu Leu Glu Lys Leu Asp Lys His
180 185 190
Asn Val Thr Glu Lys Gln Thr Met Lys Leu Leu Asn Gly Phe Pro Asn
195 200 205
Thr Tyr Thr Phe Thr Lys Ser Leu Thr Glu His Leu Val Ala Glu Asn
210 215 220
Cys Ala Tyr Met Pro Thr Ile Ile Val Arg Pro Ser Val Val Ala Ala
225 230 235 240
Val Leu Glu Asp Pro Ile Lys Gly Trp Leu Glu Asn Trp Tyr Gly Ala
245 250 255
Thr Gly Ile Ser Val Phe Thr Ala Lys Gly Leu Asn Arg Val Phe Leu
260 265 270
Gly His Lys Asn Ile Ile Val Asp Val Ile Pro Ala Asp Tyr Val Ala
275 280 285
Asn Leu Val Ile Ile Ala Gly Ala Arg Asn Asn Lys Ser Lys Glu Leu
290 295 300
Lys Ile Tyr Asn Cys Cys Ser Ser Gly Cys Asn Pro Leu Thr Ile Gly
305 310 315 320
Asn Leu Leu Gly Ala Phe Ile Asp Asp Ala Ile Arg His Lys Thr Tyr
325 330 335
Ala Met Pro Leu Pro Gly Trp Phe Ile Phe Thr Arg Tyr Arg Leu Val
340 345 350
Ala Thr Ile Val Thr Phe Ile Phe Gln Val Val Pro Ala Tyr Leu Ala
355 360 365
Asp Leu Tyr Arg Arg Ile Ile Gly Lys Lys Pro Lys Tyr Thr Lys Leu
370 375 380
Leu Tyr Leu Val Val Gln Thr Arg Val Ala Leu Asp Phe Phe Ser Ser
385 390 395 400
Asn Ser Trp Val Met Lys Ala Asp Arg Met Arg Glu Leu Tyr Ala Ser
405 410 415
Leu Ser Asn Asn Asp Lys Arg Met Phe Pro Cys Asp Pro Thr His Ile
420 425 430
Asn Trp Pro Glu Tyr Leu Ser Asp Tyr Gly Ala Gly Val Arg Arg Phe
435 440 445
Leu Glu Lys Arg Asn
450
<210> 94
<211> 1377
<212> DNA
<213> 黄地老虎(Agrotis segetum)
<400> 94
atgcccgtgc tgacctcgcg agaggacgag aagctgtctg tgcccgagtt ctacgccggc 60
aagtctatct tcgtgaccgg cggcaccgga ttcctcggca aggtgttcat tgagaagctg 120
ctctactgct gccccgacat cgacaagatc tacatgctga tccgagagaa gaagaacctg 180
tctatcgacg agcgaatgtc taagttcctg gacgaccctc tgttctctcg actgaaggaa 240
gaacgacccg gcgacctcga gaagatcgtg ctgatccccg gcgacatcac cgctcctaac 300
ctgggcctgt ctgccgagaa cgaacgaatc ctgctcgaga aggtgtccgt gatcatcaac 360
tctgccgcca ccgtgaagtt caacgagccc ctgcctatcg cctggaagat caacgtcgag 420
ggcacccgaa tgctgctggc cctgtctcga cgaatgaagc gaatcgaggt gtttatccac 480
atctctaccg cctactctaa cgcctcttct gaccgaatcg tggtggacga gattctgtac 540
cccgctcctg ccgacatgga ccaggtgtac cagctcgtga aggacggcgt gaccgaggaa 600
gagactgagc gactgctgaa cggactgccc aacacctaca ccttcaccaa ggctctgacc 660
gagcacctgg tggccgagca ccagacctac gtgcccacca tcatcattcg accctccgtg 720
gtggcctcta tcaaggacga gcccatccga ggctggctgt gcaactggtt cggcgccacc 780
ggcatctctg tgttcaccgc caagggcctg aaccgagtgc tgctcggaaa ggcctctaac 840
atcgtggacg tgatccccgt ggactacgtg gccaacctgg tgatcgtggc tggcgccaag 900
tctggcggcc agaagtctga cgagctgaag atctataact gctgttcttc tgactgcaac 960
cccgtgactc tgaagaagat catcaaggaa ttcaccgagg acaccatcaa gaacaagtct 1020
cacatcatgc ctctgcctgg ctggttcgtg ttcaccaagt acaagtggct gctgaccctc 1080
ctgaccatca tcttccagat gctgcccatg tacctggccg acgtgtaccg agtcctgacc 1140
ggcaagattc cccggtacat gaagctgcac cacctggtca ttcagacccg actgggaatc 1200
gacttcttca cctctcactc ttgggtgatg aagaccgacc gagtgcgaga gctgttcggc 1260
tctctgtctc tggccgagaa gcacatgttc ccttgcgacc cctcttccat cgactggacc 1320
gactacctgc agtcttactg ctacggcgtg cgacgattcc tggaaaagaa gaagtag 1377
<210> 95
<211> 1377
<212> DNA
<213> 小地老虎(Agrotis ipsilon)
<400> 95
atggccgtga tcatctcccg agaggaagag aagctgtctg tccccgagtt ctacgccggc 60
aagtctatct tcattaccgg cggcaccgga ttcctcggca aggtgttcat cgagaagctg 120
ctctactctt gccccgacat cgacaagatc tacatgctga tccgagagaa gaagaacctc 180
tctatcgacg agcgaatgac catgttcctg gacgaccctc tgttctctcg actgaaggaa 240
aagcgacccg gcgacgtcga gaagatcgtg ctgatccccg gcgacatctc ttctcccaac 300
ctgggcctgt ctgccgagaa cgaacgaatc ctgatcgaga acgtgtctgt gatcatccac 360
tctgccgcca ccatcaagtt caacgagccc ctgcctatcg cctggaagat caacgtcgag 420
ggcacccgaa tgctgatgga cctgtctcga cgaatgaagc gaatcaaggt gtttatccac 480
atctctaccg cctactctaa cgccaactct gagcgagccg ccgtggaaga gattctgtac 540
cccgctcctg ccgacatgga ccaggtgtac cagctcgtga aggacggcgt gaccgaggaa 600
gaaaccgaga tcctgctgaa cggactgccc aacacctaca ccttcaccaa ggctctggcc 660
gagcacctgg ccgctgagca ccaggtgcac gtgcccaccg tgattattcg accctctatc 720
gtgggctcta tcaaggacga gcccatccga ggctggctgt gcaactggtt cggcgccacc 780
ggcatctctg tgttcaccgc caagggcctg aaccgagtgc tgctcggaaa ggcctctaac 840
atcgtggacg tgatccccgt ggactacgtg gccaacctgg tgatcgtggc tggcgccaag 900
aacggcggcg agaagtctga ggaactgaag atctataact gctgttcttc tgactgcaac 960
cccgtgaccg tgaagaagat cctgaaggaa ttcatcgacg acaccattaa gaacaagtct 1020
cacatcatgc ctctgcctgg ctggttcgtg ttcaccaagt acaagtggct gatgaccctg 1080
ctgaccatca tcttccagat gatccccatg tacctggccg acgtgtaccg agtcctgatg 1140
ggcaagaacc ctcggtacat gaagctgcac cacctggtca ttcagacccg actggtgatc 1200
aacttcttca ccttccactc ttgggtgatg aagaccgatc gagcccgaga gctgttcggc 1260
tctctgtctc ccgttgagaa gcacatgttc ccttgggacc cctctggcat cgactggacc 1320
gagtacctgc agtcttactg ctacggcgtg cgacacttcc tcgagaagcg aaagtag 1377
<210> 96
<211> 1437
<212> DNA
<213> 偏瞳蔽眼蝶(Bicyclus anynana)
<400> 96
atgtaccgaa acgtgaacaa caactacaag ggccactctg tgtacaccaa cggcgctggc 60
tctcgagtga agtctctgct gtcctctgcc accgacaaca ccaacgagta ccagtctatc 120
gccgagtgct acaagggaca gtccgtgttc atcaccggcg gcaccggctt cgtcggcaag 180
gtgctgctcg agaagctgct gtactcttgc cccggcatcg acaaggtgta cctgctggtg 240
cgagagactc agggcgccac cgctcaccag cgaatgcaga agctcctgga agaacccgcc 300
ttctcgcgaa tcaaggaaga gaaccctcag gccttcgaga aggtgatccc catcgtgggc 360
gacatcaccc agcctcagct gggcatcatg gccgagaacg aggaactgct gattaaggaa 420
gtgtctttcg tctaccacgt ggccgccacc accaagttca acgagactct ggacattgcc 480
atgaacgtga acgtggccgg aaccggacga gtgctggacc tgtctaagcg aatggaaaac 540
atcaaggcct tcgtgtacgt gtctaccgcc tactctaaca ccgaccgaga ggtggtggaa 600
gaggtgctgt accccgctcc tgtgtctctg aacgaggtgc acaagctgct gaagatcggc 660
atcaccgacg ctcaggtgaa ggaactgatc aagggacgac ccaacaccta caccttcacc 720
aaggctctgg ctgagaacct ggtggccgac aaccacggac acgtgcccgc catcatcgtg 780
cgaccctcta tcgtgtcctc gtctaagaag gaacccatca ccggatggat cgactcttgg 840
tacggcgcca ccttcctggc caccgtgacc atgaagggct tcaaccgagt gttcgtgtcg 900
tcttacgagt acaacctgga cttcatcccc gtggactacg tgtccaacct gatcatcgtg 960
gccgctgctc gatgcaagtg ctctgacaag gtggacgtgt acaactcttc tacctccggc 1020
gaaaaccctc tgaagattgg cgccttcttc gacgacatca ttgcctactc ttgcaagcac 1080
aagttctacg acatccctct gcctatggcc tacctgactc gataccgatg ggtcatgttc 1140
ctgatcaccc tgctgctgca gaccctgcct gcctatatcg ccgacctgtt cctgctgatc 1200
gtgggcaaga agccccgata cgtcaagctg gcctctaaga tctctgccgc tcacgaggtc 1260
ctggactact tcccctctcg aacctggtct atgtctgccc gacagaccac cgctctgttc 1320
cagtctctgt ctccctcgga ccgagatcag tttccttgcg accccaccga catcgactgg 1380
aaggagtaca tcgtcaccta ctgccaggga atccgacagt tcctgtgcaa gtcttaa 1437
<210> 97
<211> 1449
<212> DNA
<213> 红尾熊蜂(Bombus lapidarius)
<400> 97
atgtctcacc accaccatca ccacggctct aacaccaagc tgaacgagaa cgagatcaac 60
gagaagctgc gaaacgtgaa ctctatcggc ggcttctacg ccggcaccgg catcctgatc 120
accggcggca ccggattcgt cggcaagggc ctgctcgaga agctcatccg aacctgctct 180
cacattgccg ccatcttcat cctgattcga cccaagcgaa accagaccat cgagcagcga 240
ttcaagaaga tcatcgacga ccccatcttc gacggcgtgc gagcacagaa ccccgccatt 300
ttctacaaga tccacctggt cgagggcgac gtgaccctgc ctgacctggg cctgctgcaa 360
aaggaccgag acatgctgat tgagaacgtg aacatcgtgt tccacattgc tgccaccatc 420
aacttccacc agcctctgga catgatcgtg aacgtcaacg tgaagggcac cgccaacatc 480
atcaagctgt gcaaggaact gaagcacgtg atctctgtgg tgtacgtgtc taccgcctac 540
tctaacccca acctgtctga catcgaggaa aaggtctaca ctaccaactt ggacccctct 600
ctggtgatgg acatctgcga ccgacaggac aaggaactca tcaacctgat cgaggaacga 660
atcctcaaga ctcaccccaa cacctacacc ttcaccaaga acctggccga gcagaccatc 720
tctaacaact ctaagggcct gaccgtggcc atcgtgcgac cctctatcat ctcttcgtcc 780
ctgaaggaac cctttcctgg ctggctggtg tctttcgccg gccagtctgg catcttcaag 840
aacatcggca acggcatggc caaggtgctg ctcggacgag gcgacgtcat ctccgacatc 900
gtgcccgtgg actacgtggt ggacgccatc atgtgcgccg cctggcacgt caccctgcag 960
atcgacaaca acgtcaaggt gtacaactgc acctcttctg ctcgacccat taagctgggc 1020
gagattgtga acatcttcgt cgagtgttct cgagagatcc ccatgaagaa caccctgtgg 1080
tatccctctt gcaccatcgt ggccaaccga ttcgtgtaca acgtgctgaa catcctgctg 1140
aacgtgctgc ccgccttcgc cgtggacatc ttcctgcgac tgcgaggcgg caagcccatg 1200
gctatgaaca tgaacaagta ctacaacaag ctggtggtcg ccacctctta cttcaactct 1260
aacgagtggt ctttcaagcg agacaacatt gccgacatga tcaacaaggt gaacaccctc 1320
gaggacggca acatcgtgaa gctggacctg caggacatgg tgtggcgaaa gtacattgcc 1380
aactacctgg ccggcatcaa gaagttcatt ctgaaggaag atcccaagtc tatcaacgct 1440
gctccctaa 1449
<210> 98
<211> 1407
<212> DNA
<213> 二化螟(Chilo suppressalis)
<400> 98
atggaaccct acaagtctga cgaggaaatc aagtctaagc tgttctctcc cgtggtgaac 60
ttctacaccg gcaagtctgt gttcattacc ggcgctaccg gcttcctggg caccgtgctg 120
ctcgagaagc tgatgttcac ctgtgctcac aacatcaaga acatctacat cctgatcaag 180
cccaccgacg gccagtctat cgacgagaag atgtctaagt tcttcgactc tcgagccttc 240
gagcgactgc gagagcacaa ccccaacttc cgatctaaga tcattcccct gaccggcgac 300
atcaccaaga agtctatcgg cctgtctgag aacgacatct tcattctgcg aaaggaagtg 360
tctgtcgttt tccactctgc cgccgacacc tctttccagc tgtctctgtc tgaggccatc 420
atcatcaaca ccaaggccac cgaggaactg ctgaagatct gcaaggacat gcaccagctg 480
aaggctttcg tgtacgtgtc taccgcctac tctaactgca accgacctat cattgacgag 540
aaggtgtacc ctaccgacgt gtctctcgag actgtgtacg agctgctgga atactctaag 600
tctgacaagc tgatcgagtt cctgttcaac ggacgaccca acgcctacac ctactccaag 660
gctctgtcgg aggaactggt gcagaactac ggcaacatca tcccctctat catcattcga 720
ccctccatca tcacctcttc tatcaaggaa ccctatcctg gctggctgtc tggctggaac 780
ggcctgaacc aggtgatcct gtctggcatg aagggctacc tccgatgctg gttcgccgac 840
gactcttgta tcgccgacac tatccccgtg gactacaccg ccaacgtgat gatcgtgtct 900
gcctgggacg cccacgagcg acgactgaag aacgacaagc agctcaaggt gttcaactgc 960
tgctctggcc tgcagaaccc catcgacacc ggaaacatga tgtctatctg cctcgagcac 1020
aacaagaagc acgagaagga caagtccaag gccaacacca tgttcatcat ccgaaagaac 1080
ttttacgtgt acttcttcta cttcctggtg ctgcatctga tccccgctct gattatcgac 1140
gtgttctact ttctgctggg ccgagagatg ctgatgtgta ccaacctgaa gaagatcaag 1200
cgattctctt cgatcctgaa ggtgttctgc ttcaaccagt ttctgttcat cgacaagaac 1260
gtccgacgac tgcaccaggc tctgaacgag actgacaagg tgctgttcga cttcgacgtg 1320
cgaaacatcc agtggcgagt gtacctgaag gacttcgtga tcgccctgaa ggaatacgac 1380
aagacctctc gaaccgtgaa gatttag 1407
<210> 99
<211> 1524
<212> DNA
<213> 苹果蠹蛾(Cydia pomonella)
<400> 99
atggacatga tcgacgaggc cgaggctcga ggcgagtctc agatccagaa gttcctgtct 60
ggctctacca tcctgctgac cggcggaacc ggcttcctgg gcaagctgct ggtcgagaag 120
ctgctgcgaa cctgtcctga catcaagaag atctacctgc tggctcgacc caagaagaac 180
aaggaaatcc agaagcgact gcaagagcag ttcgaggacc ctctgtacga gcgactccga 240
aagcaggtcc ccgacttcat gtctaagatc ggcgtggtcg agggcgacgt gggaaagctc 300
ggcctgggca tctctgagtc tgaccgacag accgtggtgg acgaggtgga cgtgatcttc 360
cacggcgctg ctaccctgcg attcaacgag cccctgcgag atgccgtgtt catcaacgtg 420
cgaggcaccc gagagatgat gctgctggcc cgagcctgca ccaagctgaa ggccatggtg 480
cacatctcta ccgcctactc taactgcacc ctgtctgaga ttgacgaggt gttctacgag 540
tctcccattc ctggcgacaa gctgatcgac ctggccgagt ctctggacga aaagaccatc 600
aactctatca cccctggcct gatcggcgac ttccccaaca cctacgccta caccaagggc 660
gtcgccgagg acgtgctgca gaagtactct cagggactgc ccgtggccgt ggtgcgaccc 720
tctatcgtga tcggcaccgc taaggacccc gtcgccggct ggatcgacaa cgtgtacggt 780
cccaccggtg tgattgtggg tgctgagctg ggcctgctgc acgtgctcca cgctgctccc 840
aacgcctctg cctctctggt gcccggtgac gctgtggctg ctgcttgcgt ggctgctgct 900
tggtctgtgt ctcgagccga gaaccatcag gctcccgctc gagatgcccc tcctctgtac 960
cactgcgtgt gctctgagaa ggctcccatc acctggtcgc agttcatgtc tctggccgag 1020
actcacggcc tggtggtgcc tccaatgcag gccatgtggt actacatgct gaccctgacc 1080
aactctaagg ccatgtacac cctgctcgcc ctgctgatgc actggatccc cgcctacatc 1140
atcgacggcg tgtgcatggt gctgggcaag aagccccagc tgcgaaaggc ttacaccaag 1200
atcgagcagt ttgccgccgt gatcgagttc ttcgctctgc gagagtggcg attccacaac 1260
aacaacatga cccgactgta caacgagctg tgcgacgccg acaagcacat ctacgacttc 1320
gacacctctg ccatcgactg gaacgagttc tttgccaact acatgaaggg catccgagtg 1380
tacctgctga aggaccctgt gtctactatc cctgagtctc tgaagcgaca caagcgactg 1440
aagtggctgc actacgccct gctcaccgtg ctgtctctgc tggtgctgcg actgctgtgg 1500
ttcttcgtgt ctttcctgtt ttag 1524
<210> 100
<211> 1368
<212> DNA
<213> 棉铃虫(Helicoverpa armigera)
<400> 100
atggtggtcc tgacctctaa ggagactaag ccctccgtgg ccgagttcta cgctggcaag 60
tctgtcttca tcaccggcgg aaccggtttc ctgggcaagg tcttcattga gaagctgctg 120
tactcctgtc ccgacatcgg caacatctac atgctgatcc gagagaagaa gggactgtct 180
gtgtccgagc gaattaagca cttcctggac gaccccctgt tcacccgact gaaggagaag 240
cgacccgccg acctggagaa gatcgtgctg attcccggag acatcaccgc tcccgacctg 300
ggtattacct ctgagaacga gaagatgctg atcgagaagg tgtctgtcat cattcactcc 360
gccgctaccg tcaagttcaa cgagcccctg cccaccgcct ggaagatcaa cgtggaggga 420
acccgaatga tgctggctct gtctcgacga atgaagcgaa ttgaggtctt catccacatt 480
tccaccgcct acaccaacac caaccgagag gtggtggacg agatcctgta ccctgctcct 540
gctgacattg accaggtgca ccgatacgtc aaggacggta tctctgagga agagactgag 600
aagattctga acggccgacc caacacctac accttcacca aggccctgac cgagcacctg 660
gtggctgaga accaggctta cgtgcccacc atcattgtcc gaccctccgt ggtcgccgct 720
atcaaggacg agcccattaa gggatggctg ggtaactggt acggagctac cggactgacc 780
gtgttcaccg ctaagggtct gaaccgagtc atctacggcc actcttccaa catcgtggac 840
ctgattcccg tggactacgt cgccaacctg gtcattgccg ctggcgctaa gtcttccaag 900
tccaccgagc tgaaggtgta caactgttgc tcttccgcct gcaaccccat caccattgga 960
aagctgatgt ctatgttcgc cgaggacgct atcaagcaga agtcctacgc tatgcccctg 1020
cccggttggt acatcttcac caagtacaag tggctggtcc tgctgctgac cattctgttc 1080
caggtcatcc ccgcctacat taccgacctg taccgacacc tgatcggcaa gaacccccga 1140
tacattaagc tgcagtctct ggtcaaccag acccgatctt ccattgactt cttcacctct 1200
cactcctggg tcatgaaggc tgaccgagtc cgagagctgt tcgcctctct gtcccccgct 1260
gacaagtacc tgttcccctg tgaccccacc gacatcaact ggacccacta cattcaggac 1320
tactgctggg gagtgcgaca cttcctggag aagaagtcct acgagtag 1368
<210> 101
<211> 1371
<212> DNA
<213> 烟夜蛾(Helicoverpa assulta)
<400> 101
atggttgtct tgacctccaa agaaactaag ccatctgttg ctgaatttta cgctggtaag 60
tctgttttca ttactggtgg tactggtttc ttgggtaaga tcttcattga aaagttgttg 120
tactcctgcc cagatatcgg taatatctac atgttgatca gagaaaagaa gggtttgtcc 180
gtttccgaaa gaatcaagca atttttggat gaccctttgt tcaccagatt gaaagaaaaa 240
agaccagccg acttggaaaa gatcgttttg attccaggtg atattactgc tccagatttg 300
ggtattacct ccgaaaacga aaagatgttg atcgaaaagg tcagtgtcat tattcattct 360
gctgctaccg ttaagttcaa cgaaccattg ccaactgctt ggaagattaa cgttgaaggt 420
actagaatga tgttggcctt gtctagaaga atgaagagaa tcgaagtttt catccatatc 480
tctaccgctt acactaacac caacagagaa gttgttgacg aaatcttgta tccagctcca 540
gctgatattg atcaagttca ccaatatgtt aaggacggta tctctgaaga agaaactgaa 600
aaaatcttga acggtagacc aaacacttac actttcacta aggctttgac cgaacatttg 660
gttgctgaaa atcaagctta cgttccaacc attatcgtta gaccatcagt tgttgctgcc 720
attaaggatg aacctattaa gggttggttg ggtaattggt atggtgctac aggtttgact 780
gtttttactg ctaagggttt gaacagagtt atctacggtc attcctctta catcgttgat 840
ttgatcccag ttgattacgt tgccaacttg gttattgctg ctggtgctaa atcttctaag 900
tctactgaat tgaaggtcta caactgctgt tcttctgctt gtaacccaat tactatcggt 960
aagttgatgt ccatgtttgc tgaagatgct atcaagcaaa agtcttacgc tatgccattg 1020
ccaggttggt atgtttttac aaagtacaag tggttggtct tgttgttgac cattttgttc 1080
caagttattc cagcctacat taccgacttg tacagacatt tgattggtaa gaacccaaga 1140
tatatcaagt tgcaatcctt ggtcaatcaa accagatcct ccattgattt cttcacctct 1200
cattcttggg ttatgaaggc tgatagagtc agagaattat tcgcttcttt gtctccagca 1260
gataagtact tgtttccatg tgatccaacc gatattaact ggacccatta cattcaagat 1320
tactgctggg gtgttagaca cttcttggaa aaaaagacta ccaacaagta a 1371
<210> 102
<211> 1362
<212> DNA
<213> Heliothis subflexa
<400> 102
atggttgtct tgacctccaa agaaactaag ccatctgttg ctgaatttta cgctggtaag 60
tctgttttca ttactggtgg tactggtttc ttgggtaagg ttttcattga aaagttgttg 120
tactcctgcc cagatatcgg taatatctac atgttgatca gagaaaagaa gggtttgtcc 180
gtttccgaaa gaatcaagca ctttttggat gatcctttgt tcaccagatt gaaagaaaaa 240
agaccagccg acttggaaaa gatcgttttg attccaggtg atattactgc tccagatttg 300
ggtattacct ccgaaaacga aaagatgttg atcgaaaagg tcagtgtcat tattcattct 360
gctgctaccg ttaagttcaa cgaaccattg ccaactgctt ggaagattaa cgttgaaggt 420
actagaatga tgttggcctt gtctagaaga atgaagagaa tcgaagtttt catccatatc 480
tctaccgctt acactaacac caacagagaa gttgttgacg aaatcttgta tccagctcca 540
gctgatattg atcaagttca ccaatatgtt aaggacggta tctctgaaga agaaactgaa 600
aaaatcttga acggtagacc aaacacttac actttcacta aggctttgac cgaacatttg 660
gttgctgaaa atcaagctta cgttccaacc attatcgtta gaccatcagt tgttgctgcc 720
attaaggatg aacctattaa gggttggttg ggtaattggt atggtgctac aggtttgact 780
gtttttactg ctaagggttt gaacagagtt atctacggtc actcttctaa catcgttgat 840
ttgatcccag ttgattacgt tgccaacttg gttattgctg ctggtgctaa atcttctaag 900
tctactgaat tgaaggtcta caactgctgt tcttctgctt gtaacccaat tactatcggt 960
aagttgatgt ccatgtttgc tgaagatgct atcaagcaaa agtcttacgc tatgccattg 1020
ccaggttggt acatttttac taagtacaag tggttggtct tgttgttgac cattttgttc 1080
caagttattc cagcctacat taccgacttg tacagacatt tgattggtaa gaacccaaga 1140
tatatcaagt tgcaatcctt ggtcaatcaa accagatcct ccattgattt cttcaccaac 1200
cattcttggg ttatgaaggc tgatagagtc agagaattat tcgcttcttt gtctccagca 1260
gataagtact tgtttccatg tgatccagtc aacatcaatt ggagacaata tatccaagat 1320
tactgctggg gtgttagaca tttcttggaa aaaaagactt aa 1362
<210> 103
<211> 1362
<212> DNA
<213> 烟芽夜蛾(Heliothis virescens)
<400> 103
atggttgtct tgacctccaa agaaactaag ccatctgttg ctgaatttta cgctggtaag 60
tctgttttca ttactggtgg tactggtttc ttgggtaagg ttttcattga aaagttgttg 120
tactcctgcc cagatatcgt taacatctac atgttgatca gagaaaagaa gggtttgtcc 180
gtttccgaaa gaatcaagca atttttggat gaccctttgt tcaccagatt gaaggacaaa 240
agaccagctg atttggaaaa gatcgttttg attccaggtg atattaccgc tccagatttg 300
ggtattactg ctgctaacga aaagatgttg atcgaaaagg tttccgtcat tattcattct 360
gctgctaccg ttaagttcaa cgaaccattg ccaactgctt ggaagattaa cgttgaaggt 420
actagaatga tgttggcctt gtctagaaga atgaagagaa tcgaagtttt catccatatc 480
tctaccgctt acactaacac caacagagaa gttgttgacg aaatcttgta tccagctcca 540
gctgatattg atcaagttta ccaatacgtc aaagaaggta tctccgaaga agataccgaa 600
aaaatcttga acggtagacc aaacacttac actttcacta aggctttgac cgaacatttg 660
gttgctgaaa atcaagctta cgttccaacc attatcgtta gaccatcagt tgttgctgcc 720
attaaggatg aaccattgaa aggttggttg ggtaattggt ttggtgctac aggtttgact 780
gtttttactg ctaagggttt gaacagagtt atctacggtc attccaacta catcgttgat 840
ttgatcccag ttgattacgt tgccaacttg gttattgctg ctggtgctaa atctaacacc 900
tcttctgaat tgaaggtcta caactgttgt tcctcatcat gtaacccagt taagatcggt 960
actttgatgt ctatgtttgc tgatgatgcc atcaagcaaa agtcttatgc tatgccattg 1020
ccaggttggt acatttttac taagtacaag tggttggtct tgttgttgac cttcttgttc 1080
caagttattc cagcctacat taccgatttg tcaagacact tggttggtaa gagtccaaga 1140
tatatcaagt tgcaatcctt ggtcaatcaa accagatcct ccattgattt cttcaccaat 1200
cattcttggg ttatgaaggc cgatagagtc agagaattat acgcttcttt gtctccagca 1260
gataagtact tgtttccatg tgatccagtt aacatcaact ggacccaata cttgcaagat 1320
tactgttggg gtgttagaaa cttcttggaa aaaaagactt aa 1362
<210> 104
<211> 1407
<212> DNA
<213> 小菜蛾(Plutella xylostella)
<400> 104
atgaagctgg gcaccttcgg caacatggcc gccaacggcg gctctgtgtg cgacttctac 60
gccaactcta ccgtgttcat taccggcggc accggattcc tcggcaaggt gctgatcgag 120
aagctgctgc gatcttgccg aaagatcgac aagatctacg tcctgctgcg aggcaccacc 180
aacaagaccg ctcaagagcg actcgaggac ctgtctcacg aggtcctgtt cgagaaggtg 240
cgacaggacg accccaacat catgaagaag ctgatccccg tcaacggcga cctgactctg 300
cccaacctgg gcatgaacaa cgaggactac tctctgatcg tgaagaacgt gtctatcgtg 360
ttccacgccg ctgcctctat ccgattcaac ctgaagatca aggaagccct gcactgcaac 420
gtcgagggca ccaagaaggt gatcgagctt tgccacaagg cccgatgcat caaggccttc 480
gtgcacatct ctaccgccta ctctaacacc gacaagacct tcgtgaagga agaggtgtac 540
cccgctcctg agaacctgga taagatctat gtgatcatcg gccagaacgg cgacgacacc 600
gaggccgacg acctgacctc ttctcgaccc aacacctaca cctacgccaa ggccgtggcc 660
gagtacgagg tgctgcgaaa ccacggatct gtgcccaccg ccatcattcg accctctatc 720
gtgaccccta tctggcgaga tcccactcct ggctggctgg acaagtggtc tggcggcacc 780
cctatcatct tcggcctgtg caagggcctg ctccgatgcc tggacaccca gccttctaac 840
gtgatcgact tcatccccgc cgacattgcc gtgaacctgt ccatcgtggc cgctgccaag 900
tgccacgtgg acacccctaa gatccgagtg tacaactgct gctctggccc tacaaacccc 960
atgaccttca agatgctgtc tgactactgc cacgagaact ctatcaagca cggcctgcac 1020
tggttccctt atcctaagat cttcctgtct accaaccgag tgttcctgaa gattgtgcga 1080
ctggtgctgc agttcctgcc tctgttcctg gccgacatgt ggctgaagat tcgaggcaag 1140
cagccccgat tcgtgaagat gctggaaaag ctgaccaagg tggaaaagac cctgcacttc 1200
ttcatcaaga accagtggca gttcgagaac cacaacgttg aggccctgat ctctaccctg 1260
tctccttcgg accgagtgca gttcccttgc gacccctctg agatctgctg gaagacccac 1320
ttcgaggatt actgcctggg catcgacaag tacctgatga acacctctgt gaagtctgcc 1380
aacatcaact ctggcatgta caagtag 1407
<210> 105
<211> 1365
<212> DNA
<213> 甜菜夜蛾(Spodoptera exigua)
<400> 105
atggtggtgc tgacctctaa ggaaaagtct aacatgtctg tggccgactt ctacgccggc 60
aagtctgtgt tcattaccgg cggcaccgga ttcctcggca aggtgttcat cgagaagctg 120
ctgtactctt gccccgacat cgacaagatc tacatgctga tccgagagaa gaagggccag 180
tctatccgag agcgactgac caagatcgtg gacgaccctc tgttcaaccg actgaaggaa 240
aagcgacccg gcgacctgga caagattgtg ctgatccccg gcgacgtgac cgtgcctggc 300
ctgggcatct ctgacgagaa cgaggccatc ctgatcgaca aggtgtctgt ggtgatccac 360
tctgccgcca ccgtgaagtt caacgagccc ctcgagactg cctggaacgt gaacgtcgag 420
ggcacccgaa tgatcatggc cctgtctcga aagatgaagc gaatcgagat cttcatccac 480
atctctaccg cctacaccaa caccaaccga gccgtggtgg acgaggtgct gtaccctcct 540
cctgccgaca tcaacgaggt gcaccagtac gtgaagaacg gcatcaccga ggaagagact 600
gagaagatcc tgaacggacg acccaacacc tacaccttca ccaaggctct gaccgagcac 660
ctggtggccg agaaccaggc ctacatgccc accatcatcg tgcgaccctc tatcgtgggc 720
gccatcaagg acgaccccat ccgaggctgg ctggccaact ggtacggcgc caccggcctg 780
tccgtgttca ccgccaaggg cctgaaccga gtgatctacg gccagtcctc tcacgtggtg 840
gatctgattc ccgtggacta cgtggccaac ctggtgatcg tggctggcgc caagacctac 900
cgatctaacg aggtgactat ctacaactct tgttcttctt cttgcaaccc catcaccatg 960
gaacgactgg tgggcctgtt cattgacgac accgtcaagc acaactctta cgtgatgccc 1020
ctgcctggct ggtacgtgta ctctaactac cgatggctgg tgtacctggt gaccatcatc 1080
ttccagatga tccccgccta cctggccgac atcggccgac gactgctggg caagaaccct 1140
cggtactaca agctgcagtc tctggtggct cagacccaag aggccgtgca cttcttcacc 1200
tctcacacct gggagatcaa gtctaagcga acctctgagc tgttcgcctc tctgtctcat 1260
accgaccagc gaatcttccc atgcgacgcc aagaagatcg actggaccga ctacatcacc 1320
gactactgct ctggcgtgcg acagttcctg gaaaagaaga agtag 1365
<210> 106
<211> 1353
<212> DNA
<213> 草地贪夜蛾(Spodoptera frugiperda)
<400> 106
atgtctaagg ccaactgctc taacgtggcc tcgttctacg ccggcaagtc tgtgttcatc 60
accggcggca ccggcttcgt gggcaagacc ctgatcgaga agctgctgta ctcttgctct 120
ggcatcgaca agatctacgt gctggtgcga gacaagtacg gcaagcaggc ctctgagcga 180
ctggcccgag tgacctctac tcccgtgttc gaccgactca agacctctaa gtctgaggaa 240
ctgaagaaga tcgtcgtcat ctctggcgac atcacccgag agaacctggg cctgcaagag 300
gacgtgctca agaccctcga gaacgaggtg tctgtggtgt tccacctggc cgccaccgtg 360
gccttcaagc tgcccctgaa ggacgccatg cgaatcaacg tgaacggcac cgagaacgtg 420
atcgagctgt gccgacgaat gaagaagctg caggccttcg tccacgtgtc taccgccttc 480
accaactctg accgaaagga aatcaacgag atggtgtacc ccatgcctat caacctggaa 540
gaggcccgac acgtggccta cacctactct cacgacgacg tgatcgtgtc tgccttcatg 600
ggaaagaagc ccaacaccta caccttctcc aaggccttcg ccgagcagca ggtcatgaag 660
cagtgcgagg acctgcctac cgccatcatt cgaccctcta tcgtgatgtc ctctgtgaag 720
gaaccctgtc ctggctggat cgacacctgg aacggctcta ccggcctgtt cgtgggaatg 780
cccgctggca tcctgcgagt ggtgctcgga cgaggatcta acgtgaccga cctggtgcct 840
gtggacatcg tgaccaacct gatcgtggtg gccgctaccg agtgccagaa gtctaaggaa 900
atcaaggtct acaactgctg caccggcact tctaacccca tcacctgtga cgaggctacc 960
accatctctc gaaaggtggc cctgaagtac tctctgaacg agctgccctg gcctttcctg 1020
atgtttaccc cttctgtgtt cctgtatacc ctgatcacct tcctgctgca gatcgtgccc 1080
gcctacctga tcgacctgtg gtgcatcctg accggccgaa aggctaccca gatcaagctg 1140
cagcgacgac ttaagaaggt ggtcgacgcc gtcaagttct ttctgctgaa cgagtggaag 1200
ttctctgacg acaacattcg agatctgctt aagaccatgt ctcccgtgga caaggaaatc 1260
ttcaacttcg acgtcaagac catcaactgg gagacttgca tcgaggacta catcctggga 1320
gcccgaaagt acctgctgaa gtctgagaag tag 1353
<210> 107
<211> 1365
<212> DNA
<213> 海灰翅夜蛾(Spodoptera littoralis)
<400> 107
atggtggtgc tgacctctaa ggaaaagtct aacatgtctg tggccgactt ctacgccggc 60
aagtctgtgt tcattaccgg cggcaccgga ttcctcggca aggtgttcat cgagaagctg 120
ctgtactctt gccccgacat cgacaagatc tacatgctga tccgagagaa gaagggccag 180
tctatccgag agcgactgac caagatcgtg gacgaccctc tgttcaaccg actgaaggac 240
aagcgacccg gcgacctggg aaagatcgtg ctgatccccg gcgacatcac cgtgcctggc 300
ctgggcatct ctgaggaaaa cgagactatc ctgaccgaga aggtgtctgt ggtgatccac 360
tctgccgcca ccgtgaagtt caacgagccc ctggccaccg cctggaacgt gaacgtcgag 420
ggcacccgaa tgatcatggc cctgtctcga cgaatgaagc gaatcgaggt gtttatccac 480
atctctaccg cctacaccaa caccaaccga gccgtgatcg acgaggtgct gtaccctcct 540
cctgccgaca tcaacgacgt gcaccagcac gtgaagaacg gcgtgaccga ggaagagact 600
gagaagatcc tgaacggacg acccaacacc tacaccttca ccaaggctct gaccgagcac 660
ctggtggccg agaaccagtc ttacatgccc accatcatcg tgcgaccctc tatcgtgggc 720
gccatcaagg acgaccccat ccgaggctgg ctggccaact ggtacggcgc caccggcctg 780
tccgtgttca ccgccaaggg cctgaaccga gtgatctacg gccactctaa ccacgtcgtg 840
gatctgattc ccgtggacta cgtggccaac ctggtgatcg tggctggcgc caagacctac 900
cactccaacg aggtgaccat ctacaactct tgttcttctt cttgcaaccc catcaccatg 960
aagcgactgg tgggcctgtt cattgactac accgtcaagc acaagtctta cgtgatgccc 1020
ctgcctggct ggtacgtgta ctctaactac aagtggctgg tgttcctggt gaccgtgatc 1080
ttccaggtga tccccgccta cctgggcgac atcggccgac gactgctggg caagaaccct 1140
cggtactaca agctgcagaa cctggtcgct cagacccaag aggccgtgca cttcttcacc 1200
tctcacacct gggagattaa gtctaagcga acctctgagc tgttctcttc tctgtccctg 1260
accgaccagc gaatgttccc ctgcgacgcc aaccgaatcg actggaccga ctacatcacc 1320
gactactgct ctggcgtgcg acagttcctc gagaagatca agtag 1365
<210> 108
<211> 1365
<212> DNA
<213> 斜纹夜蛾(Spodoptera litura)
<400> 108
atggtggtgc tgacctctaa ggaaaagtct aacatgtctg tggccgactt ctacgccggc 60
aagtctgtgt tcattaccgg cggcaccgga ttcctcggca aggtgttcat cgagaagctg 120
ctgtactctt gccccgacat cgacaagatc tacatgctga tccgagagaa gaagggccag 180
tctatccgag agcgactgac caagatcgtg gacgaccctc tgttcaaccg actgaaggac 240
aagcgacccg gcgacctggg caagatcatt ctgatccccg gcgacatcac cgtgcctggc 300
