CN113025653A - 全禽源遗传系统及其在制备h7n9禽流感疫苗中的应用 - Google Patents

全禽源遗传系统及其在制备h7n9禽流感疫苗中的应用 Download PDF

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CN113025653A
CN113025653A CN202110564096.4A CN202110564096A CN113025653A CN 113025653 A CN113025653 A CN 113025653A CN 202110564096 A CN202110564096 A CN 202110564096A CN 113025653 A CN113025653 A CN 113025653A
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avian influenza
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亓文宝
廖明
陈意群
李华楠
李波
张家豪
邱子雯
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South China Agricultural University
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Abstract

本发明公开了一种全禽源反向遗传操作系统及其在制备H7N9亚型禽流感疫苗中的应用。所述全禽源反向遗传操作系统为H5N2亚型禽流感D7株的八质粒反向遗传操作系统(D7系统),为分别包含H5N2亚型禽流感D7株PB2、PB1、PA、HA、NP、NA、M和NS 8个基因片段的重组质粒。所述H7N9亚型禽流感疫苗由高致病性H7N9亚型禽流感流行毒株改造后的HA基因和NA基因与H5N2亚型禽流感D7系统的六个内部基因PB2、PB1、PA、NP、M和NS构成。所述重组病毒能在鸡胚上保持良好的生长滴度和抗原性,且以D7系统为骨架拯救出的重组禽流感病毒为无致病力毒株,完全满足生物安全性要求,具有较大的应用前景。

Description

全禽源遗传系统及其在制备H7N9禽流感疫苗中的应用
技术领域
本发明涉及反向遗传学技术和动物传染病技术领域,更具体地,涉及一种全禽源反向遗传操作系统及其在制备H7N9亚型禽流感疫苗中的应用。
背景技术
禽流感(Avian influenza,AI)是由禽流感病毒(Avian influenza virus,AIV)引起的一种感染和/或疾病综合征,严重影响家禽养殖业的发展并威胁人类健康,家禽感染后可表现出不同的临床症状,根据致病性不同可将其分为低致病性禽流感(Low pathogenicavian influenza,LPAI)和高致病性禽流感(Highly pathogenic avian influenza,HPAI)。2013年出现的低致病性H7N9亚型禽流感病毒在我国禽群和人群中广泛流行,而2016年下半年,广东地区出现了高致病性H7N9亚型禽流感变异株,并迅速在养殖场和人群中传播和流行。H7N9亚型禽流感病毒进化和变异迅速,对动物和人类产生极大威胁,快速研制保护性好的禽流感疫苗十分重要。
为了满足大规模生产要求,减少由于疫苗供应不足或免疫效果差等原因造成的损失,迫切需要制备出免疫保护效果理想的疫苗株。因此,必须对流行毒株进行改造,除保持原有的免疫原性、消除其致病能力外,还要提高疫苗候选株在鸡胚培养过程中的病毒滴度。利用反向遗传学技术构建禽流感疫苗是目前主要的技术手段,然而现有技术中通过选择利用人流感疫苗骨架来构建重组禽流感疫苗(例如:Hoffmann E,Krauss S, Perez D et al.Eight-plasmid system forrapid generation of influenza virus vaccines.Vaccine, 2002, 20:3165- 3170),由于含有人源基因,容易造成重组禽流感疫苗感染人类的风险。
发明内容
本发明的目的在于克服现有技术中存在的上述缺陷和不足,提供一种全禽源反向遗传操作系统。
本发明的第二个目的在于提供所述全禽源反向遗传操作系统在制备H7N9亚型禽流感疫苗中的应用。
本发明的第三个目的在于提供一种H7N9亚型禽流感重组毒株。
本发明的上述目的是通过以下技术方案给予实现的:
一种基于H5N2亚型禽流感D7株的全禽源反向遗传操作系统(D7系统),为H5N2亚型禽流感D7株的八质粒反向遗传操作系统,所述八质粒为分别包含H5N2亚型禽流感D7株PB2、PB1、PA、HA、NP、NA、M和NS 8个基因片段的重组质粒;所述D7株的八个内部基因PB2、PB1、PA、HA、NP、NA、M和NS的核苷酸序列依次如SEQ ID NO:1~8所示。
所述以H5N2亚型禽流感D7株制备的疫苗为华南农业大学于2013年研制出的全球第一个全禽源的水禽专用H5N2亚型禽流感灭活疫苗;本发明利用该水禽专用且高度适应鸡胚的禽流感病毒D7株,建立了基于D7株的八质粒反向遗传操作系统(D7系统)用于禽流感疫苗开发。以D7系统为骨架拯救出重组禽流感病毒的全部基因片段都来自禽源,这保留了禽流感病毒与人流感病毒之间所固有的种间屏障,降低了重组禽流感疫苗感染人类的风险,完全满足生物安全性要求。
优选地,所述重组质粒为pSMC-PB2,pSMC-PB1,pSMC-PA,pSMC-HA,pSMC-NP,pSMC-NA,pSMC-M,pSMC-NS。
具体地,所述pSMC载体的构建方法为将pCI载体质粒上的BsmBI酶切位点去除,得到pCI-NEW,通过基因合成的方式得到转录启动子序列、终止子序列以及转录元件;最后将载体pCI-NEW及获得的转录元件用XhoI、MluI双酶切,酶切鉴定为阳性的质粒即为pSMC。
本发明基于D7系统能够快速生产出与流行毒株匹配的H7N9亚型禽流感疫苗株,对于防控高致病性H7N9亚型禽流感有重要意义。因此本申请请求保护上述任一所述全禽源反向遗传操作系统在制备禽流感疫苗中的应用。
优选地,所述禽流感疫苗为H7N9亚型禽流感疫苗的应用。
本发明还提供一种H7N9亚型禽流感重组毒株,是由高致病性H7N9亚型禽流感流行毒株改造后的HA基因和NA基因与D7系统的六个内部基因PB2、PB1、PA、NP、M和NS构成;所述改造后的HA基因序列如SEQ ID NO:9所示,NA基因序列如SEQ ID NO:10所示。D7系统的六个内部基因与高致病性H7N9亚型禽流感流行毒株改造后的HA基因和NA基因“6+2”组合拯救出的重组病毒能在鸡胚上保持良好的生长滴度和抗原性。
优选地,所述高致病性H7N9亚型禽流感流行毒株为A/Chicken/Liaoning/19155/2019(H7N9,LN155株)。
本发明还提供所述H7N9亚型禽流感重组毒株的制备方法,是将高致病性H7N9亚型禽流感流行毒株改造后的HA基因和NA基因与D7系统的六个内部基因PB2、PB1、PA、NP、M和NS一起拯救出重组病毒,即得。
