CN108610426B - 飞蝗节律基因clk、cyc和per及其在调控昆虫滞育中的应用 - Google Patents
飞蝗节律基因clk、cyc和per及其在调控昆虫滞育中的应用 Download PDFInfo
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Abstract
本发明公开了飞蝗节律基因clk、cyc和per在调控昆虫滞育中的应用。本发明克隆了飞蝗节律基因clk、cyc和per,并开发了clk、cyc和per基因的特异性双链RNA干扰序列片段dsRNA,且运用注射法将dsRNA导入飞蝗对飞蝗节律基因clk、cyc和per进行RNAi。通过实验证明:利用节律基因clk、cyc和per的特异性双链RNA干扰片段dsRNA成功实现干扰飞蝗相应基因的mRNA表达水平,且干扰效率显著,干扰后降低母代飞蝗生产的蝗卵的滞育率,说明节律基因clk、cyc和per在昆虫滞育诱导过程中起着重要作用,本发明为开发新型杀虫剂、降低越冬后害虫种群数量提供基础。
Description
技术领域
本发明属于生物技术领域,具体涉及飞蝗节律基因clk、cyc和per及其在调控昆虫滞育中的应用。
背景技术
蝗虫是我国历史上重大农业害虫,有广泛地理分布,它具有远距离迁飞的习性,具有种类多、影响大、并时常暴发成灾的特点,其发生范围和严重程度对我国国民经 济、特别是农业生产常造成重大损失。近年来,随着全球气候变暖趋势增加,高密度 蝗群时有发生,远距离迁飞风险加剧,严重威胁我国农业主产区的粮食生产。传统病 虫害防治多以应急防治和化学防治为主,对病虫害防治过分依赖化学农药,急需前瞻 性开发新型绿色无公害防控药剂。
滞育是昆虫长期适应环境周期性变化而进化出的遗传性生理反应,在不良环境来临之前发育受到抑制的生理状态。蝗虫卵滞育属于兼性滞育类型,为母代接受低温、 短光照等环境信息诱导的卵滞育,胚胎发育停滞在胚体上升末期、胚转前。在我国南 部地区,炎热的气候能确保飞蝗每年发生3-4代,但在华北地区,飞蝗每年仅发生1-2 代。夏季蝗卵孵化需要16天左右,秋季气温渐低,日照时间变短,蝗卵进入滞育状态 直至第二年春天孵化。光周期对调控母代飞蝗生产滞育卵发挥重要作用。
发明内容
本发明要解决的技术问题是如何调控昆虫滞育。
为了解决上述技术问题,本发明首先提供了调控昆虫滞育的节律蛋白,均来源于飞蝗,是如下a)或b)或c)或d)的蛋白质:
a)氨基酸序列是序列2或序列4或序列6所示的蛋白质;
b)在序列2或序列4或序列6所示的蛋白质的N端和/或C端连接标签得到的融 合蛋白质;
c)将序列2或序列4或序列6所示的氨基酸序列经过一个或几个氨基酸残基的取代和/或缺失和/或添加得到的具有相同功能的蛋白质;
d)与序列2或序列4或序列6所示的氨基酸序列具有75%或75%以上的同源性 且具有相同功能的蛋白质。
为了使a)中的蛋白质便于纯化,可在序列表中序列2或序列4或序列6所示 的蛋白质的氨基末端或羧基末端连接上如表1所示的标签。
表1、标签的序列
标签 | 残基 | 序列 |
Poly-Arg | 5-6(通常为5个) | RRRRR |
Poly-His | 2-10(通常为6个) | HHHHHH |
FLAG | 8 | DYKDDDDK |
Strep-tag II | 8 | WSHPQFEK |
c-myc | 10 | EQKLISEEDL |
上述c)中的蛋白质,所述一个或几个氨基酸残基的取代和/或缺失和/或添加为不超过10个氨基酸残基的取代和/或缺失和/或添加。
上述c)中的蛋白质可人工合成,也可先合成其编码基因,再进行生物表达得到。
上述c)中的蛋白质的编码基因可通过将序列1或序列3或序列5所示的DNA序 列中缺失一个或几个氨基酸残基的密码子,和/或进行一个或几个碱基对的错义突变, 和/或在其5′端和/或3′端连上表1所示的标签的编码序列得到。
为了解决上述问题,本发明还提供了与上述蛋白质相关的生物材料。
本发明提供的与上述蛋白质相关的生物材料为下述A1)至A8)中的任一种:
A1)编码上述蛋白质的核酸分子;
A2)含有A1)所述核酸分子的表达盒;
A3)含有A1)所述核酸分子的重组载体;
A4)含有A2)所述表达盒的重组载体;
A5)含有A1)所述核酸分子的重组微生物;
A6)含有A2)所述表达盒的重组微生物;
A7)含有A3)所述重组载体的重组微生物;
A8)含有A4)所述重组载体的重组微生物。
上述生物材料中,A1)所述核酸分子为如下1)或2)或3)所示的基因:
1)其编码序列是序列1或序列3或序列5所示的cDNA分子或基因组DNA分子;
2)与1)限定的核苷酸序列具有75%或75%以上同一性,且编码上述蛋白质的cDNA分子或基因组DNA分子;
3)在严格条件下与1)或2)限定的核苷酸序列杂交,且编码上述蛋白质的cDNA 分子或基因组DNA分子。
其中,所述核酸分子可以是DNA,如cDNA、基因组DNA或重组DNA;所述核 酸分子也可以是RNA,如mRNA或hnRNA等。
本领域普通技术人员可以很容易地采用已知的方法,例如定向进化和点突变的方法,对本发明的编码上述蛋白质的核苷酸序列进行突变。那些经过人工修饰的,具有 与本发明分离得到的蛋白质的核苷酸序列75%或者更高同一性的核苷酸,只要编码上 述蛋白质且具有相同功能,均是衍生于本发明的核苷酸序列并且等同于本发明的序列。
这里使用的术语“同一性”指与天然核酸序列的序列相似性。“同一性”包括与本发明的编码序列2或序列4或序列6所示的氨基酸序列组成的蛋白质的核苷酸序列具有 75%或更高,或85%或更高,或90%或更高,或95%或更高同一性的核苷酸序列。同 一性可以用肉眼或计算机软件进行评价。使用计算机软件,两个或多个序列之间的同 一性可以用百分比(%)表示,其可以用来评价相关序列之间的同一性。
上述75%或75%以上同一性,可为80%、85%、90%或95%以上的同一性。
为了解决上述技术问题,本发明还提供了上述蛋白质或生物材料的新用途。
本发明提供了上述蛋白质或生物材料在如下a1)-a10)中任一种中的应用:
a1)调控昆虫滞育;
a2)制备调控昆虫滞育的产品;
a3)防治害虫;
a4)制备防治害虫的产品;
a5)降低昆虫滞育率;
a6)制备降低昆虫滞育率的产品;
a7)降低昆虫越冬存活率;
a8)制备降低昆虫越冬存活率的产品;
a9)降低昆虫越冬后种群数量;
a10)制备降低越冬后种群数量的产品。
为了解决上述技术问题,本发明还提供了一种降低昆虫滞育率的方法。
本发明提供的降低昆虫滞育率的方法包括降低昆虫中上述蛋白质的表达量和/或活性的步骤,从而实现降低昆虫滞育率。
上述方法中,所述降低昆虫中上述蛋白质的表达量和/或活性的方法是将抑制昆虫 中上述蛋白质的编码基因表达的物质导入昆虫;
所述抑制昆虫中上述蛋白质的编码基因表达的物质为抑制昆虫中上述蛋白质的编 码基因表达的dsRNA;
所述抑制昆虫中上述蛋白质的编码基因表达的dsRNA为由序列表中序列8或序列9或序列10所示的核苷酸和其反向互补序列所示的核苷酸组成的双链RNA;
所述导入的方式可为注射。
上述方法在防治害虫中的应用也属于本发明的保护范围。
为了解决上述技术问题,本发明最后还提供了抑制上述蛋白质的编码基因表达的物质。
本发明提供的抑制上述蛋白质的编码基因表达的物质为由序列表中序列8或序列9 或序列10所示的核苷酸和其反向互补序列所示的核苷酸组成的双链RNA。
抑制上述蛋白质的编码基因表达的物质在防治害虫或降低昆虫滞育率中的应用也 属于本发明的保护范围。
上述应用或方法中:所述昆虫或害虫为飞蝗。
本发明从飞蝗中克隆得到节律基因clk、cyc和per,并制备得到clk、cyc和per 基因的特异性双链RNA干扰序列片段dsRNA,且运用注射法将dsRNA导入飞蝗对飞 蝗节律基因clk、cyc和per进行RNAi。通过实验证明:利用节律基因clk、cyc和per 的特异性双链RNA干扰片段dsRNA成功实现干扰飞蝗相应基因的mRNA表达水平, 干扰效率显著,且干扰后显著降低了母代飞蝗生产的蝗卵的滞育率,说明节律基因clk、 cyc和per在昆虫滞育诱导过程中起着重要作用,本发明为开发新型杀虫剂、降低越冬 后害虫种群数量提供基础。
附图说明
图1为飞蝗节律基因全长的PCR产物琼脂糖凝胶电泳图。
图2为实验组和对照组中目的基因的mRNA相对表达水平。
图3为实验组和对照组的滞育率统计结果。
具体实施方式
下述实施例中所使用的实验方法如无特殊说明,均为常规方法。
下述实施例中所用的材料、试剂等,如无特殊说明,均可从商业途径得到。
下述实施例中的定量试验,均设置三次重复实验,结果取平均值。
下述实施例中的供试虫源:在实验室内连续饲养20代的飞蝗纯化种群,没有接触过任何化学药剂。饲养过程如下:将采集于天津黄骅的飞蝗蝗卵在智能人工气候箱中 孵化,孵化条件如下:湿度60%,光照时间:黑暗时间=14h:10h。将同一时间孵化大 小一致的蝗蝻转移到养虫笼(60cm×50cm×60cm)中用新鲜的麦苗进行饲养,直至成 虫。饲养条件如下:光照时间:黑暗时间=14h:10h,温度30±2℃,相对湿度60%。
下述实施例中的主要试剂:RNA分离试剂(invitrogen原装),PrimeScriptTMII 1st Strand cDNA Synthesis Kit(takara),DL2000DNA marker(takara), RNA spin column(全式金),GST Resin(全式金),Trans1-T1PhageRsistant Chemically Competent Cell(全式金),无核酸酶水(Ambion),胶回收试剂盒(Axygen), 少量质粒提取试剂盒(Axygen),EX Taq DNA聚合酶(takara),SYBR Premix ExTaq II (Tli RNaseH Plus)(takara),pGEM-T Easy Vector Systems(promega),T7RiboMAXTMExpress RNAi System(promega),无水乙醇、异丙醇、丙三醇等试剂 为国产分析纯。
下述实施例中基因clk、cyc、per和tim的测序、制作clk、cyc、per和tim基因的dsRNA、以及clk、cyc、per和tim基因的rt-PCR引物均由上海生工生物工程股份有限 公司合成。
下述实施例中所用到的特异性引物序列如表1所示。
表1、引物序列及其作用
下述实施例中的主要仪器:超净工作台(上海博讯实业有限公司)、东胜龙ETC-811PCR仪(北京东胜创新生物科技有限公司)、德国Sigma 3K15冷冻离心机(德国希 格玛离心机有限公司)、NanoPhotometer微量分光光度计(德国IMPLEN公司)、 HPX-9052MBE数显电热培养箱(上海博讯实业有限公司)、THZ-D台式恒温振荡器 (华美生化仪器厂)、漩涡振荡器QL-901(海门市其林贝尔仪器制造)、高压灭菌锅 YXQ-LS-50SII(上海博讯实业有限公司医疗设备厂)。
实施例1、飞蝗节律基因clk、cyc、per和tim的克隆
1、飞蝗总RNA的提取
1)2mL匀浆器放于烘箱中,160℃,3个小时,冷却至室温备用。
3)将匀浆液转移至1.5mL离心管中,室温静置5min。4℃,13000r离心5min。
4)将上清转移至干净的1.5mL离心管中,加入200μL氯仿,漩涡震荡15s。室 温放置5min。4℃,13000r离心10min。