ctgggcatct ctgaggaaaa cgagactatc ctgatcgaga aggtgtctgt ggtgatccac 360
tctgccgcca ccgtgaagtt caacgagccc ctggccaccg cctggaacgt gaacgtcgag 420
ggcacccgaa tgatcatggc cctgtctcga cgaatgaagc gaatcgaggt gtttatccac 480
atctctaccg cctacaccaa caccaaccga gccgtgatcg acgaggtgct gtaccctcct 540
cctgccgaca tcaacgacgt gcaccagcac gtgaagaacg gcgtgaccga ggaagagact 600
gagaagatcc tgaacggacg acccaacacc tacaccttca ccaaggctct gaccgagcac 660
ctggtggccg agaaccagtc ttacatgccc accatcatcg tgcgaccctc tatcgtgggc 720
gccatcaagg acgaccccat ccgaggctgg ctggccaact ggtacggcgc caccggcctg 780
tccgtgttca ccgccaaggg cctgaaccga gtgatctacg gccactctaa ccacgtcgtg 840
gatctgattc ccgtggacta cgtggccaac ctggtgatcg tggctggcgc caagacctac 900
cactccaacg aggtgaccat ctacaactct tgttcttctt cttgcaaccc catcaccatg 960
aagcgactgg tgggcctgtt cattgactac accgtcaagc acaagtctta cgtgatgccc 1020
ctgcctggct ggtacgtgta ctctaactac cgatggctgg tgttcctggt gaccctgatc 1080
ttccaggtga tccccgccta cctgggcgac atcggccgac gactgctggg aaagaaccct 1140
cggtactaca agctgcagaa cctggtcgct cagacccaag aggccgtgca cttcttcacc 1200
tctcacacct gggagattaa gtctaagcga acctctgagc tgttctcttc tctgtccctg 1260
accgaccagc gaatgttccc ctgcgacgcc aaccgaatcg actggaccga ctacatcacc 1320
gactactgct ctggcgtgcg acagttcctc gagaagatca agtag 1365
<210> 109
<211> 1557
<212> DNA
<213> Tyta alba
<400> 109
atggtgtcta tccccgagta ctacgagggc aagaacatcc tgctgaccgg cgccaccggc 60
ttcatgggca aggtgctgct cgagaagctg ctgcgatctt gccccaaggt gaaggccgtg 120
tacgtgctgg tgcgacacaa ggccggacag acccctgagg ctcgaatcga ggaaatcacc 180
aactgcaagc tgttcgaccg actgcgagat gagcagcccg acttcaaggc caagatcatc 240
gtgatcacct ctgagctgac ccagcctgag ctggacctgt ctgagcccat caaggaaaag 300
ctgatcgagc gaatcaacat catcttccac tgcgccgcca ccgtgcgatt caacgagact 360
ctccgagatg ccgtgcagct gaacgtgacc gctactcagc agctcctgtt cctggctcag 420
cgaatgaaga acctggaagt gttcatgcac gtgtctaccg cctacgccta ctgcaaccga 480
aagcagatcg aagagatcgt gtaccctcct ccagtggacc ccaagaagct gattgactct 540
ctcgagtgga tggacgacgg cctggtgaac gacatcaccc ctaagctcat cggcgaccga 600
cctaacacct acacttacac caaggctctg gccgagtacg tggtgcagca agagggcgcc 660
aagctgaaca ccgccatcat tcgaccctct atcgtgggcg cctcttggaa ggaacccttt 720
cctggctgga tcgacaactt caacggcccc tctggcctgt tcattgccgc cggaaagggc 780
atcctgcgaa ccatgcgagc ctctaactct gccgtggccg acctggtgcc tgtggacgtg 840
gtggtgaaca ccactctggc cgctgcctgg tactctggcg tgaaccgacc tcgaaacgtg 900
atgatctaca actgcaccac cggcggcact aaccccttcc actggggcga agtgggctac 960
cacatcaacc tgaacttcaa gatcaaccct ctcgagaacg ccgtgcgaca ccccaactgt 1020
tctctgcagt ctaaccctct gctccatcag tactggaccg ccgtgtctca caccatgcct 1080
gcctttctgc tggacctcct gctgcgactg accggacaca agccctggat gatgaagacc 1140
atcactcgac tgcacaaggc catgatgctc ctcgagtact tcacctccaa ctcttggatc 1200
tggaacaccg agaacatgac catgctgatg aaccagctga accccgagga caagaagacc 1260
ttcaacttcg acgtgcgaca gctgcactgg gctgagtaca tggaaaacta ctgcatgggc 1320
accaagaagt acgtcctgaa cgaggaaatg tctggactgc ccgctgccag aaagcacctg 1380
aacaagctgc gaaacatccg atacggcttc aacaccgtgc tggtcatcct gatctggcga 1440
atcttcattg cccgatctca gatggcccga aacatctggt acttcgtggt gtctctgtgc 1500
tacaagttcc tgtcttactt ccgagcctct tctaccatgc gatactctaa gctgtag 1557
<210> 110
<211> 1362
<212> DNA
<213> 粉纹夜蛾(Trichoplusia ni)
<400> 110
atgatcgccg tgacctctca cgagaacgag gcctctatcg tggacttcta cgagggcaag 60
tctgtgttca ttaccggcgg caccggattc ctcggcaagg tgttcatcga gaagctgctg 120
tactgctgtc ccggcctggt gaagatctac atgctgatcc gagagaagaa gggcctgacc 180
atcaaggaac gaattgaccg attcgtggac gactctctgt tcgaccgact caagacccag 240
cgacctaagg acctggacaa gatcgtgctg atccccggcg acatcactgc cccttctctg 300
ggcatctctc aagagcaaga gaacatcctg atcgaagagg tgtctgtgat catccactct 360
gccgccacca tcaagttcaa cgcccctctg gaagaggcct ggtctatcaa cgtggacggc 420
acccgacgaa tcctggacct gtgccgaaac atgaagaagg tcgaggtttt cctgcacatc 480
tctaccgcct acaccaacat caaccgaaac gtgatcgagg aagtgctcta ccctcctcca 540
gccgacatta aggaactgga aaagctggac aagcacaacg tgaccgagaa gcagaccatg 600
aagctgctca acggcttccc caacacctac accttcacca agtctctgac cgagcacctg 660
gtggccgaga actgcgccta catgcccacc atcatcgtgc gaccctctgt ggtggccgcc 720
gtgctcgagg accccatcaa gggctggctg gaaaactggt acggcgccac cggcatctcc 780
gtgttcaccg ccaagggact gaaccgagtg ttcctgggcc acaagaacat tattgtggac 840
gtgattcccg ccgactacgt ggccaacctg gtgatcattg ccggcgctcg aaacaacaag 900
tccaaggaac tcaagatcta taactgctgt tcttctggct gcaaccctct gaccatcggc 960
aacctgctgg gcgccttcat cgacgacgcc atccgacaca agacctacgc tatgcccctg 1020
cctggctggt tcatcttcac ccgataccga ctggtggcta ccatcgtgac cttcatcttc 1080
caggtggtgc ccgcctacct ggccgacctg taccgacgaa ttatcggcaa gaagcccaag 1140
tacaccaagc tgctctacct ggtggtgcag acccgagtgg ccctggactt cttctcctct 1200
aactcttggg tgatgaaggc cgaccgaatg cgagagctgt acgcctctct gtctaacaac 1260
gacaagcgaa tgttcccttg cgaccccact cacatcaact ggcccgagta cctgtctgac 1320
tacggcgctg gcgtgcgacg attcctcgag aagcgaaact ag 1362
<210> 111
<211> 547
<212> PRT
<213> Drosophila grimshawi
<400> 111
Met Gly Asp Ser Thr Leu Lys Leu Pro Gly Ala Ala Ala Ala Pro Leu
1 5 10 15
Lys Pro Pro Ala Val Ala Ala Leu Ser Val Ser Ser Leu Gln Leu Pro
20 25 30
Ser Ser Ala Pro Gln Lys Leu Thr Ser Ala Ala Ser Asn Gly Asn Val
35 40 45
Ser Gly Ser Ala Thr Gly Asn Pro Arg Asn Lys Cys Ala Leu Lys Pro
50 55 60
Gly Tyr Ser Leu Met Ser Trp Ile Arg Leu Cys Asn Ser Gly Ala Asp
65 70 75 80
Leu Ser Gly Thr Ala Gly Arg Val Val Pro Val Ser Arg Thr Glu Leu
85 90 95
Ala Arg His Asn Gln Val Asn Asp Ala Trp Met Ala Ile Arg Gly Lys
100 105 110
Val Phe Asn Val Thr Arg Tyr Met Asp Tyr His Pro Gly Gly Val Asp
115 120 125
Glu Leu Met Arg Gly Val Gly Arg Asp Ala Thr Lys Leu Phe Asp Glu
130 135 140
Val His Ala Trp Val Asn Tyr Pro Gln Leu Leu Gly Lys Cys Tyr Val
145 150 155 160
Gly Pro Leu Lys Asp Thr Val Ala Ser Lys Lys Ala Thr Asp Ala Glu
165 170 175
Leu Leu Arg Leu Pro Pro Pro Ser Ala Pro Ala Glu Leu Lys Pro Arg
180 185 190
Phe Asp Trp Ile Gln Gln Arg Arg Glu Leu Thr Leu Tyr Phe Tyr Thr
195 200 205
Arg Arg Trp Ala Asn Pro Gly Val Leu Leu Lys Arg Lys Thr Ala Glu
210 215 220
Glu Leu Glu Val Arg Val Gln Leu Ala Glu Ile Trp His Leu Tyr Asn
225 230 235 240
Phe Lys Leu His Ser Gly Ile Ile Trp Pro Pro Lys Ala Leu Arg Val
245 250 255
Ser Pro Glu Thr Gly Lys Ile Glu Leu Val Leu Ser Lys Gln Glu Glu
260 265 270
Gln Pro Trp Ser Ser Tyr Gly Ser His Glu Ala Ser Lys Thr Ser Gly
275 280 285
Ala Pro Glu Glu Glu Leu Leu Asp Phe Met Val Gln His Cys Ser His
290 295 300
Phe Asn His Asp Ser Phe Glu Leu Cys Leu Glu Ser Val Glu Gln Glu
305 310 315 320
Leu Leu Leu His Leu Pro Val Gly Tyr His Leu Asp Ile Glu Val Pro
325 330 335
His Asn Gly Glu Arg Val Gln Arg Ser Tyr Thr Pro Val Pro His Asn
340 345 350
Cys Leu Leu Ala Glu Ala Tyr Ser Ser Ser Ser Ser Pro Asn Ser Gln
355 360 365
Arg Phe Leu Ile Lys His Tyr Glu Asn Gly Ile Val Ser Ser Gln Leu
370 375 380
Asn Gln Leu Glu Ser Gly Gly Asn Leu Gln Leu Thr Leu Pro Arg Gly
385 390 395 400
Asn Phe Asn Leu Ala Gln Leu Glu Ala His Arg His Ile Leu Leu Leu
405 410 415
Ala Ala Gly Ser Gly Leu Thr Pro Met Leu Ser Leu Leu Arg Pro Leu
420 425 430
Leu Glu Arg His Thr Asn Arg Ile Glu Arg Leu Gln Leu Leu Tyr Phe
435 440 445
Asn Lys Thr Gln Ala Asp Ile Trp Trp Lys Asp Lys Leu Leu Ala Leu
450 455 460
Gln Ser Ser Asp Glu Arg Phe Leu Cys Gln His Ile Leu Ser Gln Glu
465 470 475 480
Val Glu Glu Gln Pro Pro Thr Pro Asn Gln Asn Thr Arg Ile Cys Pro
485 490 495
Glu Leu Leu Ala Pro Leu Phe Glu Gln Gln Gln Pro Leu Gly Glu Arg
500 505 510
Phe Ser Tyr Val Ala Ile Cys Gly Pro Thr Gly Phe Asn Thr Ala Ala
515 520 525
Leu Asp Ser Leu Arg Arg Leu Glu Phe Lys Leu Thr Asn Val His Val
530 535 540
Phe Gln Gly
545
<210> 112
<211> 535
<212> PRT
<213> 黑腹果蝇(Drosophila melanogaster)
<400> 112
Met Ser Asp Pro Ser Leu Lys Pro Pro Ala Ser Asn Gln Pro Leu Arg
1 5 10 15
Pro Pro Gln Leu Met Ala Pro Ala Gly Ser Gly Gly Gly Leu Gln Leu
20 25 30
Pro Val Thr Ala Pro Gln Lys Leu Asn Ser Asn Gly Ser Ser Ala Ser
35 40 45
Gly Ser Ala Thr Gly Asn Pro Arg Asn Lys Cys Ala Leu Lys Pro Gly
50 55 60
Tyr Ser Leu Met Asn Trp Ile Arg Leu Cys Asn Ser Gly Ala Asp Leu
65 70 75 80
Ser Gly Thr Gly Gly Arg Leu Val Pro Val Ser Arg Thr Glu Leu Ala
85 90 95
Arg His Asn Lys Ile Asp Asp Ala Trp Met Ala Ile Arg Gly Arg Val
100 105 110
Phe Asn Val Thr Arg Tyr Met Asp Phe His Pro Gly Gly Val Asp Glu
115 120 125
Leu Met Arg Gly Val Gly Arg Asp Ala Thr Lys Leu Phe Asp Glu Val
130 135 140
His Ala Trp Val Asn Tyr Pro Gln Leu Leu Gly Lys Cys Tyr Val Gly
145 150 155 160
Pro Leu Lys Asp Asn Glu Thr Lys Pro Ala Lys Glu Ser Pro Gln Ile
165 170 175
Thr Asn Val Ile Leu Gln Pro Pro Glu Ile Val Pro Arg Phe Asp Trp
180 185 190
Ile Gln Gln Arg Ser Glu Leu Thr Leu Ile Phe Tyr Thr Arg Ser Leu
195 200 205
Ala Asn Pro Gly Leu Val Val Arg Arg Lys Asp Leu Gln Gln Leu Ser
210 215 220
Val Arg Val Leu Val Gln His Asn Trp His Ser Phe Asp Phe Gln Leu
225 230 235 240
Thr Asn Asn Val Glu Trp Pro Pro Lys Leu Ala Lys Ile Gly Ser Glu
245 250 255
Thr Gly Lys Ile Glu Leu Val Phe Val Lys Glu Glu Ala Glu Pro Trp
260 265 270
Pro Thr Tyr Gly Thr His Val Ser Asn Arg Leu Asp Ser Ser Arg Leu
275 280 285
His Asp Glu Thr Phe Glu Tyr Glu Val Val His Ser Lys Asp Phe Asn
290 295 300
His Asp Ser Phe Glu Leu Cys Leu Gln Ser Val Gly Gln Lys Val Leu
305 310 315 320
Met Val Leu Pro Ala Gly Tyr His Val Asp Ile Glu Val Pro Leu Glu
325 330 335
Gly Arg Val Ile Gln Arg Ser Tyr Thr Pro Val Asp His Thr Tyr Leu
340 345 350
Arg Leu Glu Asn Ile Arg Ser Ser Arg Ser Glu Cys Leu His Phe Leu
355 360 365
Ile Lys Arg Tyr Pro Asn Gly Pro Val Ser Ser His Leu Gln Lys Leu
370 375 380
Glu Thr Gly Ser Arg Val His Trp Ser Ala Pro Arg Gly Ser Phe Gln
385 390 395 400
Leu Ser Asp Leu Thr Ala His Arg Asn Ile Leu Leu Leu Ala Ala Gly
405 410 415
Ser Gly Leu Thr Pro Ile Leu Ser Leu Ile Gln Pro Ile Leu Lys Arg
420 425 430
Asn Thr Asn Arg Ile Glu Ser Leu Gln Leu Leu Tyr Phe Asn Lys Thr
435 440 445
Asn Glu Asp Ile Trp Leu Lys Glu Lys Leu His Glu Leu His Thr Asp
450 455 460
Asp Glu Arg Phe Ser Cys Thr Asn Tyr Val Ser Gln Ser Glu Asp Asn
465 470 475 480
Pro Gln Arg Ile Ala Leu Glu Leu Leu Ala Pro Leu Phe Gln Lys Asn
485 490 495
Gln Pro Glu Arg Cys Thr Tyr Val Leu Ile Cys Gly Pro Ser Gly Phe
500 505 510
Asn Thr Ala Ala Leu Asp Ile Leu Ser Gln Leu Asp Val Lys Ala Asn
515 520 525
Gln Ile His Val Phe Arg Gly
530 535
<210> 113
<211> 521
<212> PRT
<213> 智人(Homo sapiens)
<400> 113
Met Leu Asn Val Pro Ser Gln Ser Phe Pro Ala Pro Arg Ser Gln Gln
1 5 10 15
Arg Val Ala Ser Gly Gly Arg Ser Lys Val Pro Leu Lys Gln Gly Arg
20 25 30
Ser Leu Met Asp Trp Ile Arg Leu Thr Lys Ser Gly Lys Asp Leu Thr
35 40 45
Gly Leu Lys Gly Arg Leu Ile Glu Val Thr Glu Glu Glu Leu Lys Lys
50 55 60
His Asn Lys Lys Asp Asp Cys Trp Ile Cys Ile Arg Gly Phe Val Tyr
65 70 75 80
Asn Val Ser Pro Tyr Met Glu Tyr His Pro Gly Gly Glu Asp Glu Leu
85 90 95
Met Arg Ala Ala Gly Ser Asp Gly Thr Glu Leu Phe Asp Gln Val His
100 105 110
Arg Trp Val Asn Tyr Glu Ser Met Leu Lys Glu Cys Leu Val Gly Arg
115 120 125
Met Ala Ile Lys Pro Ala Val Leu Lys Asp Tyr Arg Glu Glu Glu Lys
130 135 140
Lys Val Leu Asn Gly Met Leu Pro Lys Ser Gln Val Thr Asp Thr Leu
145 150 155 160
Ala Lys Glu Gly Pro Ser Tyr Pro Ser Tyr Asp Trp Phe Gln Thr Asp
165 170 175
Ser Leu Val Thr Ile Ala Ile Tyr Thr Lys Gln Lys Asp Ile Asn Leu
180 185 190
Asp Ser Ile Ile Val Asp His Gln Asn Asp Ser Phe Arg Ala Glu Thr
195 200 205
Ile Ile Lys Asp Cys Leu Tyr Leu Ile His Ile Gly Leu Ser His Glu
210 215 220
Val Gln Glu Asp Phe Ser Val Arg Val Val Glu Ser Val Gly Lys Ile
225 230 235 240
Glu Ile Val Leu Gln Lys Lys Glu Asn Thr Ser Trp Asp Phe Leu Gly
245 250 255
His Pro Leu Lys Asn His Asn Ser Leu Ile Pro Arg Lys Asp Thr Gly
260 265 270
Leu Tyr Tyr Arg Lys Cys Gln Leu Ile Ser Lys Glu Asp Val Thr His
275 280 285
Asp Thr Arg Leu Phe Cys Leu Met Leu Pro Pro Ser Thr His Leu Gln
290 295 300
Val Pro Ile Gly Gln His Val Tyr Leu Lys Leu Pro Ile Thr Gly Thr
305 310 315 320
Glu Ile Val Lys Pro Tyr Thr Pro Val Ser Gly Ser Leu Leu Ser Glu
325 330 335
Phe Lys Glu Pro Val Leu Pro Asn Asn Lys Tyr Ile Tyr Phe Leu Ile
340 345 350
Lys Ile Tyr Pro Thr Gly Leu Phe Thr Pro Glu Leu Asp Arg Leu Gln
355 360 365
Ile Gly Asp Phe Val Ser Val Ser Ser Pro Glu Gly Asn Phe Lys Ile
370 375 380
Ser Lys Phe Gln Glu Leu Glu Asp Leu Phe Leu Leu Ala Ala Gly Thr
385 390 395 400
Gly Phe Thr Pro Met Val Lys Ile Leu Asn Tyr Ala Leu Thr Asp Ile
405 410 415
Pro Ser Leu Arg Lys Val Lys Leu Met Phe Phe Asn Lys Thr Glu Asp
420 425 430
Asp Ile Ile Trp Arg Ser Gln Leu Glu Lys Leu Ala Phe Lys Asp Lys
435 440 445
Arg Leu Asp Val Glu Phe Val Leu Ser Ala Pro Ile Ser Glu Trp Asn
450 455 460
Gly Lys Gln Gly His Ile Ser Pro Ala Leu Leu Ser Glu Phe Leu Lys
465 470 475 480
Arg Asn Leu Asp Lys Ser Lys Val Leu Val Cys Ile Cys Gly Pro Val
485 490 495
Pro Phe Thr Glu Gln Gly Val Arg Leu Leu His Asp Leu Asn Phe Ser
500 505 510
Lys Asn Glu Ile His Ser Phe Thr Ala
515 520
<210> 114
<211> 671
<212> PRT
<213> 斜纹夜蛾(Spodoptera litura)
<400> 114
Met Ala Asp Ser Pro Glu Met Glu Gln Lys Pro Thr Ile Ser Asn Thr
1 5 10 15
His Arg Val Ser Leu Pro Thr Val Leu Cys Thr Pro Glu Ser Thr Asp
20 25 30
Asp Asn Ser Asp Ile Ser Ile Lys Val Asn Ser Ile Ile Ser Ser Asp
35 40 45
Ser Lys Met Ser Leu Pro Ser Asn Leu Gly Thr Pro Thr Ser Pro Leu
50 55 60
Arg Leu Ser Ser Pro Leu Ser Leu Pro Ser Ser Pro Cys Val Lys Asn
65 70 75 80
Ser Pro Gln Ser Thr Asn Ser Leu Pro Asn Pro Asn Pro Lys Pro Met
85 90 95
Thr Ser Ser Thr Ala Ser Asn Lys Thr Val Val Asn Ser Gly Ser Ala
100 105 110
Thr Gly Asn Pro Arg Asn Lys Cys Ala Leu Gln Pro Gly His Ser Leu
115 120 125
Met Asp Trp Ile Arg Leu Gly Asn Ser Gly Lys Asp Leu Thr Gly Val
130 135 140
Gly Gly Arg Met Arg Pro Val Thr Pro Ala Glu Leu Ser Thr His Asn
145 150 155 160
Thr Thr Asn Asp Ala Trp Leu Ala Ile Arg Gly Arg Val Tyr Asn Ile
165 170 175
Thr His Tyr Leu Pro Tyr His Pro Gly Gly Pro Glu Glu Leu Met Arg
180 185 190
Gly Ala Gly Met Asp Ala Thr Gln Leu Phe Asp Lys Val His Pro Trp
195 200 205
Val Asn Tyr Asp Ser Leu Leu Ala Lys Cys Leu Val Gly Pro Leu Arg
210 215 220
Phe Asp Leu Pro Asp Ala Glu Glu Leu Phe Asp Thr Ser Asn Pro Ser
225 230 235 240
Pro Lys Ser Asp Arg Leu Arg Glu Pro Ser Lys Ala Gln Glu Leu Val
245 250 255
Arg Lys Ser Met Glu Asn Leu Ala Asn Cys Ile Thr Pro Val Arg Lys
260 265 270
Lys Ile Thr Lys Gly Asp Asp Asn Ser Lys Gly Ser Pro Pro Ser Lys
275 280 285
Ile Met Gln Ser Leu Val Gln Ser Ala Asp Leu Pro Met Ser Ile Ser
290 295 300
Arg Arg Ala Ala Ser Ser Pro Val Lys Lys Thr Asp Lys Ser Pro Asp
305 310 315 320
Ser Pro Leu Pro Leu Arg His Asp Trp Ile Gln Thr Ser Thr Lys Leu
325 330 335
Thr Ile Ser Val Tyr Thr Gly His Leu Ala Asn Pro Gly Gly Cys Ala
340 345 350
Arg Ile Thr Glu Gly Phe Leu Leu Ile Glu Val Ala Thr Asn Gly Trp
355 360 365
Leu Arg Thr Leu Lys Ile Lys Pro Glu Ala Lys Leu Lys Glu Pro Leu
370 375 380
Gln Leu Arg Val Phe Ala Glu Ser Gly Lys Ile Glu Ile Thr Ala Leu
385 390 395 400
Lys Ala Glu Pro Ser Val Trp Lys Gly Cys Gly Glu Val Thr Leu Gly
405 410 415
Ala Ala Ser Arg Val Ser Ser Pro Arg Thr Val Glu Cys Arg Val Met
420 425 430
Glu Val Ser Arg Val Ser His Asp Thr Ser Leu Leu Ser Val Cys Pro
435 440 445
Arg Ala Gly Pro Val Val Val Pro Leu Gly His His Val Arg Val His
450 455 460
Arg Arg Val Glu Gly Ser Glu Cys Val Arg Ser Tyr Thr Pro Val Gly
465 470 475 480
Glu Gly Trp Gly Pro Pro Asp Gly Thr Glu Ile Phe Ser Ala Leu Arg
485 490 495
Leu Ala Val Lys Arg Tyr Asp Ser Gly Val Leu Ser Pro His Leu Thr
500 505 510
Ala Leu Lys Val Gly Asp Leu Ile Thr Leu Ser Gly Pro Tyr Gly Asn
515 520 525
Phe Gln Leu Gln Lys Leu Lys Thr Val Lys Ser Leu Tyr Leu Ile Ala
530 535 540
Ala Gly Thr Gly Ile Thr Pro Met Leu Gly Leu Ile Lys Phe Met Met
545 550 555 560
Ser Arg Ser Asn Pro Arg Cys Glu Arg Thr His Leu Ile Phe Phe Asn
565 570 575
Lys Thr Glu Ala Asp Ile Leu Phe Leu Glu Asn Phe Glu Glu Met Ala
580 585 590
Lys Glu Asp Asp Arg Leu Lys Ile Thr His Val Leu Ser Asp Ala Ser
595 600 605
Ser Ser Trp Ser Gly His Lys Gly Arg Ile Arg Asp Glu Leu Leu Thr
610 615 620
Glu Ile Leu Gly Gln Val Lys Cys Asp Asp Lys Cys Ser His Tyr Ser
625 630 635 640
Cys Leu Cys Gly Pro Thr Glu Phe Thr Tyr Ala Gly Leu Asp Leu Leu
645 650 655
Lys Lys His Gly Phe Lys Asp Asp Cys Ile His Ala Phe Met Gly
660 665 670
<210> 115
<211> 1644
<212> DNA
<213> Drosophila grimshawi
<400> 115
atgggcgact ctaccctgaa gctgcccggt gccgccgctg ctcccctgaa gcctcctgcc 60
gtggccgctc tgtctgtgtc ctctctgcag ctgccctctt cggctcccca gaagctgacc 120
tctgccgcct ctaacggcaa cgtgtctggc tctgccactg gcaaccctcg aaacaagtgc 180
gctctgaagc ccggctactc tctgatgtct tggatccgac tgtgcaactc tggcgccgac 240
ctgtctggca ccgccggacg agtggtgccc gtgtctcgaa ccgagctggc ccgacacaac 300
caggtgaacg acgcctggat ggccattcga ggcaaggtgt tcaacgtgac ccggtacatg 360
gactaccatc ctggcggcgt ggacgagctg atgcgaggcg tgggccgaga tgccaccaag 420
ctgttcgacg aggtgcacgc ctgggtgaac taccctcagc tgctgggcaa gtgctacgtg 480
ggacccctga aggacaccgt ggcctctaag aaggccaccg acgccgagct gctgcgactg 540
cctcctccat ctgctcccgc tgagctgaag ccccgattcg actggattca gcagcgacga 600
gagctgaccc tgtacttcta cacccgacga tgggctaacc ccggcgtgct gctgaagcga 660
aagaccgccg aggaactcga ggtgcgagtg cagctggccg agatctggca cctgtacaac 720
ttcaagctgc attctggcat catctggcct ccaaaggctc tgcgagtgtc tcccgagact 780
ggcaagatcg agctggtgct gtctaagcaa gaggaacagc cctggtcctc ttacggctct 840
cacgaggcct ccaagacctc tggcgctccc gaggaagaac tgctggactt catggtgcag 900
cactgctctc acttcaacca cgactcgttc gagctgtgcc tcgagtctgt cgagcaagag 960
ctgctcctgc atctgcccgt gggctaccac ctggacatcg aggtgcccca caacggcgag 1020
cgagtccagc gatcttacac ccctgtgcct cacaactgcc tgctggctga ggcctactct 1080
tcttcctctt cgcccaactc tcagcgattc ctgatcaagc actacgagaa cggaatcgtg 1140
tcctcgcagc tgaaccagct ggaatctggc ggcaacctgc agctcaccct gcctcgagga 1200
aacttcaacc tggctcagct cgaggcccac cgacacatcc tgctgctggc cgctggctct 1260
ggactgaccc ctatgctgtc tctgctccga cctctgctcg agcgacacac caaccgaatc 1320
gagcgactgc agctcctgta ctttaacaag acccaggccg acatctggtg gaaggacaag 1380
ctgctcgccc tgcagtcctc tgacgagcga tttctgtgcc agcacatcct gtctcaagag 1440
gtggaagaac agcctcctac tcctaaccag aacacccgaa tctgccccga gcttctggct 1500
cccctgttcg agcagcagca gcccctgggc gagcgattct cttacgtggc catctgcggc 1560
cccaccggct tcaacaccgc cgctctcgac tccctgcgac gactcgagtt caagctgacc 1620
aacgtccacg tgttccaggg ctag 1644
<210> 116
<211> 1608
<212> DNA
<213> 黑腹果蝇(Drosophila melanogaster)
<400> 116
atgtctgacc cctcgctgaa gcctcctgcc tctaaccagc ctctgcgacc tcctcagctg 60
atggctcccg ccggatctgg cggcggactg cagctgcccg tgaccgctcc tcagaagctg 120
aactctaacg gatcttctgc ctctggctct gccactggca accctcgaaa caagtgcgct 180
ctgaagcccg gctactctct gatgaactgg atccgactgt gcaactctgg cgccgacctg 240
tctggcaccg gcggacgact ggtgcccgtg tctcgaaccg agctggcccg acacaacaag 300
atcgacgacg cctggatggc cattcgaggc cgagtgttca acgtgacccg gtacatggac 360
tttcaccccg gtggcgtgga cgagctgatg cgaggcgtgg gccgagatgc caccaagctg 420
ttcgacgagg tgcacgcctg ggtgaactac cctcagctgc tgggcaagtg ctacgtggga 480
cccctgaagg acaacgagac taagcccgcc aaggaatctc cccagatcac caacgtgatc 540
ctgcagcctc ctgagatcgt gccccgattc gactggattc agcagcgatc tgagctgacc 600
ctgatcttct acacccgatc tctggctaac cccggcctgg tggtgcgacg aaaggacctg 660
cagcagctgt ctgtgcgagt gctggtgcag cacaactggc actcgttcga cttccagctg 720
accaacaacg tcgagtggcc tcctaagctg gccaagatcg gctctgagac tggcaagatc 780
gagctggtgt tcgtgaagga agaggctgag ccctggccta cctacggcac ccacgtgtct 840
aaccgactgg actcttctcg actgcacgac gagactttcg agtacgaggt ggtgcactct 900
aaggacttca accacgactc tttcgagctg tgcctgcagt ctgtgggcca aaaggtgctg 960
atggtgctgc ccgctggcta ccacgtggac atcgaggtgc ctctcgaggg acgagtgatc 1020
cagcgatctt acacccctgt ggaccacacc tacctgcgac tcgagaacat ccgatcttcc 1080
cgatctgagt gcctgcactt cctgatcaag cgatacccca acggacccgt gtcctctcac 1140
ctccagaagc tcgagactgg atctcgagtg cactggtctg ctccccgagg ctcgttccag 1200
ctgtccgacc tgaccgctca ccgaaacatc ctgctgctgg ctgccggctc cggactgacc 1260
cctatcctgt ctctgattca gcccatcctg aagcgaaaca ccaaccgaat cgagtctctg 1320
cagctcctgt acttcaacaa gaccaacgag gacatctggc tgaaggaaaa gctgcacgag 1380
ctgcacaccg acgacgagcg attctcttgc accaactacg tgtctcagtc tgaggacaac 1440
cctcagcgaa tcgctctcga gctgctcgct cccctgttcc agaagaacca gcctgaacga 1500
tgcacctacg tgctgatctg cggcccctct ggcttcaaca ccgccgctct ggacattctg 1560
tctcagctgg acgtgaaggc caaccagatc cacgtgttcc gaggctag 1608
<210> 117
<211> 1566
<212> DNA
<213> 智人(Homo sapiens)
<400> 117
atgctgaacg tgccctctca gtctttcccc gctcctcgat ctcagcagcg agtggcctct 60
ggcggccgat ctaaggtgcc cctgaagcag ggccgatctc tgatggactg gatccgactg 120
accaagtctg gcaaggacct gaccggcctg aagggccgac tgatcgaggt gaccgaggaa 180
gaactgaaga agcacaacaa gaaggacgac tgctggatct gcatccgagg cttcgtgtac 240
aacgtgtctc cctacatgga ataccatcct ggcggcgagg acgagctgat gcgagccgcc 300
ggatctgacg gcaccgagct gttcgaccag gtgcaccgat gggtgaacta cgagtctatg 360
ctgaaggaat gcctggtggg ccgaatggcc atcaagcccg ccgtcctgaa ggactaccga 420
gaggaagaga agaaggtcct gaacggcatg ctgcccaagt ctcaggtgac tgacaccctg 480
gccaaggaag gcccttctta cccctcttac gactggttcc agaccgactc tctggtgacc 540
attgccatct acaccaagca gaaggacatc aacctggact ctatcatcgt ggaccaccag 600
aacgactcgt tccgagccga gactatcatc aaggactgcc tgtacctgat ccacatcggc 660
ctgtctcacg aggtgcaaga ggacttctct gtgcgagtgg tcgagtctgt gggcaagatc 720
gagatcgtgc tgcagaagaa ggaaaacacc tcttgggact ttctgggaca ccctctgaag 780
aaccataact ctctgattcc ccgaaaggac accggcctgt actaccgaaa gtgccagctg 840
atctctaagg aagatgtgac ccacgacacc cgactgttct gcctgatgct gcctccttcg 900
actcatctgc aggtccccat cggccagcac gtgtacctga agctgcccat caccggaacc 960
gagattgtga agccctatac tcccgtgtct ggctctctgc tgtctgagtt caaggaaccc 1020
gtgctgccta acaacaagta catctacttt ctgatcaaga tctaccccac cggactgttc 1080
acccctgagc tggaccgact gcagatcggc gacttcgtgt ctgtctcttc gcccgagggc 1140
aacttcaaga tctccaagtt ccaagagctt gaggacctgt tcctgctggc cgctggcacc 1200
ggcttcaccc ctatggtgaa gatcctgaac tacgccctga ccgacattcc ctcgctgcga 1260
aaggtgaagc tgatgttctt caacaagacc gaggacgaca tcatctggcg atcccagctc 1320
gagaagctgg ccttcaagga caagcgactg gacgtcgagt tcgtcctgtc tgctcccatc 1380
tctgagtgga acggcaagca gggacacatc tctcccgctc tgctctccga gttcctgaag 1440
cgaaacctgg acaagtccaa ggtgctggtg tgcatctgtg gccccgtgcc tttcaccgag 1500
cagggcgtgc gactgctgca cgacctgaac ttctctaaga acgagatcca ctctttcacc 1560
gcctag 1566
<210> 118
<211> 2016
<212> DNA
<213> 斜纹夜蛾(Spodoptera litura)
<400> 118
atggccgact ctcccgagat ggaacagaag cccaccatct ctaacaccca ccgagtgtct 60
ctgcccaccg tgctgtgcac ccctgagtct accgacgaca actctgacat ctctatcaag 120
gtgaactcta tcatctcttc tgactctaag atgtcgctgc cctctaacct gggaacccct 180
acctctcctc tgcgactgtc gtcgcccctc tctctgccct cttcgccctg cgtgaagaac 240
tctccccagt ctaccaactc tctgcctaac cctaacccaa agcctatgac ctcttctacc 300
gcctctaaca agaccgtggt gaactccggc tctgccactg gcaaccctcg aaacaagtgc 360
gctctgcagc ccggccactc tctgatggac tggatccgac tgggcaactc tggcaaggac 420
ctgaccggcg tcggcggacg aatgcgaccc gtgactcccg ccgagctgtc tacccacaac 480
accaccaacg acgcctggct ggccatccga ggccgagtgt acaacatcac ccactacctg 540
ccttaccatc ctggcggacc cgaggaactg atgcgaggcg ccggaatgga cgctacccag 600
ctgttcgaca aggtgcaccc ttgggtgaac tacgactctc tgctggccaa gtgcctggtg 660
ggacccctgc gattcgacct gcctgacgct gaggaactgt ttgacacttc taacccctcg 720
cctaagtctg accgactgcg agagccctct aaggcccaag agctggtgcg aaagtctatg 780
gaaaacctgg ccaactgcat cacccctgtg cgaaagaaga tcaccaaggg cgacgataac 840
tctaagggct cgcctccttc gaagatcatg cagtctctgg tgcagtctgc tgacctgcct 900
atgtctatct ctcgacgagc cgcttcttcg cccgtgaaga agaccgacaa gtctcctgac 960
tctcccctgc ctctccgaca cgactggatt cagacctcta ccaagctgac catctctgtg 1020
tacaccggcc acctggctaa ccccggtggc tgcgcccgaa ttaccgaggg cttcctgctg 1080
atcgaggtcg ccaccaacgg ctggctgcga accctgaaga tcaagcccga ggccaagctg 1140
aaggaacccc tgcagctgcg agtgttcgcc gagtctggca agatcgagat caccgctctg 1200
aaggctgagc cctctgtgtg gaagggctgc ggcgaggtga ccctgggagc cgcctctcga 1260
gtgtcctcgc ctcgaaccgt cgagtgccga gtgatggaag tgtcccgagt gtcccacgac 1320
acctcgctgc tgtctgtgtg tccccgagct ggccccgtgg tggtgcccct gggccaccac 1380
gtgcgagtgc accgacgagt cgagggctct gagtgcgtgc gatcttacac ccctgtcggc 1440
gaaggctggg gccctcctga cggcaccgag atcttctcgg ccctgcgact ggccgtgaag 1500
cgatacgact ctggcgtgct gtctccccac ctgactgccc tgaaggtggg cgacctgatt 1560
accctgtctg gcccctacgg caacttccag ctgcaaaagc tcaagactgt gaagtctctg 1620
tacctgattg ccgccggaac cggaatcacc cctatgctgg gcctgatcaa gttcatgatg 1680
tctcgatcta accctcgatg cgagcgaacc cacctgattt tcttcaacaa gactgaggcc 1740
gacatcctgt tcctcgagaa cttcgaggaa atggccaagg aggacgaccg actgaagatt 1800
acccacgtgc tgtccgacgc ctcttcttct tggtctggcc acaagggacg aatccgagat 1860
gagctgctga ccgagatcct cggacaggtg aagtgcgacg acaagtgctc tcactactct 1920
tgcctgtgcg gccctaccga gtttacctac gccggcctgg acctgctgaa gaagcacggc 1980
ttcaaggacg actgcatcca cgccttcatg ggctag 2016
<210> 119
<211> 608
<212> PRT
<213> 解脂耶氏酵母(Yarrowia lipolytica)
<400> 119
Met Ser Asp Asp Lys His Thr Phe Asp Phe Ile Ile Val Gly Gly Gly
1 5 10 15
Thr Ala Gly Pro Thr Leu Ala Arg Arg Leu Ala Asp Ala Trp Ile Ser
20 25 30
Gly Lys Lys Leu Lys Val Leu Leu Leu Glu Ser Gly Pro Ser Ser Glu
35 40 45
Gly Val Asp Asp Ile Arg Cys Pro Gly Asn Trp Val Asn Thr Ile His
50 55 60
Ser Glu Tyr Asp Trp Ser Tyr Glu Val Asp Glu Pro Tyr Leu Ser Thr
65 70 75 80
Asp Gly Glu Glu Arg Arg Leu Cys Gly Ile Pro Arg Gly His Cys Leu
85 90 95
Gly Gly Ser Ser Cys Leu Asn Thr Ser Phe Val Ile Arg Gly Thr Arg
100 105 110
Gly Asp Phe Asp Arg Ile Glu Glu Glu Thr Gly Ala Lys Gly Trp Gly
115 120 125
Trp Asp Asp Leu Phe Pro Tyr Phe Arg Lys His Glu Cys Tyr Val Pro
130 135 140
Gln Gly Ser Ala His Glu Pro Lys Leu Ile Asp Phe Asp Thr Tyr Asp
145 150 155 160
Tyr Lys Lys Phe His Gly Asp Ser Gly Pro Ile Lys Val Gln Pro Tyr
165 170 175
Asp Tyr Ala Pro Ile Ser Lys Lys Phe Ser Glu Ser Leu Ala Ser Phe
180 185 190
Gly Tyr Pro Tyr Asn Pro Glu Ile Phe Val Asn Gly Gly Ala Pro Gln
195 200 205
Gly Trp Gly His Val Val Arg Ser Thr Ser Asn Gly Val Arg Ser Thr
210 215 220
Gly Tyr Asp Ala Leu Val His Ala Pro Lys Asn Leu Asp Ile Val Thr
225 230 235 240
Gly His Ala Val Thr Lys Ile Leu Phe Glu Lys Ile Gly Gly Lys Gln
245 250 255
Thr Ala Val Gly Val Glu Thr Tyr Asn Arg Ala Ala Glu Glu Ala Gly