具体地,所述方法具体包括构建分别表达D7系统的6个质粒即PB2、PB1、PA、NP、M、NS和构建分别表达SEQ ID NO:9所述序列的改造后HA基因和SEQ ID NO:10所述序列NA基因的2个质粒,将所述8种质粒混合,并与转染试剂加入到293T细胞中,培养后获得H7N9亚型禽流感重组病毒株。
本发明通过修饰高致病性H7N9亚型禽流感病毒LN155株的HA基因的裂解位点(由PEVPKRKRTAR/GLF改造为PEVPKG----R/GLF),随后将NA基因和裂解位点修饰后的HA基因与D7系统的六个内部基因以“6+2”的形式重配转染293T细胞,成功拯救出重组病毒。
作为一种优选地实施方式,本发明还提供所述H7N9亚型禽流感灭活疫苗的制备方法,具体包括如下步骤:
(1)反向遗传八质粒系统载体pSMC的构建
首先利用PCR技术将pCI载体质粒(Promega公司产品)上的BsmBI酶切位点去除,得到pCI-NEW,通过基因合成的方式得到转录启动子序列、终止子序列以及转录元件;最后将载体pCI-NEW及获得的转录元件用XhoI、MluI双酶切,将酶切鉴定为阳性的质粒命名为pSMC。
(2)D7反向遗传系统的构建与验证
将扩增出的D7株的8个基因片段(PB2、PB1、PA、HA、NP、NA、M和NS)连接到反向遗传载体pSMC,阳性质粒分别命名为pSMC-PB2,pSMC-PB1,pSMC-PA,pSMC-HA,pSMC-NP,pSMC-NA,pSMC-M,pSMC-NS,建立D7系统反向遗传禽流感疫苗开发平台;将8个阳性质粒共转染293T细胞,48 h后取细胞培养液接种9~11日龄SPF鸡胚,成功拯救出的病毒可在鸡胚上稳定传代,经测序鉴定,证明D7反向系统构建成功。
(3)重组病毒的HA和NA基因片段的扩增
根据H7亚型高致病性禽流感病毒 LN155株的HA片段序列设计删除HA基因裂解位点的分段引物,利用融合PCR的方法对HA基因的序列进行定向改造,同时,用通用引物扩增出NA基因的全长序列,改造后的片段命名为rHA和rNA。rHA基因序列如SEQ ID NO:9所示,rNA基因序列如SEQ ID NO:10所示。
(4)目的质粒的构建
把片段rHA和rNA克隆到pSMC表达载体,即利用限制性内切酶BsmBI把rHA和rNA片段插入pSMC表达载体中,经测序鉴定,阳性重组质粒命名为pSMC-rHA和pSMC-rNA。
(5)重组病毒rLN155的拯救
重组质粒pSMC-rHA和pSMC-rNA与来自D7系统的pSMC-PB2、pSMC-PB1、pSMC-PA、pSMC-NP、pSMC-M、pSMC-NS共转染293T细胞,48 h后,收取转染细胞及其上清液,接种9~11日龄SPF鸡胚。60 h后,收获有血凝活性的尿囊液,通过PCR以及测序鉴定确认获得的病毒为目的重组毒株rLN155,即H7N9亚型禽流感重组毒株。
本发明还提供一种基于反向遗传技术的重组全禽源H7N9亚型禽流感疫苗候选株H71903,包括免疫量的上述任一所述的H7N9亚型禽流感病毒株抗原。本发明进一步利用上述H7N9亚型禽流感重组病毒株研制出抗原匹配性和安全性出色的疫苗候选株H71903,所述疫苗能够提高对近年高致病性禽流感流行毒株的交叉反应性,可诱导家禽产生高水平的抗体和良好的保护效果,为防控禽流感提供了有效的工具。
本发明还提供上述任一所述H7N9亚型禽流感重组病毒或任一所述的重组全禽源H7N9亚型禽流感疫苗候选株H71903在制备预防和治疗H7N9亚型禽流感病毒的药物中的应用。
与现有技术相比,本发明具有以下有益效果:
(1)本发明提供了一种基于H5N2亚型禽流感D7株的全禽源反向遗传操作系统(D7系统),全部基因片段都来自禽源,保留了禽流感病毒与人流感病毒之间所固有的种间屏障,降低人类感染风险,其利用该系统能快速生产出与流行毒株匹配的H7N9亚型禽流感疫苗株,对于防控高致病性H7N9亚型禽流感有重要意义,是一种安全高效的全禽源反向遗传系统。
(2)本发明还提供了H7N9亚型禽流感病毒株,通过H5N2亚型禽流感D7系统与高致病性H7N9亚型禽流感流行毒株改造后的HA基因和NA基因“6+2”组合拯救出的重组病毒,能在鸡胚上保持良好的生长滴度和抗原性,且以D7株为骨架的重组禽流感为无致病力毒株,完全满足生物安全性要求。利用该重组病毒研制出抗原匹配性和安全性出色的疫苗H71903能够提高其与近年高致病性禽流感流行毒株的交叉反应性,可诱导家禽产生高水平的抗体和良好的保护效果,而且可保护其免受其他高致病性H7亚型禽流感病毒的攻击,为防控禽流感提供了有效的工具。
附图说明
图1为本发明中禽流感疫苗候选株H71903的构建及应用流程图。
图2为本发明中pCI-NEW载体构建示意图。
图3为本发明中pSMC载体构建示意图。
图4为本发明中供体毒株HA基因和修饰后的HA基因PCR扩增结果图。泳道1和2为修饰后的HA基因,泳道3和4为供体毒株的HA基因;M为250 bp DNA Ladder。
图5为本发明中供体毒株LN155株的NA基因PCR扩增结果图。泳道1为供体毒株NA基因;M为250 bp DNA Ladder。
图6为本发明中修饰后的LN155株的rHA基因的裂解位点与原序列对比的氨基酸示意图。
图7为本发明中免疫组和对照组SPF鸡攻毒后存活率图。
具体实施方式
以下结合说明书附图和具体实施例来进一步说明本发明,但实施例并不对本发明做任何形式的限定。除非特别说明,本发明采用的试剂、方法和设备为本技术领域常规试剂、方法和设备。
除非特别说明,以下实施例所用试剂和材料均为市购。
禽流感毒株A/Duck/Guangdong/D7/2007(H5N2)(简称D7株),由人兽共患病防控制剂国家地方联合工程实验室分离并保存。
高致病性禽流感毒株A/Chicken/Liaoning/19155/2019(H7N9,简称为LN155株),由人兽共患病防控制剂国家地方联合工程实验室分离并保存。
本发明禽流感疫苗候选株H71903的构建及应用流程图如图1,具体包括如下实施方式。
实施例1 基于D7株的全禽源禽流感疫苗反向遗传操作系统的构建
1、反向遗传八质粒系统载体pSMC的构建(如图2和图3)
(1)pCI载体的改造
pCI载体为Promega公司产品(货号:BR180)。为了将pCI载体质粒上的BsmBI酶切位点去除,用限制性内切酶EarI酶切pCI载体,将得到长片段A和短片段B。在短片段B上设计扩增引物pCI-EarI-1和pCI-EarI-2。
pCI-EarI-1:5’-TAGCGAGAGGCCGCACG-3’;
pCI-EarI-2:5’-TCTTCGTTCGGTCACAGCTTCTGTAAG-3’;
并以短片段B为模板扩增得到片段C;回收上述PCR产物得到片段C,与片段A分别用EarI酶切、回收后,连接,转化,挑菌,抽质粒,用BsmBI酶切及测序鉴定,验证正确的质粒命名为pCI-NEW。
(2)转录元件的获得
通过基因合成的方式得到转录启动子序列、终止子序列以及转录元件。
(3)pCI-NEW及转录元件的酶切