5)吸取400μL上清转移至新的1.5mL离心管中,加入200μL氯仿,漩涡震荡30s。室温放置5min。4℃,13000r离心10min。
6)吸取300μL上清,加入300μL异丙醇,漩涡震荡30s,转移至RNA spin column 中,冰上静置10min。
7)4℃,13000r离心2min,弃滤液。
8)加入600μL RNA washsolution,吸打使沉降物洗涤,4℃,13000r离心2min, 弃滤液。再次加入600μL RNA washsolution,吸打使沉降物洗涤,4℃,13000r离心 2min,弃滤液。4℃,13000r空离3min,除去多余乙醇,空气吹干3min。
9)更换一个新的收集管,向RNA spin column中加入50μL 65℃预热的 RNase-free-water,余热下热置5min,4℃,13000r离心3min。
10)收集滤出液,用NanoPhotometer微量分光光度计检测RNA浓度和OD260/280值,确认RNA质量。同时,取2μL提取的RNA,琼脂糖凝胶电泳检测,剩余RNA 储存于-20℃备用。
2、反转录
用PrimeScriptTM 1st strand cDNA Synthesis Kit反转录试剂盒反转录获得cDNA。 具体步骤如下:
1)配置10μL体系:Oligo dT Primer(50μM)1μL、dNTP Mixture(10mM each) 1μL、total RNA<5μL、RNase Free dH2O补足体系至10μL。
2)65℃保温5min后,冰上迅速冷却。
3)配置20μL反应液:5×PrimeScript Buffer 4μL、RNase Inhibitor(400U/μL)0.5 μL(20units)、PrimeScript RTase(200U/μL)1μL(200units)、RNase Free dH2O补 足体系至20μL。
4)缓慢混匀。
5)42℃保温30-60min。
6)95℃保温5min,使酶失活,冰上放置,-20℃保存cDNA。
3、飞蝗节律基因clk、cyc、per和tim的PCR扩增
1)引物设计
根据前期获得的飞蝗转录组得到的飞蝗节律基因clk、cyc、per和tim的序列,利用DNAMAN8设计飞蝗节律基因clk、cyc、per和tim全长引物或片段引物。设计的 引物如表1所示。
2)PCR反应
以飞蝗cDNA为模板,采用表1中的对应引物分别进行PCR扩增,得到PCR产 物。
PCR反应体系如下(总体积50μL):cDNA模板1μL、dNTP 4μL、10×Buffer 5μL、 前引物1μL、后引物1μL、Taq酶0.25μL、ddH2O 38μL。
PCR反应条件如下:95℃3min;95℃45s,55℃45s,72℃2min 30s,35个 循环;72℃10min;4℃保存。
3)PCR产物回收、克隆、测序
3-1)将PCR产物在TAE配制的1%的琼脂糖凝胶上进行电泳,当目标带分离较 好时,用刀片切下目标带所在的胶块放入无菌的离心管中。再用胶回收试剂盒 (Axygen)回收纯化目标带,回收纯化过程参照试剂盒说明书进行。电泳结果如图1 所示。
3-2)PCR产物回收后连接pGEM-T Easy载体,得到重组载体。连接体系如下: T4DNAligase 1μL、2×buffer 5μL、pGEM-T Easy 1μL、PCR回收产物3μL。连接条 件:室温下连接6个小时。
3-3)感受态细胞的制备与转化
在1.5mL离心管中,加入33.3μL Trans1-t1感受态细胞,冰上放置15min,42℃ 水浴90s,冰上放置10min。在每个1.5mL离心管中加入500μL的液体LB培养液, 37℃,200rpm摇菌2h。摇菌后,吸取100μL菌液至1‰AMP LB固体培养基中, 37℃培养过夜。挑选单菌落于2mL的离心管中,管中有1mL的1‰AMP LB液体 培养基。37℃,200rpm摇菌3-6h,观察生长情况。
3-4)菌液PCR
对3-3)中的菌液进行PCR验证,菌液PCR反应体系(总体积50μL)如下:菌 液1μL、dNTP 4μL、10×Buffer 5μL、前引物1μL、后引物1μL、Taq酶0.25μL、ddH2O 38μL。
反应条件如下:95℃3min;95℃30s,55℃30s,72℃1min 30s,35个循环; 72℃10min;4℃保存。
将阳性克隆菌株送到上海生工生物工程技术服务有限公司进行序列测定并对测序 结果进行分析。
测序结果表明:clk F/clk R引物PCR扩增得到大小为2214bp的DNA片段,其核 苷酸序列如序列1所示,将序列1所示的基因命名为飞蝗节律基因clk,飞蝗节律基因 clk编码的CLK蛋白的氨基酸序列如序列2所示。cyc F/cyc R引物PCR扩增得到大小 为1926bp的DNA片段,其核苷酸序列如序列3所示,将序列3所示的基因命名为飞 蝗节律基因cyc,飞蝗节律基因cyc编码的CYC蛋白的氨基酸序列如序列4所示。per F/per R引物PCR扩增得到大小为2976bp的DNA片段,其核苷酸序列如序列5所示, 将序列5所示的基因命名为飞蝗节律基因per,飞蝗节律基因per编码的PER蛋白的 氨基酸序列如序列6所示。tim F/tim R引物PCR扩增得到大小为3606bp的DNA片段, 其核苷酸序列如序列7所示。
实施例2、飞蝗节律基因clk、cyc、per和tim的dsRNA的制备及其应用
一、飞蝗节律基因clk、cyc、per和tim的dsRNA的制备
采用T7RiboMAX TM Express RNAi System试剂盒合成dsRNA。具体步骤如下:
1、dsRNA引物的合成
根据已克隆出的基因片段设计引物,扩增目的片段为500bp左右,在引物的5'端引入T7启动子。引物序列如表1所示。
2、DNA模板的制备
用试剂盒分别提取菌液质粒,分别以含目的基因片段的质粒(实施例1中的重组载体)为模板,采用对应的引物进行PCR扩增,分别得到含有T7启动子序列的目的 片段。
PCR反应体系如下(总体积50μL):质粒1μL、dNTP 4μL、10×Buffer 5μL、前 引物1μL、后引物1μL、Taq酶0.25μL、ddH2O 38μL。
PCR反应条件如下:95℃3min;95℃30s,55℃30s,72℃1min,35个循环; 72℃10min;4℃保存。
回收PCR产物,并用NanoPhotometer微量分光光度计检测目标DNA浓度,回收 浓度需大于150ng/μL。
3、dsRNA的合成
采用T7RiboMAX TM Express RNAi System试剂盒将回收的DNA体外转录合成飞 蝗节律基因clk、cyc、per和tim的dsRNA,并用NanoPhotometer微量分光光度计检 测dsRNA浓度,dsRNA浓度需大于1000ng/μL。再用RNase free ddH2O将dsRNA浓 度调整至1μg/μL,得到dsRNA溶液。
本发明获得的飞蝗节律基因clk、cyc、per和tim的dsRNA均为双链RNA,由正 义链和反义链组成。
飞蝗节律基因clk的dsRNA的正义链的核苷酸序列为序列8,其反义链的核苷酸 序列为序列8的反向互补序列。将飞蝗节律基因clk的dsRNA命名为dsclk。
飞蝗节律基因cyc的dsRNA的正义链的核苷酸序列为序列9,其反义链的核苷酸 序列为序列9的反向互补序列。将飞蝗节律基因cyc的dsRNA命名为dscyc。
飞蝗节律基因per的dsRNA的正义链的核苷酸序列为序列10,其反义链的核苷 酸序列为序列10的反向互补序列。将飞蝗节律基因per的dsRNA命名为dsper。
飞蝗节律基因tim的dsRNA的正义链的核苷酸序列为序列11,其反义链的核苷酸序列为序列11的反向互补序列。将飞蝗节律基因tim的dsRNA命名为dstim。
上述飞蝗节律基因clk、cyc、per和tim的dsRNA也可通过人工合成的方法获得。
二、飞蝗节律基因clk、cyc和per的dsRNA在调控昆虫滞育中的应用
1、实验方法
将dsRNA导入蝗虫体内。具体步骤如下:选取发育进度一致(羽化48h内)的 飞蝗雌成虫进行微量注射,将相应的dsRNA用微量注射器从蝗虫腹部的第二和第三腹 节之间的节间膜注射进入,注射器的针头和腹部平行,避免损伤蝗虫的内部器官组织。 注射剂量为每头蝗虫注射10μL浓度为1μg/μL的dsRNA(dsclk、dscyc、dsper和dstim), 同时以注射10μLRNase free ddH2O作为对照组(control)。每个处理5个重复,每个 重复5头飞蝗雌成虫。注射dsRNA后将所有处理的飞蝗雌成虫混入等量的雄成虫,放 入恒温气候箱中饲养。饲养条件:光照时间:黑暗时间=10h:14h,温度28±1℃,相对 湿度60%。
2、实时荧光定量PCR检测干扰效率
注射处理48h后取样,提取总RNA并反转录,得到cDNA。利用荧光定量PCR 检测各处理组飞蝗中相应节律基因clk、cyc、per和tim的相对mRNA水平,注射RNase free ddH2O处理为对照。荧光定量采用takara公司的SYBR Premix Ex Taq II(Tli RNaseH Plus)和ABI公司的ABI7500荧光定量PCR仪,结果采用2-ΔΔCT法进行分析。 以actin基因作为内参基因。引物序列如表1所示。
荧光定量pcr对RNA干扰效率检测结果如图2所示。从图中可看出:注射dsclk 处理比注射RNase free ddH2O处理中clk相对表达量降低了81.48%;注射dscyc处理 比注射RNase free ddH2O处理中cyc相对表达量降低了76.67%,注射dsper处理比注 射RNasefree ddH2O处理中per相对表达量降低了71.12%,注射dstim处理比注射 RNase freeddH2O处理中tim相对表达量降低了51.57%。mRNA相对水平差异的显著 性均用Student'st-test检验。上述结果表明,所有注射了dsRNA的处理比注射RNase free ddH2O处理中相应基因的mRNA均显著下降(p<0.01),干扰效果良好。
3、飞蝗滞育率统计
注射处理一周后飞蝗开始交配,再过一周后雌蝗开始产卵,在培养笼底垫10厘米厚的沙土供飞蝗产卵,沙土相对湿度20%。自产卵开始,每两天收集一次所产下的蝗 卵,转移至用含有蛭石的孵化盒中,相对湿度20%。然后将孵化盒培养于另一个恒温 气候箱中,孵化温度为28℃。约3-4周后,幼虫开始孵化,记录幼虫数量(A)。继续 孵化约20天直到不再有幼虫孵化,再继续培养一周。将剩余未孵化的蝗卵从蛭石中挖 出,用相对湿度20%的沙土埋入孵化盒中,转移至4℃冰箱保存30天。之后再次用 相对湿度20%的蛭石埋入孵化盒,转移至恒温气候箱中孵化,孵化温度为28℃,直 至所有幼虫孵化,记录幼虫数量(B)。计算蝗卵滞育率=B/(A+B)。
RNA干扰后对飞蝗产的蝗卵滞育率的统计结果如图3所示。从图中可看出:注射RNase free ddH2O处理为对照处理,平均滞育率为88.23%;注射dsclk处理的平均滞 育率为51.16%,比对照处理的平均滞育率降低了37.07%;注射dscyc处理的平均滞 育率为66.22%,比对照处理的平均滞育率降低了22.01%;注射dsper处理的平均滞 育率为61.41%,比对照处理的平均滞育率降低了26.82%;注射dstim处理的平均滞 育率为83.10%,比对照处理的平均滞育率降低了5.13%。通过单因素ANOVA的 Duncan’smultiple-range test检验统计滞育率差异显著性,结果表明注射dsclk、dscyc 和dsper处理,与对照注射RNase free ddH2O处理相比滞育率均显著下降,注射dstim 处理与对照处理无显著差异,p<0.001,F=26.636。