260 265 270
Pro Thr Tyr Lys Ala Arg Tyr Glu Val Val Val Cys Cys Gly Ser Tyr
275 280 285
Ala Ser Pro Gln Leu Leu Met Val Ser Gly Val Gly Pro Lys Lys Glu
290 295 300
Leu Glu Glu Val Gly Val Lys Asp Ile Ile Leu Asp Ser Pro Tyr Val
305 310 315 320
Gly Lys Asn Leu Gln Asp His Leu Ile Cys Gly Ile Phe Val Glu Ile
325 330 335
Lys Glu Pro Gly Tyr Thr Arg Asp His Gln Phe Phe Asp Asp Glu Gly
340 345 350
Leu Asp Lys Ser Thr Glu Glu Trp Lys Thr Lys Arg Thr Gly Phe Phe
355 360 365
Ser Asn Pro Pro Gln Gly Ile Phe Ser Tyr Gly Arg Ile Asp Asn Leu
370 375 380
Leu Lys Asp Asp Pro Val Trp Lys Glu Ala Cys Glu Lys Gln Lys Ala
385 390 395 400
Leu Asn Pro Arg Arg Asp Pro Met Gly Asn Asp Pro Ser Gln Pro His
405 410 415
Phe Glu Ile Trp Asn Ala Glu Leu Tyr Ile Glu Leu Glu Met Thr Gln
420 425 430
Ala Pro Asp Glu Gly Gln Ser Val Met Thr Val Ile Gly Glu Ile Leu
435 440 445
Pro Pro Arg Ser Lys Gly Tyr Val Lys Leu Leu Ser Pro Asp Pro Met
450 455 460
Glu Asn Pro Glu Ile Val His Asn Tyr Leu Gln Asp Pro Val Asp Ala
465 470 475 480
Arg Val Phe Ala Ala Ile Met Lys His Ala Ala Asp Val Ala Thr Asn
485 490 495
Gly Ala Gly Thr Lys Asp Leu Val Lys Ala Arg Trp Pro Pro Glu Ser
500 505 510
Lys Pro Phe Glu Glu Met Ser Glu Glu Trp Glu Thr Tyr Val Arg Asp
515 520 525
Lys Ser His Thr Cys Phe His Pro Cys Gly Thr Val Lys Leu Gly Gly
530 535 540
Ala Asn Asp Lys Glu Ala Val Val Asp Glu Arg Leu Arg Val Lys Gly
545 550 555 560
Val Asp Gly Leu Arg Val Ala Asp Val Ser Val Leu Pro Arg Val Pro
565 570 575
Asn Gly His Thr Gln Ala Phe Ala Tyr Ala Val Gly Glu Lys Ala Ala
580 585 590
Asp Leu Ile Leu Ala Asp Ile Ala Gly Lys Asp Leu Arg Pro Arg Ile
595 600 605
<210> 120
<211> 720
<212> PRT
<213> 解脂耶氏酵母(Yarrowia lipolytica)
<400> 120
Met Ser Glu Thr Asp His Leu Leu Ala Ala Glu Pro Val Ala Glu Tyr
1 5 10 15
Pro Gln Tyr Thr Pro Trp Pro Asn Ser Arg Lys Ser Val Asp Thr Glu
20 25 30
Phe Ser Ala Thr Ser Trp Ile Tyr Asp Leu Val Leu Trp Ile Phe Thr
35 40 45
Ala Cys Phe Asp Ile Phe Phe Arg Glu Ile Arg Pro Arg Gly Ala Phe
50 55 60
Arg Ile Pro Arg Lys Gly Pro Val Leu Phe Val Ala Ala Pro His Ala
65 70 75 80
Asn Gln Phe Val Asp Pro Val Ile Leu Met Asn Gln Val Lys Gln Glu
85 90 95
Ala Gly Arg Arg Ile Ser Phe Leu Val Ala Glu Lys Ser Met Arg Arg
100 105 110
Ala Ala Val Gly Arg Met Ala Arg Ser Met Asn Ser Ile Pro Val Val
115 120 125
Arg Ala Gln Asp Asn Ala Lys Lys Gly Glu Gly Lys Ile Tyr Val Asp
130 135 140
Ala Glu Asp Pro Thr Lys Ile His Gly Ile Gly Thr Gln Phe Thr Lys
145 150 155 160
Gln Cys Glu Val Arg Gly Leu Val Val Cys Ser Ser Ser Val Gly Ser
165 170 175
Ile Asp Val Ala Glu Ile Val Ser Asp Thr Leu Leu Ile Ala Arg Lys
180 185 190
Glu Phe Lys Gly Pro Lys Ala Lys Glu Ala Leu Lys Glu Ser Asn Gly
195 200 205
Gly Ile Thr Tyr Lys Tyr Ala Asp Tyr Val Asn Gln Ala Thr Val Tyr
210 215 220
Arg Ser Val Phe Asp Lys Leu His His Gly Gly Cys Val Gly Ile Phe
225 230 235 240
Pro Glu Gly Gly Ser His Asp Arg Thr Glu Leu Leu Pro Leu Lys Ala
245 250 255
Gly Val Ala Ile Met Ala Leu Gly Ala Leu Ala Glu Asp Pro Ser Cys
260 265 270
Gly Val Arg Ile Val Pro Cys Gly Leu Asn Tyr Phe His Ala His Lys
275 280 285
Phe Arg Ser Arg Ala Val Val Glu Phe Gly Ser Pro Ile Ala Ile Pro
290 295 300
Pro Asp Leu Val Glu Lys Tyr Lys Ala Gly Gly Glu Ala Lys Arg Glu
305 310 315 320
Ala Val Lys Thr Val Leu Asp Ile Thr Ala Ala Gly Leu Lys Ser Val
325 330 335
Thr Val Gln Val Gln Asp Phe Asp Thr Leu Met Leu Ile Gln Ala Ile
340 345 350
Arg Arg Leu Tyr Arg Pro Pro Gly Lys Lys Ile Pro Leu Pro Met Val
355 360 365
Val Glu Leu Asn Arg Arg Leu Val Tyr Ala Tyr Asn His Tyr Lys Asp
370 375 380
Asp Pro Arg Ile Glu Glu Met Lys Gln Glu Ile Arg Lys Tyr Asn Lys
385 390 395 400
Phe Leu Gln Ala Met Gly Leu Lys Asp His Gln Val Glu Lys Ala Arg
405 410 415
Ile Ser Lys Ile Glu Ile Leu Gly Arg Leu Leu Tyr Arg Ser Ile Lys
420 425 430
Leu Val Phe Leu Ser Ile Gly Cys Leu Pro Gly Leu Leu Leu Phe Ser
435 440 445
Pro Ile Phe Ile Ile Ser Lys Ser Ile Ser Lys Thr Lys Ala Lys Glu
450 455 460
Ala Leu Lys Ala Ser Ser Val Lys Ile Lys Ala Asn Asp Val Val Ala
465 470 475 480
Thr Trp Lys Val Leu Val Ala Met Gly Leu Thr Pro Val Leu Tyr Ile
485 490 495
Leu Tyr Ser Leu Val Gly Ser Val Val Ile Arg Lys Leu Asp Leu Ile
500 505 510
Ser Trp Phe Pro Thr Ile Leu Leu Pro Gly Leu Val Leu Ser Ile Ile
515 520 525
Ile Thr Thr Ser Tyr Ala Ala Leu Ala Met Gly Glu Ala Gly Met Asp
530 535 540
Ile Phe Lys Ser Leu Arg Pro Leu Ala Leu Ala Leu Asn Pro Ser Thr
545 550 555 560
Lys Asn Ser Leu Leu Lys Leu Gln Asn Glu Arg Lys Arg Leu Val Leu
565 570 575
Lys Ser Ser Glu Leu Val Thr Ser Leu Gly Pro Glu Leu Phe Pro Asp
580 585 590
Phe Pro Glu Asn Ser Ile Leu Gln Gly Ser Asp Lys Phe Glu Asp Glu
595 600 605
Glu Asn Tyr Glu Asn Glu Lys Arg Ser His Ser Arg Ser Thr Ser Ala
610 615 620
Thr Ser Leu Ser Ala Met Ser Glu Gly Asp Gly Asp Glu Leu Val Arg
625 630 635 640
Glu Val Arg Lys Gly Ala Ser Tyr Phe Pro Val Ser Thr Ile Ser Glu
645 650 655
Asp Glu Asp Gln Ala Ile Ser Arg Val Gly Ser Glu Ala Ser Leu Ala
660 665 670
Asp Ile Pro Leu Phe Gly Met Ser Arg Ser Gln Ser Gly Ala Ser Leu
675 680 685
Ser Glu Ala Ser Thr His Gly Ser Ser Thr Gly Ala Asp Ala Glu Glu
690 695 700
Ala Lys Thr Glu Val Thr Arg Arg Ile Ala Leu Ala Met Glu Glu Lys
705 710 715 720
<210> 121
<211> 518
<212> PRT
<213> 解脂耶氏酵母(Yarrowia lipolytica)
<400> 121
Met Ser Thr Phe Asp Trp Glu Ser Ile Val Pro Ala Thr Pro Leu Asp
1 5 10 15
Gln Ile Pro Gly Asp Ile Gln Arg Leu Arg Lys Gly Phe Arg Ser Gly
20 25 30
Lys Thr Leu Asp Leu Asn Tyr Arg Leu Asp Gln Ile Arg Asn Leu His
35 40 45
Tyr Val Leu Arg Asp Asn Val Glu Ala Ile Lys Asp Ala Val Tyr Lys
50 55 60
Asp Leu Gly Arg Pro Lys His Glu Thr Asp Leu Cys Glu Val Gly Phe
65 70 75 80
Leu Trp Gly Glu Phe Asn Asn Val Val Ala Asn Leu Lys Lys Trp Ala
85 90 95
Ala Asp Glu Asp Val Lys Thr Asn Leu Gln Tyr Ser Ile Ser Ser Pro
100 105 110
Lys Ile Arg Lys Arg Pro Leu Gly Asn Val Leu Ile Ile Ser Pro Trp
115 120 125
Asn Tyr Pro Phe Met Leu Thr Val Ser Pro Leu Ile Gly Ala Leu Ala
130 135 140
Ala Gly Asn Thr Val Ala Val Lys Phe Ser Glu Met Ala Pro His Thr
145 150 155 160
Ser Lys Ile Val Gly Asp Leu Cys Thr Lys Ala Leu Asp Pro Asp Val
165 170 175
Phe Gln Ala Ile Gln Gly Gly Val Pro Val Val Thr Lys Thr Leu Glu
180 185 190
Gln Lys Phe Asp Lys Ile Met Tyr Gly Asn His Thr Val Gly Lys Ile
195 200 205
Ile Ala Thr Ala Ala Asn Lys Tyr Leu Thr Pro Val Ile Leu Glu Leu
210 215 220
Gly Gly Lys Ser Pro Val Phe Val Thr Lys Asn Cys Lys Asn Ile Lys
225 230 235 240
Leu Ala Ala Lys Arg Ala Leu Trp Gly Lys Val Val Asn Ala Gly Gln
245 250 255
Thr Cys Val Ala Pro Asp Tyr Val Ile Val Glu Pro Glu Val Glu Gln
260 265 270
Glu Phe Ile Asp Ala Cys Lys Tyr Trp Ile Asn Glu Phe Tyr Ser Gly
275 280 285
Lys Ile Asp Gln Tyr Asn Pro Asp Phe Ala Lys Ile Ala Thr Pro Asn
290 295 300
His Trp Asn Arg Leu Thr Ser Met Leu Ser Lys Ser Lys Gly Glu Ile
305 310 315 320
Ile Thr Gly Gly Asn Thr Asp Glu Lys Thr Arg Phe Ile Ala Pro Thr
325 330 335
Val Val Ala Lys Val Pro Asp Asn Asp Ser Leu Met Glu Asp Glu Ile
340 345 350
Phe Gly Pro Leu Leu Pro Ile Leu Thr Ala Arg Ser Val Glu Glu Gly
355 360 365
Ile Lys Tyr Val His Glu Asn His Asp Thr Pro Leu Ala Met Tyr Val
370 375 380
Phe Thr Asp Lys Ala Ser Glu Gly Asp Tyr Ile Gln Ser Gln Ile Asn
385 390 395 400
Ser Gly Gly Leu Ile Phe Asn Asp Thr Leu Ile His Val Gly Cys Val
405 410 415
Gln Ala Pro Phe Gly Gly Val Gly Met Ser Gly Tyr Gly Ala Tyr His
420 425 430
Gly Glu Asp Ser Phe Leu Ala Phe Thr His Arg Gln Thr Tyr Leu Asn
435 440 445
Gln Pro Lys Leu Leu Glu Pro Leu Gln Asp Val Arg Tyr Ala Pro Tyr
450 455 460
Thr Lys Thr Lys Arg Ser Met Val Lys Asn Leu Leu Leu Val Gly Pro
465 470 475 480
Ile Phe Pro Arg Thr Gly Ser Val Tyr Pro Asn Val Leu Ile Arg Ile
485 490 495
Phe Arg Lys Ile Trp Phe Trp Val Leu Ile Val Ala Ile Gly Ala Ala
500 505 510
Gly Ala Lys Ala Leu Leu
515
<210> 122
<211> 529
<212> PRT
<213> 解脂耶氏酵母(Yarrowia lipolytica)
<400> 122
Met Thr Thr Thr Ala Thr Glu Thr Pro Thr Thr Asn Val Thr Pro Thr
1 5 10 15
Thr Ser Leu Pro Lys Glu Thr Ala Ser Pro Gly Gly Thr Ala Ser Val
20 25 30
Asn Thr Ser Phe Asp Trp Glu Ser Ile Cys Gly Lys Thr Pro Leu Glu
35 40 45
Glu Ile Glu Ser Asp Ile Ser Arg Leu Lys Lys Thr Phe Arg Ser Gly
50 55 60
Lys Thr Leu Asp Leu Asp Tyr Arg Leu Asp Gln Ile Arg Asn Leu Ala
65 70 75 80
Tyr Ala Ile Arg Asp Asn Glu Asn Lys Ile Arg Asp Ala Ile Lys Ala
85 90 95
Asp Leu Lys Arg Pro Asp Phe Glu Thr Met Ala Ala Glu Phe Ser Val
100 105 110
Gln Met Gly Glu Phe Asn Tyr Val Val Lys Asn Leu Pro Lys Trp Val
115 120 125
Lys Asp Glu Lys Val Lys Gly Thr Ser Met Ala Tyr Trp Asn Ser Ser
130 135 140
Pro Lys Ile Arg Lys Arg Pro Leu Gly Ser Val Leu Val Ile Thr Pro
145 150 155 160
Trp Asn Tyr Pro Leu Ile Leu Ala Val Ser Pro Val Leu Gly Ala Ile
165 170 175
Ala Ala Gly Asn Thr Val Ala Leu Lys Met Ser Glu Met Ser Pro Asn
180 185 190
Ala Ser Lys Val Ile Gly Asp Ile Met Thr Ala Ala Leu Asp Pro Gln
195 200 205
Leu Phe Gln Cys Phe Phe Gly Gly Val Pro Glu Thr Thr Glu Ile Leu
210 215 220
Lys His Arg Trp Asp Lys Ile Met Tyr Thr Gly Asn Gly Lys Val Gly
225 230 235 240
Arg Ile Ile Cys Glu Ala Ala Asn Lys Tyr Leu Thr Pro Val Glu Leu
245 250 255
Glu Leu Gly Gly Lys Ser Pro Val Phe Val Thr Lys His Cys Ser Asn
260 265 270
Leu Glu Met Ala Ala Arg Arg Ile Ile Trp Gly Lys Phe Val Asn Gly
275 280 285
Gly Gln Thr Cys Val Ala Pro Asp Tyr Val Leu Val Cys Pro Glu Val
290 295 300
His Asp Lys Phe Val Ala Ala Cys Gln Lys Val Leu Asp Lys Phe Tyr
305 310 315 320
Pro Asn Asn Ser Ala Glu Ser Glu Met Ala His Ile Ala Thr Pro Leu
325 330 335
His Tyr Glu Arg Leu Thr Gly Leu Leu Asn Ser Thr Arg Gly Lys Val
340 345 350
Val Ala Gly Gly Thr Phe Asn Ser Ala Thr Arg Phe Ile Ala Pro Thr
355 360 365
Ile Val Asp Gly Val Asp Ala Asn Asp Ser Leu Met Gln Gly Glu Leu
370 375 380
Phe Gly Pro Leu Leu Pro Ile Val Lys Ala Met Ser Thr Glu Ala Ala
385 390 395 400
Cys Asn Phe Val Leu Glu His His Pro Thr Pro Leu Ala Glu Tyr Ile
405 410 415
Phe Ser Asp Asn Asn Ser Glu Ile Asp Tyr Ile Arg Asp Arg Val Ser
420 425 430
Ser Gly Gly Leu Val Ile Asn Asp Thr Leu Ile His Val Gly Cys Val
435 440 445
Gln Ala Pro Phe Gly Gly Val Gly Asp Ser Gly Asn Gly Gly Tyr His
450 455 460
Gly Lys His Thr Phe Asp Leu Phe Ser His Ser Gln Thr Val Leu Arg
465 470 475 480
Gln Pro Gly Trp Val Glu Met Leu Gln Lys Lys Arg Tyr Pro Pro Tyr
485 490 495
Asn Lys Ser Asn Glu Lys Phe Val Arg Arg Met Val Val Pro Ser Pro
500 505 510
Gly Phe Pro Arg Glu Gly Asp Val Arg Gly Phe Trp Ser Arg Leu Phe
515 520 525
Asn
<210> 123
<211> 377
<212> PRT
<213> 解脂耶氏酵母(Yarrowia lipolytica)
<400> 123
Met Trp Gly Ser Ser His Ala Phe Ala Gly Glu Ser Asp Leu Thr Leu
1 5 10 15
Gln Leu His Thr Arg Ser Asn Met Ser Asp Asn Thr Thr Ile Lys Lys
20 25 30
Pro Ile Arg Pro Lys Pro Ile Arg Thr Glu Arg Leu Pro Tyr Ala Gly
35 40 45
Ala Ala Glu Ile Ile Arg Ala Asn Gln Lys Asp His Tyr Phe Glu Ser
50 55 60
Val Leu Glu Gln His Leu Val Thr Phe Leu Gln Lys Trp Lys Gly Val
65 70 75 80
Arg Phe Ile His Gln Tyr Lys Glu Glu Leu Glu Thr Ala Ser Lys Phe
85 90 95
Ala Tyr Leu Gly Leu Cys Thr Leu Val Gly Ser Lys Thr Leu Gly Glu
100 105 110
Glu Tyr Thr Asn Leu Met Tyr Thr Ile Arg Asp Arg Thr Ala Leu Pro
115 120 125
Gly Val Val Arg Arg Phe Gly Tyr Val Leu Ser Asn Thr Leu Phe Pro
130 135 140
Tyr Leu Phe Val Arg Tyr Met Gly Lys Leu Arg Ala Lys Leu Met Arg
145 150 155 160
Glu Tyr Pro His Leu Val Glu Tyr Asp Glu Asp Glu Pro Val Pro Ser
165 170 175
Pro Glu Thr Trp Lys Glu Arg Val Ile Lys Thr Phe Val Asn Lys Phe
180 185 190
Asp Lys Phe Thr Ala Leu Glu Gly Phe Thr Ala Ile His Leu Ala Ile
195 200 205
Phe Tyr Val Tyr Gly Ser Tyr Tyr Gln Leu Ser Lys Arg Ile Trp Gly
210 215 220
Met Arg Tyr Val Phe Gly His Arg Leu Asp Lys Asn Glu Pro Arg Ile
225 230 235 240
Gly Tyr Glu Met Leu Gly Leu Leu Ile Phe Ala Arg Phe Ala Thr Ser
245 250 255
Phe Val Gln Thr Gly Arg Glu Tyr Leu Gly Ala Leu Leu Glu Lys Ser
260 265 270
Val Glu Lys Glu Ala Gly Glu Lys Glu Asp Glu Lys Glu Ala Val Val
275 280 285
Pro Lys Lys Lys Ser Ser Ile Pro Phe Ile Glu Asp Thr Glu Gly Glu
290 295 300
Thr Glu Asp Lys Ile Asp Leu Glu Asp Pro Arg Gln Leu Lys Phe Ile
305 310 315 320
Pro Glu Ala Ser Arg Ala Cys Thr Leu Cys Leu Ser Tyr Ile Ser Ala
325 330 335
Pro Ala Cys Thr Pro Cys Gly His Phe Phe Cys Trp Asp Cys Ile Ser
340 345 350
Glu Trp Val Arg Glu Lys Pro Glu Cys Pro Leu Cys Arg Gln Gly Val
355 360 365
Arg Glu Gln Asn Leu Leu Pro Ile Arg
370 375
<210> 124
<211> 679
<212> PRT
<213> 苹果蠹蛾(Cydia pomonella)
<400> 124
Met Ala Asp Ser Pro Pro Glu Asp Asn Thr Pro Thr Arg Asn Gly Ser
1 5 10 15
Leu Lys Ile Ser Leu Pro Thr Val Leu Cys Thr Pro Glu Ser Ser Glu
20 25 30
Asn Ser Asp Ile Leu Cys Lys Thr Lys Thr Phe Ile Ser Ser Glu Ser
35 40 45
Lys Leu Ser Leu Pro Ser Asn Leu Gly Thr Pro Thr Ser Pro Leu Arg
50 55 60
Leu Ser Ser Pro Leu Ser Leu Pro Thr Ser Pro Thr Pro Tyr Met Lys
65 70 75 80
Ile Thr Gln Pro Gln Pro Glu Lys Thr Val Ala Ala Thr Gln Met Asn
85 90 95
Ser Pro Pro Thr Thr Ile Val Gln Gln Thr Gly Pro Lys Gln Pro Leu
100 105 110
Val Asn Thr Gly Ser Ala Thr Gly Asn Pro Arg Asn Lys Cys Ala Leu
115 120 125
Gln Pro Gly His Ser Leu Met Asp Trp Ile Arg Leu Gly Asn Ser Gly
130 135 140
Lys Asp Leu Thr Gly Val Gly Gly Arg Met Arg Pro Val Ser Pro Asp
145 150 155 160
Glu Leu Ala Ala His Asn Thr Arg Asn Asp Ala Trp Leu Ala Ile Arg
165 170 175
Gly Arg Val Tyr Asn Ile Thr His Tyr Leu Pro Tyr His Pro Gly Gly
180 185 190
Pro Glu Glu Leu Met Arg Gly Ala Gly Ile Asp Ala Thr Gln Leu Phe
195 200 205
Asp Lys Val His Pro Trp Val Asn Tyr Asp Ser Leu Leu Ala Lys Cys
210 215 220
Leu Val Gly Pro Leu Arg Leu Asp Arg Pro Asp Ala Glu Glu Leu Phe
225 230 235 240
Gly Pro Ser Thr Pro Ser Pro Lys Ser Glu Asn Arg Leu Arg Glu Pro
245 250 255
Ser Lys Ala Gln Glu Leu Val Arg Lys Ser Met Glu Asn Leu Ala Asn
260 265 270
Cys Ile Thr Pro Val Arg Lys Lys Met Ser Ala Lys Ser Glu Glu Asn
275 280 285
Ile Lys Gly Ser Pro Pro Ser Lys Ile Met Gln Ser Leu Ile Gln Ser
290 295 300
Ser Asp Leu Pro Val Ser Ile Ser Arg Arg Ala Ala Ala Ser Pro Val
305 310 315 320
Lys Thr Ser Glu Lys Ser Asp Ile Ala Pro Ser Pro Leu Arg Phe Asp
325 330 335
Trp Ile Gln Thr Ser Thr Lys Leu Thr Leu Ser Ile Tyr Thr Gly Pro
340 345 350
Leu Ala Asn Pro Gly Gly Cys Ala Arg Ile Ile Glu Gly Ile Leu Phe
355 360 365
Val Glu Val Ala Thr Asn Gly Trp Val Arg Thr Leu Lys Leu Val Pro
370 375 380
Glu Ala Lys Leu Leu Glu Ser Leu Gln Leu Arg Val Phe Ala Glu Ser
385 390 395 400
Gly Lys Ile Glu Val Thr Ala His Lys Ala Glu Pro Gly Val Trp Lys
405 410 415
Thr Cys Gly Glu Ala Met Ala Gly Ala Ala Ser Arg Val Ser Thr Pro
420 425 430
Arg Ser Val Ser Cys Arg Val Ala Arg Met Leu Arg Val Ser His Asp
435 440 445
Thr Val Leu Leu Ser Leu Ala Ala Pro Ala Gln Ala Leu Val Ala Pro
450 455 460
Leu Gly His His Val Arg Val His Arg Thr Ile Ser Asp Val Glu Cys
465 470 475 480
Val Arg Ser Tyr Thr Pro Val Gly Glu Gly Trp Gly Pro Asp Ala Glu
485 490 495
Arg Asp Ser Ala Ile His Leu Ala Val Lys Gly Tyr Asp Thr Gly Ala
500 505 510
Leu Ser Pro Tyr Leu Thr Ala Leu Gln Pro Gly Asp Glu Val Thr Val
515 520 525
Ser Gly Pro Tyr Gly Asn Phe Gln Leu His Thr Leu Lys Gly Val Lys
530 535 540
Glu Ile Tyr Phe Val Ala Ala Gly Thr Gly Ile Thr Pro Met Leu Gly
545 550 555 560
Leu Leu Lys Phe Met Leu Pro Arg Ser Asn Pro Arg Cys Glu Arg Ile
565 570 575
His Leu Leu Phe Phe Asn Lys Thr Glu Glu Asp Ile Leu Phe Arg Glu
580 585 590
Asn Phe Glu Glu Ile Ala Arg Glu Asp Asp Arg Phe Thr Val Thr His
595 600 605
Val Leu Ser Asp Ala Gly Pro Ser Trp Ser Gly His Lys Gly Arg Val
610 615 620
Thr Thr Asn Leu Leu Thr Gln Val Ile Gly Lys Ser Phe Leu Lys Cys
625 630 635 640
Arg Asp Gln Cys Thr His Phe Ala Cys Val Cys Gly Pro Thr Glu Phe
645 650 655
Thr His Thr Ala Ile Asp Leu Leu Lys Lys Leu Asp Met Lys Asp Ser
660 665 670
Cys Ile His Ala Phe Met Gly
675
<210> 125
<211> 2040
<212> DNA
<213> 苹果蠹蛾(Cydia pomonella)
<400> 125
atggccgact ctccacctga ggacaacacc cctactcgaa acggctctct gaagatctct 60
ctgcccaccg tgctgtgcac ccctgagtcc tctgagaact ctgacatcct gtgcaagacc 120
aagaccttca tctcttctga gtctaagctg tctctgccct ctaacctggg aacccctacc 180
tctcctctgc gactctcttc tcccctgtcg ctgcccacct ctcctacacc ttacatgaag 240
atcacccagc ctcagcctga aaagaccgtg gccgccactc agatgaactc cccacctacc 300
accatcgtgc agcagaccgg acctaagcag cccctggtga acaccggctc tgccactggc 360
aaccctcgaa acaagtgcgc tctgcagccc ggccactctc tgatggactg gatccgactg 420
ggcaactctg gcaaggacct gaccggcgtc ggcggacgaa tgcgacccgt gtctcccgac 480
gagctggccg ctcacaacac ccgaaacgac gcctggctgg ccatccgagg ccgagtgtac 540
aacatcaccc actacctgcc ttaccatcct ggcggacccg aggaactgat gcgaggcgcc 600
ggaatcgacg ctacccagct gttcgacaag gtgcaccctt gggtgaacta cgactctctg 660
ctggccaagt gcctggtggg acccctgcga ctggaccgac ctgacgctga ggaactgttc 720
ggcccctcta ctccctcgcc taagtctgag aaccgactgc gagagccctc taaggcccaa 780
gagctggtgc gaaagtctat ggaaaacctg gccaactgca tcacccctgt gcgaaagaag 840
atgtctgcca agtctgagga aaacatcaag ggatctccac cttctaagat catgcagtct 900
ctgattcagt cctccgacct gcctgtgtct atttctcgac gagccgccgc ttctcccgtc 960
aagacctccg agaagtctga tatcgcccct tcgcctctgc gattcgactg gattcagacc 1020
tctaccaagc tgaccctgtc tatctacacc ggacctctgg ctaaccccgg tggctgcgcc 1080
cgaatcatcg agggcatcct gttcgtcgag gtcgccacca acggctgggt gcgaaccctg 1140
aagctggtgc ccgaggccaa gctgctcgag tctctgcagc tgcgagtgtt cgccgagtct 1200
ggcaagatcg aggtgactgc ccacaaggct gagcccggcg tgtggaagac ctgcggcgag 1260
gccatggctg gcgctgcctc tcgagtgtct acccctcgat ctgtgtcttg ccgagtggcc 1320
cgaatgctgc gagtctccca cgacaccgtc ctgctgtccc tggctgctcc cgctcaggcc 1380
ctggtggctc ccctgggcca ccacgtgcga gtgcaccgaa ccatctctga cgtcgagtgc 1440
gtgcgatctt acacccctgt cggcgaaggc tggggacccg acgccgagcg agactctgcc 1500
atccacctgg ccgtgaaggg ctacgacacc ggcgctctgt ctccctacct gactgccctg 1560
cagcctggcg acgaggtgac cgtgtctggc ccctacggca acttccagct gcacaccctg 1620
aagggcgtga aggaaatcta cttcgtcgcc gctggcaccg gaatcacccc tatgctgggc 1680
ctgctgaagt tcatgctgcc ccgatctaac cctcgatgcg agcgaatcca cctcctgttc 1740
ttcaacaaga ccgaagagga cattctgttc cgagagaact tcgaggaaat cgcccgagag 1800
gacgaccgat tcaccgtgac tcacgtgctg tctgacgctg gcccctcttg gtctggccac 1860
aagggacgag tgaccaccaa cctgctgacc caggtgatcg gcaagtcttt cctgaagtgc 1920
cgagatcagt gcacccactt cgcctgcgtg tgcggcccca ccgagtttac ccacaccgcc 1980
atcgacctgc tcaagaagct ggacatgaag gactcttgca tccacgcctt catgggctag 2040
<210> 126
<211> 346
<212> PRT
<213> 柞蚕(Antheraea pernyi)
<400> 126
Met Ala Pro Cys Thr Glu Lys Glu Asp Glu Leu Ile Thr Cys Glu Gly
1 5 10 15
Ser Ile Glu Lys Leu Ile Ala Pro Gln Ala Asn Lys Arg Lys His Gln
20 25 30
Ile Val Tyr Met Asn Leu Phe Thr Phe Gly Tyr Trp Tyr Ile Ala Gly
35 40 45
Leu Tyr Gly Leu Tyr Leu Phe Phe Thr Ser Thr Lys Trp Ser Thr Ile
50 55 60
Ile Leu Asn Ile Phe Leu Ile Ile Ala Ser Gly Leu Gly Ile Thr Val
65 70 75 80
Gly Ala His Arg Leu Trp Ala His Lys Cys Phe Lys Ala Lys Leu Pro
85 90 95
Leu Gln Ile Ile Leu Met Ile Leu Asn Thr Leu Ala Phe Gln Asn Thr
100 105 110
Ala Ile Thr Trp Val Arg Asp His Arg Met His His Lys Phe Thr Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Phe Ser His
130 135 140
Val Gly Trp Leu Leu Val Lys Lys His Pro Glu Leu Met Lys Arg Ser
145 150 155 160
Lys His Ile Asp Met Ser Asp Ile Tyr Gly Asn Pro Val Leu Thr Phe
165 170 175
Gln Lys Lys Tyr Ala Phe Pro Leu Val Ala Thr Phe Thr Phe Ile Leu
180 185 190
Pro Thr Val Val Pro Ile Tyr Phe Trp Asp Glu Ser Leu Asn Asn Ala
195 200 205
Trp His Ala Thr Val Phe Arg Tyr Ala Tyr Asn Leu Asn Ile Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Met Trp Gly Tyr Arg Pro Tyr Asp Lys
225 230 235 240
Asn Ile Gln Pro Thr Gln Asn Ile Phe Thr Thr Leu Cys Thr Phe Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Thr Phe Pro Trp Asp Tyr Arg Ala
260 265 270
Ala Glu Leu Gly Asn Asn Tyr Leu Asn Leu Ser Thr Lys Val Ile Asp
275 280 285
Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Pro Ala
290 295 300
Asp Ile Val Asn Ser Arg Ala Lys Arg Thr Gly Asp Gly Thr Asp Leu
305 310 315 320
Trp Gly Gly Asn His Lys His Thr Leu Asp Glu Lys Glu Asn Arg Glu
325 330 335
Leu Asp Asp Tyr Val His Lys Ser Ala Phe
340 345
<210> 127
<211> 329
<212> PRT
<213> 红带卷蛾(Argyrotaenia velutinana)
<400> 127
Met Ala Pro Asn Ala Glu Asp Ile Glu Thr Asn Met Pro Glu Thr Glu
1 5 10 15
Glu Asn Trp Glu Thr Leu Val Ala Pro Gln Ala Ala Pro Arg Lys Tyr
20 25 30
Gln Ile Val Tyr Lys Ser Leu Leu Thr Phe Gly Tyr Gly His Leu Ala
35 40 45
Gly Leu Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Gln Thr
50 55 60
Ile Gly Leu Ala Ile Ile Leu His Ala Met Ala Ile Leu Gly Ile Thr
65 70 75 80
Ala Gly Ala His Arg Leu Trp Thr His Arg Ala Tyr Lys Ala Thr Val
85 90 95
Pro Leu Gln Ile Ile Leu Ile Ile Phe Asn Ser Leu Ser Phe Gln Asn
100 105 110
Ser Ala Phe Thr Trp Ile Arg Asp His Arg Leu His His Lys Tyr Ser
115 120 125
Asp Thr Asp Gly Asp Pro His Asn Ala Thr Arg Gly Phe Phe Tyr Ser
130 135 140
His Ile Gly Trp Leu Leu Val Arg Lys His Pro Glu Val Met Lys Arg
145 150 155 160
Gly Arg Met Thr Glu Met Ser Asp Ile Tyr Ser Asn Pro Ile Ile Met
165 170 175
Phe Gln Lys Asn Tyr Ala Ile Pro Phe Ile Gly Thr Val Cys Phe Val
180 185 190
Leu Pro Thr Ile Ile Pro Met Tyr Phe Trp Gly Glu Thr Leu Asn Asn
195 200 205
Ala Trp His Ile Thr Val Leu Arg Tyr Ile Phe Ser Leu Asn Cys Ile
210 215 220
Phe Leu Val Asn Ser Ala Ala His Leu Tyr Gly Tyr Lys Pro Tyr Asp
225 230 235 240
Lys Asn Ile Leu Pro Ala Glu Asn Lys Ala Ala Ser Ile Ala Ser Phe
245 250 255
Gly Glu Ala Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg
260 265 270
Ala Ser Glu Leu Gly Asn Ile Thr Met Asn Trp Thr Ile Tyr Phe Ile
275 280 285
Asp Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Ala Ser
290 295 300
Asp Glu Thr Ile Lys Ser Arg Ile Lys Arg Thr Gly Asp Gly Thr Asp
305 310 315 320
Phe Ser Gly Gln Gln Ile Tyr Ala Arg
325
<210> 128
<211> 351
<212> PRT
<213> 红尾熊蜂(Bombus lapidarius)
<400> 128
Met Ala Pro Asn Ile Thr Ser Ser Pro Thr Gly Val Leu Phe Glu Gly
1 5 10 15
Glu Thr Leu Glu Glu Thr Ser Arg Val Ile Asp Ala Pro Lys Thr Lys
20 25 30
Phe Lys Thr Gln Ile Val Trp Arg Asn Val Ile Ile Phe Thr Tyr Leu
35 40 45
His Ile Ser Ala Val Tyr Gly Leu Tyr Leu Ala Phe Thr Ser Ala Lys
50 55 60
Trp Ala Thr Leu Leu Phe Ala Phe Phe Leu His Val Tyr Ser Ala Leu
65 70 75 80
Gly Ile Thr Ala Gly Ala His Arg Leu Trp Ala His Arg Ser Tyr Lys
85 90 95
Ala Lys Trp Pro Met Gln Leu Ile Leu Ile Ile Gly Asn Thr Ile Ala
100 105 110
Phe Gln Asp Ser Ala Ile Asp Trp Ala Arg Asp His Arg Leu His His
115 120 125
Lys Tyr Ser Glu Thr Asn Ala Asp Pro His Asn Ala Lys Arg Gly Phe
130 135 140
Phe Phe Ala His Ile Gly Trp Leu Leu Cys Lys Lys His Pro Asp Ile
145 150 155 160
Arg Ala Lys Gly Lys Gly Ile Asp Met Ser Asp Leu Lys Asn Asn Pro
165 170 175
Ile Leu Thr Phe Gln Lys Lys Tyr Tyr Thr Ile Leu Met Pro Leu Leu
180 185 190
Cys Phe Ile Val Pro Thr Met Ile Pro Val Tyr Cys Trp Asn Glu Thr
195 200 205
Trp Gly Asn Gly Tyr Phe Ile Pro Ala Ile Leu Arg Tyr Val Tyr Thr
210 215 220
Leu Asn Met Thr Trp Leu Val Asn Ser Ala Ala His Met Phe Gly Asn
225 230 235 240
Lys Pro Tyr Asp Lys Tyr Ile Asn Pro Val Glu Asn Lys Met Val Ala
245 250 255
Ile Thr Ala Leu Gly Glu Gly Trp His Asn Tyr His His Val Phe Pro
260 265 270
Trp Asp Tyr Lys Thr Ala Glu Leu Gly Asn Tyr Lys Val Asn Val Thr
275 280 285
Thr Leu Phe Ile Asp Val Cys Ser Lys Leu Gly Leu Ala Tyr Asp Met
290 295 300
Lys Ile Val Pro Gln Asp Leu Val Gln Lys Arg Val Glu Arg Thr Gly
305 310 315 320
Asp Gly Ser His Asn Val Trp Gly Trp Gly Asp Lys Asp Gln Thr Gln
325 330 335
Gln Asp Arg Asp Val Thr Met Val Val Asn Leu Lys Lys Asp His
340 345 350
<210> 129
<211> 339
<212> PRT
<213> 家蚕(Bombyx mori)
<400> 129
Met Glu Ala Lys Gln Asn Asn Leu Ala Pro Thr Leu Glu Glu Glu Ala
1 5 10 15
Gln Phe Glu Lys Leu Ile Ala Pro Gln Ala Ser Asp Arg Lys His Glu
20 25 30
Ile Ile Tyr Ala Asn Leu Ile Thr Phe Ala Tyr Gly His Ile Ser Ala
35 40 45
Leu Tyr Gly Leu Tyr Leu Cys Phe Ser Ser Ala Lys Trp Ala Thr Ile
50 55 60
Ile Met Ala Tyr Val Ile Leu Ile Ala Ala Glu Val Gly Val Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Thr His Arg Ala Tyr Lys Ala Lys Arg Pro
85 90 95
Leu Gln Ile Ile Leu Met Val Met Asn Ser Phe Ala Phe Gln Asn Ser
100 105 110
Ala Ile Thr Trp Ile Arg Asp His Arg Met His His Arg Tyr Ser Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Tyr Ser His
130 135 140
Ile Gly Trp Leu Leu Val Arg Lys His Pro Glu Val Lys Arg Arg Gly
145 150 155 160
Lys Thr Ile Asp Met Ser Asp Ile Tyr Ser Asn Pro Val Leu Val Phe
165 170 175
Gln Lys Lys Tyr Ala Ile Pro Phe Ile Gly Ala Val Cys Phe Val Ile
180 185 190
Pro Thr Leu Val Pro Ile Tyr Phe Trp Gly Glu Thr Leu Thr Asn Ala
195 200 205
Trp His Ile Thr Leu Leu Arg Tyr Ile Ile Ser Leu His Val Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Leu Trp Gly Thr Arg Ala Tyr Asp Lys
225 230 235 240
Arg Ile Phe Pro Ala Gln Asn Leu Ile Val Ser Leu Leu Ala Val Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Thr
260 265 270
Ala Glu Leu Gly Asn Asn Tyr Leu Asn Leu Thr Thr Lys Phe Ile Asp
275 280 285
Phe Phe Ala Trp Leu Gly Trp Ala Tyr Asp Leu Lys Ser Val Pro Asp
290 295 300
Ser Ala Val Gln Ser Arg Ala Ala Arg Thr Gly Asp Gly Thr Asn Ser
305 310 315 320
Trp Gly Trp Pro Glu Glu Asp Ala Asn Glu Asp Ile Leu Lys Gln Thr
325 330 335
Pro Pro Leu
<210> 130
<211> 345
<212> PRT
<213> 二化螟(Chilo supprealis)
<400> 130
Met Ala Pro Asn Ser Ile Gln Asn Asp Glu Gly Leu Gly Val Glu Val
1 5 10 15
Gln Pro Glu Ser Leu Thr Pro Pro Lys Leu Thr Gln Ile Arg His Lys
20 25 30
Ile Leu Tyr Val Asn Leu Thr Tyr Phe Leu Tyr Trp His Leu Ala Ala
35 40 45
Pro Tyr Gly Ile Tyr Leu Cys Phe Thr Ser Val Lys Trp Glu Thr Ile
50 55 60
Ile Phe Gly Phe Val Val Phe Leu Ala Ala Glu Leu Gly Val Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Ser His Lys Ser Tyr Lys Ala Lys Arg Pro
85 90 95
Leu Glu Ile Ile Leu Met Leu Phe Asn Ser Met Ala Phe Gln Asn Ser
100 105 110
Ile Ile His Trp Ala Arg Asp His Arg Leu His His Lys Tyr Cys Asp
115 120 125
Thr Asp Ala Asp Pro Tyr Asn Ala Ser Arg Gly Phe Phe Tyr Ser His
130 135 140
Val Gly Trp Leu Leu Thr Lys Lys Asn Lys Glu Val Leu Lys Arg Gly
145 150 155 160
Lys Thr Ile Asp Ala Ser Asp Leu Phe Asn Asn Pro Val Leu Gln Phe
165 170 175