将载体pCI-NEW及步骤(2)获得的转录元件用XhoI、MluI双酶切。
(4)pCI-NEW及转录元件酶切产物的连接、转化
将步骤(3)中的pCI-NEW载体和转录元件酶切回收产物连接,转化,挑菌,抽质粒,酶切鉴定。
(5)酶切鉴定
将步骤(4)中抽取的可疑质粒分别用BsmBI单酶切、XhoI、MluI双酶切鉴定。
(6)测序鉴定
将步骤(5)中酶切鉴定为阳性的质粒送测序,验证序列准确无误的质粒命名为pSMC。
2、D7系统的构建
利用反向遗传载体pSMC,与扩增出的D7株的8个基因片段(PB2、PB1、PA、HA、NP、NA、M和NS,其核苷酸序列依次如SEQ ID NO:1~8所示)连接,分别命名为pSMC-PB2、pSMC-PB1、pSMC-PA、pSMC-HA、pSMC-NP、pSMC-NA、pSMC-M、pSMC-NS,建立D7系统反向遗传疫苗开发平台,为疫苗株提供内部基因。经共转染8个质粒进入293T细胞可以成功组装出一株有血凝活性的H5N2禽流感病毒,并可在鸡胚上稳定传代,经测序鉴定,证明该反向系统构建成功。
实施例2 H7N9亚型禽流感重组毒株的构建
1、病毒RNA的提取和反转录
使用总RNA抽提试剂盒提取尿囊液的总RNA,参照M-MLV反转录酶说明书,反转引物序列为:5’-AGCAAAAGCAGG-3’,进行反转录得到cDNA。
2、引物设计
参照流感病毒的8个片段设计的通用引物,设计HA及NA片段全长扩增引物;根据LN155株的HA的序列设计改造HA基因裂解位点的分段引物,具体序列如下,其中带下划线处为限制性内切酶BsmBI的识别序列。
LN155-HA1-F:
5’-TGAGGTTCCAAAGGGAAGAGGCCTATTTGGTGCTATAGC-3’
LN155-HA2-R:
5’-AAATAGGCCTCTTCCCTTTGGAACCTCAGGAACATTCTTC-3’
Bm-HA-1F:5’-TATTCGTCTCAGGGAGCAAAAGCAGGGG-3’
Bm-NS-890R:5’-ATATCGTCTCGTATTAGTAGAAACAAGGGTGTTTT-3’
Bm-NA-1F:5’-TATTCGTCTCAGGGAGCAAAAGCAGGAGT-3’
Bm-NA-1413R:
5’-ATATCGTCTCGTATTAGTAGAAACAAGGAGTTTTTT-3’
3、HA片段的修饰和NA片段的扩增及纯化
利用高保真的DNA聚合酶,采用分段引物扩增的方式对LN155株的HA片段进行分段PCR修饰扩增、融合PCR扩增和全长NA基因扩增。
其中带有BsmBI酶切位点的上下游流感通用引物分别搭配分段引物,各扩增出HA1和HA2两部分,最后使用融合PCR的方法扩增出完整的修饰后的HA片段。同时,扩增出NA片段。PCR扩增后,用提前配置好的1%的琼脂糖凝胶电泳对扩增产物进行初步检测,切下扩增成功的修饰后的HA基因片段和NA基因片段,分别命名为rHA和rNA,扩增结果分别如图4和图5所示。rHA经测序鉴定后与原序列比对,确定裂解位点已改造成功(如图6),rHA和rNA基因序列分别如SEQ ID NO:9和SEQ ID NO:10所示。
4、目的质粒的构建、筛选及纯化
分别将扩增后的目的片段rHA和rNA与pSMC表达载体用限制性内切酶BsmBI进行酶切消化(55℃水浴3 h)。
将各目的片段与pSMC表达载体的酶切产物进行连接后,转化DH5a感受态细胞,涂板倒置经37℃培养过夜,通过菌液PCR初步筛选阳性克隆。具体操作如下:挑取单个菌落于加入500 µL氨苄抗性LB的EP管中,置于37℃摇床上,振荡培养3~4 h。进行菌液PCR扩增,并取10 µL PCR产物进行电泳检测。对测序正确的菌液进一步扩大培养,去内毒素抽提质粒,并测定其浓度和纯度,在-40℃保存备用。
5、重组病毒rLN155的拯救及鉴定
细胞准备:转染前一天,选择生长状态良好的293T细胞用胰酶消化并计数,将适合浓度的细胞铺到12孔细胞培养板,置于含有5% CO2的37℃培养箱中培养。单层细胞密度达到90%左右时用于后续实验。
转染步骤:将转染所需的8种质粒(300 ng/质粒)加入150 mL无血清培养基Opti-MEM中,混合均匀,命名为A液;取4.8 μL转染试剂Lipofectamine 2000加至另一150 μLOpti-MEM中,命名为B液,混合均匀,室温静置5 min;再将A加入B液中,静置20 min。取出准备好的293T细胞,将原培养基弃去,用灭菌PBS洗两遍,加入质粒与脂质体混合液,置于含5%CO2的37℃孵育4~6 h,更换含有BSA的DMEM培养基继续培养。48 h后,收取细胞板的上清及细胞,接种至9~11日龄SPF胚。接种60 h后,测定其尿囊液有无血凝活性,收获有血凝活性的尿囊液,测序鉴定,连续传五代,分装后-80℃保存备用。
重组病毒的鉴定:提取拯救成功的病毒的RNA,用RT-PCR法进行全基因组测序,经鉴定正确后,将救获的重组病毒命名为rLN155。
实施例3 重组病毒rLN155制备疫苗H71903
1、疫苗的制备
抗原的大量制备:将制苗毒株rLN155使用无菌DMEM细胞培养基进行稀释,稀释到10-4,取9~11日龄SPF胚,将稀释好的病毒液无菌接种到鸡胚尿囊腔内,0.2 mL/枚,封口后放入37℃培养箱,孵育60 h后,在生物安全柜内收集鸡胚尿囊液,并测定其血凝(HA)效价。
抗原灭活:将上述所收集的病毒液使用终浓度为0.1%的甲醛灭活,密封之后放入摇床内,37℃孵育24 h;然后取该灭活的病毒液接种到9~11日龄的SPF鸡胚,0.2 mL/枚,37℃培养48 h后,检测其血凝效价,验证病毒是否已完全灭活。
灭活油乳剂疫苗H71903的制备:配置水相,取灭活的抗原液rLN155,97份,加入3份吐温-80,充分混匀;配置油相,取Marcol-52白矿油94份,加入6份司本-80,充分混匀,高压灭菌备用。将油相与水相2:1的比例使用乳化机进行乳化,25000 r/min乳化5 min。在混匀的过程中可以取几滴制备好的灭活疫苗于冷水的表面,如果只有第一滴扩散,其他的不扩散,判定其剂型为油包水型。再将制备好的疫苗放入离心机中离心,3000 r/min离心15min,观察有无分层破乳的情况。将制备检验好的疫苗命名为H71903,并将其分装好放入4℃保存。
2、血清交叉血凝抑制试验(HI试验)
SPF鸡免疫H71903疫苗和H7亚型禽流感商品化灭活疫苗rGD76 21 d后,采集血清,分别与2016年~2019年间12株病毒进行血清HI交叉试验(如表1)。结果表明H71903疫苗与rGD76相比,整体血清交叉HI效价更高,且对流行毒株的反应性好。
表1 HI(log2)交叉实验测定结果
Figure DEST_PATH_IMAGE001
3、H71903疫苗株的SPF鸡免疫攻毒保护试验