以上结果表明,RNA干扰飞蝗节律基因clk、cyc和per后使飞蝗卵滞育率显著下降,而RNA干扰飞蝗节律基因tim不能使飞蝗卵滞育率显著下降。利用节律基因clk、 cyc和per的dsRNA能有效的降低飞蝗卵滞育率,降低其越冬存活率和越冬后种群数 量,从而控制蝗灾爆发。
序列表
<110>中国农业科学院植物保护研究所
<120>飞蝗节律基因clk、cyc和per及其在调控昆虫滞育中的应用
<160>11
<170>PatentIn version 3.5
<210>1
<211>2214
<212>DNA
<213>人工序列(Artificial Sequence)
<400>1
atgtctagtt acattaaaag agaaccgtct cggagatctg atgataccat ggacgacgac 60
ggggacgaca aggatgacac gaaacggaaa tctcgaaatt tgagtgagaa gaaacgtaga 120
gatcagttca acatgctcat caatgaatta agttcaatgg tttctacaaa caaccgaaaa 180
atggataaat caactgtctt gaagtctaca atatcatttt tgaaaaatca caatgaactt 240
gctgttcgtt caagagcaca tgagattcag gaagactgga aaccatcttt cctgtcaaat 300
gaagagttca cacatcttat tttggaggca ttagatggtt tcatcatggt gttttcttca 360
tctggaagaa ttttttatgc ttctgagagc attacttctc ttcttggaca tttaccgagt 420
gacttaatga atatgacaat ctatgacatg gtgtatgagg aggatcagtc agctctctac 480
aacatactgt tgaatccagc tagcagtgtt gattcaatga attatggtga taccaaagaa 540
aatcaagtat ccttttcatg tcatatgcgt cgaggtggtc tggatttccg agatgaggat 600
acatacgagc ttgttcagtt tgtgggctac tttcggtcag atattgatcc cctggaagtt 660
gaccacctta tatctaccag taatcgtctt gtcaacttct ctggagaagt aggcatgaaa 720
ttagtttttg ttggtgttgg ccgcttgcag actccattat taattcggga aatgtcagtt 780
gtggactcca ctaaaagcga attcacttca aggcatagcc tagagtggaa atttttgttt 840
cttgatcaca gagcacctcc cattattggc tatttaccat ttgaagtact gggtacatct 900
ggttatgatt attaccatgt ggatgatctt gagaaagttg tcacatgcca tgaagctttg 960
atgcagaagg gggaaggtac ttcttgccat tatcgttttc tcaccaaagg gcaacagtgg 1020
atatggttac aaacgaggtt ctacataact taccaccagt ggaactctaa gccagaattc 1080
attgtttgca cgcacagagt tgttagttat ctggatgtaa tgaagcaaat gaggaaggat 1140
ccagaagaag gtgaacgaag tcaagatagt gaagttggtg catgggagtc ttctgataag 1200
caacaagtgg gtactacatc gcaaggtagc atctcttcta gtgcctggac ctcaagatct 1260
tctggaaaag tatctagagc tgagacaaaa tcaccagtga cacagaagca gcatcagtct 1320
ggatgtacta cgaacacagg tccttcggca gctactactc caggttctgc tacacctagt 1380
cctggatcgg catgtgattc tgttgtgggt gttgcaccaa cgagctcctc tgcacaggct 1440
acatcatcaa ggaattcaca gcttggcacg cggcggacaa agtcagtaag cagcaagata 1500
cagatgcctg tcactccacc agctcaacca cagcggcaac agcagcagcc gcaacaacaa 1560
caacaacaag aacaatcatc atcatctaat gcagtaccaa cctcaacatc gcaggtttca 1620
ttagcagtag cagctccatt cttagaagcc cagcagcagt atgtcacagc catacctgtg 1680
cagccagtat tggctacagg tttcccagct gttgttacta cattgccagc aactgagctg 1740
gtgcggcagc caattgcaat gacaacagca cagaacaatc tacaagaaca gctggagcgc 1800
aagcacgaag agcttcagca gttgatagta caacaacaag aggaacttcg ccgtgtctca 1860
gagcagttgt ttatggcgcg ctatggtctt ctatcgccta tgtcacttaa tattaccagc 1920
actgctgcca gccaccttgt tacactgcca tacaatacag ctgttagtag cacgacttcg 1980
gtgggacgag atggagagtc atccactcct gtatcatcag agctttacca tgcacctctc 2040
actgtagcta ctgtcacagc tcgaacccac acaccaacag cttccattat gatagatcct 2100
caacaggtga atttgcaggc ccatggaaca gaggaagcaa taccttttca gctttctcag 2160
caacaagcgc agttgctctt ttcatctccc aactctggac aacagcagca gtga 2214
<210>2
<211>737
<212>PRT
<213>人工序列(Artificial Sequence)
<400>2
Met Ser Ser Tyr Ile Lys Arg Glu Pro Ser Arg Arg Ser Asp Asp Thr
1 5 10 15
Met Asp Asp Asp Gly Asp Asp Lys Asp Asp Thr Lys Arg Lys Ser Arg
20 25 30
Asn Leu Ser Glu Lys Lys Arg Arg Asp Gln Phe Asn Met Leu Ile Asn
35 40 45
Glu Leu Ser Ser Met Val Ser Thr Asn Asn Arg Lys Met Asp Lys Ser
50 55 60
Thr Val Leu Lys Ser Thr Ile Ser Phe Leu Lys Asn His Asn Glu Leu
65 70 75 80
Ala Val Arg Ser Arg Ala His Glu Ile Gln Glu Asp Trp Lys Pro Ser
85 90 95
Phe Leu Ser Asn Glu Glu Phe Thr His Leu Ile Leu Glu Ala Leu Asp
100 105 110
Gly Phe Ile Met Val Phe Ser Ser Ser Gly Arg Ile Phe Tyr Ala Ser
115 120 125
Glu Ser Ile Thr Ser Leu Leu Gly His Leu Pro Ser Asp Leu Met Asn
130 135 140
Met Thr Ile Tyr Asp Met Val Tyr Glu Glu Asp Gln Ser Ala Leu Tyr
145 150 155 160
Asn Ile Leu Leu Asn Pro Ala Ser Ser Val Asp Ser Met Asn Tyr Gly
165 170 175
Asp Thr Lys Glu Asn Gln Val Ser Phe Ser Cys His Met Arg Arg Gly
180 185 190
Gly Leu Asp Phe Arg Asp Glu Asp Thr Tyr Glu Leu Val Gln Phe Val
195 200 205
Gly Tyr Phe Arg Ser Asp Ile Asp Pro Leu Glu Val Asp His Leu Ile
210 215 220
Ser Thr Ser Asn Arg Leu Val Asn Phe Ser Gly Glu Val Gly Met Lys
225 230 235 240
Leu Val Phe Val Gly Val Gly Arg Leu Gln Thr Pro Leu Leu Ile Arg
245 250 255
Glu Met Ser Val Val Asp Ser Thr Lys Ser Glu Phe Thr Ser Arg His
260 265 270
Ser Leu Glu Trp Lys Phe Leu Phe Leu Asp His Arg Ala Pro Pro Ile
275 280 285
Ile Gly Tyr Leu Pro Phe Glu Val Leu Gly Thr Ser Gly Tyr Asp Tyr
290 295 300
Tyr His Val Asp Asp Leu Glu Lys Val Val Thr Cys His Glu Ala Leu
305 310 315 320
Met Gln Lys Gly Glu Gly Thr Ser Cys His Tyr Arg Phe Leu Thr Lys
325 330 335
Gly Gln Gln Trp Ile Trp Leu Gln Thr Arg Phe Tyr Ile Thr Tyr His
340 345 350
Gln Trp Asn Ser Lys Pro Glu Phe Ile Val Cys Thr His Arg Val Val