Gln Lys Lys Tyr Ala Ile Pro Val Phe Ala Leu Cys Cys Phe Ile Leu
180 185 190
Pro Thr Ala Ile Pro Met Tyr Val Trp Gly Glu Thr Leu Asn Asn Ser
195 200 205
Trp His Ala Asn Leu Leu Arg Tyr Thr Ile Asn Leu Asn Val Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Ile Trp Gly Tyr Arg Pro Tyr Asp Lys
225 230 235 240
Ser Ile Tyr Pro Ala Gln Asn Val Tyr Val Ser Leu Val Thr Leu Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Lys Thr
260 265 270
Ala Glu Leu Gly Asn Asn Lys Leu Asn Val Thr Thr Trp Phe Ile Asn
275 280 285
Phe Phe Thr Lys Leu Gly Trp Ala Tyr Asp Leu Lys Thr Val Ser Asn
290 295 300
Glu Ile Val Arg Ala Arg Ala Met Arg Thr Gly Asp Gly Lys Asp Leu
305 310 315 320
Trp Gly Trp Asn Asp Lys Asp Ile Thr Asp Met Asp Lys Glu His Thr
325 330 335
Asp Ile Leu Tyr Ser Lys Thr Glu Asp
340 345
<210> 131
<211> 374
<212> PRT
<213> 嗜凤梨果蝇(Drosophila ananassae)
<400> 131
Met Pro Pro Asn Ser Lys Glu Ser Thr Asp Lys Cys Thr Gly Leu Ala
1 5 10 15
Ser Glu Val Pro Gly Thr Val Asp Asp Gly Ser Ser Lys Gln Thr Gly
20 25 30
Val Leu Phe Glu Ala Asp Val Glu Thr Asn Asp Gly Asp Leu Ala Val
35 40 45
Ser Thr Val Glu Phe Lys Arg Ala Glu Lys Arg Lys Leu Glu Leu Val
50 55 60
Trp Arg Asn Ile Ile Leu Phe Ala Tyr Val His Leu Ala Ala Leu Tyr
65 70 75 80
Gly Gly Tyr Leu Met Phe Thr Gln Ala Lys Leu Ala Thr Thr Ile Phe
85 90 95
Ala Ala Gly Leu Tyr Ile Cys Gly Met Leu Gly Ile Thr Gly Gly Ala
100 105 110
His Arg Leu Trp Ala His Arg Ser Tyr Lys Ala Lys Trp Pro Leu Arg
115 120 125
Leu Ile Leu Ile Val Phe Asn Thr Ile Ala Phe Gln Asp Ala Ala Tyr
130 135 140
His Trp Ala Arg Asp His Arg Val His His Lys Phe Ser Glu Thr Asp
145 150 155 160
Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Phe Ser His Val Gly
165 170 175
Trp Leu Leu Thr Lys Lys His Pro Asp Val Lys Ala Lys Gly Lys Ile
180 185 190
Leu Asp Leu Ser Asp Leu His Ala Asp Pro Ile Leu Met Phe Gln Lys
195 200 205
Lys His Tyr Phe Val Leu Met Pro Leu Ala Cys Phe Ile Leu Pro Thr
210 215 220
Ile Ile Pro Val Leu Cys Trp Asn Glu Ser Leu Thr Cys Gly Trp Leu
225 230 235 240
Val Ala Thr Met Phe Arg Trp Cys Phe Gln Leu Asn Met Thr Trp Leu
245 250 255
Val Asn Ser Ala Ala His Lys Phe Gly Gly Arg Pro Tyr Asp Lys Asn
260 265 270
Met Asn Pro Ser Glu Asn Ala Tyr Val Ala Thr Met Thr Phe Gly Glu
275 280 285
Gly Trp His Asn Tyr His His Val Phe Pro Trp Asp Tyr Lys Thr Ser
290 295 300
Glu Trp Gly Asn Arg Leu Asn Met Thr Ala Arg Phe Ile Asp Leu Phe
305 310 315 320
Ala Lys Ile Gly Trp Ala Tyr Asp Leu Lys Ser Val Ala Pro Asp Thr
325 330 335
Val Lys Arg Arg Val Trp Arg Thr Gly Asp Gly Ser His Glu Leu Trp
340 345 350
Gly Trp Gly Asp Lys Asp Leu Thr Pro Glu Asp Ala Lys Asp Val Leu
355 360 365
Phe Val Asp Lys Met Asn
370
<210> 132
<211> 344
<212> PRT
<213> 小蔗杆草螟(Diatraea saccharalis)
<400> 132
Met Ala Pro Asn Leu Ile Lys Asn Glu Gly Ala Phe Asp Val Asp Ile
1 5 10 15
Lys Pro Asp Glu Leu Gln Pro Pro Lys Leu Ser Lys Ile Lys His Lys
20 25 30
Ile Leu Tyr Val Asn Leu Ile Tyr Phe Leu Tyr Trp His Leu Ala Ala
35 40 45
Pro Tyr Gly Leu Tyr Leu Cys Cys Thr Ser Ala Lys Trp Ala Thr Ile
50 55 60
Ile Phe Ala Phe Val Met Phe Leu Ala Ala Glu Leu Gly Ile Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Ser His Lys Ser Tyr Lys Ala Lys Leu Pro
85 90 95
Leu Glu Ile Ile Leu Met Leu Phe Asn Ser Ile Ala Phe Gln Asn Ser
100 105 110
Ile Ile His Trp Ala Arg Asp His Arg Leu His His Lys Tyr Ser Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser His
130 135 140
Val Gly Trp Leu Ile Thr Lys Lys Asn Lys Glu Val Leu Lys Arg Gly
145 150 155 160
Lys Asn Ile Asp Val Ser Asp Leu Tyr Asn Asn Pro Val Leu Gln Phe
165 170 175
Gln Arg Lys Tyr Ala Val Pro Val Phe Ala Ser Phe Cys Phe Ile Leu
180 185 190
Pro Thr Leu Ile Pro Met Tyr Leu Trp Gly Glu Ser Phe Lys Asn Ser
195 200 205
Trp Tyr Val Asn Leu Leu Arg Tyr Val Ile Asn Leu Asn Val Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Lys Trp Gly Tyr Lys Pro Tyr Glu Lys
225 230 235 240
Asn Ile Asn Pro Ala Gln Asn Val Tyr Val Ser Phe Ala Thr Leu Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Ile Phe Pro Trp Asp Tyr Lys Thr
260 265 270
Ala Glu Leu Gly Asn Asn Lys Leu Asn Val Thr Thr Trp Phe Ile Asn
275 280 285
Phe Phe Ala Lys Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ser Asn
290 295 300
Glu Met Val Arg Ala Arg Ala Met Arg Thr Gly Asp Gly Asn Asp Leu
305 310 315 320
Trp Gly Trp Asp Asp Glu Asp Ile Thr Asp Lys Asp Lys Glu His Thr
325 330 335
Asp Ile Leu Asn Gly Lys Thr Asp
340
<210> 133
<211> 358
<212> PRT
<213> Drosophila yakuba
<400> 133
Met Ala Pro Tyr Glu Pro Ser Ser Asn Ser Ser Lys Gln Thr Gly Val
1 5 10 15
Leu Phe Glu Gly Asp Ala Glu Thr Ala Asp Gly Asp Leu Thr Ser Asp
20 25 30
Arg Phe Gln Leu Lys Arg Ala Glu Asn Arg Arg Leu Asp Leu Val Trp
35 40 45
Arg Asn Ile Ile Leu Phe Ala Leu Val His Leu Ser Ala Leu Tyr Gly
50 55 60
Leu Tyr Ser Ile Phe Thr Lys Ala Lys Leu Ala Thr Thr Leu Phe Ala
65 70 75 80
Ala Gly Leu Tyr Ile Ile Gly Met Leu Gly Val Thr Ala Gly Ala His
85 90 95
Arg Leu Trp Ala His Arg Thr Tyr Lys Ala Lys Trp Pro Leu Arg Leu
100 105 110
Ile Leu Val Ile Phe Asn Thr Val Ala Phe Gln Asp Ala Ala Tyr His
115 120 125
Trp Ala Arg Asp His Arg Val His His Lys Tyr Ser Glu Thr Asp Ala
130 135 140
Asp Pro His Asn Ala Thr Arg Gly Phe Phe Phe Ser His Val Gly Trp
145 150 155 160
Leu Leu Cys Lys Lys His Pro Asp Ile Lys Glu Lys Gly Lys Gly Leu
165 170 175
Asp Leu Ser Asp Leu Arg Ala Asp Pro Ile Leu Met Phe Gln Arg Lys
180 185 190
His Tyr Tyr Ile Leu Met Pro Leu Ala Cys Phe Val Leu Pro Thr Val
195 200 205
Ile Pro Met Val Tyr Trp Asn Glu Thr Leu Ala Ser Ser Trp Phe Val
210 215 220
Ala Ser Met Phe Arg Trp Cys Phe Gln Leu Asn Met Thr Trp Leu Val
225 230 235 240
Asn Ser Ala Ala His Gln Phe Gly Asn Arg Pro Tyr Asp Lys Thr Met
245 250 255
Asn Pro Thr Gln Asn Ala Tyr Val Ser Ala Phe Thr Phe Gly Glu Gly
260 265 270
Trp His Asn Tyr His His Ser Phe Pro Trp Asp Tyr Lys Thr Ala Glu
275 280 285
Trp Gly Arg Tyr Ser Leu Asn Ile Thr Thr Ala Phe Ile Asp Met Phe
290 295 300
Ala Lys Ile Gly Trp Ala Tyr Asp Leu Lys Thr Val Ala Pro Asp Met
305 310 315 320
Ile Gln Arg Arg Val Leu Arg Thr Gly Asp Gly Ser His Glu Leu Trp
325 330 335
Gly Trp Gly Asp Lys Asp Leu Thr Pro Glu Asp Ala Arg Asn Val Leu
340 345 350
Phe Val Asp Lys Arg Ser
355
<210> 134
<211> 342
<212> PRT
<213> 粉斑螟蛾(Cadra cautella)
<400> 134
Met Val Pro Tyr Lys Gly Ser Ser Thr Val Leu Thr Glu Asp Gln Pro
1 5 10 15
Gln Phe Glu Lys Leu Val Ala Pro Gln Ala Gly Pro Arg Lys Tyr Glu
20 25 30
Ile Val Tyr Arg Asn Leu Ile Thr Phe Gly Tyr Trp His Leu Ala Ala
35 40 45
Ile Tyr Gly Leu Tyr Leu Cys Phe Thr Thr Ala Lys Trp Ala Thr Ile
50 55 60
Ile Phe Ala Leu Phe Leu Tyr Thr Ile Ala Glu Ile Gly Ile Thr Ala
65 70 75 80
Gly Ala His Arg Leu Trp Thr His Arg Ala Tyr Lys Ala Lys Leu Pro
85 90 95
Leu Gln Ile Leu Leu Met Val Met Asn Ser Ile Ala Phe Gln Asp Thr
100 105 110
Ala Leu Thr Trp Cys Arg Asp His Arg Met His His Arg Tyr Ser Asp
115 120 125
Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Tyr Ser His
130 135 140
Val Gly Trp Leu Leu Val Lys Lys His Pro Glu Val Lys Ala Arg Gly
145 150 155 160
Lys Tyr Ile Pro Leu Asp Asp Leu Leu Asn Asn Pro Val Leu Arg Phe
165 170 175
Gln Lys Lys Tyr Ala Val Pro Val Val Gly Thr Leu Cys Phe Leu Met
180 185 190
Pro Thr Phe Val Pro Val Tyr Phe Trp Gly Glu Thr Ile Ser Thr Ala
195 200 205
Trp His Ile Asn Phe Leu Arg Tyr Val Met Asn Leu Asn Met Thr Phe
210 215 220
Leu Val Asn Ser Ala Ala His Met Phe Gly Asn Lys Pro Tyr Asp Arg
225 230 235 240
Thr Leu Val Pro Val Gln Asn Val Ala Val Ser Phe Ala Thr Phe Gly
245 250 255
Glu Gly Phe His Asn Tyr His His Thr Tyr Pro Trp Asp Tyr Arg Thr
260 265 270
Ala Glu Leu Gly Asn Asn Lys Leu Asn Ile Thr Thr His Phe Ile Asp
275 280 285
Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys Thr Ile Pro Gln
290 295 300
Asp Ala Ile Glu Lys Arg Met Ile Arg Thr Gly Asp Gly Thr Asp Met
305 310 315 320
Trp Gly Phe Gly Glu Lys Arg Phe Arg Lys Glu Val Asp Asn Ser Asn
325 330 335
Glu Thr Tyr Ser Asp Phe
340
<210> 135
<211> 350
<212> PRT
<213> 葡萄花翅小卷蛾(Lobesia botrana)
<400> 135
Met Val Pro Arg Leu Glu Val Asn Thr Gly Val Lys Thr Val Asp Glu
1 5 10 15
Glu Gln Leu Pro Ser Arg Asp Glu Asn Lys Pro Arg Ile Ser Lys Leu
20 25 30
Val Lys Ile Asn Ile Val Ser Phe Gly Tyr Leu His Ile Ala Ala Leu
35 40 45
Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Ala Thr Ile Gly
50 55 60
Leu Ala Phe Phe Leu Leu Val Val Gly Glu Ile Gly Ile Thr Ala Gly
65 70 75 80
Ala His Arg Leu Trp Ser His Arg Thr Tyr Lys Ala Asn Arg Ala Leu
85 90 95
Glu Ile Leu Leu Ile Ile Met Asn Ser Val Ala Phe Gln Asn Ser Ala
100 105 110
Ile His Trp Ile Arg Asp His Arg Leu His His Lys Tyr Ser Asp Thr
115 120 125
Asn Ala Asp Pro His Asn Ala Ser Arg Gly Phe Phe Tyr Ser His Ile
130 135 140
Gly Trp Leu Leu Val Arg Lys His Ser Asp Val Ile Asn Lys Gly Lys
145 150 155 160
Met Ile Asp Met Ser Asp Ile Tyr Asn Asn Pro Val Leu Thr Phe Gln
165 170 175
Lys Lys Tyr Ala Ile Pro Phe Ile Gly Thr Ile Cys Phe Gly Leu Pro
180 185 190
Thr Leu Ile Pro Met Tyr Cys Trp Gly Glu Ser Leu Asn Asn Ala Trp
195 200 205
His Ile Asn Ile Met Arg Tyr Val Leu Cys Leu Asn Ile Thr Phe Leu
210 215 220
Val Asn Ser Ala Ala His Phe Phe Gly Gln Lys Pro Tyr Asp Lys Asn
225 230 235 240
Ile Leu Pro Gly Gln Asn Ile Leu Val Ser Ile Leu Ala Val Gly Glu
245 250 255
Gly Phe His Asn Tyr His His Val Phe Pro Trp Asp Tyr Arg Thr Ala
260 265 270
Glu Leu Gly Asn Asn Met Leu Asn Leu Thr Thr Lys Phe Ile Asp Phe
275 280 285
Phe Ala Trp Leu Gly Trp Ala Tyr Glu Leu Lys Thr Val Ser Thr Asn
290 295 300
Ala Ile Asp Leu Arg Ala Lys Arg Thr Gly Asp Gly Thr Asn Leu Trp
305 310 315 320
Gly Trp Gly Asp Lys His Met Thr Gln Glu Glu Ile Glu Ala Ser Asp
325 330 335
Ile Leu Phe Val Asn Lys Glu Asn Glu Lys Thr His Arg His
340 345 350
<210> 136
<211> 367
<212> PRT
<213> 亚洲玉米螟(Ostrinia furnacalis)
<400> 136
Met Ala Asp Ile Asp Ala Thr Asn His Tyr Asp Leu Gln Asp Lys Ser
1 5 10 15
Glu Asp Asp Lys Pro Glu Asp Thr Glu Gly Glu Leu Thr Ile Val Gly
20 25 30
Thr Asp Tyr Ser Tyr Thr His Arg Ile Ile Trp Pro Ile Val Met Val
35 40 45
Tyr Val Val Met His Ile Gly Ala Ile Thr Gly Leu Leu Leu Val Leu
50 55 60
Gly Gly Asn Val Lys Ile Ala Ser Ile Ile Trp Ala Val Phe Tyr Ser
65 70 75 80
Leu Val Ala Thr Glu Gly Ala His Met Gly Ala His Arg Cys Phe Ser
85 90 95
His Arg Ala Phe Lys Ala Lys Pro Leu Leu Lys Val Ile Leu Leu Ile
100 105 110
Met Gln Thr Ile Ser Gly Gln His Ser Thr Tyr Ile Trp Cys Arg Asp
115 120 125
His Arg Gln His His Arg Tyr Ser Asp Thr Asp Gly Asp Pro His Asn
130 135 140
Ser Lys Arg Gly Met Phe Tyr Cys His Val Gly Trp Leu Met Thr Ser
145 150 155 160
Arg His Pro Leu Cys Lys Lys Leu Arg Lys Thr Ile Asp Met Ser Asp
165 170 175
Leu Gln Gln Asp Pro Leu Val Met Phe Gln Tyr Arg Tyr Phe Arg Ser
180 185 190
Leu Phe Phe Thr Phe Gly Phe Leu Leu Pro Val Trp Val Pro Met His
195 200 205
Phe Phe Gln Glu Ser Phe Thr Asn Ala Val Phe Val Cys Phe Phe Leu
210 215 220
Arg Tyr Val Tyr Ala Leu His Val Thr Tyr Phe Ile Asn Ser Leu Ala
225 230 235 240
His Lys Tyr Gly Thr Arg Pro Tyr Asp Lys Thr Ile Gln Pro Val Glu
245 250 255
Thr Trp Phe Val Ser Leu Leu Ser Leu Gly Glu Gly Trp His Asn Tyr
260 265 270
His His Ala Tyr Pro Trp Asp Tyr Lys Ala Ala Glu Ile Gly Met Pro
275 280 285
Leu Asn Ser Thr Ala Ser Leu Ile Arg Leu Cys Ala Ser Leu Gly Leu
290 295 300
Ala Tyr Asp Leu Lys Ser Val Asp Pro Glu Thr Leu Asn Lys Arg Ile
305 310 315 320
Met Asn Lys Gly Asp Gly Thr Tyr Glu Val Lys Tyr Leu Gln Glu His
325 330 335
Val Thr Ala Ile Gly Pro Leu His Pro Leu Asn Pro Ser Tyr Arg Gly
340 345 350
Thr Cys Pro Asp Pro Glu Ile Lys Leu Lys Val Arg Met Lys Pro
355 360 365
<210> 137
<211> 344
<212> PRT
<213> 印度谷螟(Plodia interpunctella)
<400> 137
Met Val Pro Asn Lys Gly Ser Ser Val Val Leu Thr Glu Asn Ala Glu
1 5 10 15
Pro Gln Phe Lys Lys Leu Val Ala Pro Gln Ala Gly Pro Arg Lys Tyr
20 25 30
Gln Ile Val Tyr Arg Asn Leu Leu Thr Phe Gly Tyr Trp His Leu Ser
35 40 45
Ala Ile Tyr Gly Leu Tyr Leu Cys Phe Thr Ser Ala Lys Trp Ala Thr
50 55 60
Ile Ile Phe Ala Phe Phe Leu Tyr Met Phe Ala Glu Ile Gly Ile Thr
65 70 75 80
Ala Gly Ala His Arg Leu Trp Thr His Arg Ala Tyr Lys Ala Lys Leu
85 90 95
Pro Leu Gln Ile Leu Leu Ile Ile Met Asn Ser Ile Ala Phe Gln Asp
100 105 110
Thr Ala Leu Thr Trp Cys Arg Asp His Arg Met His His Arg Tyr Ser
115 120 125
Asp Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe Tyr Ser
130 135 140
His Val Gly Trp Leu Leu Val Lys Lys His Pro Glu Val Lys Thr Arg
145 150 155 160
Gly Lys Tyr Ile Pro Leu Asp Asp Leu Arg Asn Asn Pro Val Leu Arg
165 170 175
Phe Gln Lys Lys Tyr Ala Ile Pro Phe Val Gly Thr Leu Cys Phe Leu
180 185 190
Met Pro Thr Phe Val Pro Val Tyr Phe Trp Gly Glu Ser Ile Ser Thr
195 200 205
Ala Trp His Ile Asn Leu Leu Arg Tyr Val Thr Asn Leu Asn Val Thr
210 215 220
Phe Leu Val Asn Ser Ala Ala His Leu Ile Gly Asn Lys Pro Tyr Asp
225 230 235 240
Arg Thr Leu Ala Ser Val Gln Asn Ile Pro Val Ser Ile Ala Thr Phe
245 250 255
Gly Glu Gly Phe His Asn Tyr His His Thr Tyr Pro Trp Asp Tyr Arg
260 265 270
Thr Ala Glu Leu Gly Asn Asn Arg Leu Asn Val Thr Thr Lys Phe Ile
275 280 285
Asp Phe Phe Ala Trp Leu Gly Trp Ala Tyr Asp Leu Lys Thr Val Pro
290 295 300
Gln Glu Ala Val Glu Lys Arg Met Ala Arg Thr Gly Asp Gly Thr Asp
305 310 315 320
Leu Trp Gly Tyr Gly Glu Lys Lys Pro Val Lys Asp Val Lys Asp Asn
325 330 335
Ser Asp Glu Thr Tyr Tyr Asp Phe
340
<210> 138
<211> 320
<212> PRT
<213> 赤拟谷盗(Tribolium castaneum)
<400> 138
Met Ser Thr Leu Glu Thr Gln Val Gln Ile Val Trp Arg Asn Val Ile
1 5 10 15
Leu Phe Ile Tyr Leu His Val Ala Ala Ile Tyr Gly Leu Tyr Phe Thr
20 25 30
Phe Thr Ala Ala Lys Trp Pro Thr Ile Leu Phe Thr Tyr Phe Leu Thr
35 40 45
Ile Ile Ser Thr Gln Gly Thr Gly Ala Gly Val His Arg Leu Trp Ser
50 55 60
His Arg Ser Tyr Lys Ala Lys Leu Pro Leu Arg Ile Leu Leu Cys Ile
65 70 75 80
Tyr Gln Thr His Cys Leu Gln Asn His Ile Tyr Glu Trp Val Arg Asp
85 90 95
His Arg Ala His His Lys Phe Ser Asp Thr Asp Ala Asp Pro His Asn
100 105 110
Ser Thr Arg Gly Phe Phe Phe Ser His Met Gly Trp Leu Leu Val Arg
115 120 125
Lys His Pro Gln Val Lys Ile Lys Gly Lys Leu Ile Asp Leu Ser Asp
130 135 140
Leu Glu Glu Asp Gln Val Val Met Phe Gln Lys Lys Tyr Tyr Leu Ile
145 150 155 160
Leu Ala Pro Phe Phe Ala Phe Leu Leu Pro Ala Trp Val Pro Trp Tyr
165 170 175
Phe Trp Gly Glu Asp Leu His Val Ser Trp Cys Val Ala Ser Met Leu
180 185 190
Arg Tyr Ala Leu Ser Leu His Gly Thr Trp Leu Val Asn Ser Ala Ala
195 200 205
His Met Trp Gly Thr Arg Pro Tyr Asp Arg Asn Ile Lys Ala Thr Glu
210 215 220
Thr Lys Val Val Ser Tyr Ile Thr Asn Gly Glu Arg Phe His Asn Tyr
225 230 235 240
His His Thr Phe Pro Trp Asp Tyr Lys Ala Ala Glu Leu Gly Ser Tyr
245 250 255
Trp Gly Asn Trp Ser Thr Ala Phe Ile Asp Phe Met Ala Lys Ile Gly
260 265 270
Trp Ala Tyr Asp Leu Lys Ile Ile Pro Pro Glu Leu Val Glu Lys Arg
275 280 285
Ala Lys Arg Thr Gly Glu Cys Thr His Lys Val Trp Gly Trp Gly Asp
290 295 300
Lys Asp Ile Asp Lys Glu Glu Ile Glu Ile Val Glu Arg Asn Arg Gly
305 310 315 320
<210> 139
<211> 352
<212> PRT
<213> 苹果巢蛾(Yponomeuta padella)
<400> 139
Met Pro Pro Asn Ser Ala Asn Ser Glu Pro Leu Leu His Asp Glu Val
1 5 10 15
Lys Glu Glu Gln Leu Glu Lys Leu Val Ala Pro Gln Ala Gly Pro Arg
20 25 30
Lys Phe Gln Ile Val Tyr Pro Asn Leu Ile Thr Phe Gly Tyr Gly His
35 40 45
Ile Ser Leu Leu Tyr Gly Ala Tyr Leu Met Phe Thr Phe Ala Lys Trp
50 55 60
Gln Thr Ile Val Phe Ala His Val Met Ile Ile Leu Ser Gly Phe Gly
65 70 75 80
Ile Thr Ala Gly Ala His Arg Leu Trp Ala His Arg Thr Tyr Lys Ala
85 90 95
Lys Met Pro Leu Gln Ile Leu Leu Met Leu Leu Asn Thr Leu Ala Phe
100 105 110
Gln Asn Thr Ala Met Asp Trp Val Arg Asp His Arg Leu His His Lys
115 120 125
Tyr Ser Asp Thr Asp Ala Asp Pro His Asn Ala Thr Arg Gly Phe Phe
130 135 140
Tyr Ser His Val Gly Trp Leu Leu Val Arg Lys His Lys Glu Val Lys
145 150 155 160
Arg Arg Gly Lys Leu Ile Asp Leu Ser Asp Ile Glu Asn Asn Pro Val
165 170 175
Leu Ser Phe Gln Lys Lys Tyr Ala Ile Pro Leu Val Ser Leu Val Thr
180 185 190
Phe Val Met Pro Thr Val Ile Pro Met Tyr Phe Trp Gly Glu Thr Leu
195 200 205
Asn Asn Ala Trp His Val Ala Thr Leu Tyr Arg Tyr Val Phe Val Leu
210 215 220
Asn Val Thr Phe Leu Val Asn Ser Ala Ala His Tyr Trp Gly Cys Lys
225 230 235 240
Pro Tyr Glu Lys Ser Ile Leu Pro Ser Gln Asn His Phe Val Ser Leu
245 250 255
Phe Ala Leu Gly Glu Gly Phe His Asn Tyr His His Val Phe Pro Trp
260 265 270
Asp Tyr Arg Thr Ala Glu Leu Gly Asn Asn Thr Leu Asn Pro Thr Thr
275 280 285
Lys Phe Ile Asp Phe Phe Ala Trp Ile Gly Trp Ala Tyr Asp Leu Lys
290 295 300
Ala Val Pro Asp Asp Met Ile Asn Asn Arg Lys Ser Arg Thr Gly Asp
305 310 315 320
Gly Ser Ser Leu Trp Gly Trp Gly Asp Lys Asp Gln Pro Lys Glu Glu
325 330 335
Met Asn Ala Ala Ile Ile Lys Tyr Pro Asp Glu Asn Asp Lys Asp Lys
340 345 350
<210> 140
<211> 1041
<212> DNA
<213> 柞蚕(Antheraea pernyi)
<400> 140
atggctccct gcaccgagaa ggaagatgag ctgatcacct gtgagggctc tatcgagaag 60
ctgatcgctc cccaggccaa caagcgaaag caccagatcg tgtacatgaa cctgttcacc 120
ttcggctact ggtacattgc cggcctgtac ggactgtacc tgttcttcac ctctaccaag 180
tggtctacta ttatcctgaa catcttcctg atcattgcct ctggcctggg catcaccgtg 240
ggagcccacc gactgtgggc tcacaagtgc ttcaaggcca agctgcccct gcagatcatc 300
ctgatgattc tgaacaccct ggccttccag aacaccgcca tcacctgggt gcgagatcac 360
cgaatgcacc acaagttcac cgacaccgac gctgaccctc acaacgctac ccgaggcttc 420
ttcttctctc acgtcggctg gctgctggtg aagaagcacc ccgagctgat gaagcgatct 480
aagcacatcg acatgtctga catctacggc aaccccgtgc tgacctttca gaagaagtac 540
gctttccctc tggtcgccac cttcaccttc attctgccca ccgtggtgcc tatctacttc 600
tgggacgagt ctctgaacaa cgcctggcac gccaccgtgt tccgatacgc ctacaacctg 660
aacattacct ttctggtgaa ctctgccgct cacatgtggg gctaccgacc ttacgacaag 720
aacattcagc ccactcagaa cattttcacc actctgtgta ccttcggcga gggcttccac 780
aactaccacc acacattccc ttgggactac cgagccgccg agctgggcaa caactacctg 840
aacctgtcta ccaaggtgat cgacttcttc gcctggatcg gctgggccta cgacctcaag 900
accgtgcctg ccgacatcgt gaactctcga gccaagcgaa ccggcgacgg caccgacctc 960
tggggcggca accacaagca caccctggat gagaaggaaa accgagagct ggacgactac 1020
gtgcacaagt ctgcctttta g 1041
<210> 141
<211> 990
<212> DNA
<213> 红带卷蛾(Argyrotaenia velutinana)
<400> 141
atggctccca acgccgagga tattgaaacc aacatgcccg agacagagga gaactgggag 60
actttggttg ctccgcaggc agctcctcga aaataccaga tcgtctacaa aagtctactg 120
acattcggtt acggccatct ggctgggctc tatggcctgt acctgtgctt tacgtcagcc 180
aagtggcaga ctattggtct tgccattatt ctccatgcta tggccattct cggaatcact 240
gcaggagccc acagactgtg gacccaccga gcttacaagg ctactgtgcc tctgcaaatc 300
attctcatta tcttcaactc cttgtctttc caaaactctg cattcacgtg gatcagggac 360
catcgcctcc accacaagta cagcgacacc gatggtgatc ctcacaatgc gacgagaggt 420
ttcttctact ctcatattgg atggctgctg gtgcgaaagc atcctgaggt catgaagcga 480
ggccgaatga ccgagatgtc tgatatctac tccaacccca tcatcatgtt ccagaagaat 540
tatgctattc ctttcattgg caccgtgtgt tttgttctcc caacgatcat ccccatgtac 600
ttctggggcg aaaccctcaa taacgcatgg cacatcactg tgttgcggta cattttctcc 660
ctgaactgca tttttctggt caattcggca gctcacctgt atggatacaa gccctacgac 720
aagaacattc ttccagcgga aaacaaggcc gcttccatcg cctcgtttgg cgaggccttt 780
cacaactacc accatgtatt cccctgggac taccgagcgt ctgaacttgg aaacatcacc 840
atgaactgga caatctactt tattgacttc tttgcctgga ttggctgggc ctatgacctt 900
aagaccgcct ccgacgagac tatcaaatcg cgtataaagc gtactggaga tggaaccgac 960
tttagcggcc agcagattta tgcccggtga 990
<210> 142
<211> 1056
<212> DNA
<213> 红尾熊蜂(Bombus lapidarius)
<400> 142
atggctccca acatcacctc ttctcccacc ggcgtgctgt tcgagggcga gactctggaa 60
gagacttctc gagtgatcga cgctcccaag accaagttca agacccagat cgtgtggcga 120
aacgtgatca tcttcaccta cctgcacatc tctgccgtgt acggcctgta cctggccttc 180
acctctgcca agtgggctac cctgctgttc gccttcttcc tgcacgtgta ctctgccctg 240
ggcatcaccg ctggcgccca ccgactgtgg gctcaccgat cttacaaggc caagtggccc 300
atgcagctga tcctgatcat cggcaacacc attgccttcc aggactctgc catcgactgg 360
gcccgagatc accgactgca ccacaagtac tctgagacta acgctgaccc tcacaacgcc 420
aagcgaggct tcttcttcgc ccacatcggc tggctgctgt gcaagaagca ccccgacatc 480
cgagccaagg gcaagggcat cgacatgtct gacctgaaga acaaccccat cctgaccttc 540
cagaagaagt actacaccat tctgatgccc ctgctgtgct tcatcgtgcc caccatgatt 600
cccgtgtact gctggaacga aacctggggc aacggctact tcatccccgc catcctgcga 660
tacgtgtaca ccctgaacat gacctggctg gtgaactctg ccgctcacat gttcggcaac 720
aagccctacg acaagtacat caaccccgtc gagaacaaga tggtggccat taccgctctc 780
ggcgaaggct ggcacaacta ccaccacgtg ttcccttggg actacaagac cgccgagctg 840
ggcaactaca aggtgaacgt gaccactctg ttcatcgacg tgtgctctaa gctgggcctc 900
gcctacgaca tgaagatcgt gccccaggac ctggtgcaga agcgagtcga gcgaaccggc 960
gacggctctc acaacgtgtg gggctggggc gacaaggacc agactcagca ggaccgagat 1020
gtgaccatgg tggtcaacct caagaaggac cactag 1056
<210> 143
<211> 1020
<212> DNA
<213> 家蚕(Bombyx mori)
<400> 143
atggaggcca agcagaacaa tctggcaccc accctggagg aggaggcaca gttcgagaag 60
ctgatcgccc ctcaggcctc cgatcgcaag cacgagatca tctacgccaa cctgatcacc 120
ttcgcctatg gccacatctc tgccctgtac ggcctgtatc tgtgctttag ctccgccaag 180
tgggccacaa tcatcatggc ctacgtgatc ctgatcgcag cagaagtggg agtgaccgca 240
ggagcccaca ggctgtggac acaccgcgcc tataaggcca agcggcccct gcagatcatc 300
ctgatggtca tgaactcctt cgcctttcag aattctgcca tcacatggat cagggaccac 360
cgcatgcacc acaggtactc tgacaccgat gccgacccac acaacgccac acgcggcttc 420
ttttatagcc acatcggatg gctgctggtg cggaagcacc cagaggtgaa gcggagaggc 480
aagaccatcg atatgtctga catctacagc aatcctgtgc tggtgttcca gaagaagtat 540
gccatcccat tcatcggcgc cgtgtgcttt gtgatcccaa cactggtgcc catctacttt 600
tggggcgaga ccctgacaaa cgcctggcac atcaccctgc tgagatatat catcagcctg 660
cacgtgacat tcctggtgaa ttccgccgca cacctgtggg gaaccagggc atacgataag 720
agaatctttc ccgcccagaa cctgatcgtg tccctgctgg cagtgggaga gggcttccac 780
aattaccacc acgtgtttcc ttgggattat aggacagccg agctgggcaa caattacctg 840
aatctgacca caaagtttat cgacttcttt gcctggctgg gctgggccta tgatctgaag 900
tccgtgcctg actctgccgt gcagagcagg gcagcaagaa ccggcgacgg aacaaacagc 960
tggggatggc cagaggagga tgccaatgag gacatcctga agcagacccc ccctctgtga 1020
<210> 144
<211> 1038
<212> DNA
<213> 二化螟(Chilo supprealis)
<400> 144
atggctccca actctatcca gaacgacgaa ggcctgggcg tcgaggtgca gcccgagtct 60
ctgacccctc ctaagctgac ccagatccga cacaagatcc tgtacgtgaa cctgacctac 120
ttcctgtact ggcacctggc tgctccctac ggcatctacc tgtgcttcac ctctgtgaag 180
tgggagacta tcatcttcgg cttcgtggtg ttcctggccg ccgagctggg cgtgaccgct 240
ggcgcccaca gactgtggtc ccacaagtct tacaaggcca agcgacccct cgagatcatc 300
ctgatgctgt tcaactctat ggccttccag aactctatca tccactgggc ccgagatcac 360
cgactgcacc acaagtactg cgacaccgac gctgacccct acaacgcctc tcgaggcttc 420
ttctactctc acgtcggctg gctgctgacc aagaagaaca aggaagtcct gaagcgaggc 480
aagaccatcg acgcctctga cctgttcaac aaccccgtgc tgcagttcca gaagaagtac 540
gctatccccg ttttcgccct gtgctgcttc attctgccca ccgctattcc catgtacgtg 600
tggggcgaga ctctgaacaa ctcttggcac gccaacctgc tgcgatacac catcaacctg 660
aacgtgacct tcctggtgaa ctctgccgct cacatctggg gctaccgacc ttacgacaag 720
tctatctacc ccgctcagaa cgtgtacgtg tctctggtga ccctcggcga gggcttccac 780
aactaccacc acgtgttccc ttgggactac aagaccgctg agctgggaaa caacaagctg 840
aacgtcacta cctggttcat caactttttc accaagctcg gctgggccta cgacctcaag 900
accgtgtcta acgagatcgt gcgagcccga gccatgcgaa ccggcgacgg caaggacctg 960
tggggctgga acgacaagga catcaccgac atggacaagg aacacactga catcctgtac 1020
tctaagaccg aggactag 1038
<210> 145
<211> 1125
<212> DNA
<213> 嗜凤梨果蝇(Drosophila ananassae)
<400> 145
atgcctccga actctaagga atctaccgac aagtgcaccg gcctggcctc tgaggtgccc 60
ggcaccgtgg acgacggatc ttctaagcag accggcgtgc tgttcgaggc cgacgtcgag 120
actaacgacg gcgacctggc cgtgtctacc gtcgagttca agcgagccga gaagcgaaag 180
ctggaactgg tgtggcgaaa catcatcctg ttcgcctacg tgcacctggc cgctctgtac 240
ggcggctacc tgatgttcac ccaggccaag ctggccacca ccatcttcgc cgctggcctg 300
tacatctgcg gcatgctggg catcaccggc ggagcccacc gactgtgggc tcaccgatct 360
tacaaggcta agtggcccct gcgactgatc ctgatcgtgt tcaacaccat tgccttccag 420
gacgccgcct accactgggc ccgagatcac cgagtgcacc acaagttctc tgagactgac 480
gctgaccctc acaacgctac ccgaggcttc ttcttctctc acgtcggctg gctgctgacc 540
aagaagcacc ccgacgtcaa ggccaagggc aagatcctgg acctgtctga cctgcatgct 600
gaccccattc tgatgttcca aaagaagcac tacttcgttc tgatgcccct ggcctgcttc 660
attctgccca ccatcattcc cgtgctgtgc tggaacgagt ctctgacctg tggctggctg 720
gtcgccacca tgttccgatg gtgcttccag ctgaacatga cctggctggt gaactctgcc 780
gctcacaagt tcggcggacg accctacgac aagaacatga acccctctga gaacgcctac 840
gtcgctacca tgaccttcgg cgaaggctgg cacaactacc accacgtgtt cccttgggac 900
tacaagacct ctgagtgggg caaccgactc aacatgaccg ctcgattcat cgacctgttc 960
gctaagatcg gctgggccta cgacctgaag tctgtggctc ccgacaccgt gaagcgacga 1020
gtctggcgaa ccggcgacgg ctctcacgag ctgtggggct ggggcgacaa ggacctgact 1080
cctgaggacg ccaaggacgt gctgtttgtg gacaagatga actag 1125
<210> 146
<211> 1035
<212> DNA
<213> 小蔗杆草螟(Diatraea saccharalis)
<400> 146
atggctccca acctgatcaa gaacgagggc gccttcgacg tggacatcaa gcccgacgag 60
ctgcagcctc ctaagctgtc taagatcaag cacaagatcc tgtacgtgaa cctgatctac 120
ttcctgtact ggcacctggc tgctccctac ggcctgtacc tgtgctgcac ctctgccaag 180
tgggccacca tcatcttcgc cttcgtgatg ttcctggccg ccgagctggg catcaccgct 240
ggcgcccacc gactgtggtc ccacaagtct tacaaggcca agctgcccct cgagatcatc 300
ctgatgctgt tcaactctat cgccttccag aactctatca tccactgggc ccgagatcac 360
cgactgcacc acaagtactc tgacaccgac gctgaccctc acaacgcctc tcgaggcttc 420
ttctactctc acgtcggctg gctgatcacc aagaagaaca aggaagtcct gaagcgaggc 480
aagaacatcg acgtgtctga cctgtacaac aaccccgtgc tgcagttcca gcgaaagtac 540
gctgtgcccg tgttcgcctc tttctgcttc attctgccca ctctgatccc catgtacctc 600
tggggcgagt ctttcaagaa ctcctggtac gtcaacctcc tgcgatacgt gatcaacctg 660
aacgtgacct tcctggtgaa ctctgccgct cacaagtggg gctacaagcc ctacgagaag 720
aacatcaacc ccgctcagaa cgtgtacgtg tctttcgcta ccctcggcga gggcttccac 780
aactaccacc acatctttcc atgggactac aagaccgctg agctgggaaa caacaagctg 840
aacgtcacta cctggttcat caactttttc gccaagatcg gctgggccta cgacctcaag 900
accgtgtcta acgagatggt gcgagcccga gccatgcgaa ccggcgacgg caacgacctg 960
tggggctggg acgacgagga cattaccgac aaggacaagg aacacaccga catcctgaac 1020
ggcaagaccg actag 1035
<210> 147
<211> 1077
<212> DNA
<213> Drosophila yakuba
<400> 147
atggctccct acgagccctc ttcgaactct tctaagcaga ccggcgtgct gttcgagggc 60