为了验证H71903疫苗株的免疫效果,本试验将毒株SD1115、LN155、HeB1908和LN(其中毒株SD1115为H7N2,其余三株毒均为H7N9)分别稀释成100LD50,A/B/C/D组分别连同5只对照鸡依次使用SD1115、LN155、HeB1908和LN毒株进行滴鼻接种攻毒,0.2 mL/只,对照组分别命名为SD1115-control、LN155-control、HeB1908-control和LN-control;免疫鸡攻毒后在隔离器中连续观察14 d,于感染后第5 d采集鸡的喉头及泄殖腔拭子,测定血凝效价并分析其排毒情况。
(1)鸡免疫血清HI抗体效价
免疫第21 d,采集隔离器中所有免疫及未免疫鸡的血液并分离出血清,将毒株LN155作为抗原,进行HI试验,各组试验鸡HI抗体滴度如表2,结果显示A、B、C和D四个组的HI中和效价都处于较高水平,抗体效价的几何均数(GMT)分别为7.5、7.5、7.0和7.5。
表2 各组试验鸡HI抗体滴度(log2)
Figure 591488DEST_PATH_IMAGE002
(2)SPF鸡感染后存活率
以100LD50的病毒量攻毒免疫鸡与对照鸡,连续14 d对鸡的状态进行观察和记录,四组实验鸡均存活下来,而未经免疫的对照鸡则在第2 d或第3 d便出现精神沉郁、食欲不振,且在第5 d左右出现死亡,说明使用重组的灭活疫苗H71903对鸡进行免疫后可使鸡获得保护(如图7)。
(3)SPF鸡感染后咽/肛拭子病毒检测
在攻毒后的第5 d,采集所有实验组与对照组鸡的咽拭子及泄殖腔拭子并检测其排毒情况,根据表3可知,四组免疫鸡在攻毒5 d后均无排毒,说明该疫苗可以使鸡抵抗高致病性H7亚型禽流感病毒的致死性攻击。而对照组鸡在第3~6 d全部死亡,在第5 d采集的活鸡的拭子中也能检测到排毒。
表3 免疫鸡排毒情况
Figure DEST_PATH_IMAGE003
注:“+”表示病毒分离阳性,“-”表示病毒分离阴性。
重组禽流感灭活疫苗株H71903的试验结果表明,该疫苗对21日龄的SPF鸡具有较好的免疫效果,不仅诱导免疫鸡产生高抗体水平,而且可保护其免受其他高致病性H7亚型禽流感病毒的攻击,保护率高达100%(如图7)。
上述实施例为本发明较佳的实施方式,但本发明的实施方式并不受上述实施例的限制,其他的任何未背离本发明的精神实质与原理下所作的改变、修饰、替代、组合、简化,均应为等效的置换方式,都包含在本发明的保护范围之内。
序列表
<110> 华南农业大学
<120> 全禽源遗传系统及其在制备H7N9禽流感疫苗中的应用
<160> 10
<170> SIPOSequenceListing 1.0
<210> 1
<211> 2280
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 1
atggagagaa taaaagaatt aagagagcta atgtcgcaat cccgcacctg cgagatacta 60
acaaaaacca ctgtggacca tatggccata attaagaaat acacatcagg aagacaagag 120
aagaaccctg ctctcagaat gaaatggatg atggcaatga aatatccaat caccgcaaac 180
aagagaataa tggagatgat tcctgaaagg aatgaacaag gacagacgct gtggagcaag 240
acaaatgatg ctggatcgga cagggtaatg gtgtctcccc tagccgtaac atggtggaac 300
aggaatgggc cgacaacaag tacagtccat tatccaaaag tttacaaaac atactttgag 360
aaagttgaaa ggttaaaaca tggaacattt ggtcccgttc atttccgaaa ccaagttaaa 420
atacgccgcc gagttgatgt aaacccgggt catgcagatc tcagtgctaa agaagcacaa 480
gatgtcatca tggaggtagt tttcacaaat gaagtgggag ctagaatatt gacatcagaa 540
tcgcaattag caataacaaa agagaagaaa gaagagctcc aggattgtaa gattgctcct 600
ttaatggtgg cttacatgtt ggaaagggaa ctagttcgga aaactaggtt cctaccagta 660
tcaggcggga caagtagtgt gtacattgag gtattgcact tgactcaggg tacctgctgg 720
gaacagatgt acaccccggg cggagaagtg agaaatgatg atgttgacca gagtttgatc 780
attgctgcta gaaacattgt taggagagca acagtatcag ctgatccact gctatcacta 840
ttggagatgt gccacagcac acagatcggt gggataagga tggtggacat tctcaggcaa 900
aatccaactg aggagcaagc tgtggatata tgcaaagcag caatgggtct gagaatcagt 960
tcgtctttta gctttggagg cttcactttc aaaagaacaa gtggatcgtc tgtaaagaaa 1020
gaagaagaag tgcttacagg caacctccaa acattgagga ttagaataca tgaggggtat 1080
gaggagttca caatggttgg acggagggca acagctatcc tgaggaaagc aactagaagg 1140
ctgattcagt tgatagtaag tggaagagat gaacaatcaa ttgctgaagc aattattgta 1200
gcaatggtgt tctcacagga ggagtgtatg ataaaggcag tccgtggcga tttgaatttt 1260
gtaaacagag caaaccaaag attgaacccc atgcatcaac tcctgaggca cttccaaaag 1320
gatgcaaaag tgctatttca gaactgggga attgaaccca ttgacaatgt catggggatg 1380
atcggaatat tacccgatat gactccaagc acagagatgt cactgagagg ggtgagagtt 1440
agtaagatgg gagtggatga atattccagc actgagaggg tgactgtgag cattgaccgt 1500
ttcttaaggg tccgagatca gctggggaac atactactat ctcccgaaga agtgagtgaa 1560
acacagggaa cagagaaatt gacgataaca tattcatcat caatgatgtg ggaaatcaat 1620