355 360 365
Ser Tyr Leu Asp Val Met Lys Gln Met Arg Lys Asp Pro Glu Glu Gly
370 375 380
Glu Arg Ser Gln Asp Ser Glu Val Gly Ala Trp Glu Ser Ser Asp Lys
385 390 395 400
Gln Gln Val Gly Thr Thr Ser Gln Gly Ser Ile Ser Ser Ser Ala Trp
405 410 415
Thr Ser Arg Ser Ser Gly Lys Val Ser Arg Ala Glu Thr Lys Ser Pro
420 425 430
Val Thr Gln Lys Gln His Gln Ser Gly Cys Thr Thr Asn Thr Gly Pro
435 440 445
Ser Ala Ala Thr Thr Pro Gly Ser Ala Thr Pro Ser Pro Gly Ser Ala
450 455 460
Cys Asp Ser Val Val Gly Val Ala Pro Thr Ser Ser Ser Ala Gln Ala
465 470 475 480
Thr Ser Ser Arg Asn Ser Gln Leu Gly Thr Arg Arg Thr Lys Ser Val
485 490 495
Ser Ser Lys Ile Gln Met Pro Val Thr Pro Pro Ala Gln Pro Gln Arg
500 505 510
Gln Gln Gln Gln Pro Gln Gln Gln Gln Gln Gln Glu Gln Ser Ser Ser
515 520 525
Ser Asn Ala Val Pro Thr Ser Thr Ser Gln Val Ser Leu Ala Val Ala
530 535 540
Ala Pro Phe Leu Glu Ala Gln Gln Gln Tyr Val Thr Ala Ile Pro Val
545 550 555 560
Gln Pro Val Leu Ala Thr Gly Phe Pro Ala Val Val Thr Thr Leu Pro
565 570 575
Ala Thr Glu Leu Val Arg Gln Pro Ile Ala Met Thr Thr Ala Gln Asn
580 585 590
Asn Leu Gln Glu Gln Leu Glu Arg Lys His Glu Glu Leu Gln Gln Leu
595 600 605
Ile Val Gln Gln Gln Glu Glu Leu Arg Arg Val Ser Glu Gln Leu Phe
610 615 620
Met Ala Arg Tyr Gly Leu Leu Ser Pro Met Ser Leu Asn Ile Thr Ser
625 630 635 640
Thr Ala Ala Ser His Leu Val Thr Leu Pro Tyr Asn Thr Ala Val Ser
645 650 655
Ser Thr Thr Ser Val Gly Arg Asp Gly Glu Ser Ser Thr Pro Val Ser
660 665 670
Ser Glu Leu Tyr His Ala Pro Leu Thr Val Ala Thr Val Thr Ala Arg
675 680 685
Thr His Thr Pro Thr Ala Ser Ile Met Ile Asp Pro Gln Gln Val Asn
690 695 700
Leu Gln Ala His Gly Thr Glu Glu Ala Ile Pro Phe Gln Leu Ser Gln
705 710 715 720
Gln Gln Ala Gln Leu Leu Phe Ser Ser Pro Asn Ser Gly Gln Gln Gln
725 730 735
Gln
<210>3
<211>1926
<212>DNA
<213>人工序列(Artificial Sequence)
<400>3
atgcgctcca agccttcttc cttcagaaat tcctgttcca catccatgta cctcggagga 60
ggtccgactc agagtctatc tagcgacgtg gcgatggaac tgcacccgac cgtcgacagc 120
accggagacc actcgcggaa gcgcaagagc tcctttagca aaaacagcga catcgatggc 180
gacactggag atgacgctaa atctgtacgc accaacgagg acagcaagaa gcagaaccac 240
agtgagattg aaaagcggcg gcgggacaag atgaacacgt acatcacaga gctgtcagca 300
atggtgccca tgtgtcatgc catgtcccgt aagctggaca agctgacagt gctgcgcatg 360
gctgtgcagc acctcaagac catccgaggc gccgtccact cctatactga gggccactac 420
aagccctcct tcctctccga tcaggaactc aagaccctca tcctacaggc agctgaggga 480
ttcctttttg ttgttggctg tgatagaggc cggattctgt acgtttcaga atctgtttct 540
caaattttaa gctattcgca gggggatcta ttaggccaaa gttggtttga tatcctccat 600
cccaaagatg tagcgaaggt gaaagagcag ctctcttctt ctgatcttag tcccagggag 660
aggcttatcg atgccaaaac tatgctccct gtcaagacag atgttcctca aggggtatca 720
agactgtgcc ctggtgctag aagatctttc ttctgccgca tgaagtgcaa actctcacct 780
gtagttaaag aagaagctga tacaactact ggttgccacc ggcgaaaaaa gcagcaacct 840
ccagatcgaa aatactgtgt gatacagtgt acagggtatc tcaaatcatg ggccccagct 900
aaaattggcc ttgaggaaca ggaaagcgaa ggggaaggtg atgcctgcaa tctctcttgc 960
cttgttgctg ttggccgtgt ccagccgcaa gtgacgcaac gaccgccagc gacaggaatg 1020
agacgaccca atgtccgaac gatacaattc atatcgaggc acgctcttga tggaaaattt 1080
cttttcgtcg accaaagggc caccttggta cttggtttct tacctcagga gctgcatgga 1140
acaagcatgt atgagtacta tcatcatgaa gacattgcac atcttgctga atcacataaa 1200
atagcactgc agggtccaga caaagttaca actcaggtat acaggtttaa aagcaaagag 1260
ggatcatttg taaaacttca aagtgaatgg aagtccttta aaaatccatg gactaaagat 1320
gtggagtact tagttgcaaa gaactctgtc atactgtctg acattcggac tgttgaaagc 1380
agtatacctc agactgaagg aactaaccac tcacatagtg gttttgattt cttcacacag 1440
tcaaacggaa acagagaaat gcagcgattc attagtactc atgtagaggc cagcaaaatc 1500
ggtcgacaga ttgctgaaga agtgctagat tctatgaaac aaggagcaga ctcatcacct 1560
ggcagtagtc cctcaccaga tgttgaccag acacgaccat catcgcagat ctcagcaagc 1620
aactccaatg aattacctca gcaacgaaat ggttccgcac gatcaaatcc tctcaacaat 1680
ggtgtaacaa gtttcccaaa tatccggaac aatgtgcaac tatctatagc caatgaacca 1740
ggtgtggatc cagatgaagt gattcaaatg attgatggta atgttctgcc tgagtcttca 1800
aatcctaatg cttccaatga tggcaatgat gaagcggcaa tggcagtcat aatgagcctc 1860
ttggaagctg atgctgggct tggtggacct gttgactttt ctggcattcc atggccactg 1920
ccatga 1926
<210>4
<211>641
<212>PRT
<213>人工序列(Artificial Sequence)
<400>4
Met Arg Ser Lys Pro Ser Ser Phe Arg Asn Ser Cys Ser Thr Ser Met
1 5 10 15
Tyr Leu Gly Gly Gly Pro Thr Gln Ser Leu Ser Ser Asp Val Ala Met
20 25 30
Glu Leu His Pro Thr Val Asp Ser Thr Gly Asp His Ser Arg Lys Arg
35 40 45
Lys Ser Ser Phe Ser Lys Asn Ser Asp Ile Asp Gly Asp Thr Gly Asp
50 55 60
Asp Ala Lys Ser Val Arg Thr Asn Glu Asp Ser Lys Lys Gln Asn His
65 70 75 80
Ser Glu Ile Glu Lys Arg Arg Arg Asp Lys Met Asn Thr Tyr Ile Thr
85 90 95
Glu Leu Ser Ala Met Val Pro Met Cys His Ala Met Ser Arg Lys Leu
100 105 110
Asp Lys Leu Thr Val Leu Arg Met Ala Val Gln His Leu Lys Thr Ile
115 120 125
Arg Gly Ala Val His Ser Tyr Thr Glu Gly His Tyr Lys Pro Ser Phe
130 135 140