gacgccgaga ctgccgacgg cgacctgacc tctgaccgat tccagctgaa gcgagccgag 120
aaccgacgac tggacctggt gtggcgaaac atcatcctgt tcgccctggt gcacctgtct 180
gccctgtacg gcctgtactc tatcttcacc aaggccaagc tggccaccac tctgttcgct 240
gccggactgt acatcatcgg catgctgggc gtgaccgctg gcgcccaccg actgtgggct 300
caccgaacct acaaggctaa gtggcccctg cgactgatcc tggtgatctt caacaccgtg 360
gccttccagg acgccgccta ccactgggcc cgagatcacc gagtgcacca caagtactct 420
gagactgacg ctgaccctca caacgctacc cgaggcttct tcttctctca cgtcggctgg 480
ctgctgtgca agaagcaccc cgacatcaag gaaaagggca agggcctcga cctgtccgac 540
ctgcgagctg accccatcct gatgttccag cgaaagcact actacattct gatgcccctg 600
gcctgcttcg tgctgcccac cgtgattccc atggtgtact ggaacgagac tctggcctct 660
tcctggttcg tggcctctat gttccgatgg tgcttccagc tcaacatgac ctggctggtg 720
aactctgccg ctcaccagtt cggcaaccga ccttacgaca agactatgaa ccccactcag 780
aacgcctacg tgtctgcctt caccttcggc gaaggctggc acaactacca ccactcgttt 840
ccctgggact acaagaccgc cgagtggggc cgatactctc tgaacatcac caccgccttc 900
atcgacatgt tcgccaagat cggctgggcc tacgacctca agaccgtggc tcccgacatg 960
atccagcgac gagtgctgcg aaccggcgac ggctctcacg agctgtgggg ctggggcgac 1020
aaggacctga ctcctgagga cgcccgaaac gtcctgttcg tggacaagcg atcttag 1077
<210> 148
<211> 1029
<212> DNA
<213> 粉斑螟蛾(Cadra cautella)
<400> 148
atggtgccct acaagggatc ttctaccgtg ctgaccgagg accagcctca gttcgagaag 60
ctggtggctc cccaggctgg accccgaaag tacgagatcg tgtaccgaaa cctgatcacc 120
ttcggctact ggcacctggc cgccatctac ggcctgtacc tgtgcttcac caccgccaag 180
tgggccacta ttatcttcgc cctgttcctg tacaccattg ccgagatcgg catcaccgct 240
ggcgcccacc gactgtggac ccaccgagcc tacaaggcca agctgcccct gcagatcctg 300
ctgatggtga tgaactctat cgccttccag gacaccgctc tgacctggtg tcgagatcac 360
cgaatgcacc accgatactc tgacaccgac gctgaccctc acaacgctac ccgaggcttc 420
ttctactctc acgtcggctg gctgctggtg aagaagcacc ccgaggtcaa ggcccgaggc 480
aagtacattc ccctggacga cctgctgaac aaccccgtgc tgcgattcca aaagaagtac 540
gctgtccccg tcgtgggcac cctgtgcttt ctgatgccca ccttcgtgcc cgtgtacttc 600
tggggcgaga ctatctctac cgcctggcac atcaactttc tgcgatacgt gatgaacctg 660
aacatgacct ttctggtgaa ctctgccgct cacatgttcg gcaacaagcc ctacgaccga 720
actctggtgc ccgtgcagaa cgtggccgtg tctttcgcca ccttcggaga gggcttccac 780
aactaccacc acacttaccc ctgggactac cgaaccgccg agctgggcaa caacaagctg 840
aacatcacca ctcacttcat cgactttttc gcctggatcg gctgggccta cgacctcaag 900
accattcctc aggacgccat cgagaagcga atgatccgaa ccggcgacgg caccgacatg 960
tggggcttcg gtgagaagcg atttcgaaag gaagtggaca actctaacga gacttactct 1020
gacttttag 1029
<210> 149
<211> 1053
<212> DNA
<213> 葡萄花翅小卷蛾(Lobesia botrana)
<400> 149
atggtgcccc gcctagaagt aaatactggg gtgaaaacag tggatgaaga gcaattgccg 60
tcaagggatg agaacaaacc gagaataagc aaactagtaa aaataaacat agtcagcttt 120
ggatatctac atatagctgc actttatgga ttatatttat gcttcacatc ggctaaatgg 180
gctacaattg ggctcgcttt ctttttgctg gtcgtcggtg aaatcggcat cacggcaggc 240
gcccacaggt tatggtccca cagaacctac aaagccaaca gggcgttaga aatattactc 300
atcattatga actccgtggc cttccaaaac tcggccatcc actggattcg ggaccacaga 360
ttacaccata aatacagcga cactaatgcc gacccccaca atgcatccag aggatttttc 420
tattcacata taggctggtt gctagtcagg aaacactctg acgtcataaa caaaggaaag 480
atgattgaca tgtctgatat atacaacaat ccagttttaa cattccaaaa gaaatatgcc 540
attcccttca tcggcaccat atgcttcggt ctacctaccc tgataccgat gtactgctgg 600
ggagagtctc tgaacaacgc ttggcacatc aacataatgc gatatgtcct gtgcctcaac 660
attactttcc tagtgaacag tgccgcgcat ttcttcggtc agaaaccgta tgacaagaac 720
attttaccgg gacagaatat acttgtttca atactcgctg ttggcgaagg atttcataat 780
taccaccacg tctttccgtg ggactatcgc acggcagaac taggcaacaa catgttgaac 840
ttaacaacga agtttataga cttcttcgct tggcttggtt gggcgtacga gttaaaaact 900
gtttcaacta atgcgattga tttaagagct aagaggactg gcgacggaac caacttgtgg 960
ggttggggcg acaagcatat gacgcaagaa gaaattgagg ctagtgacat tttgtttgtt 1020
aacaaagaaa acgagaaaac tcataggcat taa 1053
<210> 150
<211> 1104
<212> DNA
<213> 亚洲玉米螟(Ostrinia furnacalis)
<400> 150
atggccgaca tcgacgccac caaccactac gacctgcagg acaagtctga ggacgacaag 60
cccgaggaca ccgagggcga gctgaccatc gtgggcaccg actactctta cacccaccga 120
atcatctggc ccatcgtgat ggtgtacgtg gtgatgcaca tcggcgccat caccggcctg 180
ctgctggtgc tcggcggcaa cgtgaagatc gcctctatca tctgggccgt gttctactct 240
ctggtggcca ctgagggcgc ccacatggga gcccaccgat gcttctctca ccgagccttc 300
aaggctaagc ccctgctgaa ggtgatcctg ctgatcatgc agaccatctc tggccagcac 360
tctacctaca tctggtgccg agatcaccga cagcaccacc gatactccga caccgacggt 420
gaccctcaca actctaagcg aggcatgttc tactgccacg tcggctggct gatgacctct 480
cgacaccctc tgtgcaagaa gctgcgaaag accatcgaca tgtctgacct gcagcaggac 540
cctctggtga tgttccagta ccgatacttt cgatctctgt tcttcacctt cggctttctg 600
ctgcccgtgt gggtgcctat gcacttcttc caagagtctt tcaccaacgc cgtgttcgtg 660
tgcttcttcc tgcgatacgt gtacgccctg cacgtgacct acttcatcaa ctccctggct 720
cacaagtacg gcacccgacc ttacgacaag accattcagc ccgtggaaac ctggttcgtg 780
tctctgctgt ctctcggcga aggctggcac aactaccacc acgcttaccc ctgggactac 840
aaggccgccg agatcggcat gcccctgaac tctaccgcct ctctgatccg actgtgcgcc 900
tctctcggcc tggcttacga cctgaagtct gtggaccccg agactctgaa caagcgaatc 960
atgaacaagg gcgacggcac ctacgaggtg aagtacctgc aagagcacgt caccgccatc 1020
ggacccctgc atcctctgaa cccctcttac cgaggcacct gtcctgatcc tgagatcaag 1080
ctgaaggtcc gaatgaagcc ctag 1104
<210> 151
<211> 1035
<212> DNA
<213> 印度谷螟(Plodia interpunctella)
<400> 151
atggtgccca acaagggatc ttctgtggtg ctgaccgaga acgctgagcc ccagttcaag 60
aagctggtcg ctccccaggc tggaccccga aagtaccaga tcgtgtaccg aaacctgctg 120
accttcggct actggcacct gtctgccatc tacggcctgt acctgtgctt cacctctgcc 180
aagtgggcta ctattatctt cgccttcttc ctgtacatgt tcgccgagat cggcatcacc 240
gctggcgccc accgactgtg gacccaccga gcctacaagg ccaagctgcc cctgcagatc 300
ctgctgatca tcatgaactc tatcgccttc caggacaccg ctctgacctg gtgccgagat 360
caccgaatgc accaccgata ctctgacacc gacgctgacc ctcacaacgc tacccgaggc 420
ttcttctact ctcacgtcgg ctggctgctg gtgaagaagc accccgaggt caagacccga 480
ggcaagtaca ttcccctgga cgacctgcga aacaaccccg tgctgcgatt ccagaagaag 540
tacgctatcc ccttcgtggg caccctgtgc tttctgatgc ccaccttcgt gcccgtgtac 600
ttctggggcg agtctatctc taccgcctgg cacatcaacc tgctgcgata cgtgaccaac 660
ctgaacgtga ccttcctggt gaactctgcc gctcacctga tcggcaacaa gccctacgac 720
cgaactctgg cctctgtgca gaacatcccc gtgtctatcg ccaccttcgg cgagggcttc 780
cacaactacc accacactta cccctgggac taccgaaccg ccgagctggg caacaaccga 840
ctgaacgtca ctaccaagtt catcgacttt ttcgcctggc tcggctgggc ctacgacctc 900
aagaccgtgc ctcaagaggc cgtcgagaag cgaatggccc gaaccggcga cggcaccgac 960
ctgtggggct acggcgaaaa gaagcccgtc aaggacgtta aggacaactc tgacgagact 1020
tactacgact tttag 1035
<210> 152
<211> 963
<212> DNA
<213> 赤拟谷盗(Tribolium castaneum)
<400> 152
atgtctaccc tcgagactca ggtgcagatc gtgtggcgaa acgtgatcct gttcatctac 60
ctgcacgtgg ccgccatcta cggcctgtac ttcaccttca ccgccgccaa gtggcccact 120
atcctgttta cctacttcct gaccatcatc tctacccaag gcaccggcgc tggcgtgcac 180
cgactgtggt cccaccgatc ttacaaggcc aagctgcccc tgcgaatcct gctgtgcatc 240
taccagactc actgcctgca gaaccacatc tacgagtggg tgcgagatca tcgagcccac 300
cacaagttct ctgacaccga cgctgaccct cacaactcta cccgaggctt cttcttctct 360
cacatgggct ggctgctggt gcgaaagcac cctcaggtga agattaaggg caagctgatc 420
gacctgtctg acctggaaga ggaccaggtg gtgatgttcc agaagaagta ctacctgatt 480
ctggctccct tcttcgcctt cctgctgcct gcctgggtgc cctggtactt ctggggcgaa 540
gatctgcacg tgtcttggtg cgtggcctct atgctgcgat acgccctgtc tctgcacggc 600
acctggctgg tgaactctgc cgctcacatg tggggcaccc gaccttacga ccgaaacatc 660
aaggccaccg agactaaggt ggtgtcttac atcaccaacg gcgagcgatt ccacaactac 720
caccacacat tcccttggga ctacaaggcc gccgagctgg gctcttactg gggcaactgg 780
tctaccgcct tcatcgactt catggccaag atcggctggg cctacgacct gaagatcatc 840
cctcctgagc tggtcgagaa gcgagccaag cgaaccggcg agtgcaccca caaggtgtgg 900
ggctggggcg acaaggacat cgacaaggaa gagatcgaga ttgtcgagcg aaaccgaggc 960
taa 963
<210> 153
<211> 1059
<212> DNA
<213> 苹果巢蛾(Yponomeuta padella)
<400> 153
atgcctccaa actctgccaa ctctgagccc ctgctgcacg acgaggtgaa ggaagaacag 60
ctcgagaagc tggtggctcc ccaggctgga ccccgaaagt tccagatcgt gtaccccaac 120
ctgatcacct tcggctacgg ccacatctct ctgctgtacg gcgcctacct gatgttcacc 180
ttcgccaagt ggcagaccat cgtgttcgcc cacgtgatga tcattctgtc tggcttcggc 240
atcaccgctg gcgcccaccg actgtgggct caccgaacct acaaggccaa gatgcccctg 300
cagatcctgc tgatgctgct gaacaccctg gccttccaga acaccgccat ggactgggtg 360
cgagatcacc gactgcacca caagtactct gacaccgacg ctgaccctca caacgctacc 420
cgaggcttct tctactctca cgtcggctgg ctgctggtgc gaaagcacaa ggaagtgaag 480
cgacgaggca agctgatcga cctgtctgac atcgagaaca accccgtgct gtctttccag 540
aagaagtacg ctattcccct ggtgtctctg gtgaccttcg tgatgcccac cgtgattcct 600
atgtacttct ggggcgagac tctgaacaac gcctggcacg tggctaccct gtaccgatac 660
gtgttcgtgc tgaacgtgac cttcctggtg aactctgccg ctcactactg gggctgcaag 720
ccctacgaga agtctattct gccctctcag aaccacttcg tgtctctgtt cgccctcggc 780
gagggattcc acaactacca ccacgtgttc ccttgggact accgaaccgc cgagctgggc 840
aacaacactc tgaaccccac taccaagttc atcgactttt tcgcctggat cggctgggcc 900
tacgacctga aggctgtgcc cgacgacatg atcaacaacc gaaagtctcg aaccggcgac 960
ggatcttctc tgtggggctg gggcgacaag gaccagccta aggaagagat gaacgccgcc 1020
atcatcaagt accccgacga gaacgacaag gataagtag 1059
<210> 154
<211> 543
<212> PRT
<213> 脐橙螟蛾(Amyelois transitella)
<400> 154
Met Ala Ala Lys Cys Glu Ile Gly Val Ser Gln Phe Phe Ala Gly Lys
1 5 10 15
His Val Phe Ile Thr Gly Ala Thr Gly Phe Met Gly Lys Val Leu Val
20 25 30
Glu Arg Leu Leu Ser Thr Cys Ala Asp Val Gly Arg Ile Tyr Leu Leu
35 40 45
Met Arg Ser Lys Lys Asp His Ser Pro Glu Gln Arg Leu Gln Glu Leu
50 55 60
Lys Ala Ser Gln Ala Phe Asp Asn Leu Arg Gln Ser Gln Pro Ser Gln
65 70 75 80
Leu Glu Lys Leu Arg Ile Val Ala Gly Asp Ile Met Leu Pro Gly Leu
85 90 95
Gly Ile Ser Gln Glu Gly Leu Glu Asp Leu Gln Glu Val Ser Val Val
100 105 110
Phe His Ser Ala Ala Thr Val Lys Phe Asn Glu Ala Leu Lys Ile Ala
115 120 125
Ile Glu Gln Asn Leu Met Ser Val Ile Arg Leu Leu Glu Ile Cys Asp
130 135 140
Arg Leu Pro His Met Gln Ala Phe Val His Val Ser Thr Ala Tyr Ser
145 150 155 160
Asn Pro Glu Leu Ser Thr Val Glu Glu Arg Val Tyr Pro Pro Pro Val
165 170 175
Pro Leu Asp Tyr Leu Leu Asp Leu Ala Ala Glu Asp Ser Pro Leu Leu
180 185 190
Asp Asn Val Glu Ser Phe Ile Ser Pro Lys Pro Asn Ser Tyr Thr Phe
195 200 205
Thr Lys Ala Met Ala Glu Ala Ala Val Gln Arg His Gly Cys Gln Tyr
210 215 220
Tyr Pro Ile Ala Ile Val Arg Pro Thr Ile Val Ile Ser Ser Leu Lys
225 230 235 240
His Pro Phe Pro Gly Trp Leu Glu Asn Ala Asn Gly Pro Thr Gly Val
245 250 255
Ile Phe Gly Ala Gly Arg Gly Leu Leu Arg Val Phe Arg Cys Arg Gln
260 265 270
Ser Ala Leu Ala Asp Leu Leu Pro Val Asp Ile Gly Ile Asp Thr Leu
275 280 285
Ile Ala Ala Ala Trp Glu Val Ala Ser Asp Arg Pro Pro Ser Pro Arg
290 295 300
Val Tyr Asn Cys Ser Ile Ser Glu Asn Pro Thr Thr Trp Gly Asp Leu
305 310 315 320
Lys Arg Ala Ile Asn Leu His Thr Arg Ser Gln Pro Gln Cys Gly Ala
325 330 335
Val Trp Tyr Pro Gly Leu His Thr Ala Glu Asn Gly Phe Leu Tyr Lys
340 345 350
Ile Leu Glu Val Leu Leu Gln Thr Thr Pro Leu Tyr Ile Gly Glu Ile
355 360 365
Leu Val Arg Ile Leu Gly Tyr Ser His Lys Arg Leu Asn Leu Ile Arg
370 375 380
Val Ser Thr Gln Met Lys Asn Met Gln Asn Ala Met Lys Tyr Phe Ala
385 390 395 400
Leu Arg Glu Trp Arg Phe Gln Ser Asp Asn Val Arg Arg Leu Arg Glu
405 410 415
Arg Met Ser Asp Val Asp Lys Arg Ile Tyr Asn Leu Asp Pro Cys Ser
420 425 430
Ile Val Trp Asp Glu His Tyr Ser Asn Tyr Val Lys Gly Val Arg Leu
435 440 445
Tyr Leu Leu Arg Glu Lys Glu Leu Asp Gln Pro Ala Ala Lys Lys Arg
450 455 460
Leu Lys Lys Leu Tyr Tyr Leu His Tyr Gly Leu Ser Val Phe Met Pro
465 470 475 480
Phe Leu Leu Phe Arg Ala Phe Val Arg Arg Lys His Arg Gln Asn Ile
485 490 495
Leu Glu Val Leu Phe Ala Ile Leu Ser Ile Phe Asn Ala Ile Phe Arg
500 505 510
Arg Ser Thr Gln Asn Ile Leu Tyr Ile Tyr Lys Val Ser Leu Thr Phe
515 520 525
Leu Asn Asp Asn Val Phe Leu Asn Lys Val Phe Asn Glu Ser Ser
530 535 540
<210> 155
<211> 521
<212> PRT
<213> 脐橙螟蛾(Amyelois transitella)
<400> 155
Met Val Ala Arg Arg Glu Ser Val Ser Ala Pro Val Ile Pro Gln Phe
1 5 10 15
Tyr Ala Gly Arg Ser Ile Phe Ile Thr Gly Ala Thr Gly Phe Met Gly
20 25 30
Lys Val Leu Ile Glu Arg Ile Leu Ala Thr Cys Pro Asp Val Asp Arg
35 40 45
Leu Tyr Leu Leu Val Arg His Lys Lys Glu Val Thr Pro Glu Arg Arg
50 55 60
Leu Gln Gln Leu Ile Glu Ser Pro Val Phe Asp Pro Ile Arg Ala Ser
65 70 75 80
Asn Pro Ser Gln Leu Asp Lys Leu Ser Met Leu Ala Gly Asp Ile Thr
85 90 95
Arg Pro Asp Leu Gly Met Thr Gln Glu Ser Leu Met Arg Leu Gln Glu
100 105 110
Val Ser Ile Val Phe His Ser Ala Ala Thr Leu Lys Phe Asp Glu Ala
115 120 125
Met Met Met Ala Val Glu Gln Asn Val Leu Ser Val Ile Arg Leu Leu
130 135 140
Glu Ile Cys Asp Arg Leu Pro Lys Met Gln Ala Phe Val His Val Ser
145 150 155 160
Thr Ala Tyr Ser Asn Ala Glu Leu Ser Glu Val Glu Glu His Val Tyr
165 170 175
Pro Pro Lys Val Pro Leu Glu Lys Leu Leu Ala Ile Ala Glu Ser Val
180 185 190
Pro Asp Glu Leu Met Thr Glu Ile Thr Pro Lys Phe Ile Ala Pro Lys
195 200 205
Pro Asn Thr Tyr Thr Phe Thr Lys Ser Met Ala Glu His Val Val Gln
210 215 220
Gln His Gly Asn Lys Gly Tyr Pro Val Ala Ile Phe Arg Pro Thr Ile
225 230 235 240
Val Ile Ser Ser Val Lys His Pro Phe Pro Gly Trp Ile Glu Asn Leu
245 250 255
Asn Gly Pro Ser Gly Val Val Ala Ala Ala Gly Lys Gly Leu Leu His
260 265 270
Val Phe Cys Cys Arg Gly Asp Ala His Ala Asp Met Leu Pro Val Asp
275 280 285
Val Ala Ile Asp Thr Leu Ile Ala Ala Ala Trp Glu Thr Ala Ile Asp
290 295 300
Lys Pro Asn Glu Ala Arg Val Tyr Asn Cys Thr Thr Arg Glu Asn Pro
305 310 315 320
Thr Lys Trp Ile Asp Phe Glu His Ala Leu Arg Lys Tyr Leu Val Glu
325 330 335
Tyr Pro Leu Asp Lys Ala Phe Trp Tyr Pro Ser Gly Ala Ala Ile Asp
340 345 350
Asn Thr Tyr Ala Gln Lys Ala Met Glu Leu Phe Thr Gln Thr Val Pro
355 360 365
Leu His Ile Val Ala Tyr Thr Val Arg Leu Leu Gly Ile Lys Met Gln
370 375 380
Met Asn Leu Ile Thr Val Ser His Arg Leu Gln Ala Met Asn Lys Val
385 390 395 400
Leu Lys Phe Phe Ala Gln Arg Glu Trp Val Phe His Asn Glu Asn Val
405 410 415
Lys Arg Leu Arg Asn Arg Leu Thr Pro Gln Asp Ala Ala Ile Tyr Asn
420 425 430
Leu Asp Pro Lys Ser Phe Asn Trp Asp Glu His Tyr Cys Asn Phe Ile
435 440 445
Lys Gly Thr Arg Lys Tyr Leu Leu Lys Glu Lys Glu Gln Asp Leu Glu
450 455 460
Glu Ala Arg Lys His Val Arg Arg Met Phe Tyr Val His Tyr Ser Val
465 470 475 480
Leu Leu Phe Val Val Val Leu Leu Leu Arg Phe Ala Leu Asn Asn Asn
485 490 495
Phe Val Arg Gln Phe Ile Tyr Gly Val Val Arg Thr Leu Thr Ala Ala
500 505 510
Phe Gly Ala Val Phe Ser Lys Ile Val
515 520
<210> 156
<211> 523
<212> PRT
<213> 脐橙螟蛾(Amyelois transitella)
<400> 156
Met Ala Ser Cys Val Gly Gly Ala Phe His Ala Gln Glu Tyr Leu Pro
1 5 10 15
Val Ala Asp Phe Tyr Ala Asp Lys Ser Ile Phe Val Thr Gly Gly Thr
20 25 30
Gly Phe Met Gly Lys Val Leu Val Glu Lys Leu Leu Arg Ser Cys Pro
35 40 45
Lys Ile Lys Lys Ile Tyr Leu Leu Met Arg Pro Lys Arg Gly Gln Asp
50 55 60
Val Ser Ser Arg Leu Thr Glu Leu Thr Gln Ser Pro Leu Phe Glu Thr
65 70 75 80
Leu Arg Lys Glu Arg Pro Ser Glu Leu Ser Lys Ile Val Pro Ile Val
85 90 95
Gly Asp Ile Thr Glu Pro Glu Leu Gly Ile Ser Pro Ala Asp Gln Ala
100 105 110
Met Leu Cys Gln Lys Val Ser Val Val Phe His Ser Ala Ala Thr Val
115 120 125
Lys Phe Asp Glu Lys Leu Lys Leu Ser Val Thr Ile Asn Met Leu Gly
130 135 140
Thr Gln Gln Leu Val Gln Leu Cys His Arg Met Leu Gly Leu Glu Ala
145 150 155 160
Leu Val His Val Ser Thr Ala Tyr Cys Asn Cys Glu Arg Glu Arg Val
165 170 175
Glu Glu Thr Val Tyr Ala Pro Pro Ala His Pro Glu His Val Val Thr
180 185 190
Leu Val Gln Thr Leu Pro Asp Asp Leu Val Asp Arg Ile Thr Pro Asp
195 200 205
Leu Val Gly Asp Arg Pro Asn Thr Tyr Thr Phe Thr Lys Ala Leu Ala
210 215 220
Glu Asp Met Leu Ile Lys Glu Cys Gly Asn Leu Pro Val Ala Ile Val
225 230 235 240
Arg Pro Ser Ile Val Leu Ser Ser Leu Arg Glu Pro Val Lys Gly Trp
245 250 255
Val Asp Asn Trp Asn Gly Pro Asn Gly Ile Ile Ala Ala Val Gly Lys
260 265 270
Gly Val Phe Arg Ser Met Leu Gly Thr Gly Ala Arg Val Ala Asp Leu
275 280 285
Val Pro Val Asp Thr Val Ile Asn Leu Met Ile Val Cys Ala Trp Arg
290 295 300
Thr His Leu Arg Arg Gly Glu Gly Val Val Val Tyr Asn Cys Cys Thr
305 310 315 320
Gly Gln Gln Asn Pro Ile Thr Trp Gln Arg Phe Val Lys Thr Ser Phe
325 330 335
Lys Tyr Met Arg Lys His Pro Phe Ser Glu Val Val Trp Phe Pro Gly
340 345 350
Gly Asp Ile Thr Asn Asn Arg Leu Lys His Asn Ile Leu Ser Leu Leu
355 360 365
Gln His Lys Ala Pro Ala Ile Val Met Asp Leu Val Ser Arg Ala Ser
370 375 380
Gly Asn Lys Pro Val Met Val Arg Val Gln Asn Lys Leu Glu Lys Ala
385 390 395 400
Ala Ala Cys Leu Glu Tyr Phe Thr Thr Arg Gln Trp Ala Phe Ser Asp
405 410 415
Asp Asn Val Gln Ala Leu Cys Ser Ala Leu Ser Val Glu Asp Arg Arg
420 425 430
Ile Phe Asp Phe Asn Val Arg Asn Ile Asp Trp Asp Ala Tyr Ile Glu
435 440 445
Ser Tyr Val Leu Gly Ile Arg Arg Phe Leu Phe Lys Glu Ser Pro Asp
450 455 460
Thr Leu Pro Lys Ser Arg Ala Leu Leu Arg Arg Leu His Ile Val His
465 470 475 480
Thr Leu Thr Gln Val Thr Thr Val Phe Leu Leu Trp Arg Phe Leu Phe
485 490 495
Ser Gln Ser Ser Thr Leu Arg Ser Ile Trp Arg Arg Ile Leu Glu Phe
500 505 510
Ile Thr Arg Ile Phe Arg Leu Leu Ala Ile Ala
515 520
<210> 157
<211> 461
<212> PRT
<213> 黄豆银纹夜蛾(Chrysodeixis includens)
<400> 157
Met Phe Ala Ser Thr Asp Gly Gly Arg Ser Asp Glu Glu Thr Pro Gln
1 5 10 15
Gln His Glu Ser Ile Ala Asp Phe Tyr Ala Gly Lys Ser Val Phe Ile
20 25 30
Thr Gly Val Thr Gly Phe Leu Gly Lys Ala Tyr Leu Glu Lys Leu Leu
35 40 45
Tyr Ser Cys Lys Asp Ile Asp Lys Val Phe Val Leu Ile Arg Asn Lys
50 55 60
Arg Gly Asp Asp Val Gly Lys Arg Ile Glu Lys Leu Leu Asp Ser Ser
65 70 75 80
Val Phe Ser Arg Leu Arg Ser His Arg Pro Glu Asp Leu Lys Lys Ile
85 90 95
Thr Pro Val Tyr Gly Asp Ile Asp Lys Ser Glu Leu Gly Leu Ser Leu
100 105 110
Ala Asp Gln Glu Arg Leu Ile Lys Glu Val Ser Val Val Phe His Val
115 120 125
Ala Ala Ser Val Asn Leu Asp Ala Asp Leu Lys Thr Ser Leu Val Thr
130 135 140
Asn Tyr Phe Gly Thr Thr His Val Leu Lys Leu Cys His Arg Met Lys
145 150 155 160
Lys Leu Lys Val Phe Val Tyr Val Ser Thr Ala Tyr Cys Asn Thr Thr
165 170 175
Val Lys Val Leu Glu Glu Lys Val Tyr Pro Leu Pro Val Glu Leu Asp
180 185 190
Glu Val Val Lys Ile Met Glu Gln Pro His Leu Asp Ser Asn Arg Val
195 200 205
Lys Lys Leu Leu Asn Gly Arg Pro Asn Thr Tyr Ala Leu Ser Lys Ala
210 215 220
Leu Ala Glu His Tyr Ile Ala Glu Asn His Gly Asp Ile Pro Val Ile
225 230 235 240
Phe Ile Arg Pro Ser Ile Val Thr Ser Ser Ala Arg Glu Pro Ala Pro
245 250 255
Gly Trp Ala Asp Ser Phe Gln Gly Ala Thr Ala Leu Ile Thr Ala Cys
260 265 270
Trp Lys Arg Val Asn Arg Val Ile Tyr Gly Asn Gly Asp Asn Ile Ile
275 280 285
Asp Leu Ile Pro Val Asp Tyr Val Ser Asn Leu Ser Ile Val Ala Ala
290 295 300
Ala Lys Val Lys Ser Thr Thr Glu Ile Ala Val Tyr Asn Ser Cys Thr
305 310 315 320
Ser Ser Ile Lys Pro Met Thr Leu Lys Gly Ile Ala Glu Gln Ile Glu
325 330 335
Arg Val Asn Thr Glu Asn Lys Gln Gly Ser Ile Phe Leu Pro Thr Ile
340 345 350
Phe Phe Thr Ser Ser Trp Leu Phe Val Ile Met Leu Thr Phe Val Leu
355 360 365
Gln Leu Leu Pro Ser Phe Ile Ala Asp Leu Phe Leu Tyr Ile Thr Gly
370 375 380
Asn Lys Pro Met Tyr Met Lys Ile Gln Ser Lys Val Leu His Gly Arg
385 390 395 400
His Ile Leu Asn Tyr Tyr Thr Asn Asp Ser Trp Val Phe Lys Ser Asp
405 410 415
Ser Ser Gln Arg Leu Gln Asp Ser Leu Ser Pro Ala Asp Lys Arg Leu
420 425 430
Phe Pro Cys Cys Pro Ser Asp Ile Lys Trp Asp Glu Tyr Phe Asn Thr
435 440 445
Tyr Phe Cys Gly Ile Asp Asn Tyr Leu Leu Lys Arg Lys
450 455 460
<210> 158
<211> 522
<212> PRT
<213> 苹果蠹蛾(Cydia pomonella)
<400> 158
Met Val Ala Pro Arg Asp Arg Arg Gly Ala Leu Ile Pro Gln Phe Phe
1 5 10 15
Ala Gly Arg Ser Val Leu Ile Thr Gly Ala Thr Gly Phe Val Gly Lys
20 25 30
Val Leu Val Glu Arg Leu Leu Ser Thr Cys Pro Asp Ile Ser Thr Leu
35 40 45
His Leu Leu Leu Arg Val Lys Lys Gly Ala Thr Pro Ser Glu Arg Leu
50 55 60
Lys Glu Leu Lys Glu Ser Gln Val Phe Asp Val Val Arg Gln Arg Asn
65 70 75 80
Pro Ser Gln Leu Asp Lys Leu Arg Val Leu Glu Gly Asp Val Ala Ala
85 90 95
Pro Gly Leu Gly Leu Ala Ala Asp Ala Ala Leu Thr Leu Gln Asp Val
100 105 110
Ser Val Val Phe His Ser Ala Ala Thr Leu Lys Phe Asp Glu Glu Leu
115 120 125
Arg Lys Ala Val Asp Gln Asn Val Arg Ser Val Met Arg Leu Leu Glu
130 135 140
Leu Cys Asp Lys Leu Pro Asn Met Gln Ala Phe Ile His Val Ser Thr
145 150 155 160
Ala Tyr Ser Asn Ala Glu Leu Ser Ser Val Glu Glu Arg Val Tyr Pro
165 170 175
Pro Pro Ala Pro Leu Glu Ala Val Leu Ala Leu Thr Asp His Val Pro
180 185 190
Asp Pro Thr Leu Ala Gly Ile Thr His Gln Tyr Ile Ala Pro Lys Pro
195 200 205
Asn Thr Tyr Thr Phe Thr Lys Ala Leu Ala Glu Thr Val Val Glu Arg
210 215 220
His Gly Asn Thr Gly Tyr Pro Ile Ser Ile Phe Arg Pro Thr Ile Val
225 230 235 240
Ile Ser Ala Gln Lys His Pro Phe Pro Gly Trp Ile Glu Asn Phe Asn
245 250 255
Gly Pro Ser Gly Val Val Val Ala Thr Gly Lys Gly Leu Leu His Val
260 265 270
Phe Pro Thr Lys Cys Gly Val His Thr Asp Phe Leu Pro Val Asp Ile
275 280 285
Ala Val Asp Thr Leu Ile Ala Val Ala Trp Glu Thr Ala Val Asp His
290 295 300
Ser Lys Glu Val Arg Val Tyr Asn Cys Ser Thr Gly Ala Asn Pro Thr
305 310 315 320
Thr Phe Glu Asp Phe Glu Arg Asn Leu Arg Arg Glu Thr Thr Arg His
325 330 335
Pro Leu Asp Gly Ala Leu Trp Tyr Pro Ser Gly Thr Ala Val Gln Thr
340 345 350
Lys Trp Ala Arg Thr Leu Leu Glu Phe Leu Leu Gln Thr Val Pro Leu
355 360 365
His Leu Ala Glu Tyr Thr Ala Arg Met Ile Gly Leu Lys Thr Pro Val
370 375 380
Asn Leu Ile Thr Ala Asn Lys Arg Leu Thr Ala Met Thr Asp Ala Leu
385 390 395 400
Glu Phe Phe Ala Thr Arg Glu Phe Asn Phe Glu Cys Glu Arg Val Arg
405 410 415
Ala Leu His His Arg Leu Ser Pro Glu Asp Lys Lys Ile Tyr Asn Leu
420 425 430
Asp Val Met Ser Ile Asn Trp Asp Asp His Tyr Ala Asp Phe Val Lys
435 440 445
Gly Thr Arg Lys Tyr Leu Leu Asn Glu Lys Glu Gln Asp Leu Glu Lys
450 455 460
Ala Arg Arg His Met His Lys Met Trp Phe Leu His Lys Val Leu Lys
465 470 475 480
Leu Val Thr Leu Leu Leu Phe Leu Arg Ile Leu Val Gln Asn Arg Tyr
485 490 495
Ala Arg Ser Phe Val Tyr Gly Thr Leu Arg Leu Leu Leu Ser Leu Phe
500 505 510
Gly Ala Val Tyr His Arg Leu Val His Ala
515 520
<210> 159
<211> 512
<212> PRT
<213> 栖藻海杆菌(Marinobacter algicola)
<400> 159
Met Ala Thr Gln Gln Gln Gln Asn Gly Ala Ser Ala Ser Gly Val Leu
1 5 10 15
Glu Gln Leu Arg Gly Lys His Val Leu Ile Thr Gly Thr Thr Gly Phe
20 25 30
Leu Gly Lys Val Val Leu Glu Lys Leu Ile Arg Thr Val Pro Asp Ile
35 40 45
Gly Gly Ile His Leu Leu Ile Arg Gly Asn Lys Arg His Pro Ala Ala
50 55 60
Arg Glu Arg Phe Leu Asn Glu Ile Ala Ser Ser Ser Val Phe Glu Arg
65 70 75 80
Leu Arg His Asp Asp Asn Glu Ala Phe Glu Thr Phe Leu Glu Glu Arg
85 90 95
Val His Cys Ile Thr Gly Glu Val Thr Glu Ser Arg Phe Gly Leu Thr
100 105 110
Pro Glu Arg Phe Arg Ala Leu Ala Gly Gln Val Asp Ala Phe Ile Asn
115 120 125
Ser Ala Ala Ser Val Asn Phe Arg Glu Glu Leu Asp Lys Ala Leu Lys
130 135 140
Ile Asn Thr Leu Cys Leu Glu Asn Val Ala Ala Leu Ala Glu Leu Asn
145 150 155 160
Ser Ala Met Ala Val Ile Gln Val Ser Thr Cys Tyr Val Asn Gly Lys
165 170 175
Asn Ser Gly Gln Ile Thr Glu Ser Val Ile Lys Pro Ala Gly Glu Ser
180 185 190
Ile Pro Arg Ser Thr Asp Gly Tyr Tyr Glu Ile Glu Glu Leu Val His
195 200 205
Leu Leu Gln Asp Lys Ile Ser Asp Val Lys Ala Arg Tyr Ser Gly Lys
210 215 220
Val Leu Glu Lys Lys Leu Val Asp Leu Gly Ile Arg Glu Ala Asn Asn
225 230 235 240
Tyr Gly Trp Ser Asp Thr Tyr Thr Phe Thr Lys Trp Leu Gly Glu Gln
245 250 255
Leu Leu Met Lys Ala Leu Ser Gly Arg Ser Leu Thr Ile Val Arg Pro
260 265 270
Ser Ile Ile Glu Ser Ala Leu Glu Glu Pro Ser Pro Gly Trp Ile Glu
275 280 285
Gly Val Lys Val Ala Asp Ala Ile Ile Leu Ala Tyr Ala Arg Glu Lys
290 295 300
Val Ser Leu Phe Pro Gly Lys Arg Ser Gly Ile Ile Asp Val Ile Pro
305 310 315 320
Val Asp Leu Val Ala Asn Ser Ile Ile Leu Ser Leu Ala Glu Ala Leu
325 330 335
Ser Gly Ser Gly Gln Arg Arg Ile Tyr Gln Cys Cys Ser Gly Gly Ser
340 345 350
Asn Pro Ile Ser Leu Gly Lys Phe Ile Asp Tyr Leu Met Ala Glu Ala
355 360 365
Lys Thr Asn Tyr Ala Ala Tyr Asp Gln Leu Phe Tyr Arg Arg Pro Thr
370 375 380
Lys Pro Phe Val Ala Val Asn Arg Lys Leu Phe Asp Val Val Val Gly
385 390 395 400
Gly Met Arg Val Pro Leu Ser Ile Ala Gly Lys Ala Met Arg Leu Ala
405 410 415
Gly Gln Asn Arg Glu Leu Lys Val Leu Lys Asn Leu Asp Thr Thr Arg
420 425 430
Ser Leu Ala Thr Ile Phe Gly Phe Tyr Thr Ala Pro Asp Tyr Ile Phe
435 440 445
Arg Asn Asp Ser Leu Met Ala Leu Ala Ser Arg Met Gly Glu Leu Asp
450 455 460
Arg Val Leu Phe Pro Val Asp Ala Arg Gln Ile Asp Trp Gln Leu Tyr
465 470 475 480
Leu Cys Lys Ile His Leu Gly Gly Leu Asn Arg Tyr Ala Leu Lys Glu
485 490 495
Arg Lys Leu Tyr Ser Leu Arg Ala Ala Asp Thr Arg Lys Lys Ala Ala
500 505 510
<210> 160
<211> 522
<212> PRT
<213> 烟草天蛾(Manducta sexta)
<400> 160
Met Val Pro Arg Pro Val Ser Pro Tyr Ala Arg Glu Pro Gln Ile Pro
1 5 10 15
Gln Phe Tyr Ala Gly Lys Cys Ile Phe Ile Thr Gly Ala Thr Gly Phe
20 25 30
Met Gly Lys Val Leu Ile Glu Arg Leu Leu Trp Thr Cys Pro Asp Ile
35 40 45
Gly Lys Leu Tyr Leu Leu Met Arg Gln Lys Arg Glu Val Ser Pro Glu
50 55 60
Lys Arg Leu Ser Gln Leu Lys Gln Ser Gln Val Phe Asp Asn Ile Arg
65 70 75 80
Glu Lys Cys Pro Ser Gln Leu Asp Lys Leu Tyr Ile Ile His Gly Asp
85 90 95
Thr Thr Glu Pro Asn Leu Gly Ile Ser Leu Asp Ser Met Ser Leu Leu
100 105 110
Asn Glu Val Ser Ile Val Phe His Gly Ala Ala Thr Leu Lys Phe Asp
115 120 125
Glu Val Leu Gly Lys Ser Val Asp Gln Asn Val Arg Ser Val Met Arg
130 135 140
Leu Leu Asp Ile Cys Asp Arg Leu Pro Asn Ile Gln Ala Phe Ile His
145 150 155 160
Val Ser Thr Ala Tyr Cys Asn Ala Asp Leu Ile Thr Val Glu Glu Lys
165 170 175
Val Tyr Thr Ser Pro Val Ser Leu Asp Gln Val Leu Ala Leu Thr Asp
180 185 190
Ser Val Pro Asp Glu Leu Met Ala Glu Ile Thr Asp Lys Phe Ile Ala
195 200 205
Pro Lys Pro Asn Thr Tyr Thr Phe Thr Lys Ala Leu Ala Glu Asn Ala
210 215 220
Val Glu Gln His Arg Asn Arg Gly Tyr Pro Val Ala Ile Phe Arg Pro
225 230 235 240
Thr Ile Val Ile Ser Ala Leu Gln His Pro Phe Pro Gly Trp Ile Glu
245 250 255
Asn Leu Asn Gly Pro Ser Gly Val Val Val Gly Ala Gly Lys Gly Leu
260 265 270
Leu His Val Phe Cys Cys Lys Asn Ser Ala Lys Ala Asp Leu Leu Pro
275 280 285
Val Asp Ile Ala Ile Asp Thr Leu Ile Ala Val Ala Trp Glu Thr Ala
290 295 300