ggtcctgagt cagtacttgt taacacctat caatggatca tcagaaattg ggagaccgtt 1680
aagattcaat ggtctcaaga ccctactatg ttgtacaata aaatggagtt tgaaccgttc 1740
caatccctgg tacccaaagc tgccagaagt ctatacagtg gatttgtgag aacactattc 1800
caacaaatgc gtgatatact gggaacattt gataccgttc aaataataaa gctgctacca 1860
tttgcagcag ccccaccgga gcagagcaga atgcagtttt cttccctaac tgtaaatgtg 1920
agaggctcag gaatgagaat actcgtaagg ggtaactccc ctgtgttcaa ttacaataag 1980
gtaaccaaaa ggcttacagt actcggaaag gatgcagggg cactgacaga agatccagat 2040
gagggaacag ccggagtgga gtctgcggta ctaaggggat tcttaattct aggcaaggag 2100
gacagaagat atggaccagc attaagcatc agtgaactga gcaatcttgc gaaaggggag 2160
aaagctaatg tgctgatagg gcaaggagac gtagtgttgg taatgaaacg gaaacgggac 2220
tctagcatac ttactgacag ccagacagcg accaaaagga ttcggatggc catcaattag 2280
<210> 2
<211> 2274
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 2
atggatgtca atccgactct acttttcttg aaagtgccag tgcaaaatgc tataagtacc 60
acattccctt atactggaga tcctccatac agccatggaa caggaacagg atacaccatg 120
gacacggtca acagaacaca tcaatactca gaaaagggga aatggacaac aaacacagaa 180
actaaagcac cccaactcaa cccgattgac gggccgttgc ctgatgataa tgaaccgagc 240
gggtacgcac aaacggactg cgtgttggaa gcaatggctt tcctggaaga atcacaccca 300
gggattttcg aaaactcgtg tcttgaaaca atggaagttg ttcagcaaac aagagtggat 360
aaactaaccc aaggtcgcca gacctatgac tggacattga atagaaatca gccggctgct 420
actgcattgg ccaacaccat agaggtcttc agatcgaacg gtctaacagc taatgaatca 480
gggaggctaa tagatttcct aaaggacgtg acggactcaa tgaataaaga ggaaatggaa 540
ataacgaaac atttccagag aaagagaaga gtaagggaca acatgaccaa gaaaatggtc 600
acacaaagaa caatagggaa gaagaagcag aggctgaaca ggaggagcta tttaataaga 660
gcactgacac tgaacacaat gacaaaagat gcagaaagag gcaaattgaa aaggagggca 720
attgcaacgc ccggaatgca gatcagagga ttcgtgtact ttgtcgaaac actagcaagg 780
agcatttgtg agaaacttga gcaatctgga ctcccagttg gagggaacga gaagaaggct 840
aaactggcaa acgtcgtgag aaagatgatg actaactcac aagatacaga gctctccttt 900
acaattactg gggacaacac caaatggaat gagaatcaga atcctagagt gtttctagcg 960
atgataacat atattacaag aaatcaacct gaatggttta gaaatgtctt gagtattgct 1020
cctataatgt tctcaaacaa aatggcgaga ttagggaaag ggtacatgtt cgaaagcaag 1080
agcatgaagc tacggacaca agtaccagca gaaatgcttg caaccattga cctgaaatac 1140
ttcaatgaat caacgagaaa gaaaatcgag aaaataagac ctcttctaat agagggcaca 1200
gcctcattga gtcctggaat gatgatgggc atgttcaaca tgctgagtac ggtcttagga 1260
gtttcaatcc tgaatcttgg gcaaaagagg tacaccaaaa ccacatactg gtgggacgga 1320
ctccaatcct ctgatgattt cgccctaata gtgaatgcac caaatcatga gggaatacaa 1380
gctggggtag ataggttcta taggacctgc aaactagttg gaatcaatat gagcaaaaag 1440
aagtcttata taaataggac aggaacattt gagttcacaa gttttttcta ccgttatgga 1500
tttgtggcca acttcagtat ggagctgccc agctttggag tgtctgggat caatgaatcg 1560
gctgacatga gcattggggt tacagtaata aagaacaata tgataaataa tgaccttgga 1620
ccagcaacag cccagatggc tcttcagcta ttcatcaagg attatcgata cacgtaccga 1680
tgccacaggg gtgatacgca aattcaaaca aggagatcat ttgagctgaa gaagctgtgg 1740
gagcagaccc gttcgaaggc aggattgttg gtctcagatg gagggccaaa tctatacaac 1800
atccggaatc tccacattcc agaggtctgc ttgaaatggg aattaatgga tgaggattat 1860