Leu Ser Asp Gln Glu Leu Lys Thr Leu Ile Leu Gln Ala Ala Glu Gly
145 150 155 160
Phe Leu Phe Val Val Gly Cys Asp Arg Gly Arg Ile Leu Tyr Val Ser
165 170 175
Glu Ser Val Ser Gln Ile Leu Ser Tyr Ser Gln Gly Asp Leu Leu Gly
180 185 190
Gln Ser Trp Phe Asp Ile Leu His Pro Lys Asp Val Ala Lys Val Lys
195 200 205
Glu Gln Leu Ser Ser Ser Asp Leu Ser Pro Arg Glu Arg Leu Ile Asp
210 215 220
Ala Lys Thr Met Leu Pro Val Lys Thr Asp Val Pro Gln Gly Val Ser
225 230 235 240
Arg Leu Cys Pro Gly Ala Arg Arg Ser Phe Phe Cys Arg Met Lys Cys
245 250 255
Lys Leu Ser Pro Val Val Lys Glu Glu Ala Asp Thr Thr Thr Gly Cys
260 265 270
His Arg Arg Lys Lys Gln Gln Pro Pro Asp Arg Lys Tyr Cys Val Ile
275 280 285
Gln Cys Thr Gly Tyr Leu Lys Ser Trp Ala Pro Ala Lys Ile Gly Leu
290 295 300
Glu Glu Gln Glu Ser Glu Gly Glu Gly Asp Ala Cys Asn Leu Ser Cys
305 310 315 320
Leu Val Ala Val Gly Arg Val Gln Pro Gln Val Thr Gln Arg Pro Pro
325 330 335
Ala Thr Gly Met Arg Arg Pro Asn Val Arg Thr Ile Gln Phe Ile Ser
340 345 350
Arg His Ala Leu Asp Gly Lys Phe Leu Phe Val Asp Gln Arg Ala Thr
355 360 365
Leu Val Leu Gly Phe Leu Pro Gln Glu Leu His Gly Thr Ser Met Tyr
370 375 380
Glu Tyr Tyr His His Glu Asp Ile Ala His Leu Ala Glu Ser His Lys
385 390 395 400
Ile Ala Leu Gln Gly Pro Asp Lys Val Thr Thr Gln Val Tyr Arg Phe
405 410 415
Lys Ser Lys Glu Gly Ser Phe Val Lys Leu Gln Ser Glu Trp Lys Ser
420 425 430
Phe Lys Asn Pro Trp Thr Lys Asp Val Glu Tyr Leu Val Ala Lys Asn
435 440 445
Ser Val Ile Leu Ser Asp Ile Arg Thr Val Glu Ser Ser Ile Pro Gln
450 455 460
Thr Glu Gly Thr Asn His Ser His Ser Gly Phe Asp Phe Phe Thr Gln
465 470 475 480
Ser Asn Gly Asn Arg Glu Met Gln Arg Phe Ile Ser Thr His Val Glu
485 490 495
Ala Ser Lys Ile Gly Arg Gln Ile Ala Glu Glu Val Leu Asp Ser Met
500 505 510
Lys Gln Gly Ala Asp Ser Ser Pro Gly Ser Ser Pro Ser Pro Asp Val
515 520 525
Asp Gln Thr Arg Pro Ser Ser Gln Ile Ser Ala Ser Asn Ser Asn Glu
530 535 540
Leu Pro Gln Gln Arg Asn Gly Ser Ala Arg Ser Asn Pro Leu Asn Asn
545 550 555 560
Gly Val Thr Ser Phe Pro Asn Ile Arg Asn Asn Val Gln Leu Ser Ile
565 570 575
Ala Asn Glu Pro Gly Val Asp Pro Asp Glu Val Ile Gln Met Ile Asp
580 585 590
Gly Asn Val Leu Pro Glu Ser Ser Asn Pro Asn Ala Ser Asn Asp Gly
595 600 605
Asn Asp Glu Ala Ala Met Ala Val Ile Met Ser Leu Leu Glu Ala Asp
610 615 620
Ala Gly Leu Gly Gly Pro Val Asp Phe Ser Gly Ile Pro Trp Pro Leu
625 630 635 640
Pro
<210>5
<211>2976
<212>DNA
<213>人工序列(Artificial Sequence)
<400>5
atgaaggagg agcgcgaggc gccgtcgacg gccgcgtcgg cggtgggcac gtcgtcgccc 60
gcctccgtgg ccgcctccac cggccgctcc tccaaggcgg ccgactcggc ctgctccgtg 120
ggcaacagcc agtcccagcg cagcggcagc tccaagtcgc gcatcagcaa ctcgagtggc 180
agcagcggct acggcggaca cccctccacg ctcagcagcg ggaacgacgc gttccctcag 240
ccgcgctgca aggacaagga gcaccgcaag aagaagctca agccggagca ggcgtctgcg 300
gaggcccccg cggccgcctc cgcctccgcg gccgcctcct cagcgacgcc cgcctccggc 360
acagaggcgt cgccagctgc cggcaagagc gacgccgccc cagagaggac gtcgcaggcc 420
gctgccgacg ccgaagcccc ccagccgccc caggaggcgg gggcggccca ggccgagggg 480
cggagcgagg gggcggagcc gcgcgccgcc gcacccacca gcccgtccaa cgccttctcc 540
cagaccacct ccagctccaa cagcaacgca ggagccgcgg aggcggaggc ggcggagcag 600
cggaaggcat gtcgcgcgag cggcggctgc ccacgccagc agcacgccaa gccccagcag 660
cccgccgccg gcaacaagga cgagttcacg gtggtggtgt cgatgcagga cggcgcagtc 720
atctacacgt cgccgtccat cacgcaagcg ctcgccttcc cgcgagacat gtgggtcggc 780
aagtcgttca tcgactacgt gcaccccaac gaccggctgg cgcttataca gcacatcacg 840
acgggtgtcg cactaccgcg ctgtaaaggg ggcagcggca agtcgcccgc ccaggccccg 900
gtgcaggcgc cgctgttctg ccgcctgcgg cgctacccgt cgctgcggga cggcttcgcg 960
gtggcggagc gccggctggt gcaccggccg ttctcgctgc agctctcctt ctacgagctg 1020
cccgcctctg cctccggggg tgcgcccgcc gcgctgcccc ccggtgtgct gctcaccgtc 1080
accgccaccg ccgtctgccc tgcctacacc cggccggacg agaagccggt gagcggcggc 1140
aagttcgcga cgcgccacca ggcggacggc aagctgacgc acgtggacgg cgaggcggtg 1200
tcgctgctgg ggtacctgcc gcagcagctg ctgggccggc ccgtcttcga cgtctaccac 1260
ccagccgacc tgcgcggcct gcagcgcgtc taccggcagc tggtgaacaa agagtgcgag 1320
tcgccactgc gcgggcagcc gtaccggctg cgcacccaca acggctgcta cgtgcgcgtc 1380
cacaccgagt ggtccagctt cgtcaacccg tggaccaagc ggctcgagtt cgtcgtcggg 1440
cagcactgcg tcctgcaggg cccgagctac acggacgtgt tcgcagaggc gcaggacgag 1500
gagatggtga gcgaggaagt ggtgcaggac agcaaggccg cccaggccga gatcctccac 1560
ctgctgcagg aggaggtaca ccgcggagag cccggcgcgg accggcgcga cgtgtctcgg 1620
cgctgcaagg acctggccag cttcatggag acgctgatcg gcgagatagg caagcccgag 1680
ctgcgcgtcg acccggccgc cgccgccgcc aaccggatcg gagccagctt ctccgaacgc 1740
agctccgtga cgctggggga gatatcgccg caccacgact actacgacag caagtcgtcg 1800
tccgagacgc cgcctagcta caaccagctc aactacaacg acaacatcca gaggttcttt 1860
gaaagcaaac caaagacaat cccgtctgac gattccggtg agaggctgat ggcactggag 1920
ccgaccagcc gcagcaccga cgaagacacc aaggctgcca ccaccgccaa tggctgccgc 1980
gccaccagga actgcctgtc gccggtgaac gacacgggct ccggatccaa ctccggcagc 2040
ggctccgggt ccgccggccc ttccggcaac aacggcagcg tggacacggc agaggccgac 2100