Leu Asp Lys Leu Ser Glu Val Arg Val Tyr Asn Cys Ser Thr Ile Asp
305 310 315 320
Asn Pro Val Thr Trp Arg Glu Phe Glu Thr Thr Ile Arg Arg Glu Leu
325 330 335
Arg Ile His Pro Phe Asp Lys Ala Phe Trp Tyr Pro Ser Gly Thr Val
340 345 350
Ile Glu Ser Lys Tyr Leu Gln Lys Ala Ile Ala Leu Leu Thr Gln Thr
355 360 365
Leu Pro Leu His Leu Ala Glu Tyr Thr Val Arg Leu Phe Gly Ile Lys
370 375 380
Thr Arg Leu Ser Phe Ile Thr Val Asn Gln Arg Leu Cys Ala Met Ser
385 390 395 400
Asp Val Leu Gln Phe Phe Ser Leu Arg Glu Trp Ile Phe Lys Lys Asp
405 410 415
Asn Val Arg Arg Leu Gln Ala Arg Leu Ser Pro Arg Asp Ala Glu Ile
420 425 430
Tyr Asn Leu Asp Pro Gln Thr Ile Asn Trp Thr Glu His Phe Ile Asn
435 440 445
Phe Val Lys Gly Thr Arg Lys Tyr Leu Leu Lys Glu Lys Asp Gln Asp
450 455 460
Ile Gly Glu Ala Lys Arg His Ile Arg Arg Met Tyr Tyr Val His His
465 470 475 480
Gly Phe Ile Leu Phe Leu Leu Val Leu Val Phe Arg Tyr Ala Met Gln
485 490 495
Asn Pro Ile Ile Arg Ser Ile Val Tyr Gly Thr Leu Lys Leu Leu Phe
500 505 510
Ser Ala Phe Asn Ala Ala Tyr Gly Arg Ile
515 520
<210> 161
<211> 462
<212> PRT
<213> 亚洲玉米螟(Ostrinia furnacalis)
<400> 161
Met Ser Ala Asn Thr Met Glu Thr Asp Glu Gln Phe Thr Tyr Asn Ser
1 5 10 15
Pro Ile Val Asn Phe Tyr Ser Gly Lys Ser Val Phe Val Thr Gly Ala
20 25 30
Thr Gly Phe Leu Gly Thr Val Leu Val Glu Lys Leu Leu Phe Ser Cys
35 40 45
Lys Gly Ile Asn Asn Ile Tyr Ile Leu Ile Lys Gln Thr Glu Asp Leu
50 55 60
Thr Ile Glu Ala Arg Ile Leu Asn Tyr Leu Asn Ser Lys Ala Phe His
65 70 75 80
Arg Val Lys Asn Thr Asn Pro Glu Leu Met Lys Lys Ile Ile Pro Ile
85 90 95
Cys Gly Asn Leu Glu Asp Lys Asn Leu Gly Ile Ser Asp Ser Asp Met
100 105 110
Lys Thr Leu Leu Glu Glu Val Ser Ile Val Phe His Val Ala Ala Lys
115 120 125
Leu Ile Phe Lys Met Ser Leu Thr Ala Ala Val Asn Ile Asn Thr Lys
130 135 140
Pro Thr Glu Gln Leu Ile Ala Ile Cys Lys Lys Met Arg Arg Asn Pro
145 150 155 160
Ile Phe Ile Tyr Val Ser Ser Ala Tyr Ser Asn Val Asn Glu Gln Ile
165 170 175
Ile Asp Glu Lys Val Tyr Ser Thr Gly Val Pro Leu Glu Thr Ile Tyr
180 185 190
Asp Thr Leu Asp Ala Lys Asn Thr Arg Leu Met Asp Ile Phe Leu Asp
195 200 205
Lys Arg Pro Asn Thr Tyr Thr Tyr Ser Lys Ala Leu Ala Glu Val Val
210 215 220
Val Glu Lys Glu Phe Asp Glu Ser Ala Ala Ile Val Arg Pro Ser Ile
225 230 235 240
Ile Ala Ser Ser Ile Arg Glu Pro Ile Pro Gly Trp Leu Ser Gly Ser
245 250 255
His Gly Phe Pro Arg Val Val Glu Ala Ala Cys Lys Gly Leu Leu Leu
260 265 270
Arg Trp His Gly Asp Gly Thr Val Ala Phe Asp Val Ile Pro Val Asp
275 280 285
His Val Ala Asn Leu Ile Ile Ala Ala Ala Trp Glu Ser Asn Glu Arg
290 295 300
Arg Leu Met Gly Asn Lys Gly Val Lys Val Tyr Asn Cys Cys Ser Gly
305 310 315 320
Leu Arg Asn Pro Ile Asp Val Ser Thr Val Met Asn Thr Cys Ile Lys
325 330 335
Tyr Arg Lys Tyr Phe Gly Thr Arg Thr Met Ser Ile Ile Thr Pro Arg
340 345 350
Phe Ile Met Lys Lys Asn Tyr Phe Leu Tyr Lys Leu Leu Tyr Phe Thr
355 360 365
Tyr His Thr Ile Pro Ala Ala Ile Ile Asp Gly Phe Phe Trp Leu Thr
370 375 380
Gly Arg Thr Pro Met Met Leu Asn Thr Leu His Lys Leu Arg Lys Leu
385 390 395 400
Ser Ser Val Leu Glu Tyr Phe Thr Leu His Gln Phe Leu Phe Leu Asp
405 410 415
Ser Asn Val Arg Gly Leu Leu Arg Arg Met Glu Ser Thr Asp Arg Gln
420 425 430
Thr Phe Asn Phe Asp Val Thr Glu Ile Glu Trp Glu Pro Tyr Leu Gln
435 440 445
Asn Phe Val Arg Gly Ile Ala Asn Asn Tyr Asn Tyr Ser Met
450 455 460
<210> 162
<211> 535
<212> PRT
<213> 印度谷螟(Plodia interpunctella)
<400> 162
Met Arg Leu Val Pro Ser Ala Leu Asp Val Val Leu Ala Ala Glu Arg
1 5 10 15
Arg Leu Val Pro Ile His Glu Ala Thr Leu Lys Gly Asp Ser Glu Val
20 25 30
Gln Lys Phe Tyr Ala Gly Ser Val Val Leu Val Thr Gly Gly Ser Gly
35 40 45
Phe Leu Gly Lys Gln Leu Ile Glu Lys Leu Phe Arg Thr Cys Asp Val
50 55 60
Lys Lys Leu Tyr Ile Leu Leu Arg Ala Lys Lys Gly Lys Ser Ile Gly
65 70 75 80
Glu Arg Leu Asp Tyr Ile Leu Arg Asn Pro Val Tyr Asp Thr Leu Arg
85 90 95
Glu Thr Arg Pro Trp Phe Ala Asp Arg Ile Glu Ala Val Glu Gly Asp
100 105 110
Ile Ala Ser Tyr Arg Leu Gly Val Ala Asp His Met Trp Asp Arg Leu
115 120 125
Val Asp Glu Val Thr Val Val Phe His Gly Ala Ala Thr Ile Asn Phe
130 135 140
Ala Asp Pro Leu Gln Leu Ala Thr Asn Ile Asn Val Lys Gly Thr Leu
145 150 155 160
Glu Met Leu Glu Phe Gly Lys Ala Cys Lys Asn Leu Arg Ser Tyr Val
165 170 175
His Ile Ser Thr Ala Tyr Asn Gln Ala Leu Lys Asn Asn Val Ser Cys
180 185 190
Asp Ile Leu Glu Glu Phe Pro Lys Ala Pro Leu Ser Pro Thr Thr Leu
195 200 205
Val Asp Leu Ala Asn Arg Thr Glu Thr Lys Val Leu Asp Glu Met Phe
210 215 220
His Lys Tyr Leu Ala Pro Glu Tyr Pro Asn Thr Tyr Ala Tyr Thr Lys
225 230 235 240
Ala Val Ala Glu Glu Ala Val Arg Thr Met Ala Gly Asp Leu Pro Ile
245 250 255
Cys Val Val Arg Pro Ser Ile Val Ile Pro Ala Tyr Thr Glu Pro Ser
260 265 270
Ala Gly Trp Val Asp Lys Asn Ser Ile Tyr Gly Ala Ser Gly Ile Ile
275 280 285
Met Gly Leu Gly Leu Gly Val Ile His Thr Leu Ile Ser Asp Pro Asp
290 295 300
Ile Lys Ile Asp Ile Ile Pro Val Asp Ile Val Asn Asn Ala Val Ile
305 310 315 320
Val Ala Gly Trp Glu Thr Ala Arg Arg Arg Glu Gln Gly Glu Thr Asp
325 330 335
Thr Lys Ile Tyr Thr Val Gly Ser Ser Asn Arg Asn His Ile Thr Trp
340 345 350
Arg Phe Leu Thr Asn Val Phe Asp Asn Glu Gly Arg Lys His Leu Ser
355 360 365
Ser Gln Ala Val Trp Tyr Ala Phe Ala Val Gln Thr Lys Ser Lys His
370 375 380
Leu Tyr Leu Ala Leu Ala Trp Leu Leu His Phe Ile Pro Gly Tyr Ile
385 390 395 400
Val Asp Gly Val Leu Met Ile Arg Gly Lys Lys Pro Gln Val Ser Lys
405 410 415
Ile Tyr Arg Leu Leu Asn Thr Met Ala Thr Ile Phe Ser Phe Phe Thr
420 425 430
Leu Arg Gly Trp Asn Phe Lys Asp Asp Asn Leu Leu Gln Leu Tyr Lys
435 440 445
Ser Leu Ser Lys Thr Asp Gln Gln Ile Phe Asn Met Asp Ile Ala Thr
450 455 460
Leu Asp Met Lys Glu Val Ile Tyr Leu Trp His Ile Gly Leu Arg Arg
465 470 475 480
Phe Tyr Leu Lys Asp Lys Leu Asn Asp Gln Glu Lys Ser Met Lys Lys
485 490 495
Gln Phe Phe Leu Arg Ile Ile Thr Tyr Thr Phe Ile Pro Ile Tyr Leu
500 505 510
Tyr Phe Leu Phe Lys Ile Ser Cys Phe Val Phe Tyr Gly Leu Tyr Tyr
515 520 525
Leu Ile Phe Ser Tyr Leu Ile
530 535
<210> 163
<211> 531
<212> PRT
<213> 印度谷螟(Plodia interpunctella)
<400> 163
Met Thr Val Asn Thr Arg Pro Ser Thr Asn Met Glu Ser Asn Ile Ile
1 5 10 15
Ser Glu Arg Asn Tyr Val Arg Asp Cys Thr Gly Ile Asp Val Asn Met
20 25 30
Asn Glu Lys Arg Leu Thr Ser Val Gln Gln Phe Tyr Asn Gly Lys Asn
35 40 45
Val Leu Ile Thr Gly Ala Thr Gly Phe Leu Gly Lys Ile Leu Val Glu
50 55 60
Lys Leu Leu Arg Cys Cys Pro Gly Val Glu Asn Leu Tyr Leu Leu Val
65 70 75 80
Arg Gln Lys Lys Gly Lys Asp Ile Tyr Thr Arg Ile Asp Glu Ile Phe
85 90 95
Asp Asp Pro Val Phe Asp Leu Leu Lys Glu Gln His Pro Lys Phe Arg
100 105 110
His Lys Val Val Val Val Pro Ala Asp Cys Glu Val Ala Gly Leu Gly
115 120 125
Leu Thr Leu Thr Asp Arg Gln Met Leu Thr Glu Lys Val Asn Ile Ile
130 135 140
Phe His Ser Ala Ala Thr Val Lys Phe Asp Glu His Leu Arg Ala Ala
145 150 155 160
Leu Asn Thr Asn Val Arg Ala Pro Leu His Leu Leu Arg Leu Ala Arg
165 170 175
Asp Met Lys Asp Leu Asp Val Leu Met His Ile Ser Thr Ala Tyr Ser
180 185 190
Asn Ser His Leu Pro His Ile Glu Glu Arg Phe Tyr Pro Cys Glu Ala
195 200 205
Asp Cys Glu Gln Leu His Arg Met Ile Asp Lys Leu Thr Asp Gly Glu
210 215 220
Ile Asp Ala Leu Leu Pro Thr Ile Leu Gly Ala Trp Pro Asn Thr Tyr
225 230 235 240
Thr Phe Thr Lys Ala Leu Ala Glu Lys Glu Leu Arg Glu Asn Ala Gly
245 250 255
Asp Leu Pro Val Gly Ile Phe Arg Pro Ala Ile Val Thr Ser Thr Tyr
260 265 270
Lys Glu Pro Ile Asn Asn Trp Leu Asp Asn Met Tyr Gly Pro Thr Gly
275 280 285
Val Ala Val Gly Thr Ala Thr Gly Ile Leu Arg Thr Leu Gln Cys Asp
290 295 300
Pro Asn Val Thr Ala Asp Leu Val Pro Val Asp His Val Val Asn Cys
305 310 315 320
Leu Val Val Ala Ala Gln Lys Val Asn Ala Ala Tyr Gln Thr Ser Thr
325 330 335
Pro Pro Arg Glu Pro Pro Ile Phe Asn Tyr Val Ser Ser Thr Glu Asn
340 345 350
Arg Met Thr Trp Gly Asp Phe Met Arg Gln Asn Ile Ala Arg Leu Asp
355 360 365
Lys Thr Pro Phe Ser Asn Ala Ile Trp Tyr Leu Ser Leu Arg Leu Thr
370 375 380
Arg Ser Gly Ala Arg His Arg Val Tyr Ser Leu Leu Leu His Leu Leu
385 390 395 400
Pro Ala Ala Leu Ala Asp Ala Leu Ala Phe Cys Leu Gly Lys Lys Pro
405 410 415
Lys Met Leu Lys Val Tyr Arg Lys Val His Lys Leu Ser Ser Val Leu
420 425 430
Ser Tyr Phe Cys Thr Thr Glu Leu Thr Phe Cys Asn Arg Asn Thr Arg
435 440 445
Gln Leu Trp Glu Ser Thr Ser Asp Glu Asp Lys Lys Ile Phe Pro Phe
450 455 460
Ser Met Arg Asp Val Asn Trp Asp Glu Phe Phe Glu Glu Tyr Ile Val
465 470 475 480
Gly Met Arg Arg His Leu Phe Lys Asp Gly Asp Asp Thr Leu Pro Gln
485 490 495
Ala Arg Ile Lys Trp Lys Arg Leu Tyr Tyr Leu His Gln Ile Val Lys
500 505 510
Ile Leu Phe Cys Ala Leu Ala Val Tyr Ala Leu Trp Ser Ile Phe Leu
515 520 525
Arg Leu Trp
530
<210> 164
<211> 459
<212> PRT
<213> 甜菜夜蛾(Spodoptera exigua)
<400> 164
Met Thr Tyr Arg Gln Ile Asn Glu Phe Asp Ala Glu Lys Phe Thr Ala
1 5 10 15
Ala Ala Val Pro Thr Ser Tyr Val Ser Val Pro Asp Phe Tyr Ala Gly
20 25 30
Lys Ser Ile Phe Ile Thr Gly Gly Thr Gly Phe Leu Gly Lys Val Phe
35 40 45
Leu Glu Lys Leu Leu Tyr Ser Cys Lys Asp Val Glu Thr Val Tyr Ile
50 55 60
Leu Ile Arg Glu Lys Lys Gly Lys Thr Pro Gln Gln Arg Val Glu Asp
65 70 75 80
Leu Phe Asn Lys Pro Ile Phe Ser Arg Leu Lys Gln Lys Asp Ser Gln
85 90 95
Cys Met Lys Lys Val Thr Ala Ile Ile Gly Asp Leu Ser Glu Pro Gly
100 105 110
Leu Gly Ile Ser Lys Asp Asp Glu Glu Leu Leu Leu Gln Lys Val Ser
115 120 125
Val Val Phe His Val Ala Ala Asn Val Gln Phe Tyr Lys Glu Phe Lys
130 135 140
Glu Ile Ile Asn Thr Asn Val Gly Gly Thr Lys Tyr Val Leu Gln Leu
145 150 155 160
Cys Gln Arg Ile Lys Asp Ile Lys Ala Phe Val His Ile Ser Thr Ala
165 170 175
Tyr Cys His Thr Asp Gln Lys Val Leu Glu Glu Arg Ile Tyr Pro Pro
180 185 190
Pro Ala Glu Leu Ser Glu Val Leu Lys Phe Leu Gln Gln Pro Gln His
195 200 205
Asp Lys Lys Gln Ile Lys Glu Leu Phe Lys Lys Gln Pro Asn Ser Tyr
210 215 220
Thr Phe Ala Lys Ala Leu Ala Glu Thr Tyr Ile Ala Glu Asn Cys Gly
225 230 235 240
Arg Val Pro Thr Ile Ile Ile Arg Pro Ser Ile Ile Ser Ala Ser Leu
245 250 255
Lys Glu Pro Leu Pro Gly Trp Val Asp Ser Trp Asn Gly Ala Thr Gly
260 265 270
Leu Ile Thr Ala Ser Tyr Asn Gly Ala Asn Arg Val Leu Leu Gly Glu
275 280 285
Gly Gly Asn Phe Leu Asp Leu Ile Pro Val Asp Phe Val Ala Asn Leu
290 295 300
Ala Ile Val Ala Ala Ala Lys Cys Thr Ser Ser Leu Lys Val Tyr Asn
305 310 315 320
Cys Cys Ser Ser Gly Cys Asn Pro Leu Thr Leu Lys Gln Leu Val Ser
325 330 335
His Met Asn Asn Val Gly Phe Asp Lys Asn Val Ser Ile Ile Phe Thr
340 345 350
Asn Asn Lys Ala Ser Leu Ser Thr Leu Thr Phe Phe Leu Gln Thr Thr
355 360 365
Pro Ser Phe Thr Ala Asp Met Phe Leu Arg Val Thr Gly Lys Ser Pro
370 375 380
Arg Tyr Met Lys Ile Gln Ser Lys Leu Thr Ile Ala Arg Asn Ala Leu
385 390 395 400
Asn Phe Phe Thr Cys His Ser Trp Val Met Lys Ala Asp Asn Ser Arg
405 410 415
Arg Leu Tyr Ala Ser Leu Ser Leu His Asp Arg His Thr Phe Pro Cys
420 425 430
Asp Pro Thr Asp Ile Asp Trp Lys Lys Tyr Ile Thr Ile Tyr Ile Glu
435 440 445
Gly Ile Asn Gln Phe Leu Met Lys Lys Arg Ser
450 455
<210> 165
<211> 520
<212> PRT
<213> 甜菜夜蛾(Spodoptera exigua)
<400> 165
Met Val Pro Arg Pro Ala Pro Gln Phe Pro Thr Pro Pro Leu Ile Pro
1 5 10 15
Glu Tyr Phe Ala Gly Arg Glu Val Leu Ile Thr Gly Ala Thr Gly Phe
20 25 30
Met Gly Lys Val Leu Val Glu Arg Leu Leu Trp Thr Cys Pro Asp Ile
35 40 45
Gly Arg Leu His Leu Leu Met Arg His Lys Arg Asp Val Ala Pro Asp
50 55 60
Lys Arg Leu Ala Leu Leu Lys Gln Ser Gln Val Phe Asp Val Val Arg
65 70 75 80
Glu Arg Cys Pro Gln Gln Leu Asp Lys Leu Cys Met Val Pro Gly Asp
85 90 95
Val Thr Lys Arg Arg Phe Gly Phe Asp Gln Ser Ala Leu Asn Gln Leu
100 105 110
Asn Gln Val Ser Val Val Phe His Ser Ala Ala Thr Leu Lys Phe Asp
115 120 125
Glu Pro Leu Ser Val Ala Ala Glu Gln Asn Val Arg Pro Val Leu Thr
130 135 140
Leu Met Asp Ile Cys Asp Gln Leu Pro Asn Met Gln Val Leu Val His
145 150 155 160
Val Ser Thr Ala Tyr Ser Asn Ala Glu Leu Ala Glu Val Glu Glu Arg
165 170 175
Val Tyr Pro Ala Pro Val Thr Pro Glu His Leu Leu Ala Leu Val Asp
180 185 190
Ala Leu Pro Ala Ser Met Leu Gln Glu Ile Thr Pro Arg Leu Ile Ala
195 200 205
Pro Lys Pro Asn Thr Tyr Thr Phe Thr Lys Ala Val Ala Glu Ser Ala
210 215 220
Val Ser Glu Arg Ala Val Thr Ala Arg Tyr Ala Cys Ala Ile Phe Arg
225 230 235 240
Pro Thr Ile Val Val Ser Ser Leu Arg His Pro Phe Pro Gly Trp Ile
245 250 255
Glu Asn Leu Asn Gly Pro Ser Gly Val Val Ala Gly Ala Gly Lys Gly
260 265 270
Leu Leu Arg Val Leu Arg Cys Gly Ala Gln Arg Arg Ala Asp Met Met
275 280 285
Pro Val Asp Ile Cys Ile Asp Thr Leu Ile Ala Val Ala Trp Glu Thr
290 295 300
Gly Ile Asp Asn Leu Arg Glu Ala Arg Val Tyr Gln Cys Ala Ser Ser
305 310 315 320
Ser His Ala Ala Thr Trp Gly Gln Phe Arg Glu Arg Met Leu Arg Leu
325 330 335
Val Arg Glu His Pro Phe Asp Asn Val Leu Trp Tyr Pro Tyr Gly Val
340 345 350
Ile Cys Glu Asn Thr Val Val Gln Lys Val Leu Glu Ala Val Leu Gln
355 360 365
Thr Ala Pro Leu Cys Val Ala His Cys Val Ala Arg Ala Cys Gly Leu
370 375 380
Lys Gln Lys Pro Ser Leu Trp Thr Ala Cys Lys Arg Leu Gln Ala Met
385 390 395 400
Asn Gln Ala Leu Gln Phe Phe Ala Thr Arg His Trp Ser Phe Arg Thr
405 410 415
Thr Arg Val Gln Gln Leu Ala His Arg Leu His Pro Asp Asp Gln Lys
420 425 430
Leu Tyr Asn Leu Arg Pro Glu Thr Ile Asp Trp Glu Gln His Cys Val
435 440 445
Asp Phe Val Lys Gly Ala Arg Arg Tyr Leu Leu Arg Glu Arg Asp Asp
450 455 460
Asp Ile His Ala Ala Arg Arg Arg Met Arg Ile Leu Tyr Leu Ile His
465 470 475 480
Lys Ala Thr Leu Leu Phe Ala Ile Phe Thr Met Cys Arg Leu Thr Ile
485 490 495
Arg Thr Ala Pro Ala Ile Leu Trp Gly Val Ala Ala Leu Thr Arg Gln
500 505 510
Arg Asn Lys Ser Ala Leu Leu Ser
515 520
<210> 166
<211> 526
<212> PRT
<213> 粉纹夜蛾(Trichoplusia ni)
<400> 166
Met Ala Ser Cys Leu Ser Gly Gly His Tyr Val Pro Gly Ser Gln Glu
1 5 10 15
Tyr Val Pro Val Ala Glu Phe Tyr Ala Asp Lys Ser Val Phe Val Thr
20 25 30
Gly Gly Thr Gly Phe Met Gly Lys Val Leu Val Glu Lys Leu Leu Arg
35 40 45
Ser Cys Pro Lys Ile Lys Lys Ile Tyr Leu Leu Met Arg Pro Lys Arg
50 55 60
Gly Gln Asp Val Ala Ser Arg Leu Thr Glu Leu Thr Gln Ser Pro Leu
65 70 75 80
Phe Glu Thr Leu Arg Arg Glu Arg Pro Gln Glu Leu Asn Lys Ile Val
85 90 95
Pro Ile Val Gly Asp Ile Thr Glu Pro Glu Leu Gly Ile Ser Ala Ala
100 105 110
Asp Gln Thr Met Leu Cys Gln Lys Val Ser Val Val Phe His Ser Ala
115 120 125
Ala Thr Val Lys Phe Asp Glu Lys Leu Lys Leu Ser Val Thr Ile Asn
130 135 140
Met Leu Gly Thr Gln Gln Leu Val Gln Leu Cys His Arg Met Leu Ser
145 150 155 160
Leu Glu Ala Leu Val His Val Ser Thr Ala Tyr Cys Asn Cys Glu Arg
165 170 175
Glu Arg Val Glu Glu Thr Val Tyr Ala Pro Pro Ala His Pro Glu His
180 185 190
Val Val Thr Leu Val Gln Thr Leu Pro Asp Glu Leu Val Asp Arg Ile
195 200 205
Thr Pro Asp Leu Val Gly Asp Arg Pro Asn Thr Tyr Thr Phe Thr Lys
210 215 220
Ala Leu Ala Glu Asp Met Leu Ile Lys Glu Ser Gly Asn Leu Pro Val
225 230 235 240
Ser Ile Val Arg Pro Ser Ile Val Leu Ser Ser Leu Arg Glu Pro Val
245 250 255
Lys Gly Trp Val Asp Asn Trp Asn Gly Pro Asn Gly Ile Ile Ala Ala
260 265 270
Val Gly Lys Gly Ile Phe Arg Thr Met Leu Gly Thr Gly Thr Lys Val
275 280 285
Ala Asp Leu Val Pro Val Asp Thr Val Ile Asn Leu Met Ile Val Cys
290 295 300
Ala Trp Arg Thr His Leu Arg Arg Gly Glu Gly Val Val Val Tyr Asn
305 310 315 320
Cys Cys Thr Gly Gln Gln Asn Pro Ile Thr Trp Gln Arg Phe Val Lys
325 330 335
Thr Ser Phe Lys Tyr Met Arg Lys His Pro Phe Asn Glu Val Val Trp
340 345 350
Tyr Pro Gly Gly Asp Ile Thr Ser Asn Arg Leu Trp His Gly Ala Leu
355 360 365
Ser Leu Leu Gln His Arg Ala Pro Ala Ala Leu Met Asp Leu Ala Ala
370 375 380
Ser Ala Ser Gly Lys Lys Pro Met Met Val Arg Val Gln Asn Lys Leu
385 390 395 400
Glu Lys Ala Ala Ala Cys Leu Glu Tyr Phe Thr Thr Arg Gln Trp Ala
405 410 415
Phe Ala Asp Asp Asn Val Gln Ala Leu Cys Ser Ser Leu Ser Pro Glu
420 425 430
Asp Arg Arg Thr Phe Asp Phe Asn Val Arg Asn Ile Asn Trp Asp Ala
435 440 445
Tyr Ile Glu Ser Tyr Val Leu Gly Ile Arg Arg Phe Leu Phe Lys Glu
450 455 460
Ser Pro Asp Thr Leu Pro Gln Ser Arg Ala Val Leu Arg Arg Leu His
465 470 475 480
Ile Val His Ile Leu Thr Gln Val Ala Thr Val Phe Phe Leu Trp Arg
485 490 495
Phe Leu Phe Ser Arg Ser Asn Ala Leu Arg Asn Leu Trp Arg Arg Val
500 505 510
Leu Glu Leu Leu Thr Arg Ala Ala Arg Leu Leu Ala Ile Ala
515 520 525
<210> 167
<211> 449
<212> PRT
<213> 柳黑斑巢蛾(Yponomeuta rorellus)
<400> 167
Met Val Gln Leu Lys Glu Asp Ser Val Ala Ala Phe Tyr Ala Glu Lys
1 5 10 15
Ser Ile Phe Ile Thr Gly Gly Thr Gly Phe Leu Gly Lys Val Leu Ile
20 25 30
Glu Lys Leu Leu Tyr Ser Cys Lys Ala Val Asp Gln Ile Tyr Val Leu
35 40 45
Ile Arg Lys Lys Lys Asp Gln Thr Pro Ser Glu Arg Ile Ala Gln Leu
50 55 60
Leu Glu Ser Glu Leu Phe Ser Arg Leu Arg Lys Asp Asp Pro Ser Ala
65 70 75 80
Leu Lys Lys Val Val Pro Val Val Gly Asp Leu Thr Met Pro Asn Leu
85 90 95
Gly Leu Ser Ala Ala Val Glu Asp Leu Ile Val Ser Lys Val Thr Val
100 105 110
Ile Phe His Val Ala Ala Thr Val Lys Phe Asn Glu Arg Met Lys Asn
115 120 125
Ala Leu Val Asn Asn Val Glu Ala Thr Arg Glu Val Ile Asn Leu Cys
130 135 140
His Arg Leu Glu Lys Val Asp Ala Phe Ile His Val Ser Thr Ala Tyr
145 150 155 160
Ser Asn Thr Asp Gln Lys Val Val Glu Glu Arg Val Tyr Pro Pro Pro
165 170 175
Ala Pro Leu Ser Glu Val Tyr Ala Phe Val Lys Asn Tyr Gly Asp Asp
180 185 190
Met Asp Ile Ile Gln Asn Leu Leu Asn Gly Arg Pro Asn Thr Tyr Thr
195 200 205
Tyr Thr Lys Ala Leu Ala Glu Asp Ile Val Leu Lys Glu His Gly Gly
210 215 220
Ile Pro Thr Ala Ile Ile Arg Pro Ser Ile Val Leu Ser Val Leu Lys
225 230 235 240
Glu Pro Ile Pro Gly Trp Leu Asp Asn Trp Asn Gly Pro Thr Gly Leu
245 250 255
Leu His Ala Ser Ser Gln Gly Val His Cys Ser Met Leu Gly Ser Gly
260 265 270
Ser Asn Val Ala Asp Leu Ile Pro Val Asp Ile Val Thr Asn Leu Met
275 280 285
Ile Val Val Ala Ser Arg Cys Arg Lys Ser Asn Gly Leu Lys Val Tyr
290 295 300
Asn Ser Cys Ser Gly Thr Thr Asn Pro Ile Thr Tyr Gln Ala Phe Thr
305 310 315 320
Lys Met Phe Leu Asp Ser Cys Ile Ser Arg Gly Trp Asn Lys Val Pro
325 330 335
Phe Pro Leu Leu Ile Phe Val Lys Trp Ala Phe Leu Asn Arg Val Leu
340 345 350
Lys Phe Leu Leu Val Ile Val Pro Phe Phe Leu Ile Asp Val Tyr Leu
355 360 365
Arg Phe Phe Gly Lys Pro Asn Tyr Met Arg Met Ile Thr Tyr Thr Lys
370 375 380
Lys Ala Glu Asp Leu Met Thr Phe Phe Thr Ser His Glu Trp Gln Phe
385 390 395 400
Lys Asp Gly Asn Val Arg Asp Leu Ile Asn Met Met Ser Pro Glu Asp
405 410 415
Arg Lys Ile Phe Tyr Cys Asp Pro Glu Glu Ile Gln Trp Lys Pro Tyr
420 425 430
Phe Asp Asp Tyr Cys Val Gly Val Phe Lys Tyr Leu Leu Lys Arg Lys
435 440 445
Val
<210> 168
<211> 1632
<212> DNA
<213> 脐橙螟蛾(Amyelois transitella)
<400> 168
atggccgcca agtgcgagat cggcgtgtct cagttcttcg ccggcaagca cgtgttcatc 60
accggcgcca ccggcttcat gggcaaggtg ctggtcgagc gactgctgtc tacctgcgcc 120
gacgtgggcc gaatctacct gctgatgcga tctaagaagg accactctcc tgagcagcga 180
ctgcaagagc tgaaggcctc tcaggccttc gacaacctgc gacagtctca gccctctcag 240
ctcgagaagc tgcgaatcgt ggccggcgac atcatgctgc ccggcctggg catctctcaa 300
gagggcctcg aggacctgca agaggtgtct gtggtgttcc actctgccgc caccgtgaag 360
ttcaacgagg ccctgaagat cgccatcgag cagaacctga tgtctgtgat ccgactgctc 420
gagatctgcg accgactgcc tcacatgcag gctttcgtgc acgtgtctac cgcctactct 480
aaccccgagc tgtccaccgt cgaggaacga gtgtaccctc ctcctgtgcc tctggactac 540
ctgctcgacc tggccgccga ggactctccc ctgctggaca acgtcgagtc tttcatctct 600
cccaagccta actcttacac cttcaccaag gccatggctg aggccgccgt gcagcgacac 660
ggctgccagt actaccccat tgccatcgtg cgacccacca tcgtgatctc ttcgctgaag 720
cacccctttc caggctggct cgagaacgcc aacggaccca ccggcgtgat tttcggagcc 780
ggccgaggcc tgctgcgagt gttccgatgc cgacagtctg ccctggccga cctgctgcct 840
gtggacatcg gcatcgacac cctgatcgcc gctgcctggg aagtcgcctc tgaccgacct 900
ccttcgcctc gagtgtacaa ctgctctatc tctgagaacc ccaccacctg gggcgacctg 960
aagcgagcca tcaacctgca cacccgatct cagccccagt gtggcgccgt gtggtatccc 1020
ggactgcata ccgccgagaa cggcttcctg tacaagatcc tcgaggtgct gctgcagacc 1080
actcctctgt acatcggcga gatcctggtg cgaatcctgg gctactctca caagcgactg 1140
aacctgatcc gagtgtctac ccagatgaag aacatgcaga acgccatgaa gtactttgcc 1200
ctgcgagagt ggcgattcca gtctgacaac gtgcgacgac tgcgagagcg aatgtctgac 1260
gtggacaagc gaatctacaa cctggatcct tgctctatcg tgtgggacga gcactactcc 1320
aactacgtga agggcgtgcg actgtacctc ctccgagaga aggaactgga ccagcctgcc 1380
gccaagaagc gactcaagaa gctctactac ctgcactacg gcctgtctgt gttcatgccc 1440
tttctgctgt tccgagcctt cgtccgacga aagcaccgac agaacattct cgaggtcctg 1500
ttcgccatcc tgtctatctt caacgccatc ttccgacgat cgacccagaa catcctgtac 1560
atctacaagg tgtctctgac cttcctgaac gacaacgtgt tcctgaacaa ggtgtttaac 1620
gagtcctctt ag 1632
<210> 169
<211> 1566
<212> DNA
<213> 脐橙螟蛾(Amyelois transitella)
<400> 169
atggtggccc gacgagagtc tgtgtctgct cccgtgattc cccagttcta cgccggacga 60
tctatcttca tcaccggcgc caccggcttc atgggcaagg tgctgatcga gcgaatcctg 120
gccacctgtc ctgacgtgga ccgactgtac ctgctggtgc gacacaagaa ggaagtcacc 180
cctgagcgac gactgcagca gctgattgag tctcccgtgt tcgaccccat ccgagcttct 240
aacccctctc agctggacaa gctgtctatg ctggccggcg acatcacccg acctgacctg 300
ggcatgaccc aagagtctct gatgcgactg caagaggtgt ctatcgtgtt ccactctgcc 360
gccactctga agttcgacga ggccatgatg atggccgtcg agcagaacgt gctgtctgtg 420
atccgactgc tcgagatctg cgaccgactg cctaagatgc aggccttcgt gcacgtgtct 480
accgcctact ctaacgccga gctgtctgag gtcgaggaac acgtgtaccc tccaaaggtg 540
cccctcgaga agctgctggc cattgccgag tctgtccccg acgagctgat gaccgagatc 600
acccctaagt tcattgctcc caagcctaac acctacacct tcaccaagtc tatggccgag 660
cacgtggtgc agcagcacgg caacaagggc taccccgtgg ccatcttccg acctaccatc 720
gtgatctctt ccgtgaagca cccctttcca ggctggatcg agaacctgaa cggcccctct 780
ggcgtggtgg ctgctgccgg caagggcctg ctgcacgtgt tctgctgccg aggcgacgcc 840
cacgccgaca tgctgcccgt ggacgtggcc attgacaccc tgatcgccgc tgcctgggag 900
actgccatcg acaagcccaa cgaggcccga gtgtacaact gcaccactcg agagaacccc 960
accaagtgga tcgacttcga gcacgccctg cgaaagtacc tggtcgagta ccctctggac 1020
aaggccttct ggtatccctc tggtgccgct atcgacaaca cctacgctca aaaggccatg 1080
gaactgttca cccagaccgt gcctctgcac atcgtggcct acaccgtgcg actgctgggc 1140
atcaagatgc agatgaacct gatcaccgtg tctcaccgac tgcaggccat gaacaaggtc 1200
ctgaagttct tcgcccagcg agagtgggtg ttccacaacg agaacgtgaa gcgactgcga 1260
aaccgactga cccctcagga cgccgccatc tacaacctgg atcctaagtc tttcaactgg 1320
gacgagcact actgcaactt catcaagggc acccgaaagt atctgctgaa ggaaaaggaa 1380
caggacctgg aagaggcccg aaagcacgtg cgacgaatgt tctacgtgca ctactctgtg 1440
ctgctgttcg tggtggtcct gctgctgcga ttcgccctga acaacaactt cgtgcgacag 1500
ttcatctacg gcgtggtgcg aaccctgacc gctgccttcg gcgccgtgtt ctctaagatc 1560
gtgtag 1566
<210> 170
<211> 1572
<212> DNA
<213> 脐橙螟蛾(Amyelois transitella)
<400> 170
atggcctctt gcgtcggcgg agccttccac gctcaagagt acctgcctgt ggccgacttc 60
tacgccgaca agtctatctt cgtgaccggc ggcaccggct tcatgggcaa ggtgctggtc 120
gagaagctgc tgcgatcttg ccccaagatc aagaagatct acctgctgat gcgacccaag 180
cgaggccagg acgtgtcctc tcgactgacc gagctgaccc agtctcctct gttcgagact 240
ctgcgaaagg aacgaccctc tgagctgtct aagatcgtgc ccatcgtggg cgacatcacc 300
gagcctgagc tgggcatctc tcccgccgac caggccatgc tgtgccaaaa ggtgtctgtg 360
gtgttccact ctgccgccac cgtgaagttc gacgagaagc tcaagctgtc tgtgaccatc 420
aacatgctgg gcacccagca gctggtgcag ctgtgccacc gaatgctggg actcgaggcc 480
ctggtgcacg tgtctaccgc ctactgcaac tgcgagcgag agcgagtcga ggaaaccgtg 540
tacgcccctc ctgctcaccc cgagcacgtg gtgaccctgg tccagactct gcccgacgac 600
ctggtggacc gaatcacccc tgacctggtt ggcgaccgac ctaacaccta caccttcacc 660
aaggctctgg ccgaggacat gctgatcaag gaatgcggca acttgcccgt ggccatcgtg 720
cgaccctcta tcgtgctgtc ctctctgcga gagcccgtga agggctgggt cgacaactgg 780
aacggcccca acggcatcat tgccgccgtc ggcaagggcg tgttccgatc tatgctcgga 840
accggcgctc gagtggccga tctggtgccc gtggacaccg tgatcaacct gatgatcgtg 900
tgcgcctggc gaacccacct ccgacgaggc gagggcgtcg tggtgtacaa ctgctgcacc 960
ggccagcaga accccatcac ctggcagcga ttcgtcaaga cctctttcaa gtacatgcga 1020
aagcacccat tctctgaggt ggtgtggttc cccggtggcg acattaccaa caaccgactg 1080
aagcacaaca tcctgtctct gctccagcac aaggctcccg ccatcgtgat ggacctggtg 1140
tctcgagcct ctggcaacaa gcccgtgatg gtgcgagtgc agaacaagct cgagaaggcc 1200
gctgcctgcc tcgagtactt caccactcga cagtgggcct tctctgacga caacgtgcag 1260
gccctgtgct ctgccctgtc tgtcgaggac cgacgaatct tcgacttcaa cgtgcgaaac 1320
atcgactggg acgcctacat cgagtcttac gtgctgggaa tccgacgatt cctgttcaag 1380
gaatctcccg acactctgcc caagtcgcga gccctgctgc gacgactgca catcgtgcac 1440
accctgactc aggtgaccac cgtgtttctg ctgtggcgat ttctgttctc tcagtcgtct 1500
accctgcgat ctatctggcg acgaattctc gagttcatca cccgaatttt ccgactgctg 1560
gccattgcct ag 1572
<210> 171
<211> 1386
<212> DNA
<213> 黄豆银纹夜蛾(Chrysodeixis includens)
<400> 171
atgttcgcct ctaccgacgg cggacgatct gacgaggaaa cccctcagca gcacgagtct 60
atcgccgact tctacgccgg caagtctgtg ttcattaccg gcgtgaccgg cttcctcggc 120
aaggcctacc tcgagaagct gctgtactct tgcaaggaca tcgacaaggt gttcgtgctg 180
atccgaaaca agcgaggcga cgacgtgggc aagcgaattg agaagctcct ggactcctct 240
gtgttctctc gactgcgatc tcaccgacct gaggacctga agaagatcac ccctgtctac 300
ggcgacattg acaagtctga gctgggcctg tctctggccg accaagagcg actgatcaag 360
gaagtgtctg tcgttttcca cgtggccgcc tctgtgaacc tggacgccga cctcaagacc 420
tctctggtga ccaactactt cggcaccact cacgtgctga agctgtgcca ccgaatgaag 480
aagctgaagg ttttcgtcta cgtgtctacc gcctactgca acaccaccgt gaaggtgctg 540
gaagagaagg tgtaccctct gcctgtcgag ctggacgagg tggtgaagat catggaacag 600
ccccacctgg actctaaccg agtcaagaag ttgctgaacg gacgacccaa cacctacgct 660
ctgtctaagg ccctggccga gcactacatt gccgagaacc acggtgacat ccccgtgatt 720
ttcattcgac cctctatcgt gacctcttct gctcgagagc ccgctcctgg ctgggccgac 780
tctttccagg gcgccaccgc tctgatcacc gcctgctgga agcgagtgaa ccgagtgatc 840
tacggcaacg gcgacaacat catcgatctg atccccgtgg actacgtgtc caacctgtct 900
atcgtggccg ctgccaaggt gaagtctacc accgagatcg ccgtgtacaa ctcttgcacc 960
tcttctatca agcccatgac tctgaaggga atcgccgagc agatcgagcg agtcaacacc 1020
gagaacaagc agggctctat cttcctgcct actattttct tcacctcctc ttggctgttc 1080
gtgatcatgc tgaccttcgt gctgcagctg ctcccctctt ttattgccga cctgttcctg 1140
tacatcaccg gcaacaagcc tatgtacatg aagatccagt ctaaggtgct gcacggccga 1200
cacatcctga actactacac caacgactct tgggtgttca agtctgactc ttctcagcga 1260
ctgcaggact ctctgtctcc cgccgacaag cgactgttcc cctgctgtcc ctctgacatc 1320