cagggcaggc tgtgcaatcc tctgaatccg tttgtcagtc ataaggagat tgagtcggta 1920
aacaatgccg tagtaatgcc agcccatggt ccagcaaaga gcatggaata tgatgccgtt 1980
gcaactacac actcatggat tcctaagagg aaccgttcca ttctcaatac cagccaaagg 2040
ggaattcttg aggatgaaca gatgtatcag aagtgctgca atctatttga gaaattcttc 2100
cctagtagtt catataggag gccagttgga atctctagca tggtggaggc catggtgtcc 2160
agggcccgaa ttgacgcacg aattgacttc gagtctggaa ggattaagaa agaagagttt 2220
gccgagatca cgaagatctg ttccaccatt gaagagctca gacggcaaaa atag 2274
<210> 3
<211> 2151
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 3
atggaagact ttgtgcgaca atgcttcaat ccaatgatcg tcgagcttgc ggaaaaggca 60
atgaaagagt atggggaaga tccgaaaatc gaaacgaaca agtttgcggc aatatgcacc 120
catttggaag tctgcttcat gtattcagat ttccatttca ttgacgaaag aggcgaatca 180
ataattgtgg aatttggtga tccaaatgta ctattgaaac accgatttga aataattgaa 240
ggaagagacc ggacaatggc atggacagta gtgaatagca tctgtaacac cacaggagtc 300
gaaaaaccta aataccttcc agatctgtat gattacaagg ataaccgatt cattgagatt 360
ggagtgacac ggagggaagt tcacatatac tatctagaaa aggccaacaa gatgaaatcc 420
gagagaacac atattcacat cttctcattt acaggagaag aaatggccac caaagcggat 480
tatacccttg atgaagagag cagggcaagg atcaaaacta gactgttcac cataagacag 540
gaactggcta gcaggggtct atgggattcc tttcgccagt ctgagagagg cgaagagaca 600
attgaagaaa gatttgaaat cacaggaaca atgcgcaggc ttgccgacca aagtctccca 660
ccgaatttct ccagccttga aaactttaga gcctatgtgg atggattcga accgaacggc 720
tgcattgagg gcaagctttc tcagatgtca aaagaagtga ctgccagaat tgagcccttt 780
cttaagacaa caccacgtcc tctcagattg ccggatggac ctccctgttc ccaaaggtca 840
aaattcttac tgatggatgc tttgaaatta agcattgagg acccgagtca tgagggagag 900
gggataccgc tgtatgatgc gatcaaatgc atgaaaacat ttttcggctg gaaagagccc 960
aaaattatca aatcacatga gaagggtata aacccaaatt atctcctagc ttggaagcag 1020
gtgctggcag agctccagga cattgaaaat gaggaaaaga tcccaaaaac gaagaacatg 1080
aagaaaacaa gccaattaaa gtgggcatta ggtgagaaca tggcaccaga aaaagtggac 1140
tttgaggatt gcaaagatgt tagtgacctg aaacaatatg acagtgatga gccggagccc 1200
aaatcgctag caagttggat ccaaagtgaa tttaacaaag catgtgagct gaccgattca 1260
agctgggtag aacttgatga aataggggaa gatgttgccc caatcgagca cattgcgagt 1320
atgagaagga attacttcac agcagaagtg tcgcactgcc gggctaccga gtatataatg 1380
aagggagtgt acataaatac agcattgctc aatgcatctt gtgcagccat ggatgacttc 1440
caattgattc caatgataag caaatgcaga acaaaagaag ggagacggaa aacaaacctg 1500
tatgggttca ttatcaaggg aaggtcccat ttgaggaatg atactgatgt ggtaaacttt 1560
gtgagcatgg aattttctct tacagacccg aggcttgaac cacacaaatg ggaaaagtac 1620
tgtgttattg aagtagggga catgctcctg agaacttcaa taggccaggt gtcaaggccc 1680
atgttcctat acgtgagaac caatggaacc tcaaaaatta aaatgaaatg gggaatggag 1740
atgaggcgtt gcctccttca atctcttcaa caaattgaga gcatgattga ggcagagtct 1800
tctatcaaag agaaagacat gaccaaagaa ttttttgaaa acaagtcgga gatgtggccg 1860
attggagagt cacctaaggg agtggaggaa ggctccatcg ggaaggtgtg caggacatta 1920
ctagcaaaat ctgtattcaa cagcttgtat gcatctccac agctcgaggg gttttcagct 1980
gaatcaagaa aattgttact tattgttcag gcacttaggg acaacctgga acctggaacc 2040