ggcgactaca agccgcccca gctcacggag gcactgctct ccaggcacaa cgaggacatg 2160
gaaaagagga tggtgcagcg gcaccgcgag cagcgcagca aaggcggagg cggcgagggg 2220
aagtgcaagc ggccgcacca ctgccagccg gccgcgctcg ccgacaaggc gcaggtggag 2280
agtgcggctc cgccggcgct cgccgcccag gtgttggcga gcgccgcggc ccacggcacg 2340
aagcgcagcg gcagccactc gtgggacggc gagccgctca aggccagcaa gcactcgcac 2400
gcgccctcgc caccggccgc gcccccgccg cccgcacccc ccagggacga agcgccgcct 2460
ccggccgctg ctccgggccc tcccgccgcg cagtcgccgg ggaccgcggc cgtcaaggag 2520
gcggggctca gcctgtggcc gccgttctct gtggcgatga cgcctctgca ctcgccgcag 2580
gcctgcagtg cgcgagggac gttctgctcg ggcggctgct cgcacgccca cgcggccccg 2640
cagatcctgc cgctgtacta cctgccggcc gcctcccccg cccccgcggg ctccggcagc 2700
cgcccccacc agcagcctca cgcccccgcc gccttcctgc agcagcaagg aggcgcgctg 2760
ccgtatttgg cggccggcgt gctgtatcag gcggcgccgc tgctgtaccc gctggcgccg 2820
ccgccgccgc ccccgccgtc gcacctgctg gcgctgcacc agccgctgct gccgcaccac 2880
aaccacaacc accaccaccg ccacagcagc cgctgctgcc tctgccgctc ccggcgccga 2940
tcccggtgca gctgccggac gaactgcagc aggtag 2976
<210>6
<211>991
<212>PRT
<213>人工序列(Artificial Sequence)
<400>6
Met Lys Glu Glu Arg Glu Ala Pro Ser Thr Ala Ala Ser Ala Val Gly
1 5 10 15
Thr Ser Ser Pro Ala Ser Val Ala Ala Ser Thr Gly Arg Ser Ser Lys
20 25 30
Ala Ala Asp Ser Ala Cys Ser Val Gly Asn Ser Gln Ser Gln Arg Ser
35 40 45
Gly Ser Ser Lys Ser Arg Ile Ser Asn Ser Ser Gly Ser Ser Gly Tyr
50 55 60
Gly Gly His Pro Ser Thr Leu Ser Ser Gly Asn Asp Ala Phe Pro Gln
65 70 75 80
Pro Arg Cys Lys Asp Lys Glu His Arg Lys Lys Lys Leu Lys Pro Glu
85 90 95
Gln Ala Ser Ala Glu Ala Pro Ala Ala Ala Ser Ala Ser Ala Ala Ala
100 105 110
Ser Ser Ala Thr Pro Ala Ser Gly Thr Glu Ala Ser Pro Ala Ala Gly
115 120 125
Lys Ser Asp Ala Ala Pro Glu Arg Thr Ser Gln Ala Ala Ala Asp Ala
130 135 140
Glu Ala Pro Gln Pro Pro Gln Glu Ala Gly Ala Ala Gln Ala Glu Gly
145 150 155 160
Arg Ser Glu Gly Ala Glu Pro Arg Ala Ala Ala Pro Thr Ser Pro Ser
165 170 175
Asn Ala Phe Ser Gln Thr Thr Ser Ser Ser Asn Ser Asn Ala Gly Ala
180 185 190
Ala Glu Ala Glu Ala Ala Glu Gln Arg Lys Ala Cys Arg Ala Ser Gly
195 200 205
Gly Cys Pro Arg Gln Gln His Ala Lys Pro Gln Gln Pro Ala Ala Gly
210 215 220
Asn Lys Asp Glu Phe Thr Val Val Val Ser Met Gln Asp Gly Ala Val
225 230 235 240
Ile Tyr Thr Ser Pro Ser Ile Thr Gln Ala Leu Ala Phe Pro Arg Asp
245 250 255
Met Trp Val Gly Lys Ser Phe Ile Asp Tyr Val His Pro Asn Asp Arg
260 265 270
Leu Ala Leu Ile Gln His Ile Thr Thr Gly Val Ala Leu Pro Arg Cys
275 280 285
Lys Gly Gly Ser Gly Lys Ser Pro Ala Gln Ala Pro Val Gln Ala Pro
290 295 300
Leu Phe Cys Arg Leu Arg Arg Tyr Pro Ser Leu Arg Asp Gly Phe Ala
305 310 315 320
Val Ala Glu Arg Arg Leu Val His Arg Pro Phe Ser Leu Gln Leu Ser
325 330 335
Phe Tyr Glu Leu Pro Ala Ser Ala Ser Gly Gly Ala Pro Ala Ala Leu
340 345 350
Pro Pro Gly Val Leu Leu Thr Val Thr Ala Thr Ala Val Cys Pro Ala
355 360 365
Tyr Thr Arg Pro Asp Glu Lys Pro Val Ser Gly Gly Lys Phe Ala Thr
370 375 380
Arg His Gln Ala Asp Gly Lys Leu Thr His Val Asp Gly Glu Ala Val
385 390 395 400
Ser Leu Leu Gly Tyr Leu Pro Gln Gln Leu Leu Gly Arg Pro Val Phe
405 410 415
Asp Val Tyr His Pro Ala Asp Leu Arg Gly Leu Gln Arg Val Tyr Arg
420 425 430
Gln Leu Val Asn Lys Glu Cys Glu Ser Pro Leu Arg Gly Gln Pro Tyr
435 440 445
Arg Leu Arg Thr His Asn Gly Cys Tyr Val Arg Val His Thr Glu Trp
450 455 460
Ser Ser Phe Val Asn Pro Trp Thr Lys Arg Leu Glu Phe Val Val Gly
465 470 475 480
Gln His Cys Val Leu Gln Gly Pro Ser Tyr Thr Asp Val Phe Ala Glu
485 490 495
Ala Gln Asp Glu Glu Met Val Ser Glu Glu Val Val Gln Asp Ser Lys
500 505 510
Ala Ala Gln Ala Glu Ile Leu His Leu Leu Gln Glu Glu Val His Arg
515 520 525
Gly Glu Pro Gly Ala Asp Arg Arg Asp Val Ser Arg Arg Cys Lys Asp
530 535 540
Leu Ala Ser Phe Met Glu Thr Leu Ile Gly Glu Ile Gly Lys Pro Glu
545 550 555 560
Leu Arg Val Asp Pro Ala Ala Ala Ala Ala Asn Arg Ile Gly Ala Ser
565 570 575
Phe Ser Glu Arg Ser Ser Val Thr Leu Gly Glu Ile Ser Pro His His
580 585 590
Asp Tyr Tyr Asp Ser Lys Ser Ser Ser Glu Thr Pro Pro Ser Tyr Asn
595 600 605
Gln Leu Asn Tyr Asn Asp Asn Ile Gln Arg Phe Phe Glu Ser Lys Pro
610 615 620
Lys Thr Ile Pro Ser Asp Asp Ser Gly Glu Arg Leu Met Ala Leu Glu
625 630 635 640
Pro Thr Ser Arg Ser Thr Asp Glu Asp Thr Lys Ala Ala Thr Thr Ala
645 650 655
Asn Gly Cys Arg Ala Thr Arg Asn Cys Leu Ser Pro Val Asn Asp Thr
660 665 670
Gly Ser Gly Ser Asn Ser Gly Ser Gly Ser Gly Ser Ala Gly Pro Ser
675 680 685
Gly Asn Asn Gly Ser Val Asp Thr Ala Glu Ala Asp Gly Asp Tyr Lys
690 695 700
Pro Pro Gln Leu Thr Glu Ala Leu Leu Ser Arg His Asn Glu Asp Met
705 710 715 720
Glu Lys Arg Met Val Gln Arg His Arg Glu Gln Arg Ser Lys Gly Gly
725 730 735
Gly Gly Glu Gly Lys Cys Lys Arg Pro His His Cys Gln Pro Ala Ala
740 745 750
Leu Ala Asp Lys Ala Gln Val Glu Ser Ala Ala Pro Pro Ala Leu Ala
755 760 765
Ala Gln Val Leu Ala Ser Ala Ala Ala His Gly Thr Lys Arg Ser Gly
770 775 780