aagtgggacg agtactttaa cacctacttt tgcggcatcg acaactacct gctcaagcga 1380
aagtag 1386
<210> 172
<211> 1569
<212> DNA
<213> 苹果蠹蛾(Cydia pomonella)
<400> 172
atggtggctc cccgagatcg acgaggcgct ctgattcccc agttcttcgc cggacgatct 60
gtgctgatca ccggcgccac cggcttcgtc ggcaaggtgc tggtcgagcg actgctgtct 120
acctgtcctg acatctctac cctgcatctg ctgctgcgag tgaagaaggg cgctacccct 180
tctgagcgac tgaaggaact caaggaatct caggtgttcg acgtggtgcg acagcgaaac 240
ccctctcagc tggacaagct gcgagttctt gagggtgacg ttgctgctcc tggtcttggt 300
cttgctgctg acgctgctct tactcttcag gacgtgtctg tggtgttcca ctctgccgcc 360
actctgaagt tcgacgagga actgcgaaag gccgtggacc agaacgtgcg atctgtgatg 420
cgactgctcg agctgtgcga caagctcccc aacatgcagg ccttcatcca cgtgtctacc 480
gcctactcta acgccgagct gtcctctgtc gaggaacgag tgtaccctcc tcctgctcct 540
ctggaagccg tgctggccct gaccgaccac gtgcctgatc ctactctggc cggcatcacc 600
caccagtaca ttgctcccaa gcctaacacc tacaccttca ccaaggctct ggccgagact 660
gtggttgagc gacacggcaa cactggctac cccatctcta tcttccgacc taccatcgtg 720
atctctgccc agaagcaccc ctttccaggc tggatcgaga acttcaacgg cccctctggc 780
gtggtcgtgg ccaccggcaa gggcctgctg cacgtgttcc ccaccaagtg cggcgtgcac 840
accgactttc tgcccgtgga cattgccgtg gacaccctga tcgccgtggc ctgggagact 900
gccgtcgacc actctaagga agtgcgagtc tacaactgct ctaccggcgc taaccccacc 960
accttcgagg acttcgagcg aaacctgcga cgagagacta cccgacatcc tctggacggc 1020
gccctgtggt atccctctgg caccgccgtg cagaccaagt gggctcgaac cctgctcgag 1080
ttcctgctgc agaccgtgcc tctgcacctg gccgagtaca ccgctcgaat gatcggcctc 1140
aagacccctg tgaacctgat taccgccaac aagcgactga ccgccatgac cgacgctctc 1200
gagttctttg ctacccgaga gttcaacttc gagtgtgagc gagtgcgagc cctgcaccac 1260
cgactgtcgc ctgaggacaa gaagatctac aacctggacg tgatgtctat caactgggac 1320
gaccactacg ccgacttcgt gaagggcacc cgaaagtacc tgctgaacga gaaggaacag 1380
gacctcgaga aggcccgacg acacatgcac aagatgtggt ttctgcacaa ggtcctgaag 1440
ctggtgaccc tgctgctgtt cctgcgaatc ctggtgcaga accgatacgc ccgatctttc 1500
gtgtacggca ccctccgact gctgctctcg ctgttcggcg ccgtgtacca tcgactggtg 1560
cacgcctag 1569
<210> 173
<211> 1009
<212> DNA
<213> 栖藻海杆菌(Marinobacter algicola)
<400> 173
atgtgcagtc tggaatctac gcttgttcag actttgtact agtttctttg tctggccatc 60
cgggtaaccc atgccggacg caaaatagac tactgaaaat ttttttgctt tgtggttggg 120
actttagcca agggtataaa agaccaccgt ccccgaatta cctttcctct tcttttctct 180
ctctccttgt caactcacac ccgaaatcgt taagcatttc cttctgagta taagaatcat 240
tcaaaatggt gagtttcaga ggcagcagca attgccacgg gctttgagca cacggccggg 300
tgtggtccca ttcccatcga cacaagacgc cacgtcatcc gaccagcact ttttgcagta 360
ctaaccgcag gccacccagc agcagcagaa cggtgcatcc gcttcgggcg ttctggagca 420
gcttagaggc aagcatgtct tgattaccgg tactacagga tttctgggaa aggtggttct 480
ggagaagctg atccgaaccg tgcctgacat cggtggtatt catctgctga ttagaggcaa 540
caagagacat cctgctgcca gagaaagatt cttgaacgaa atcgcctctt cctctgtgtt 600
cgagcggctt agacatgacg acaacgaagc ctttgagact ttcctggagg agcgtgtgca 660
ctgcatcacc ggagaagtga ccgagtcgag atttggcctt actcctgagc ggttccgagc 720
ccttgctggc caagtggatg ccttcatcaa ttccgccgcc tctgttaact tcagagagga 780
gctggacaag gcactcaaga tcaacaccct gtgtctggag aacgtggctg ctctggccga 840
acttaactcc gctatggcag tgatccaagt ttccacctgt tacgtgaacg gcaagaactc 900
tggacagatc accgagtccg ttatcaagcc cgctggcgaa tccatcccca gatccacaga 960
tggctactac gagatcgagg agctggtcca ccttctgcaa gacaagatc 1009
<210> 174
<211> 1569
<212> DNA
<213> 烟草天蛾(Manducta sexta)
<400> 174
atggtgcccc gacctgtgtc tccctacgct cgagagcccc agattcctca gttctacgcc 60
ggcaagtgca tcttcatcac cggcgccacc ggcttcatgg gcaaggtgct gatcgagcga 120
ctgctgtgga cctgtcctga catcggcaag ctgtacctgc tgatgcgaca gaagcgagag 180
gtttctcccg agaagcgact gtctcagctg aagcagtctc aggtgttcga caacatccga 240
gagaagtgcc cctctcagct ggacaagctc tacatcatcc acggcgacac caccgagcct 300
aacctgggca tctctctgga ctctatgtct ctgctgaacg aggtgtctat cgtgttccac 360
ggcgctgcta ccctgaagtt cgacgaggtg ctgggcaagt ctgtggacca gaacgtgcga 420
tctgtgatgc gactgctcga catctgcgac cgactgccta acatccaggc cttcatccac 480
gtgtctaccg cctactgcaa cgccgacctg atcaccgtgg aagagaaggt ctacacctct 540
cctgtgtcgc tggaccaggt gctggccctg accgactctg tgcccgacga gctgatggcc 600
gagatcaccg acaagttcat tgctcccaag cctaacacct acaccttcac caaggctctg 660
gccgagaacg ccgtcgagca gcaccgaaac cgaggctacc ccgtggccat cttccgacct 720
accatcgtga tctctgccct gcagcacccc tttccaggct ggatcgagaa cctgaacggc 780
ccctctggcg tggtggtcgg agccggcaag ggcctgctgc acgtgttctg ctgcaagaac 840
tctgccaagg ccgacctgct gcctgtggac attgccatcg acaccctgat tgccgtggcc 900
tgggagactg ccctcgacaa gctgtctgag gtgcgagtgt acaactgctc taccatcgac 960
aaccccgtga cctggcgaga gttcgagact accatccgac gagagctgcg aattcacccc 1020
ttcgacaagg ccttctggta tccctctggc accgtgatcg agtctaagta cctgcagaag 1080
gctatcgccc tgctgaccca gactctgccc ctgcacctgg ccgagtacac cgtgcgactg 1140
ttcggcatca agacccgact gtctttcatt accgtgaacc agcgactgtg cgccatgtct 1200
gacgtgctgc agttcttctc gctgcgagag tggatcttca agaaggacaa cgtccgacga 1260
ctgcaggctc gactgtcgcc ccgagatgcc gagatctaca acctggatcc tcagaccatc 1320
aactggaccg agcacttcat caacttcgtg aagggcaccc gaaagtatct gctgaaggaa 1380
aaggaccagg acatcggcga ggccaagcga cacatcagac gaatgtacta cgtgcaccac 1440
ggcttcatcc tgtttctgct ggtgctggtg ttccgatacg ccatgcagaa ccccatcatc 1500
cgatccatcg tgtacggcac cctgaagctg ctgttctctg ccttcaacgc cgcctacggc 1560
cgaatctga 1569
<210> 175
<211> 1389
<212> DNA
<213> 亚洲玉米螟(Ostrinia furnacalis)
<400> 175
atgtctgcca acaccatgga aaccgacgag cagttcacct acaactctcc catcgtgaac 60
ttctactctg gcaagtctgt gttcgtgacc ggcgctaccg gcttcctggg caccgtgctg 120
gtcgagaagc tgctgttctc ttgcaagggc atcaacaaca tctacatcct gatcaagcag 180
accgaggacc tgaccatcga ggcccgaatc ctgaactacc tgaactctaa ggccttccac 240
cgagtgaaga acactaaccc cgagctgatg aagaagatca tccccatctg cggcaacctc 300
gaggacaaga acctgggcat ctctgactct gacatgaaga ccctgctgga agaggtgtct 360
atcgtgttcc acgtggccgc caagctgatc ttcaagatgt ctctgaccgc cgctgtgaac 420
atcaacacca agcctaccga gcagctgatc gccatctgca agaagatgcg acgaaacccc 480
atcttcatct acgtgtcctc tgcctactct aacgtgaacg agcagatcat cgacgagaag 540
gtgtactcta ccggcgtgcc cctcgagact atctacgaca ccctggacgc caagaacacc 600
cgactgatgg acatcttcct ggacaagcga cccaacacct acacctactc caaggctctg 660
gccgaggtgg tcgtcgagaa ggaattcgac gagtctgccg ccatcgtgcg accctctatc 720
attgcctctt ctattcgaga gcccattcct ggctggctgt ctggctctca cggcttccct 780
cgagtggtcg aggccgcctg caagggcctg ctgctccgat ggcacggcga cggcaccgtg 840
gccttcgacg tgatccccgt ggaccacgtc gccaacctga tcattgccgc cgcttgggag 900
tctaacgagc gacgactcat gggcaacaag ggcgtgaagg tctacaactg ctgctctggc 960
ctgcgaaacc ctatcgacgt gtctaccgtg atgaacacct gtatcaagta ccgaaagtac 1020
ttcggcaccc gaaccatgtc tatcatcacc cctcgattca ttatgaagaa gaactacttc 1080
ctgtacaagc tgctgtactt cacctaccac actatccccg ctgctattat cgacggcttc 1140
ttctggctga ccggacgaac ccctatgatg ctgaacaccc tgcacaagct ccgaaagctg 1200
tcctctgtgc tcgagtactt taccctgcac cagtttctgt ttctggactc caacgtgcga 1260
ggactgctgc gacgaatgga atctaccgac cgacagacct tcaacttcga cgtcaccgag 1320
atcgagtggg agccctacct gcagaacttc gtgcgaggca ttgccaacaa ctacaactat 1380
tctatgtag 1389
<210> 176
<211> 1608
<212> DNA
<213> 印度谷螟(Plodia interpunctella)
<400> 176
atgcgactgg tgccctctgc tctggacgtg gtgctggccg ccgagcgacg actggtcccc 60
atccacgagg ctaccctgaa gggcgactct gaggtgcaga agttctacgc cggctctgtg 120
gtcctggtga ccggcggctc tggcttcctg ggcaagcagc tgatcgagaa gctgttccga 180
acctgcgacg tgaagaagct gtacatcctg ctgcgagcca agaagggcaa gtctatcggc 240
gagcgactgg actacattct gcgaaacccc gtgtacgaca ccctgcgaga gactcgaccc 300
tggttcgccg accgaatcga ggccgtcgag ggcgacattg cctcttaccg actgggcgtc 360
gccgaccata tgtgggaccg actggtggac gaggtgaccg tggtgttcca cggcgctgcc 420
accatcaact tcgctgaccc tctgcagctg gccaccaaca tcaacgtgaa gggcaccctc 480
gagatgctcg agttcggcaa ggcctgcaag aacctccgat cttacgtgca catctctacc 540
gcctacaacc aggctctgaa gaacaacgtg tcttgcgaca tcctggaaga gttccccaag 600
gctcccctgt ctcctaccac tctggtggac ctggccaacc gaaccgagac taaggtgctg 660
gacgagatgt tccacaagta cctggcacct gagtacccca acacctacgc ctacaccaag 720
gccgtggccg aagaggccgt gcgaaccatg gccggcgacc tgcctatctg cgtggtgcga 780
ccctctatcg tgatccccgc ctacactgag ccctctgccg gctgggtcga caagaactct 840
atctacggcg cctctggcat catcatgggc ctcggcctgg gcgtgattca caccctgatc 900
tctgaccccg acatcaagat cgacatcatc cccgtggaca tcgtgaacaa cgccgtgatc 960
gtggccggat gggagactgc ccgacgacga gagcagggcg agactgacac caagatctac 1020
accgtgggat cttctaaccg aaaccacatc acctggcgat ttctgaccaa cgtgttcgac 1080
aacgagggcc gaaagcacct gtcctctcag gccgtgtggt acgccttcgc cgtgcagacc 1140
aagtctaagc acctctacct ggctctggcc tggctgctgc acttcatccc cggctacatc 1200
gtggacggcg tgctgatgat ccgaggcaag aagccccagg tttctaagat ctaccgactg 1260
ctgaacacta tggccaccat cttctcgttc ttcaccctcc gaggctggaa cttcaaggac 1320
gacaacctgc tgcagctgta caagtctctg tctaagaccg accagcagat cttcaacatg 1380
gacattgcta ccctggacat gaaggaagtg atctacctct ggcacattgg cctgcgacga 1440
ttctacctga aggacaagct gaacgaccaa gagaagtcta tgaagaagca gttcttcctg 1500
cgaatcatca cctacacctt cattcctatc tacctgtact tcctgttcaa gatctcttgc 1560
ttcgtgttct acggcctgta ctacctgatc ttctcttacc tgatttga 1608
<210> 177
<211> 1596
<212> DNA
<213> 印度谷螟(Plodia interpunctella)
<400> 177
atgaccgtga acacccgacc ttctaccaac atggaatcta acatcatctc tgagcgaaac 60
tacgtgcgag actgcaccgg catcgacgtg aacatgaacg agaagcgact gacctctgtg 120
cagcagttct acaacggcaa gaacgtgctg attaccggcg ctaccggctt cctgggcaag 180
atcctggtcg agaagctgct ccgatgctgt cccggcgtcg agaacctgta cctgctggtg 240
cgacagaaga agggcaagga catctacacc cgaatcgacg agatcttcga cgaccccgtg 300
ttcgacctgc tgaaggaaca gcaccccaag ttccgacaca aggtggtggt ggtccccgcc 360
gactgcgagg tggccggcct gggactgacc ctgaccgacc gacagatgct gaccgagaag 420
gtgaacatca ttttccactc tgccgccacc gtgaagttcg acgagcacct ccgagccgct 480
ctgaacacca acgtgcgagc ccctctgcac ctcctgcgac tggcccgaga catgaaggac 540
ctggacgtcc tgatgcacat ctctaccgcc tactctaact ctcatctgcc ccacatcgag 600
gaacgattct acccctgcga ggccgactgt gagcagctgc accgaatgat cgacaagctg 660
accgacggcg agatcgacgc tctgctgccc accatcctcg gcgcttggcc caacacctac 720
accttcacca aggctctggc cgagaaggaa ctgcgagaga acgccggcga cctgcctgtg 780
ggcatcttcc gacctgccat cgtgacctct acctacaagg aacccatcaa caactggctg 840
gacaacatgt acggccccac tggcgtggcc gtgggcaccg ccaccggaat cctgcgaacc 900
ctgcagtgcg accccaacgt gaccgccgac ctggtgcctg tggaccacgt cgtgaactgc 960
ctggtggtgg ccgctcagaa ggtcaacgcc gcctaccaga cctccacacc tcctcgagag 1020
cctccaatct tcaactacgt gtcctctacc gagaaccgaa tgacctgggg cgacttcatg 1080
agacagaaca ttgcccgact ggacaagacc cctttctcta acgccatctg gtatctgtct 1140
ctgcgactca cccgatctgg cgcccgacac cgagtgtact ccctgctgct gcatctgctg 1200
cctgccgctc tggctgacgc cctggccttc tgcctgggaa agaagcccaa gatgctgaag 1260
gtctaccgaa aggtgcacaa gctgtcctct gtgctgtctt acttctgtac caccgagctg 1320
actttctgca accgaaacac tcgacagctg tgggagtcta cctctgacga ggacaagaag 1380
attttcccct tctctatgcg ggacgtgaac tgggacgagt tctttgaaga gtacatcgtg 1440
ggcatgcgac gacacctgtt caaggacggt gacgacaccc tgcctcaggc tcgaatcaag 1500
tggaagcgac tctactacct gcaccagatc gtgaagatcc tgttctgtgc cctggccgtg 1560
tacgccctgt ggtctatctt tctgcgactg tggtag 1596
<210> 178
<211> 1380
<212> DNA
<213> 甜菜夜蛾(Spodoptera exigua)
<400> 178
atgacctacc gacagatcaa cgagttcgac gccgagaagt tcaccgccgc tgctgtgccc 60
acctcttacg tgtctgtgcc cgacttctac gccggcaagt ctatcttcat taccggcggc 120
accggattcc tcggcaaggt gttcctcgag aagctgctgt actcttgcaa ggacgtcgag 180
actgtgtaca tcctgatccg agagaagaag ggcaagaccc ctcagcagcg agtcgaggac 240
ctgttcaaca agcccatctt ctcgcgactg aagcaaaagg actctcagtg catgaagaag 300
gtgaccgcca tcatcggcga cctgtctgag cccggcctgg gcatctctaa ggacgacgag 360
gaactgctgc tgcaaaaggt gtctgtggtg ttccacgtgg ccgccaacgt gcagttctac 420
aaggaattca aggaaatcat caacaccaac gtcggaggca ccaagtacgt gctgcagctg 480
tgccagcgaa tcaaggacat caaggccttc gtgcacatct ctaccgccta ctgccacacc 540
gaccagaagg tgctggaaga acgaatctac cctcctcctg ccgaactgtc tgaggtgctg 600
aagttcctgc agcagcccca gcacgacaag aagcagatca aggaactgtt taagaagcag 660
cccaactctt acaccttcgc caaggctctg gccgagactt acattgccga gaactgcgga 720
cgagtgccca ccatcatcat tcgaccctct attatctctg cctctctgaa ggaacccctg 780
cctggctggg tcgactcttg gaacggcgcc accggcctga tcaccgcctc ttacaacggc 840
gctaaccgag tgctgctcgg cgaaggcggc aacttcctgg acctgattcc tgtggacttc 900
gtggccaacc tggccatcgt ggccgctgcc aagtgcacct cttcgctgaa ggtgtacaac 960
tgctgttctt ctggctgcaa ccctctgact ctgaagcagc tggtgtctca catgaacaac 1020
gtgggcttcg acaagaacgt gtctatcatc tttaccaaca acaaggcctc tctgtctacc 1080
ctgacattct tcctgcagac cactccttct tttaccgccg acatgttcct gcgagtgacc 1140
ggaaagtctc cccgatatat gaagatccag tctaagctga ccattgctcg aaacgccctg 1200
aacttcttca cctgtcactc ttgggtgatg aaggccgaca actctcgacg actgtacgct 1260
tctctgtctc tgcacgaccg acacactttc ccttgcgacc ccaccgacat cgactggaag 1320
aagtacatca ccatctacat cgagggaatc aaccagttcc tgatgaagaa gcgatcttag 1380
<210> 179
<211> 1563
<212> DNA
<213> 甜菜夜蛾(Spodoptera exigua)
<400> 179
atggtgcccc gacctgctcc tcagttcccc acacctcctc tgatccccga gtacttcgcc 60
ggacgagagg tgctgatcac cggcgccacc ggcttcatgg gcaaggtgct ggtcgagcga 120
ctgctgtgga cctgtcctga catcggccga ctgcatctgc tgatgcgaca caagcgagat 180
gtggctcccg acaagcgact ggccctgctg aagcagtctc aggtgttcga cgtggtgcga 240
gaacgatgtc cccagcagct ggacaagctg tgcatggtgc ccggcgacgt gaccaagcga 300
cgattcggct tcgaccagtc tgccctgaac cagctcaacc aggtgtctgt ggtgttccac 360
tctgccgcca ctctgaagtt cgacgagccc ctgtctgtgg ccgccgagca gaacgtgcga 420
cccgtgctga ccctgatgga catctgcgac cagctgccta acatgcaggt cctggtgcac 480
gtgtctaccg cctactctaa cgccgagctg gccgaggtcg aggaacgagt gtaccccgct 540
cctgtgactc ccgagcacct cctggctctg gtggacgctc tgcccgcctc tatgctgcaa 600
gagatcaccc ctcgactgat cgctcccaag cctaacacct acaccttcac caaggccgtg 660
gccgagtctg ccgtgtctga gcgagccgtg accgctcgat acgcctgcgc catcttccga 720
cctaccatcg tggtgtcctc gctgcgacac ccctttccag gctggatcga gaacctgaac 780
ggcccctctg gcgtggtggc tggcgccgga aagggcctgc tgcgagtgct ccgatgtggc 840
gcccagcgac gagccgacat gatgcccgtc gacatctgca tcgacaccct gatcgccgtg 900
gcctgggaga ctggaatcga caacctgcga gaggcccgag tctaccagtg cgcctcttct 960
tctcacgccg ccacctgggg ccagttccga gagcgaatgc tgcgactggt ccgagagcac 1020
cccttcgaca acgtgctgtg gtatccctac ggcgtgatct gcgagaacac cgtggtgcaa 1080
aaggtgctcg aggccgtgct gcagaccgct cctctgtgcg tggcccactg tgtggcccga 1140
gcctgcggcc tgaagcagaa gccctctctc tggaccgcct gtaagcgact gcaggccatg 1200
aaccaggctc tgcagttctt cgctacccga cactggtctt tccgaactac ccgagtgcag 1260
cagctcgccc accgactgca ccccgacgac cagaagctgt acaacctccg acctgaaacc 1320
atcgactggg agcagcactg cgtggacttc gtgaagggcg ctcgacgata cctgcttcga 1380
gagcgagatg acgacatcca cgctgcccga cgacgaatgc gaatcctgta cctgatccac 1440
aaggctaccc tgctgttcgc cattttcacc atgtgccgac tgaccatccg aactgctccc 1500
gccatcctgt ggggcgtcgc cgctctgacc cgacagcgaa acaagtctgc tctgctgtct 1560
tag 1563
<210> 180
<211> 1581
<212> DNA
<213> 粉纹夜蛾(Trichoplusia ni)
<400> 180
atggcctctt gcctgtctgg cggccactac gtgcccggct ctcaagaata cgtccccgtg 60
gccgagttct acgccgacaa gtctgtgttc gtgaccggcg gcaccggctt catgggcaag 120
gtgctggtcg agaagctgct gcgatcttgc cccaagatca agaagatcta cctgctgatg 180
cgacccaagc gaggccagga cgtggcctct cgactgaccg agctgaccca gtctcctctg 240
ttcgagactc tgcgacgaga gcgaccccaa gagctgaaca agatcgtgcc catcgtgggc 300
gacatcaccg agcctgagct gggcatctct gccgccgacc agaccatgct gtgccaaaag 360
gtgtctgtgg tgttccactc cgccgccacc gtgaagttcg acgagaagct caagctgtct 420
gtgaccatca acatgctggg cacccagcag ctggtgcagc tgtgccaccg aatgctgtct 480
ctcgaggccc tggtgcacgt gtctaccgcc tactgcaact gtgagcgaga gcgagtcgag 540
gaaaccgtgt acgcccctcc tgctcacccc gagcacgtgg tgaccctggt ccagactctg 600
cccgacgagc tggtggaccg aatcacccct gacctggtgg gcgaccgacc taacacctac 660
accttcacca aggctctggc cgaggacatg ctgatcaagg aatctggcaa cctgcctgtg 720
tctatcgtgc gaccctctat tgtgctgtcc tctctgcgag agcccgtgaa gggctgggtc 780
gacaactgga acggccccaa cggcatcatt gccgccgtcg gcaagggcat cttccgaacc 840
atgctcggaa ccggcaccaa ggtggccgat ctggtgcccg tggacaccgt gatcaacctg 900
atgatcgtgt gcgcctggcg aacccacctc cgacgaggcg agggcgtcgt ggtgtacaac 960
tgctgcaccg gccagcagaa ccccatcacc tggcagcgat tcgtcaagac ctctttcaag 1020
tacatgcgaa agcacccctt caacgaggtg gtgtggtatc ccggcggaga catcacctct 1080
aaccgactgt ggcacggcgc cctgtctctg ctccagcatc gagcccctgc cgctctgatg 1140
gacctggccg cctctgcctc tggcaagaag cccatgatgg tgcgagtgca gaacaagctc 1200
gagaaggccg ctgcctgcct cgagtacttc accactcgac agtgggcctt cgccgacgac 1260
aacgtgcagg ccctgtgttc ttcgctgtct cctgaggacc gacgaacctt cgacttcaac 1320
gtgcgaaaca tcaactggga cgcctacatc gagtcttacg tgctgggaat ccgacgattc 1380
ctgtttaagg aatctcccga cactctgccc cagtctcgag ccgtgctgcg acgactgcac 1440
atcgtgcaca ttctgaccca ggtggctacc gtgttctttc tgtggcgatt tctgttctct 1500
cgatctaacg ccctgcgaaa cctgtggcga cgagtgctcg agctgctgac ccgagccgct 1560
cgactgctgg ccattgccta g 1581
<210> 181
<211> 1350
<212> DNA
<213> 柳黑斑巢蛾(Yponomeuta rorellus)
<400> 181
atggtccaat tgaaagaaga ttccgttgct gctttttacg ccgaaaagtc tattttcatt 60
actggtggta ctggtttctt gggtaaggtt ttgattgaaa agttgttgta ctcctgcaag 120
gccgttgatc aaatctacgt tttgatcaga aagaagaagg accaaacccc atctgaaaga 180
attgcccaat tattggaatc cgaattattc tccagattga gaaaggatga tccatccgct 240
ttgaaaaagg ttgttccagt tgttggtgat ttgaccatgc ctaatttggg tttgtctgct 300
gctgttgaag atttgattgt ctctaaggtt accgttatct tccatgttgc tgctactgtt 360
aagttcaacg aaagaatgaa gaacgccttg gttaacaacg ttgaagctac tagagaagtc 420
atcaacttgt gccatagatt ggaaaaggtt gatgccttca ttcatgtttc taccgcttac 480
tctaataccg atcaaaaggt cgttgaagaa agagtttatc caccaccagc tccattgtct 540
gaagtttatg cttttgttaa gaactacggt gacgacatgg atatcatcca aaatttgttg 600
aacggtagac caaacactta cacctacaca aaagctttgg ctgaagatat cgtcttgaaa 660
gaacatggtg gtattccaac cgctattatc agaccatcta tcgttttgtc cgttttaaaa 720
gaacctatcc caggttggtt ggataattgg aatggtccaa ctggtttgtt gcatgcttct 780
tcacaaggtg ttcattgctc tatgttgggt tctggttcta atgttgccga tttgattcca 840
gttgatatcg tcactaactt gatgatcgtt gttgcttcta gatgcagaaa gtctaatggt 900
ttgaaggtct acaactcttg ttctggtact accaacccaa ttacttacca agctttcacc 960
aagatgttct tggattcctg tatttctaga ggttggaaca aggttccatt ccctttgttg 1020
atttttgtca agtgggcttt cttgaacaga gtcttgaagt tcttgttggt tatcgtccca 1080
ttcttcttga tcgatgtcta cttgagattt ttcggtaagc caaactacat gagaatgatc 1140
acctacacca agaaagctga agatttgatg accttcttca cctctcatga atggcaattc 1200
aaggatggta atgtcagaga cttgatcaac atgatgtctc cagaagatag aaagatcttc 1260
tactgcgatc ctgaagaaat tcaatggaag ccatacttcg atgattactg cgttggtgtc 1320
tttaaatact tgttgaagag aaaggtttaa 1350
<210> 182
<211> 679
<212> PRT
<213> 苹果蠹蛾(Cydia pomonella)
<400> 182
Met Ala Asp Ser Pro Pro Glu Asp Asn Thr Pro Thr Arg Asn Gly Ser
1 5 10 15
Leu Lys Ile Ser Leu Pro Thr Val Leu Cys Thr Pro Glu Ser Ser Glu
20 25 30
Asn Ser Asp Ile Leu Cys Lys Thr Lys Thr Phe Ile Ser Ser Glu Ser
35 40 45
Lys Leu Ser Leu Pro Ser Asn Leu Gly Thr Pro Thr Ser Pro Leu Arg
50 55 60
Leu Ser Ser Pro Leu Ser Leu Pro Thr Ser Pro Thr Pro Tyr Met Lys
65 70 75 80
Ile Thr Gln Pro Gln Pro Glu Lys Thr Val Ala Ala Thr Gln Met Asn
85 90 95
Ser Pro Pro Thr Thr Ile Val Gln Gln Thr Gly Pro Lys Gln Pro Leu
100 105 110
Val Asn Thr Gly Ser Ala Thr Gly Asn Pro Arg Asn Lys Cys Ala Leu
115 120 125
Gln Pro Gly His Ser Leu Met Asp Trp Ile Arg Leu Gly Asn Ser Gly
130 135 140
Lys Asp Leu Thr Gly Val Gly Gly Arg Met Arg Pro Val Ser Pro Asp
145 150 155 160
Glu Leu Ala Ala His Asn Thr Arg Asn Asp Ala Trp Leu Ala Ile Arg
165 170 175
Gly Arg Val Tyr Asn Ile Thr His Tyr Leu Pro Tyr His Pro Gly Gly
180 185 190
Pro Glu Glu Leu Met Arg Gly Ala Gly Ile Asp Ala Thr Gln Leu Phe
195 200 205
Asp Lys Val His Pro Trp Val Asn Tyr Asp Ser Leu Leu Ala Lys Cys
210 215 220
Leu Val Gly Pro Leu Arg Leu Asp Arg Pro Asp Ala Glu Glu Leu Phe
225 230 235 240
Gly Pro Ser Thr Pro Ser Pro Lys Ser Glu Asn Arg Leu Arg Glu Pro
245 250 255
Ser Lys Ala Gln Glu Leu Val Arg Lys Ser Met Glu Asn Leu Ala Asn
260 265 270
Cys Ile Thr Pro Val Arg Lys Lys Met Ser Ala Lys Ser Glu Glu Asn
275 280 285
Ile Lys Gly Ser Pro Pro Ser Lys Ile Met Gln Ser Leu Ile Gln Ser
290 295 300
Ser Asp Leu Pro Val Ser Ile Ser Arg Arg Ala Ala Ala Ser Pro Val
305 310 315 320
Lys Thr Ser Glu Lys Ser Asp Ile Ala Pro Ser Pro Leu Arg Phe Asp
325 330 335
Trp Ile Gln Thr Ser Thr Lys Leu Thr Leu Ser Ile Tyr Thr Gly Pro
340 345 350
Leu Ala Asn Pro Gly Gly Cys Ala Arg Ile Ile Glu Gly Ile Leu Phe
355 360 365
Val Glu Val Ala Thr Asn Gly Trp Val Arg Thr Leu Lys Leu Val Pro
370 375 380
Glu Ala Lys Leu Leu Glu Ser Leu Gln Leu Arg Val Phe Ala Glu Ser
385 390 395 400
Gly Lys Ile Glu Val Thr Ala His Lys Ala Glu Pro Gly Val Trp Lys
405 410 415
Thr Cys Gly Glu Ala Met Ala Gly Ala Ala Ser Arg Val Ser Thr Pro
420 425 430
Arg Ser Val Ser Cys Arg Val Ala Arg Met Leu Arg Val Ser His Asp
435 440 445
Thr Val Leu Leu Ser Leu Ala Ala Pro Ala Gln Ala Leu Val Ala Pro
450 455 460
Leu Gly His His Val Arg Val His Arg Thr Ile Ser Asp Val Glu Cys
465 470 475 480
Val Arg Ser Tyr Thr Pro Val Gly Glu Gly Trp Gly Pro Asp Ala Glu
485 490 495
Arg Asp Ser Ala Ile His Leu Ala Val Lys Gly Tyr Asp Thr Gly Ala
500 505 510
Leu Ser Pro Tyr Leu Thr Ala Leu Gln Pro Gly Asp Glu Val Thr Val
515 520 525
Ser Gly Pro Tyr Gly Asn Phe Gln Leu His Thr Leu Lys Gly Val Lys
530 535 540
Glu Ile Tyr Phe Val Ala Ala Gly Thr Gly Ile Thr Pro Met Leu Gly
545 550 555 560
Leu Leu Lys Phe Met Leu Pro Arg Ser Asn Pro Arg Cys Glu Arg Ile
565 570 575
His Leu Leu Phe Phe Asn Lys Thr Glu Glu Asp Ile Leu Phe Arg Glu
580 585 590
Asn Phe Glu Glu Ile Ala Arg Glu Asp Asp Arg Phe Thr Val Thr His
595 600 605
Val Leu Ser Asp Ala Gly Pro Ser Trp Ser Gly His Lys Gly Arg Val
610 615 620
Thr Thr Asn Leu Leu Thr Gln Val Ile Gly Lys Ser Phe Leu Lys Cys
625 630 635 640
Arg Asp Gln Cys Thr His Phe Ala Cys Val Cys Gly Pro Thr Glu Phe
645 650 655
Thr His Thr Ala Ile Asp Leu Leu Lys Lys Leu Asp Met Lys Asp Ser
660 665 670
Cys Ile His Ala Phe Met Gly
675
<210> 183
<211> 669
<212> PRT
<213> 黄地老虎(Agrotis segetum)
<400> 183
Met Asn Thr Met Asp Gly Ser Pro Gly Arg Glu Asn Gln Lys Ser Thr
1 5 10 15
Arg Lys Ile Ser Leu Pro Thr Val Leu Cys Thr Pro Glu Pro Ser Asp
20 25 30
Asp Arg Ser Asp Met Lys Val Asn Ser Phe Met Ser Ser Asp Ser Lys
35 40 45
Met Ser Leu Pro Thr Asn Leu Gly Thr Pro Thr Ser Pro Leu Arg Leu
50 55 60
Ser Ser Pro Ile Ser Leu Pro Thr Ser Pro Cys Val Lys Thr Ser Gln
65 70 75 80
Thr Ser Ser Ala Asn Ser Leu Pro Asn Pro Asn Pro Lys Pro Val Thr
85 90 95
Ser Ser Ala Ala Thr Asn Asn Ile Val Asn Ser Gly Ser Ala Thr Gly
100 105 110
Asn Pro Arg Asn Lys Cys Ala Leu Gln Pro Gly His Ser Leu Met Asp
115 120 125
Trp Ile Arg Leu Gly Asn Ser Gly Lys Asp Leu Thr Gly Val Gly Gly
130 135 140
Arg Ile Arg Pro Val Ser Pro Ala Glu Leu Ser Thr His Asn Thr Leu
145 150 155 160
Asn Asp Ala Trp Leu Ala Ile Arg Gly Arg Val Tyr Asn Ile Thr His
165 170 175
Tyr Leu Pro Tyr His Pro Gly Gly Pro Glu Glu Leu Met Arg Gly Ala
180 185 190
Gly Met Asp Ala Thr Gln Leu Phe Asp Lys Val His Pro Trp Val Asn
195 200 205
Tyr Asp Ser Leu Leu Ala Lys Cys Leu Val Gly Pro Leu Arg Phe Glu
210 215 220
Leu Pro Asp Ala Glu Glu Leu Phe Asp Thr Ser Asn Pro Ser Pro Lys
225 230 235 240
Ser Asp Arg Leu Arg Glu Pro Ser Lys Ala Gln Glu Leu Val Arg Lys
245 250 255
Ser Met Glu Asn Leu Ala Asn Cys Ile Thr Pro Val Arg Lys Lys Ile
260 265 270
Thr Lys Gly Asp Asp Asn Thr Lys Gly Ser Pro Pro Ser Lys Ile Met
275 280 285
Gln Ser Leu Val Gln Ser Ala Asp Leu Pro Met Ser Ile Ser Arg Arg
290 295 300
Ala Ala Ser Ser Pro Val Lys Lys Thr Glu Lys Ser Pro Asp Ser Pro
305 310 315 320
Leu Pro Leu Arg Tyr Asp Trp Ile Gln Thr Ser Thr Lys Leu Thr Ile
325 330 335
Tyr Val Tyr Thr Gly His Leu Ala Asn Pro Gly Gly Cys Ala Arg Ile
340 345 350
Thr Glu Gly Phe Leu Leu Ile Glu Val Ala Thr Asn Gly Trp Leu Arg
355 360 365
Thr Leu Lys Ile Lys Pro Glu Ala Lys Leu Lys Glu Pro Leu Gln Leu
370 375 380
Arg Val Phe Ala Glu Ser Gly Lys Ile Glu Ile Thr Ala Leu Lys Val
385 390 395 400
Asp Pro Ser Val Trp Lys Gly Cys Gly Asp Val Ser Val Gly Val Ala
405 410 415
Ser His Val Ser Ser Pro Arg Ser Val Glu Cys Arg Val Met Glu Val
420 425 430
Ser Arg Val Ser His Asp Thr Ser Leu Leu Ser Val Cys Pro Arg Ala
435 440 445
Gly Pro Val Val Val Pro Leu Gly His His Val Arg Val His Arg Arg
450 455 460
Ile Glu Gly Thr Glu Cys Ile Arg Ser Tyr Thr Pro Val Gly Glu Gly
465 470 475 480
Trp Gly Pro Ala Asp Gly Thr Glu Val Phe Ser Ala Leu Arg Leu Ala
485 490 495
Val Lys Arg Tyr Asp Ser Gly Ala Leu Ser Pro His Leu Thr Ala Leu
500 505 510
Lys Val Gly Asp Leu Ile Thr Leu Ser Gly Pro Tyr Gly Asn Phe Gln
515 520 525
Leu Gln Lys Leu Lys Thr Val Lys Ser Leu Tyr Leu Ile Ala Ala Gly
530 535 540
Thr Gly Val Thr Pro Met Leu Gly Leu Ile Arg Phe Met Ile Ser Arg
545 550 555 560
Ser Asn Pro Arg Cys Glu Arg Thr His Leu Leu Phe Phe Asn Lys Thr
565 570 575
Glu Glu Asp Ile Leu Phe Arg Glu Asn Phe Glu Glu Met Met Lys Glu
580 585 590
Asp Asp Arg Leu Lys Ile Thr His Val Leu Ser Glu Gly Ser Ser Ser
595 600 605
Trp Ser Gly His Arg Gly Arg Ile Arg Asp Glu Leu Leu Ala Glu Thr
610 615 620
Ile Gly Asn Val Lys Cys Asp Asp Lys Cys Ser His Tyr Ala Cys Leu
625 630 635 640
Cys Gly Pro Thr Glu Phe Thr Tyr Ala Gly Leu Asp Leu Leu Lys Lys
645 650 655
His Gly Phe Lys Asp Asp Cys Ile His Ala Phe Met Gly
660 665
<210> 184
<211> 578
<212> PRT
<213> 欧洲熊蜂(Bombus terrestris)
<400> 184
Met Lys Lys Ser Leu Ser Lys Asn Gln Arg Lys Ser Asp Asp Thr Glu
1 5 10 15
Thr Lys Asp Ile Arg Gly Lys Met Glu Glu Ile Asp Val Lys Ser Ser
20 25 30
Ser Ser Thr Asn Ser Met Thr Asn Asn Leu Ala Leu Leu Pro Ser Gly
35 40 45
Val Gly Arg Met Lys Gln Leu Gln Gly Ala Lys Met Val Asn Gln Thr
50 55 60
Gly Ser Ser Ser Ser Gly Ser Ala Thr Gly Asn Pro Arg Asn Lys Thr
65 70 75 80
Ala Leu Ala Pro Gly His Ser Leu Met Asp Trp Ile Arg Leu Gly Asn
85 90 95
Ser Gly Val Asp Leu Thr Gly Val Gly Gly Val Pro Arg Val Val Thr
100 105 110
Leu Ser Glu Leu Ala Thr His Asn Lys Gln Asp Asp Ala Trp Ile Ala
115 120 125
Ile Arg Gly Ile Val Phe Asn Val Thr Arg Tyr Met Asp Phe His Pro
130 135 140
Gly Gly Val Asn Glu Leu Met Arg Gly Val Gly Lys Asp Ala Thr Lys
145 150 155 160
Leu Phe Glu Asn Val His Ala Trp Val Asn Tyr Gln Ser Ile Leu Gln
165 170 175
Lys Cys Val Val Gly Arg Leu Ser Arg Gly Ser Val Ser Gly Thr Thr
180 185 190
Ser Ser Pro Thr Glu Asn Pro Val Ser Ser Thr Ser Asn Cys Ser Ser
195 200 205