ttcgacattg aaggactata tgaagcaatt gaggagtgcc tgattaatga tccctgggtt 2100
ttgcttaatg catcttggtt caactccttc ctcacacatg cactgaaata g 2151
<210> 4
<211> 1695
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 4
atggagaaaa tagtgcttct tcttgcaata gtcagtcttg tcaaaagtga tcatatttgc 60
attggttacc atgcaaacaa ctcgacagag caggttgaca caataatgga aaagaacatt 120
actgttacac atgcccaaga catactggaa aagacacaca atgggaagct ctgcgatcta 180
aatggagtga aacctctcat tttaagagat tgtagtgtag ctgggtggct cctcggaaac 240
ccaatgtgtg acgaattcat caatgtgccg gaatggtctt acatagtgga gaaggccaat 300
ccagccaatg acctctgtta cccagggaat ttcaacgact atgaagaact gaaacaccta 360
ttgagcagaa taaaccattt tgagaaaata cagatcatcc ccaaaagttc ttggtccgat 420
catgaagcct cattaggggt gagctcagca tgtccatacc agggaagttc ctcctttttc 480
agaaatgtgg tatggcttat caaaaagaac aatacatacc caacaataaa gagaagctac 540
aataatacca accaagaaga tctcttggta ctgtggggga ttcaccatcc taatgatgag 600
gcagagcaga caaggctcta tcaaaatcca accacctata tttccgttgg gacatcaaca 660
ctaaaccaga gattggtacc aaaaatagct actagatcca aagtaaacgg gcaaagtgga 720
aggatggatt tcttttggac aattttaaaa ccgaatgatg caattaactt cgagagtaat 780
ggaaatttca ttgctccaga atatgcatac aaaattatca agaaagggga ctcagcaatt 840
atgaaaagtg aattggaata tggtaactgc aacaccaagt gtcaaactcc aatgggggcg 900
ataaactcta gtatgccgtt ccacaacata caccccctca ccatcgggga atgccccaaa 960
tatgtgaaat caaacagatt agtccttgcg actggactca gaaatacccc tcaaagagag 1020
agcagaggac tatttggagc catagcaggt tttatagagg gaggatggca gggaatggta 1080
gatggttggt atgggtacca ccatagcaat gagcagggga gtggatacgc tgcagacaaa 1140
gaatccactc aaaaggcaat agatggagtc accaataagg tcaactcgat cattgacaaa 1200
atgaacactc aatttgaggc cgttggaaag gaatttaata acttggaaag gaggatagag 1260
aatttacata agcagatgga agacggattc ctagatgtct ggacttataa tgctgaactt 1320
ctggttctca tggaaaatga gagaactcta gactttcatg actcaaatgt caagaacctt 1380
tatgacaagg tccgactaca gcttagggat aatgcaaagg agctgggtaa tggttgtttc 1440
gagttctatc acaaatgtga taatgaatgt atggaaagtg taaaaaacgg aacgtatgac 1500
tacccgcagt attcagaaga agcaagacta aacagagagg aaataagtgg agtaaaattg 1560
gaatcaatgg gaacttacca aatactatca atttattcaa cagtggcgag ttccctagca 1620
ctggcaatca tggtagctgg tctatcttta tggatgtgct ccaatggatc gttacaatgc 1680
agaatttgca tttaa 1695
<210> 5
<211> 1497
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 5
atggcgcttc aaggcaccaa acgatcttat gagcagatgg aaactggtgg agaacgccag 60
aatgctactg agatcagagc atctgttggg agaatggttg gtggaatcgg aagattctac 120
atacagatgt gcactgaact caaactcagc gaccacgaag gcaggctgat ccaaaacagc 180
ataacaatag agagaatggt cctctctgca tttgatgaga ggaggaacag gtacctggaa 240
gaaaatccca gtgcggggaa ggatccgaag aaaactggag gtccaatcta caaaagaagg 300
gaaggaaagt gggtgagaga gctgattctg tatgacaaag aggagatcag gagaatctgg 360
cgtcaagcga acaatggaga agacgcaact gctggtctca cccatctgat gatctggcat 420
tccaatctga atgatgccac atatcaaaga acaagagctc ttgtgcgcac tgggatggac 480
cccagaatgt gttctctgat gcaaggatca actctcccga gaagatcagg agctgctggt 540
gcagcagtaa agggaattgg gacaatggtg atggaactaa ttcggatgat aaagcgagga 600
atcaatgacc ggaatttctg gagaggcgac aatggacgaa gaacaaggat tgcatatgag 660