Ser His Ser Trp Asp Gly Glu Pro Leu Lys Ala Ser Lys His Ser His
785 790 795 800
Ala Pro Ser Pro Pro Ala Ala Pro Pro Pro Pro Ala Pro Pro Arg Asp
805 810 815
Glu Ala Pro Pro Pro Ala Ala Ala Pro Gly Pro Pro Ala Ala Gln Ser
820 825 830
Pro Gly Thr Ala Ala Val Lys Glu Ala Gly Leu Ser Leu Trp Pro Pro
835 840 845
Phe Ser Val Ala Met Thr Pro Leu His Ser Pro Gln Ala Cys Ser Ala
850 855 860
Arg Gly Thr Phe Cys Ser Gly Gly Cys Ser His Ala His Ala Ala Pro
865 870 875 880
Gln Ile Leu Pro Leu Tyr Tyr Leu Pro Ala Ala Ser Pro Ala Pro Ala
885 890 895
Gly Ser Gly Ser Arg Pro His Gln Gln Pro His Ala Pro Ala Ala Phe
900 905 910
Leu Gln Gln Gln Gly Gly Ala Leu Pro Tyr Leu Ala Ala Gly Val Leu
915 920 925
Tyr Gln Ala Ala Pro Leu Leu Tyr Pro Leu Ala Pro Pro Pro Pro Pro
930 935 940
Pro Pro Ser His Leu Leu Ala Leu His Gln Pro Leu Leu Pro His His
945 950 955 960
Asn His Asn His His His Arg His Ser Ser Arg Cys Cys Leu Cys Arg
965 970 975
Ser Arg Arg Arg Ser Arg Cys Ser Cys Arg Thr Asn Cys Ser Arg
980 985 990
<210>7
<211>3606
<212>DNA
<213>人工序列(Artificial Sequence)
<400>7
atgctacact tggagatcca aaacatattt gcatcgctag gaggaaatgt cggagatgtt 60
tataaaatta atgaaaattg tttgagtgct ttgggagaaa tactaaacaa attttcagcg 120
gatattcaat cagaccgtaa ttttcgaaga tatcttgggt tgtcacatgc aattaagaag 180
gagtttctac cacttctcat caatgcaaaa gatgatgtta gaataacaga tggtataata 240
agggtgtttg tgaatgcaac aacacctata gagtgcttat ttgcaataga ttcagtttca 300
aagacagata ctgggcgtct cataatttct gaggtaaacc agttactgtt atcaggaaag 360
gaagcttttg tggattctcg cagtacaagg gctgtcatag atttcatgaa aacattactt 420
gagaaggaag aaaagttatc tgaaaatgaa tgtgagagca tcaacaattg cttactcttg 480
ctgcgcaata ttcttcatat tccagaaaca cgcattaacc agtcatctac aaaccatact 540
agtatgcaga atcaaatttt atggaatata tttgcgcaga atgtggataa gattctcata 600
catcttttga catgcacgca aaaggcatac tggggtgtga caatggttca gctcattgca 660
ttaatgtaca aggatcagca tgtaggaaca ttgcagaatc ttttgaatct ctggtttgaa 720
gcatctctta gtgaaagctc agaggataat gaaagcaaca cttcaccacc agatcaaggt 780
gcagaggact cttcaactat ggtaacctca gatccaacat ctgattcctc agacaatggt 840
gggaacagta atgagaaatc acttgctaat cattgcggcc ctggtgaaat gaaacaaaat 900
ataaataagc aacatgcttc aaaacagcta cagcatccgt gtagaaaagc atcatctcac 960
tgtgaagcaa acaaagcaaa cagaaaaaat acagttgaaa ttcagcgtaa gcctcagacc 1020
ccaattcgac caaataggaa accgaatgta ggtaaatcct tcaataaaaa gaaacatcgg 1080
tgtgattctg aagaagtcac ttcacctcat tcaacagcca ctgatcagaa gtcaggtaca 1140
tgtcactcgc agcatggtcc caacagttgg tctatggata catctagcag tcttagaaaa 1200
gaatgtccat ctgcatcaga gctgtcagat tatggatatg gtactcaggt ggagaaccag 1260
ggatctgtat caacctccag caatgatgat gatagcccac aatttaaaag gccagttcat 1320
cagaaattac attcaatgca aaagttacga tataattcca aaccaatgca actgatgaag 1380
gtagatcaaa aagaatggag aagaaagaaa ttagtaaaaa gaagtaaaac aaacataatg 1440
aatatgaaag cacttcttca tcatactcct acagatgaag atatctccaa tctgctaaag 1500
gaatttacag tggattttct tttaaaggga tatggatgct tggtgcaaga attgtttata 1560
caacttctct cacataaaca gagcatacaa gttgatactt cacacttctt ttggttaatt 1620
acatactttc taaaatttgc agcacaattg gaattggagt tggaacacgt taatgtggtc 1680
ctgtcctcaa aaattgtctc atacttgaca tttgaaggag taaatctttg tgaggaactg 1740
gaaatatgtt ttccacgaga gaatgctgat gtcaaaccat ctctccgtag actgcatctg 1800
gtggtgaccg caattcgtga atttattcaa gctgtggaaa catacaaaaa aatatcacat 1860
ttgagccccg aggacaggga ttaccttctt aaattgcagt tggaaattgc aatgactgaa 1920
gacctgaaat ttttcttcat tctgcttttg cgcagctaca atccaaaatt tcagacaaag 1980
cagtatctcc aggatgttat agttactaac cacattctga tgctatttct ggactgcaca 2040
tctaagctcc cccaatacaa agggaatgct tgcatgaccg aacatattaa acagtttgca 2100
actacagaaa taatgtatca atatggaatt cttcttgaag atttccaaag taatggagag 2160
ttcatcaata attgtgtctt cacaatgatg catcatgtag ctggtgattt ggaaaaggcc 2220
acagtccttt ttcagccaca cattcttaaa tccttttcgc agatatggga gacagatttt 2280
gaagtatctg atgtctggtc tgatttaatt gaatatgtga tccacaaatt tgtgaatgta 2340
cctaaacaaa ctccagtgtc tcttcattta ccagctgaac aaaatgtaca aaggaaagac 2400
tcagaaagta ttataagtga caaagatgca gggtggtcaa aggatgagaa agataattta 2460
tactggtatt atgtacagag tgcaaggagt tctgatccct ttggaaagat gaaagaactg 2520
tacaacgaaa atggatctgt caacaaaact aaaattggta taatacgaca gctgcttact 2580
caagatataa ttacccaaaa gcagtttcat gacttcatga aagcagagga agagattaca 2640
actgaagtaa aacaaacagc tcatgacagt acagaacaca ttgcagcaag cagcagcaga 2700
acagtatggg aaaaggaaga agatactggt ttagacttaa gaccaacagc agatgttgat 2760
gacagagtta tatctcttaa agatcatcta ctgaaggaaa ataaggagaa tgcattaaaa 2820
tggcttcaga aagttcttat tgacatatgt catgtgaaac ttgctacaga gaaacatcag 2880
atggatgatg acaaggttat tttggaacct gtagcctact attgttcctt gaagaagcaa 2940
tcaattccag tggtcccatg gacatctgag cagaaaagta tgatgttgca cgaaccattt 3000
attcaactac ttcatacact gggttttcat ttgcctcttg atactggaaa aatatttgca 3060
cgtgttcctg aattttggac agctgatgtt gttttcagca tagcacaaaa actgggacca 3120
attgaaaaat ctctactgaa atttgatgaa acattattga agaacagtga ttgtcaaatg 3180
gaagacagcg aaattatgcc acctatgcca atgatgatgc tagaaaacaa ctttatactt 3240