Ala Thr Leu Asn Leu Ile Thr Ser Cys Thr Thr His Ser Val Ser Gln
210 215 220
Glu Asn Val Ser Asp Ala Ser Ser Leu Asn Ile Lys Met Asp Trp Arg
225 230 235 240
Gln Thr Ser Asp Ser Leu Thr Leu Ser Tyr Gln Thr Thr Arg Tyr Tyr
245 250 255
Pro Gly Leu Cys Tyr Gln Leu Ser Arg Ile Asn Asp Ser Lys Leu Met
260 265 270
Tyr Lys Leu Val Phe Ala Ser Gly Ser Ile Thr His Glu Leu Glu Leu
275 280 285
Thr Ala Glu Ile Gln Trp Pro Pro Val Cys Ile Lys Asn Phe Glu Thr
290 295 300
Arg Glu Ile Thr Phe Thr Phe Met Lys Gln Lys Gln Glu Leu Trp Lys
305 310 315 320
Ser Tyr Gly Glu Gln Met Val Cys Arg Glu Met Asn Arg Asp Asn Arg
325 330 335
Thr Tyr Arg Glu Tyr Gln Val Leu Thr Asn Lys Gln Leu Ser Lys Leu
340 345 350
Val His Leu Leu Val Val Arg Ala Lys Asp Phe Leu Gln Ile Val Pro
355 360 365
Ile Gly Arg His Val Glu Ala Met Leu Asn Val Met Gly Thr Glu Val
370 375 380
Ser Arg Leu Tyr Thr Pro Val Pro Pro Cys Leu His Pro Asp Asp Met
385 390 395 400
Ala Pro Asn Tyr Lys Ser Asp Cys Leu Cys Phe Met Ile Lys Lys Tyr
405 410 415
Pro Asn Gly Ala Leu Ser Pro Ser Ile Thr Ala Leu Gln Ile Gly Glu
420 425 430
Thr Leu Arg Leu Ser Asn Ala Leu Gly Asp Phe Thr Val Glu Ser Cys
435 440 445
Asp Gly Tyr Ser Ile Asn His Met Ile Ala Gly Gly Thr Gly Leu Thr
450 455 460
Ala Met Leu Gly Ile Ile Gln Arg Ala Leu Ala Arg Arg Ser Val Lys
465 470 475 480
Thr Ile Asn Leu Leu Asn Phe Asn Lys Asp Glu Asp Asn Met Phe Tyr
485 490 495
Val Lys Glu Leu Glu Lys Ala Ser Ala Asp Asn Lys Leu Lys Val Thr
500 505 510
His Ile Leu Ser Gln Ala Gly Asp Ala Trp Thr Gly Arg Arg Gly Thr
515 520 525
Leu Ser Asp Asp Leu Leu Gln Asp Leu Val Gly Thr Ser Asn Pro Asp
530 535 540
Ala Phe Val Tyr Thr Cys Gly Pro Gln Glu Phe Ile Gln Leu Ala Lys
545 550 555 560
Asn Ser Leu Gln Lys Leu Asn Trp Lys Pro Phe Gln Met Tyr Glu Phe
565 570 575
Asp Asp
<210> 185
<211> 678
<212> PRT
<213> 葡萄花翅小卷蛾(Lobesia botrana)
<400> 185
Met Ala Asp Pro Pro Ala Glu Asp Asn Thr Pro Ser Arg Asn Gly Ser
1 5 10 15
Leu Lys Ile Ser Ile Pro Thr Val Leu Cys Thr Pro Glu Ser Ser Glu
20 25 30
Asn Ser Asp Ile Leu Cys Lys Thr Lys Ser Leu Leu Ser Ser Glu Ser
35 40 45
Lys Leu Ser Leu Pro Ser Asn Leu Gly Thr Pro Thr Ser Pro Leu Arg
50 55 60
Leu Ser Ser Pro Leu Ser Leu Pro Ala Ser Pro Thr Pro Phe Met Lys
65 70 75 80
Val Thr Gln Pro Pro Pro Glu Lys Val Thr Ser Gly Gln Met Asn Ser
85 90 95
Pro Pro Ser Thr Ile Val Leu Gln Ser Gly Pro Lys Pro Pro Leu Ala
100 105 110
Asn Thr Gly Ser Ala Thr Gly Asn Pro Arg Asn Lys Cys Ala Leu Gln
115 120 125
Pro Gly His Ser Leu Met Asp Trp Ile Arg Leu Gly Asn Ser Gly Lys
130 135 140
Asp Leu Thr Gly Val Gly Gly Arg Met Arg Pro Val Ser Pro Asp Glu
145 150 155 160
Leu Ala Ser His Asn Ser Gln Asn Asp Ala Trp Leu Ala Ile Arg Gly
165 170 175
Arg Val Tyr Asn Ile Thr His Tyr Leu Pro Tyr His Pro Gly Gly Pro
180 185 190
Glu Glu Leu Met Arg Gly Ala Gly Ile Asp Ala Thr Gln Leu Phe Asp
195 200 205
Lys Val His Pro Trp Val Asn Tyr Asp Ser Leu Leu Ala Lys Cys Leu
210 215 220
Val Gly Pro Leu Arg Leu Glu Arg Pro Asp Ala Glu Glu Leu Phe Gly
225 230 235 240
Pro Ser Thr Pro Ser Pro Lys Thr Glu Asn Arg Leu Arg Glu Pro Ser
245 250 255
Lys Ala Gln Glu Leu Val Arg Lys Ser Met Glu Asn Leu Ala Asn Cys
260 265 270
Ile Thr Pro Val Arg Lys Lys Ile Ser Ala Lys Ser Glu Glu Ser Val
275 280 285
Lys Gly Ser Pro Pro Ser Lys Ile Met Gln Ser Leu Ile Gln Ser Ser
290 295 300
Asp Leu Pro Val Ser Ile Ser Arg Arg Ala Ala Ala Asn Pro Val Lys
305 310 315 320
Thr Ser Glu Lys Thr Asp Val Ala Pro Ser Pro Leu Arg Phe Asp Trp
325 330 335
Ile Gln Thr Ser Thr Lys Leu Thr Leu Ser Ile Tyr Thr Gly Pro Leu
340 345 350
Val Asn Pro Gly Val Cys Ala Arg Ile Ile Glu Gly Ile Leu Phe Val
355 360 365
Glu Val Ala Thr Asn Gly Trp Val Arg Thr Leu Lys Leu Val Pro Glu
370 375 380
Ala Lys Leu Gln Asp Ser Leu Gln Leu Arg Val Phe Ala Glu Ser Gly
385 390 395 400
Lys Ile Glu Val Val Ala Gln Lys Val Glu Pro Gly Val Trp Lys Gly
405 410 415
Cys Gly Asp Ala Val Ser Gly Ala Ala Ser His Val Pro Thr Pro Arg
420 425 430
Ser Val Val Cys Arg Val Ser Arg Val Thr Arg Val Ser His Asp Thr
435 440 445
Val Leu Leu Ser Leu Ala Thr Pro Ala Gln Ala Leu Val Ala Pro Leu
450 455 460
Gly His His Val Arg Val His Arg Thr Ile Ser Asp Val Glu Cys Val
465 470 475 480
Arg Ser Tyr Thr Pro Val Gly Glu Gly Trp Thr Ser Asp Gly Glu Arg
485 490 495
Asp Ser Ala Ile His Leu Ala Val Lys Gly Tyr Glu Thr Gly Ala Leu
500 505 510
Ser Pro His Leu Val Ala Leu Gln Pro Asp Asp Glu Val Thr Val Ser
515 520 525
Gly Pro Tyr Gly Asn Phe Glu Leu Gln Lys Leu Arg Gly Val Lys Glu
530 535 540
Ile Cys Phe Val Ala Ala Gly Thr Gly Ile Thr Pro Met Leu Gly Leu
545 550 555 560
Leu Lys Phe Ile Leu Pro Arg Ser Asn Pro Arg Cys Glu Arg Val His
565 570 575
Leu Leu Phe Phe Asn Lys Thr Glu Glu Asp Ile Leu Phe Arg Gln Asn
580 585 590
Phe Glu Glu Ile Ala Lys Glu Asp Asp Arg Phe Ser Val Thr His Val
595 600 605
Leu Ser Asp Ala Ser Ser Ser Trp Ser Gly Arg Arg Gly Arg Ile Thr
610 615 620
Ser Asp Leu Leu Thr Gln Val Val Gly Lys Asp Ser Leu Lys Cys Arg
625 630 635 640
Glu Gln Cys Val His Phe Ala Cys Val Cys Gly Pro Thr Asp Phe Thr
645 650 655
His Thr Thr Ile Asp Leu Leu Lys Lys Leu His Met Lys Asp Ser Cys
660 665 670
Ile His Ala Phe Met Gly
675
<210> 186
<211> 2040
<212> DNA
<213> 苹果蠹蛾(Cydia pomonella)
<400> 186
atggccgact ctccacctga ggacaacacc cctactcgaa acggctctct gaagatctct 60
ctgcccaccg tgctgtgcac ccctgagtcc tctgagaact ctgacatcct gtgcaagacc 120
aagaccttca tctcttctga gtctaagctg tctctgccct ctaacctggg aacccctacc 180
tctcctctgc gactctcttc tcccctgtcg ctgcccacct ctcctacacc ttacatgaag 240
atcacccagc ctcagcctga aaagaccgtg gccgccactc agatgaactc cccacctacc 300
accatcgtgc agcagaccgg acctaagcag cccctggtga acaccggctc tgccactggc 360
aaccctcgaa acaagtgcgc tctgcagccc ggccactctc tgatggactg gatccgactg 420
ggcaactctg gcaaggacct gaccggcgtc ggcggacgaa tgcgacccgt gtctcccgac 480
gagctggccg ctcacaacac ccgaaacgac gcctggctgg ccatccgagg ccgagtgtac 540
aacatcaccc actacctgcc ttaccatcct ggcggacccg aggaactgat gcgaggcgcc 600
ggaatcgacg ctacccagct gttcgacaag gtgcaccctt gggtgaacta cgactctctg 660
ctggccaagt gcctggtggg acccctgcga ctggaccgac ctgacgctga ggaactgttc 720
ggcccctcta ctccctcgcc taagtctgag aaccgactgc gagagccctc taaggcccaa 780
gagctggtgc gaaagtctat ggaaaacctg gccaactgca tcacccctgt gcgaaagaag 840
atgtctgcca agtctgagga aaacatcaag ggatctccac cttctaagat catgcagtct 900
ctgattcagt cctccgacct gcctgtgtct atttctcgac gagccgccgc ttctcccgtc 960
aagacctccg agaagtctga tatcgcccct tcgcctctgc gattcgactg gattcagacc 1020
tctaccaagc tgaccctgtc tatctacacc ggacctctgg ctaaccccgg tggctgcgcc 1080
cgaatcatcg agggcatcct gttcgtcgag gtcgccacca acggctgggt gcgaaccctg 1140
aagctggtgc ccgaggccaa gctgctcgag tctctgcagc tgcgagtgtt cgccgagtct 1200
ggcaagatcg aggtgactgc ccacaaggct gagcccggcg tgtggaagac ctgcggcgag 1260
gccatggctg gcgctgcctc tcgagtgtct acccctcgat ctgtgtcttg ccgagtggcc 1320
cgaatgctgc gagtctccca cgacaccgtc ctgctgtccc tggctgctcc cgctcaggcc 1380
ctggtggctc ccctgggcca ccacgtgcga gtgcaccgaa ccatctctga cgtcgagtgc 1440
gtgcgatctt acacccctgt cggcgaaggc tggggacccg acgccgagcg agactctgcc 1500
atccacctgg ccgtgaaggg ctacgacacc ggcgctctgt ctccctacct gactgccctg 1560
cagcctggcg acgaggtgac cgtgtctggc ccctacggca acttccagct gcacaccctg 1620
aagggcgtga aggaaatcta cttcgtcgcc gctggcaccg gaatcacccc tatgctgggc 1680
ctgctgaagt tcatgctgcc ccgatctaac cctcgatgcg agcgaatcca cctcctgttc 1740
ttcaacaaga ccgaagagga cattctgttc cgagagaact tcgaggaaat cgcccgagag 1800
gacgaccgat tcaccgtgac tcacgtgctg tctgacgctg gcccctcttg gtctggccac 1860
aagggacgag tgaccaccaa cctgctgacc caggtgatcg gcaagtcttt cctgaagtgc 1920
cgagatcagt gcacccactt cgcctgcgtg tgcggcccca ccgagtttac ccacaccgcc 1980
atcgacctgc tcaagaagct ggacatgaag gactcttgca tccacgcctt catgggctag 2040
<210> 187
<211> 2010
<212> DNA
<213> 黄地老虎(Agrotis segetum)
<400> 187
atgaacacca tggacggctc tcccggccga gagaaccaga agtctacccg aaagatctct 60
ctgcccaccg tgctgtgtac ccctgagcct tctgacgacc gatctgatat gaaggtgaac 120
tctttcatgt cctctgactc taagatgtcc ctgcctacca acctgggaac ccctacctct 180
cctctgcgac tgtcctctcc tatttctctg cctacctcgc cttgcgtcaa gacctctcag 240
acctcttctg ccaactcgct gcccaaccct aaccctaagc ctgtgacctc ttccgccgcc 300
accaacaaca tcgtgaactc tggctctgcc actggcaacc ctcgaaacaa gtgcgctctg 360
cagcccggcc actctctgat ggactggatc cgactgggca actctggcaa ggacctgacc 420
ggcgtcggcg gacgaattcg acccgtgtct cccgccgagc tgtctaccca caacaccctg 480
aacgacgcct ggctggccat ccgaggccga gtgtacaaca tcacccacta cctgccttat 540
caccccggtg gacccgagga actgatgcga ggcgccggaa tggacgctac ccagctgttc 600
gacaaggtgc acccctgggt gaactacgac tctctgctgg ccaagtgcct ggtgggaccc 660
ctgcgattcg agctgcccga cgctgaggaa ctgtttgaca cttctaaccc ctcgcctaag 720
tctgaccgac tgcgagagcc ctctaaggcc caagagctgg tgcgaaagtc tatggaaaac 780
ctggccaact gcatcacccc tgtgcgaaag aagatcacca agggcgacga caacaccaag 840
ggatctccac cttctaagat catgcagtct ctggtgcagt ctgccgacct gcctatgtct 900
atctctcgac gagccgcctc ttcgcccgtg aagaagaccg agaagtctcc tgactctccc 960
ctgcctctgc gatacgactg gattcagacc tccaccaagc tgaccatcta cgtgtacacc 1020
ggccacctgg ctaaccctgg cggctgcgcc cgaattaccg agggcttcct gctgatcgag 1080
gtggctacca acggctggct gcgaaccctg aagatcaagc ccgaggccaa gctgaaggaa 1140
cccctgcagc tgcgagtgtt cgccgagtct ggcaagatcg agatcaccgc tctgaaggtg 1200
gacccctctg tgtggaaggg ctgcggcgac gtgtctgtgg gcgtcgcctc tcacgtgtcc 1260
tcgcctcgat ctgtcgagtg ccgagtgatg gaagtgtctc gagtgtctca cgacacctcg 1320
ctgctgtctg tgtgtccccg agctggcccc gtggtggtgc ccctgggcca ccacgtgcga 1380
gtgcaccgac gaatcgaggg caccgagtgc atccgatctt acacccctgt cggcgaaggc 1440
tggggacccg ccgacggcac cgaggtgttc tctgccctgc gactggccgt gaagcgatac 1500
gattctggcg ctctgtctcc ccacctgact gccctgaagg tcggcgacct gatcaccctg 1560
tctggcccct acggcaactt ccagctgcaa aagctcaaga ccgtcaagtc tctgtacctg 1620
attgccgccg gaaccggcgt gacccctatg ctgggcctga tccgattcat gatctctcga 1680
tctaaccctc gatgcgagcg aacccacctc ctgttcttca acaagaccga agaggacatc 1740
ctgtttcgag agaacttcga ggaaatgatg aaggaggacg accgactcaa gatcacccac 1800
gtgctgtctg agggatcttc ttcttggtct ggacaccgag gacgaatccg agatgagctg 1860
ctggccgaga ctatcggcaa cgtgaagtgt gacgacaagt gctctcacta cgcctgcctg 1920
tgcggcccca ccgagtttac ctacgccggc ctggacctgc tgaagaagca cggcttcaag 1980
gacgactgca tccacgcctt catgggctag 2010
<210> 188
<211> 1737
<212> DNA
<213> 欧洲熊蜂(Bombus terrestris)
<400> 188
atgaagaagt ccctgtctaa gaaccagcga aagtctgacg acaccgagac taaggacatc 60
cgaggcaaga tggaagagat cgacgtgaag tcctcttctt ctaccaactc tatgaccaac 120
aacctggctc tgctgccctc tggcgtgggc cgaatgaagc agctgcaggg cgccaagatg 180
gtgaaccaga ccggatcttc ttcttctgga tctgccactg gcaaccctcg aaacaagacc 240
gctctggctc ccggccactc tctgatggac tggatccgac tgggcaactc cggcgtggac 300
ctgaccggcg tcggaggcgt gccccgagtg gtgaccctgt ctgagctggc tacccacaac 360
aagcaggacg acgcctggat cgccatccga ggaatcgtgt tcaacgtgac ccggtacatg 420
gactttcacc ccggtggcgt gaacgagctg atgcgaggcg tcggcaagga cgccaccaag 480
ctgttcgaga acgtgcacgc ctgggtgaac taccagtcta tcctgcagaa gtgcgtcgtc 540
ggacgactgt ctcgaggctc tgtgtctggc accacctctt cgcccactga gaaccccgtg 600
tcctctacct ctaactgttc ttctgctacc ctgaacctga tcacctcttg caccactcac 660
tctgtgtccc aagagaacgt gtctgacgcc tcttcgctga acatcaagat ggattggcga 720
cagacctctg actctctcac cctgtcttac cagaccactc ggtactaccc cggcctgtgc 780
taccagctgt ctcgaatcaa cgactctaag ctgatgtaca agctggtgtt cgcctctgga 840
tctatcaccc acgagctgga actgaccgcc gagatccagt ggcctcctgt gtgcatcaag 900
aacttcgaga ctcgagagat caccttcacc tttatgaagc agaagcaaga gctttggaag 960
tcttacggcg agcagatggt gtgccgagag atgaaccgag acaaccgaac ctaccgagag 1020
taccaggtgc tgactaacaa gcagctgtct aagctggtgc acctcctggt ggtgcgagcc 1080
aaggacttcc tgcagatcgt gcccatcggc cgacacgtcg aggccatgct gaacgtgatg 1140
ggcaccgagg tgtctcgact gtacacccct gtgcctccat gtctgcaccc cgacgacatg 1200
gctcccaact acaagtctga ctgcctgtgc ttcatgatca agaagtaccc caacggcgct 1260
ctgtctccct ctatcaccgc tctgcagatt ggcgagactc tgcgactgtc taacgccctg 1320
ggcgacttca ccgttgagtc ttgcgacggc tactctatca accacatgat tgccggcgga 1380
accggcctga ccgccatgct gggcatcatc cagcgagccc tggctcgacg atctgtcaag 1440
accatcaacc tgctgaactt caacaaggac gaggacaaca tgttctacgt gaaggaactc 1500
gagaaggcct ctgccgacaa caagctgaag gtgacccaca tcctgtctca ggccggcgac 1560
gcttggaccg gccgacgagg caccctctct gacgacctgc tgcaggacct ggtgggcact 1620
tctaaccccg acgccttcgt gtacacctgt ggaccccaag agttcatcca gctggccaag 1680
aactctctgc agaagctgaa ctggaagccc ttccagatgt acgagttcga cgactag 1737
<210> 189
<211> 2037
<212> DNA
<213> 葡萄花翅小卷蛾(Lobesia botrana)
<400> 189
atggctgacc ctccagccga ggacaacacc ccttctcgaa acggctctct gaagatctct 60
atccccaccg tgctgtgcac ccctgagtcc tctgagaact ctgacatcct gtgcaagacc 120
aagtctctgc tgtcctccga gtctaagctg tctctgccct ctaacctggg aacccctacc 180
tctcctctgc gactctcttc tcccctgtcg ctgcccgctt ctcccactcc tttcatgaag 240
gtgacccagc ctccacctga gaaggtcacc tctggacaga tgaactctcc tccttctacc 300
atcgtgctgc agtctggccc caagcctcct ctggccaaca ccggctctgc cactggcaac 360
cctcgaaaca agtgcgctct gcagcccggc cactctctga tggactggat ccgactgggc 420
aactctggca aggacctgac cggcgtcggc ggacgaatgc gacccgtgtc tcccgacgag 480
ctggcctctc acaactctca gaacgacgcc tggctggcca tccgaggccg agtgtacaac 540
atcacccact acctgcctta ccatcctggc ggacccgagg aactgatgcg aggcgccgga 600
atcgacgcta cccagctgtt cgacaaggtg cacccttggg tgaactacga ctctctgctg 660
gccaagtgcc tggtgggacc cctgcgactc gagcgacccg acgctgagga actgttcggc 720
ccctctactc cctcgcctaa gaccgagaac cgactgcgag agccctctaa ggcccaagag 780
ctggtgcgaa agtctatgga aaacctggcc aactgcatca cccctgtgcg aaagaagatc 840
tccgccaagt ctgaggaatc tgtgaagggc tcgcctcctt cgaagatcat gcagtctctg 900
attcagtcct ccgacctgcc tgtgtctatt tctcgacgag ccgctgctaa ccccgtcaag 960
acctctgaaa agaccgacgt ggccccttcg cctctgcgat tcgactggat tcagacctct 1020
accaagctga ccctgtctat ctacaccgga cctctggtga accccggcgt gtgcgcccga 1080
atcatcgagg gcatcctgtt cgtcgaggtc gccaccaacg gctgggtgcg aaccctgaag 1140
ctggtgcccg aggccaagct gcaggactct ctccagctgc gagtgttcgc cgagtctggc 1200
aagatcgagg tggtggccca aaaggtcgag cccggtgtct ggaagggttg cggtgacgcc 1260
gtgtccggtg ctgcctctca cgtgcccact cctcgatctg tggtgtgccg agtgtctcga 1320
gtcacccgag tgtcccacga caccgtcctg ctgtccctgg ctacccctgc tcaggccctg 1380
gtggctcccc tgggacacca cgtgcgagtg caccgaacca tctctgacgt cgagtgcgtg 1440
cgatcttaca cccctgtcgg cgaaggctgg acctctgacg gcgagcgaga ctctgccatc 1500
cacctggccg tgaagggata cgagactggc gctctgtctc cccacctcgt ggccctgcag 1560
cctgacgacg aggtgaccgt gtctggaccc tacggcaact tcgagctgca aaagctgcga 1620
ggcgtgaagg aaatctgctt cgtcgccgct ggcaccggaa tcacccctat gctgggcctg 1680
ctgaagttca ttctgccccg atctaaccct cgatgcgagc gagtgcatct gctgttcttc 1740
aacaagaccg aagaggacat tctgttccga cagaacttcg aggaaatcgc caaggaggac 1800
gaccgattct ctgtgaccca cgtgctgtct gacgcctctt cttcttggtc tggccgacga 1860
ggccgaatca cctctgacct gctgacccag gtggtcggca aggactccct gaagtgccga 1920
gagcagtgcg tgcacttcgc ctgcgtgtgc ggccccaccg acttcaccca caccaccatc 1980
gacctgctca agaagctgca catgaaggac tcttgcatcc acgccttcat gggctag 2037
<210> 190
<211> 130
<212> PRT
<213> 高山被孢霉(Mortierella alpina)
<400> 190
Met Ala Glu Leu Lys Ser Phe Thr Leu Ala Asp Leu Ser Gln His Thr
1 5 10 15
Thr Lys Asp Ser Leu Tyr Leu Ala Ile His Gly Lys Val Tyr Asp Cys
20 25 30
Thr Gly Phe Ile Asp Glu His Pro Gly Gly Glu Glu Val Leu Ile Asp
35 40 45
Glu Ala Gly Arg Asp Ala Thr Glu Ser Phe Glu Asp Val Gly His Ser
50 55 60
Asp Glu Ala Arg Asp Ile Met Ser Lys Leu Leu Val Gly Glu Phe Lys
65 70 75 80
Thr Asp Ser Ser Glu Lys Pro Lys Ala Lys Ser Pro Ser Ser Ser Thr
85 90 95
Pro Arg Pro Ile Pro Ala Ala Glu Pro Ser Asp Ser Gly Ser Leu Gln
100 105 110
Tyr Val Leu Ala Leu Ala Val Val Ala Gly Cys Val Ile Trp Lys Val
115 120 125
Leu Leu
130
<210> 191
<211> 298
<212> PRT
<213> 高山被孢霉(Mortierella alpina)
<400> 191
Met Thr Leu Ser Asn Pro Ala Ile Ala Ala Ala Ser Gly Val Ile Leu
1 5 10 15
Ala Gly Ala Tyr Leu Ile Asp Pro Ser Ala Leu Pro Phe Val Ala Ala
20 25 30
Gly Val Ala Ala Thr Trp Ala Arg Val Leu Phe Lys Lys Thr Ala Val
35 40 45
Lys Thr Pro Pro Met Asp Pro Lys Glu Tyr Arg Lys Phe Lys Leu Val
50 55 60
Asp Lys Val His Cys Ser Pro Asn Thr Ala Met Tyr Lys Phe Ala Leu
65 70 75 80
Pro His Glu Asp Asp Leu Leu Asn Leu Pro Ile Gly Gln His Ile Ser
85 90 95
Ile Met Ala Asn Ile Asn Gly Lys Asp Ile Ser Arg Ser Tyr Thr Pro
100 105 110
Thr Ser Ser Ser Asp Asp Val Gly His Phe Val Leu Cys Ile Lys Ser
115 120 125
Tyr Pro Gln Gly Asn Ile Ser Lys Met Phe Ser Glu Leu Ser Ile Gly
130 135 140
Asp Ser Ile Asn Ala Arg Gly Pro Lys Gly Gln Phe Ser Tyr Thr Pro
145 150 155 160
Asn Met Cys Arg Ala Ile Gly Met Ile Ala Gly Gly Thr Gly Leu Thr
165 170 175
Pro Met Leu Gln Ile Ile Arg Ala Ile Val Lys Asn Pro Glu Asp Lys
180 185 190
Thr Gln Val Asn Phe Ile Phe Ala Asn Val Thr Glu Glu Asp Ile Ile
195 200 205
Leu Lys Ala Glu Leu Asp Leu Leu Ser Gln Lys His Pro Gln Phe Lys
210 215 220
Val Tyr Tyr Val Leu Asn Asn Ala Pro Glu Gly Trp Thr Gly Gly Val
225 230 235 240
Gly Phe Val Asn Ala Asp Met Ile Lys Glu His Met Pro Ala Pro Ala
245 250 255
Ala Asp Ile Lys Val Leu Leu Cys Gly Pro Pro Pro Met Val Ser Ala
260 265 270
Met Ser Lys Ile Thr Gln Asp Leu Gly Tyr Asp Lys Val Asn Ala Val
275 280 285
Ser Lys Leu Pro Asp Gln Val Phe Lys Phe
290 295
<210> 192
<211> 298
<212> PRT
<213> 高山被孢霉(Mortierella alpina)
<400> 192
Met Ser Ser Ser Asn Pro Pro Val Thr Ala Thr Ser Arg Ala Phe Ile
1 5 10 15
Val Gly Ala Ser Leu Ile Asp Ser Thr Met Ile Pro Phe Val Val Ala
20 25 30
Ser Val Gly Ala Leu Leu Ala Cys Leu Phe Phe Lys Lys Gly Thr Leu
35 40 45
Arg Leu Pro Pro Leu His Ala Lys Glu Tyr Arg Lys Phe Thr Leu Val
50 55 60
Glu Lys Ile Val Leu Ser Pro Asn Thr Ala Thr Tyr Lys Phe Ala Leu
65 70 75 80
Pro Ser Asn Asp Asp Val Leu Asn Leu Pro Ile Gly Gln His Val Thr
85 90 95
Val Met Ala Asn Ile Asn Gly Lys Asp Ile Ser Arg Ser Tyr Thr Pro
100 105 110
Thr Ser Gly Ser Glu Asp Leu Gly Tyr Phe Val Leu Cys Ile Lys Ser
115 120 125
Tyr Pro Gln Gly Asn Ile Ser Gly Met Ile Ser Arg Leu Ala Ile Gly
130 135 140
Asp Gln Ile Asn Val Arg Gly Pro Lys Gly His Phe Ser Tyr Ile Pro
145 150 155 160
Asn Met Cys Arg Ala Ile Gly Met Ile Ala Gly Gly Thr Gly Ile Thr
165 170 175
Pro Met Leu Gln Leu Ile Arg Ser Ile Thr Lys Asn Pro Glu Asp Lys
180 185 190
Thr Leu Val Thr Leu Leu Phe Ala Asn Val Thr Glu Gln Asp Ile Leu
195 200 205
Leu Arg Ala Glu Leu Asp Leu Leu Ser Lys Val His Pro Gln Phe Lys
210 215 220
Val Cys Tyr Val Leu Ser Arg Ala Ser Glu Asp Trp Thr Gly Ala Arg
225 230 235 240
Gly Tyr Ile Asn Ala Glu Met Ile Lys Glu His Leu Pro Ala Pro Ala
245 250 255
Ala Asp Ile Lys Ile Leu Leu Cys Gly Pro Gln Pro Met Val Ser Ser
260 265 270
Met Val Lys Ile Thr Gln Asp Leu Gly Tyr Glu Lys Ala Asn Ala Ile
275 280 285
Ser Lys Pro His Asp Gln Val Phe Lys Phe
290 295

Claims (15)

1.一种细胞,其表达:
i)第一种酶或第一组酶,所述酶能够将脂肪酰基辅酶A转化为选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物;和
ii)异源NAD(P)H细胞色素b5氧化还原酶(Ncb5or);
由此当在相同条件下培养时,与表达所述第一组酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高的滴度和/或纯度生产所述化合物,
优选地其中所述细胞是酵母细胞,例如产油酵母细胞,或植物细胞。
2.根据权利要求1所述的细胞,其中所述第一种酶或第一组酶包含以下或由以下组成:
a)能够将脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A的一种或多种去饱和酶,由此当在相同条件下培养时,与表达所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高的滴度和/或纯度生产去饱和的脂肪酰基辅酶A;
b)能够将脂肪酰基辅酶A转化为脂肪醇的一种或多种脂肪酰基还原酶(FAR),由此当在相同条件下培养时,与表达所述一种或多种FAR、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高的滴度和/或纯度生产脂肪醇;或
c)能够将脂肪酰基辅酶A转化为去饱和的脂肪醇的一种或多种FAR和一种或多种去饱和酶,由此当在相同条件下培养时,与表达所述一种或多种FAR和所述一种或多种去饱和酶、但不表达异源Ncb5or的细胞相比,所述细胞能够以更高的滴度和/或纯度生产去饱和的脂肪醇。
3.根据前述权利要求中的任一项所述的细胞,其中所述Ncb5or对于植物、昆虫或哺乳动物例如智人(Homo sapiens)而言是天然的,优选地其中所述Ncb5or对于昆虫而言是天然的,所述昆虫诸如夜蛾属(Agrotis)、Amyelois、Aphantopus、灯蛾属(Arctia)、蔽眼蝶属(Bicyclus)、熊蜂属(Bombus)、家蚕属(Bombyx)、禾草螟属(Chilo)、小卷蛾属(Cydia)、斑蝶属(Danaus)、果蝇属(Drosophila)、大蓑蛾属(Eumeta)、大蜡螟属(Galleria)、棉铃虫属(Helicoverpa)、实夜蛾属(Heliothis)、海波斯莫科马属(Hyposmocoma)、小粉蝶属(Leptidea)、花翅小卷蛾属(Lobesia)、Manduca、秋尺蛾属(Operophtera)、秆野螟属(Ostrinia)、凤蝶亚属(Papilio)、凤蝶亚属(Papilio)、凤蝶亚属(Papilio)、菜粉蝶属(Pieris)、菜蛾属(Plutella)、灰翅夜蛾属(Spodoptera)、粉夜蛾属(Trichoplusia)和红蛱蝶属(Vanessa)的昆虫,诸如其中所述Ncb5or对于选自黄地老虎(Agrotis segetum)、脐橙螟蛾(Amyelois transitella)、阿芬眼蝶(Aphantopus hyperantus)、木虎蛾(Arctiaplantaginis)、偏瞳蔽眼蝶(Bicyclus anynana)、欧洲熊蜂(Bombus terrestris)、野桑蚕(Bombyx mandarina)、家蚕(Bombyx mori)、二化螟(Chilo suppressalis)、苹果蠹蛾(Cydia pomonella)、黑脉金斑蝶(Danaus plexippus)、Drosophila grimshawi、黑腹果蝇(Drosophila melanogaster)、大避债蛾(Eumeta japonica)、大蜡螟(Galleriamellonella)、棉铃虫(Helicoverpa armigera)、烟芽夜蛾(Heliothis virescens)、Hyposmocoma kahamanoa、条纹小粉蝶(Leptidea sinapis)、葡萄花翅小卷蛾(Lobesiabotrana)、烟草天蛾(Manduca sexta)、冬尺蠖蛾(Operophtera brumata)、亚洲玉米螟(Ostrinia furnacalis)、金凤蝶(Papilio machaon)、玉带凤蝶(Papilio polytes)、柑橘凤蝶(Papilio xuthus)、菜粉蝶(Pieris rapae)、小菜蛾(Plutella xylostella)、草地贪夜蛾(Spodoptera frugiperda)、斜纹夜蛾(Spodoptera litura)、粉纹夜蛾(richoplusiani)和夏威夷红蛱蝶(Vanessa tameamea)的昆虫而言是天然的。
4.根据前述权利要求中的任一项所述的细胞,其中所述Ncb5or选自以下的组:在SEQID NO:111至114、SEQ ID NO:124和SEQ ID NO:182至185中所示的Ncb5or,或与其具有至少70%同一性的变体,例如与其具有至少75%同一性,诸如至少80%同一性,诸如至少85%同一性,诸如至少90%同一性,诸如至少95%同一性。
5.根据前述权利要求中的任一项所述的细胞,其中所述去饱和酶对植物而言是天然的,诸如蓖麻(Ricinus communis)或天竺葵(Pelargonium hortorum),或对昆虫而言是天然的,诸如双翅目(Diptera)、鞘翅目(Coleoptera)或鳞翅目(Lepidoptera)的昆虫,诸如夜蛾属(Agrotis)、柞蚕属(Antheraea)、带卷蛾属(Argyrotaenia)、Amyelois、熊蜂属(Bombus)、家蚕属(Bombyx)、果斑螟属(Cadra)、花萤属(Chauliognathus)、禾草螟属(Chilo)、色卷蛾属(Choristoneura)、小卷蛾属(Cydia)、松毛虫属(Dendrophilus)、杆草螟属(Diatraea)、果蝇属(Drosophila)、粉斑螟属(Ephestia)、Epiphyas、小食心虫属(Grapholita)、棉铃虫属(Helicoverpa)、Lampronia、花翅小卷蛾属(Lobesia)、Manducta、秆野螟属(Ostrinia)、红铃虫属(Pectinophora)、谷斑螟属(Plodia)、菜蛾属(Plutella)、海链藻属(Thalassiosira)、异舟蛾属(Thaumetopoea)、拟谷盗属(Tribolium)、粉夜蛾属(Trichoplusia)、灰翅夜蛾属(Spodoptera)或巢蛾属(Yponomeuta)的昆虫,诸如黄地老虎(Agrotis segetum)、柞蚕(Antheraea pernyi)、红带卷蛾(Argyrotaenia velutiana)、脐橙螟蛾(Amyelois transitella)、红尾熊蜂(Bombus lapidarius)、家蚕(Bombyx mori)、粉斑螟蛾(Cadra cautella)、瘟疫丽艳花萤(Chauliognathus lugubris)、二化螟(Chilosupprealis)、平行带状卷叶蛾(Choristoneura parallela)、蔷薇斜条卷叶蛾(Choristoneura rosaceana)、苹果蠹蛾(Cydia pomonella)、马尾松毛虫(Dendrophiluspunctatus)、小蔗杆草螟(Diatraea saccharalis)、嗜凤梨果蝇(Drosophila ananassae)、黑腹果蝇(Drosophila melanogaster)、大果蝇(Drosophila virilis)、Drosophilayakuba、烟草粉螟(Ephestia elutella)、地中海粉斑螟(Ephestia kuehniella)、苹淡褐卷蛾(Epiphyas postvittana)、梨小食心虫(Grapholita molesta)、烟夜蛾(Helicoverpaassulta)、谷实夜蛾(Helicoverpa zea)、红醋栗穿孔蛾(Lampronia capitella)、葡萄花翅小卷蛾(Lobesia botrana)、烟草天蛾(Manducta sexta)、亚洲玉米螟(Ostriniafurnacalis)、欧洲玉米螟(Ostrinia nubilalis)、红铃麦蛾(Pectinophoragossypiella)、印度谷螟(Plodia interpunctella)、小菜蛾(Plutella xylostella)、甜菜夜蛾(Spodoptera exigua)、海灰翅夜蛾(Spodoptera littoralis)、斜纹夜蛾(Spodopteralitura)、假微型海链藻(Thalassiosira pseudonana)、松异舟蛾(Thaumetopoeapityocampa)、赤拟谷盗(Tribolium castaneum)、粉纹夜蛾(Trichoplusia ni)或苹果巢蛾(Yponomeuta padella)。
6.根据前述权利要求中的任一项所述的细胞,其中所述去饱和酶选自由以下组成的组:Δ3去饱和酶、Δ5去饱和酶、Δ6去饱和酶、Δ7去饱和酶、Δ8去饱和酶、Δ9去饱和酶、Δ10去饱和酶、Δ11去饱和酶、Δ12去饱和酶、Δ13去饱和酶和Δ14去饱和酶,优选地其中所述去饱和酶是Δ9去饱和酶或Δ11去饱和酶,和/或其中所述去饱和酶选自以下的组:在SEQID NO:1至38和SEQ ID NO:126至139中所示的去饱和酶,或与其具有至少70%同一性的变体,诸如至少75%同一性,诸如至少80%同一性,诸如至少85%同一性,诸如至少90%同一性,诸如至少95%同一性。
7.根据前述权利要求中的任一项所述的细胞,其中所述FAR对于昆虫而言是天然的,诸如鳞翅目(Lepidoptera)的昆虫,诸如夜蛾属(Agrotis)、Amyelois、蔽眼蝶属(Bicyclus)、熊蜂属(Bombus)、禾草螟属(Chilo)、银纹夜蛾属(Chrysodeixis)、小卷蛾属(Cydia)、棉铃虫属(Helicoverpa)、实夜蛾属(Heliothis)、Manducta、秆野螟属(Ostrinia)、谷斑螟属(Plodia)、菜蛾属(Plutella)、灰翅夜蛾属(Spodoptera)、粉夜蛾属(Trichoplusia)、Tyta或巢蛾属(Yponomeuta)的昆虫,或其中所述FAR对于细菌而言是天然的,诸如海杆菌属(Marinobacter)的细菌,优选地其中所述FAR是对于黄地老虎(Agrotis segetum)、脐橙螟蛾(Amyelois transitella)、偏瞳蔽眼蝶(Bicyclus anynana)、红尾熊蜂(Bombuslapidaries)、二化螟(Chilo suppressalis)、黄豆银纹夜蛾(Chrysodeixis includes)、苹果蠹蛾(Cydia pomonella)、棉铃虫(Helicoverpa armigera)、烟夜蛾(Helicoverpaassulta)、烟芽夜蛾(Heliothis virescens)、Heliothis subflexa、烟草天蛾(Manductasexta)、栖藻海杆菌(Marinobacter algicola)、亚洲玉米螟(Ostrinia furnacalis)、印度谷螟(Plodia interpunctella)、小菜蛾(Plutella xylostella)、甜菜夜蛾(Spodopteraexigua)、草地贪夜蛾(Spodoptera frugiperda)、海灰翅夜蛾(Spodoptera littoralis)、斜纹夜蛾(Spodoptera litura)、粉纹夜蛾(Trichoplusia ni)、Tyta alba或柳黑斑巢蛾(Yponomeuta rorellus)而言天然的脂肪酰基还原酶,或与其具有至少80%同一性的其功能变体。
8.根据前述权利要求中的任一项所述的细胞,其中所述FAR选自以下的组:在SEQ IDNO:77至93和SEQ ID NO:154至167中所示的FAR,或与其具有至少70%同一性的变体,诸如至少75%同一性,诸如至少80%同一性,诸如至少85%同一性,诸如至少90%同一性,诸如至少95%同一性。
9.一种用于增加至少一种酶的活性的方法,所述酶选自由去饱和酶和脂肪酰基辅酶A还原酶(FAR)组成的组,所述方法包括以下步骤:
a.提供去饱和酶,其能够在脂肪酰基辅酶A中引入至少一个双键,从而将所述脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪酰基辅酶A;和/或
b.提供FAR,其能够将所述去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇,从而生产所述去饱和的脂肪醇;和
c.使所述去饱和酶和/或FAR与Ncb5or接触,从而与在没有所述Ncb5or存在下所述去饱和酶和/或FAR的活性相比,增加所述去饱和酶和/或FAR的活性,其中在相同条件下测量所述活性;
其中通过测量由所述去饱和酶和/或所述FAR形成的产物的浓度和/或纯度来测量活性的增加,
优选地其中所述细胞是根据前述权利要求中的任一项所述的细胞。
10.一种用于在细胞中生产选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物的方法,所述方法包括以下步骤:
a.提供细胞并在培养基中温育所述细胞;和
b.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
c.在所述细胞中表达Ncb5or;
d.任选地,回收所述化合物,
优选地其中所述细胞是根据权利要求1至8中的任一项所述的细胞。
11.一种用于增加在细胞中生产的选自去饱和的脂肪醇、饱和的脂肪醇、去饱和的脂肪醇乙酸酯和去饱和的脂肪酰基辅酶A的化合物的滴度和/或纯度的方法,所述细胞能够合成一种或多种脂肪酰基辅酶A和/或能够从其环境中输入脂肪酰基辅酶A,所述方法包括以下步骤:
a.在所述细胞中表达能够将脂肪酰基辅酶A转化为所述化合物的第一种酶或第一组酶,从而将所述脂肪酰基辅酶A的至少一部分转化为所述化合物;和
b.在所述细胞中表达Ncb5or,从而与在相同条件下来自不表达所述Ncb5or的细胞的滴度和/或纯度相比,增加所述化合物的滴度和/或纯度;
c.任选地,回收所述化合物,
优选地其中所述细胞是根据权利要求1至8中的任一项所述的细胞。
12.根据权利要求11所述的方法,其中
所述第一种酶或第一组酶由以下组成:
a)能够将脂肪酰基辅酶A转化为去饱和的脂肪酰基辅酶A的一种或多种去饱和酶,且其中所述化合物是去饱和的脂肪酰基辅酶A;
b)能够将脂肪酰基辅酶A转化为饱和的脂肪醇的一种或多种FAR,且其中所述化合物是饱和的脂肪醇;或
c)能够将脂肪酰基辅酶A转化为去饱和的脂肪醇的一种或多种FAR和一种或多种去饱和酶,且其中所述化合物是去饱和的脂肪醇;
和/或其中
与来自不表达所述Ncb5or的细胞的滴度和/或纯度相比,去饱和的脂肪醇和/或脂肪醇乙酸酯的滴度和/或纯度、饱和的脂肪醇和/或脂肪醇乙酸酯的滴度和/或纯度和/或饱和的脂肪醇和/或脂肪醇乙酸酯的总滴度增加至少3%,诸如至少4%,诸如至少5%,诸如至少10%,诸如至少15%,诸如至少20%,诸如至少25%,诸如至少30%,诸如至少35%,诸如至少40%,诸如至少45%,诸如至少50%,诸如至少55%,诸如至少60%,诸如至少70%,诸如至少80%,诸如至少90%,诸如至少100%,诸如至少150%,诸如至少200%,诸如至少250%。
13.一种核酸构建体系统,其包含编码Ncb5or和以下的核酸:
a.能够在脂肪酰基辅酶A中引入至少一个双键的去饱和酶;和/或
b.能够将去饱和的脂肪酰基辅酶A的至少一部分转化为去饱和的脂肪醇的脂肪酰基辅酶A还原酶。
14.Ncb5or在用于增加一种或多种酶的活性的方法中的用途,优选地其中所述一种或多种酶是一种或多种膜结合的酶,和/或其中所述一种或多种酶选自由去饱和酶和脂肪酰基还原酶组成的组,任选地其中所述一种或多种酶的活性的增加对于所述去饱和酶和/或所述FAR是至少1.2倍,诸如至少1.3倍,诸如至少1.4倍,诸如至少1.5倍,诸如至少1.6倍,诸如至少1.7倍,诸如至少1.8倍,诸如至少1.9倍,诸如至少2倍,诸如至少3倍,诸如至少4倍,诸如至少5倍,诸如至少6倍,诸如至少7倍,诸如至少8倍,诸如至少9倍,诸如至少10倍,诸如至少15倍,诸如至少20倍,诸如至少30倍,诸如至少40倍,诸如至少50倍;其中所述一种或多种酶的活性的增加是相对于在没有所述Ncb5or存在下所述一种或多种酶的活性,其中在相同条件下测量所述活性,其中通过测量由所述一种或多种酶形成的产物的浓度来测量所述增加。
15.一种监测害虫的存在或破坏害虫的交配的方法,所述方法包括以下步骤:
a.根据权利要求9至12中的任一项所述的方法生产去饱和的脂肪醇和任选的去饱和的脂肪醇乙酸酯和/或去饱和的脂肪醛;和
b.将所述去饱和的脂肪醇和任选的所述去饱和的脂肪醇乙酸酯和/或所述去饱和的脂肪醛配制为信息素组合物;和
c.采用所述信息素组合物作为害虫综合治理组合物。
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