ccaaatcttt atcagtcttc ttcaaccata cgatctgtac ctcatcctgc ttcatttaat 3300
gactggatgc agcttactat gaattcaaaa actgcagttt tacctcagag gccagaatca 3360
ccaacagatc tgagtgtgct tcctggaatg caagatgctg ataacgacaa ggagccaact 3420
accatatcaa atgagaaatt tcatgaagat tgtgagtcag ttgatgaact tcgagtatgt 3480
agcttgagtg aaatggaagc agagagtgtg gcttcagaac ttacccgaat gtgtgtcagt 3540
gatgaagaag ataaacaagg catcgaagtg ccttttccga gttccagtaa tgtaggtctc 3600
acgtaa 3606
<210>8
<211>561
<212>RNA
<213>人工序列(Artificial Sequence)
<400>8
acaaggauga cacgaaacgg aaaucucgaa auuugaguga gaagaaacgu agagaucagu 60
ucaacaugcu caucaaugaa uuaaguucaa ugguuucuac aaacaaccga aaaauggaua 120
aaucaacugu cuugaagucu acaauaucau uuuugaaaaa ucacaaugaa cuugcuguuc 180
guucaagagc acaugagauu caggaagacu ggaaaccauc uuuccuguca aaugaagagu 240
ucacacaucu uauuuuggag gcauuagaug guuucaucau gguguuuucu ucaucuggaa 300
gaauuuuuua ugcuucugag agcauuacuu cucuucuugg acauuuaccg agugacuuaa 360
ugaauaugac aaucuaugac augguguaug aggaggauca gucagcucuc uacaacauac 420
uguugaaucc agcuagcagu guugauucaa ugaauuaugg ugauaccaaa gaaaaucaag 480
uauccuuuuc augucauaug cgucgaggug gucuggauuu ccgagaugag gauacauacg 540
agcuuguuca guuugugggc u 561
<210>9
<211>753
<212>RNA
<213>人工序列(Artificial Sequence)
<400>9
aggacagcaa gaagcagaac cacagugaga uugaaaagcg gcggcgggac aagaugaaca 60
cguacaucac agagcuguca gcaauggugc ccauguguca ugccaugucc cguaagcugg 120
acaagcugac agugcugcgc auggcugugc agcaccucaa gaccauccga ggcgccgucc 180
acuccuauac ugagggccac uacaagcccu ccuuccucuc cgaucaggaa cucaagaccc 240
ucauccuaca ggcagcugag ggauuccuuu uuguuguugg cugugauaga ggccggauuc 300
uguacguuuc agaaucuguu ucucaaauuu uaagcuauuc gcagggggau cuauuaggcc 360
aaaguugguu ugauauccuc caucccaaag auguagcgaa ggugaaagag cagcucucuu 420
cuucugaucu uagucccagg gagaggcuua ucgaugccaa aacuaugcuc ccugucaaga 480
cagauguucc ucaaggggua ucaagacugu gcccuggugc uagaagaucu uucuucugcc 540
gcaugaagug caaacucuca ccuguaguua aagaagaagc ugauacaacu acugguugcc 600
accggcgaaa aaagcagcaa ccuccagauc gaaaauacug ugugauacag uguacagggu 660
aucucaaauc augggcccca gcuaaaauug gccuugagga acaggaaagc gaaggggaag 720
gugaugccug caaucucucu ugccuuguug cug 753
<210>10
<211>539
<212>RNA
<213>人工序列(Artificial Sequence)
<400>10
cuucauggag acgcugaucg gcgagauagg caagcccgag cugcgcgucg acccggccgc 60
cgccgccgcc aaccggaucg gagccagcuu cuccgaacgc agcuccguga cgcuggggga 120
gauaucgccg caccacgacu acuacgacag caagucgucg uccgagacgc cgccuagcua 180
caaccagcuc aacuacaacg acaacaucca gagguucuuu gaaagcaaac caaagacaau 240
cccgucugac gauuccggug agaggcugau ggcacuggag ccgaccagcc gcagcaccga 300
cgaagacacc aaggcugcca ccaccgccaa uggcugccgc gccaccagga acugccuguc 360
gccggugaac gacacgggcu ccggauccaa cuccggcagc ggcuccgggu ccgccggccc 420
uuccggcaac aacggcagcg uggacacggc agaggccgac ggcgacuaca agccgcccca 480
gcucacggag gcacugcucu ccaggcacaa cgaggacaug gaaaagagga uggugcagc 539
<210>11
<211>676
<212>RNA
<213>人工序列(Artificial Sequence)
<400>11
cacuucaccu cauucaacag ccacugauca gaagucaggu acaugucacu cgcagcaugg 60
ucccaacagu uggucuaugg auacaucuag cagucuuaga aaagaauguc caucugcauc 120
agagcuguca gauuauggau augguacuca gguggagaac cagggaucug uaucaaccuc 180
cagcaaugau gaugauagcc cacaauuuaa aaggccaguu caucagaaau uacauucaau 240
gcaaaaguua cgauauaauu ccaaaccaau gcaacugaug aagguagauc aaaaagaaug 300
gagaagaaag aaauuaguaa aaagaaguaa aacaaacaua augaauauga aagcacuucu 360
ucaucauacu ccuacagaug aagauaucuc caaucugcua aaggaauuua caguggauuu 420
ucuuuuaaag ggauauggau gcuuggugca agaauuguuu auacaacuuc ucucacauaa 480
acagagcaua caaguugaua cuucacacuu cuuuugguua auuacauacu uucuaaaauu 540
ugcagcacaa uuggaauugg aguuggaaca cguuaaugug guccuguccu caaaaauugu 600
cucauacuug acauuugaag gaguaaaucu uugugaggaa cuggaaauau guuuuccacg 660
agagaaugcu gauguc 676
Claims (11)
1.蛋白质,是如下a)或b):
a)氨基酸序列是序列2所示的蛋白质;
b)在序列2所示的蛋白质的N端和/或C端连接标签得到的融合蛋白质。
2.与权利要求1所述的蛋白质相关的生物材料,为下述A1)至A8)中的任一种:
A1)编码权利要求1所述的蛋白质的核酸分子;
A2)含有A1)所述核酸分子的表达盒;
A3)含有A1)所述核酸分子的重组载体;
A4)含有A2)所述表达盒的重组载体;
A5)含有A1)所述核酸分子的重组微生物;
A6)含有A2)所述表达盒的重组微生物;
A7)含有A3)所述重组载体的重组微生物;
A8)含有A4)所述重组载体的重组微生物。
3.根据权利要求2所述的相关生物材料,其特征在于:A1)所述核酸分子为如下1)或2):
1)其编码序列是序列1所示的cDNA分子或基因组DNA分子;
2)与1)限定的核苷酸序列具有75%或75%以上同一性,且编码权利要求1所述的蛋白质的cDNA分子或基因组DNA分子。
4.权利要求1所述的蛋白质或权利要求2或3所述的生物材料在如下a1)-a10)中任一种中的应用:
a1)调控昆虫滞育;
a2)制备调控昆虫滞育的产品;
a3)防治害虫;
a4)制备防治害虫的产品;
a5)降低昆虫滞育率;
a6)制备降低昆虫滞育率的产品;
a7)降低昆虫越冬存活率;
a8)制备降低昆虫越冬存活率的产品;
a9)降低昆虫越冬后种群数量;
a10)制备降低越冬后种群数量的产品;
所述昆虫或害虫为飞蝗。
5.一种降低昆虫滞育率的方法,包括降低昆虫中权利要求1所述的蛋白质的表达量和/或活性的步骤,从而实现降低昆虫滞育率;所述昆虫为飞蝗。
6.根据权利要求5所述的方法,其特征在于:所述降低昆虫中权利要求1所述的蛋白质的表达量和/或活性的方法是将抑制昆虫中权利要求1所述的蛋白质的编码基因表达的物质导入昆虫。
7.根据权利要求6所述的方法,其特征在于:所述抑制昆虫中权利要求1所述的蛋白质的编码基因表达的物质为抑制昆虫中权利要求1所述的蛋白质的编码基因表达的dsRNA。
8.根据权利要求7所述的方法,其特征在于:所述抑制昆虫中权利要求1所述的蛋白质的编码基因表达的dsRNA为由序列表中序列8或序列9或序列10所示的核苷酸和其反向互补序列所示的核苷酸组成的双链RNA;
所述导入的方式为注射。
9.权利要求5-8任一所述的方法在防治害虫中的应用;所述害虫为飞蝗。
10.抑制权利要求1所述蛋白质的编码基因表达的物质,其为由序列表中序列8或序列9或序列10所示的核苷酸和其反向互补序列所示的核苷酸组成的双链RNA。
11.抑制权利要求1所述蛋白质的编码基因表达的物质在防治害虫中的应用;
或,抑制权利要求1所述蛋白质的编码基因表达的物质在降低昆虫滞育率中的应用;
所述昆虫或害虫为飞蝗。
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