agaatgtgca acatcctcaa agggaaattc caaacagcag cacaacgagc aatgatggac 720
caagtgcggg aaagcagaaa tcctgggaat gctgaaattg aagaccttat ctttctggca 780
cggtctgcac tcattctgag aggatcagtg gcccataagt cctgtttgcc tgcttgtgtc 840
tatgggcttg ctgtagccag tggatatgac tttgagagag aagggtactc tctggtcgga 900
atagatcctt ttcgtctgct ccaaaacagc caggtgttca gcctcattag atcaaatgag 960
aacccagcac ataaaagtca actggtatgg atggcatgtc attctgcagc atttgaagac 1020
ctgagagtgt caagcttcat cagaggaaca agagtaatcc caaggggaca actgtccacc 1080
agaggtgttc aaatagcttc aaatgagaac atggaaacaa tagactccag cactcttgaa 1140
ctaagaagca gatactgggc tataaggacc aggagtggag gaaacaccaa ccaacataga 1200
gcatctgcag ggcaaatcag tgtacaacct actttctcgg tacagagaag ccttcctttc 1260
gagagagcaa ccatcatggc ggcattcaca gggaacactg aaggcagaac atccgacatg 1320
aggactgaaa tcataagaat gatggaaaat gccaaaccag aagacgtgtc tttccaaggg 1380
cggggagtct tcgagctctc ggacgaaaag gcaacgagcc cgatcgtgcc ttcctttgac 1440
atgagtaatg aaggatctta tttcttcgga gacaatgcag aggagtatga caattaa 1497
<210> 6
<211> 1401
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 6
atgaatccaa atcagaagat aatagcaatt ggctctgttt ctctaactat tgcgacaata 60
tgtttcctca tgcagattgc catcttagca acgactatga cactacattt caagcagaat 120
gaatgcagca acccctcgaa taatcaagta gtgccatgtg aaccaatcat aatagaaagg 180
aacatagtgc atttgaatag tactaccata gagaaggaaa tttgtcctaa agtgacagaa 240
tacaagaatt ggtcaaaacc acaatgtcaa attacagggt tcgctccttt ctccaaggac 300
aactcaatta ggctttccgc aggtggggat atctgggtga caagagaacc ttatgtgtcg 360
tgcggtcttg gtaaatgtta tcaatttgca cttgggcagg gaaccacttt gaaaaacaaa 420
cactcaaatg gcactacacg tgatagaatt cctcatagaa cccttttaat gaatgagttg 480
ggtgtcccgt ttcatttggg aaccaaacaa gtgtgcatag catggtccag ctcaagctgc 540
catgatggga aagcatggtt acatgtttgt gtcactgggg atgataaaaa tgcgactgct 600
agtatcattt atgatgggat gcttgttgac agtattggtt catggtctaa aaacatcctc 660
agaactcagg agtcagaatg cgtttgcatc aatggaactt gtacagtagt aatgactgat 720
ggaagtgcat caggaaaggc tgacactaga atactattca taagagaggg gaaaattgtt 780
cacattagcc cattgtcagg aagtgctcag catgtggagg aatgctcctg ttacccccgg 840
tatccagaag ttaggtgtgt ttgcagagac aattggaagg gctccaatag gcccgttcta 900
tatataaata tggcagatta tagtattaag tccagttatg tgtgctcagg acttgttggc 960
gacacaccaa gaaatgatga taactccagc agcagcaact gcagggatcc taataacgag 1020
agaggggccc caggagtgaa agggtgggcc tttgacaatg gaaatgatat ttggatggga 1080
cgaacaatca aagaggattt acgctcaggt tatgagactt tcagggtcgt tggtggttgg 1140
accacggcta attccaagtc acagataaat agacaagtca tagttgacag tgacaactgg 1200
tctgggtatt ctggtatctt ctctgttgaa ggcaaaaact gcatcaacag gtgtttttat 1260
gtggagttga taagaggaag accacaggag actaaggtgt ggtggacttc aaatagcatc 1320
attgtatttt gtggaacctc aggtacctat ggaacaggct catggcctga tggggcgaat 1380
atcaacttca tgcctatata a 1401
<210> 7
<211> 982
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 7
atgagtcttc taaccgaggt cgaaacgtac gttctctcta tcatcccgtc aggccccctc 60
aaagccgaga tcgcgcagag acttgaagat gtctttgcag ggaagaacac agatcttgag 120
gctctcatgg aatggctaaa gacaagacca atcctgtcac ctctgactaa ggggatttta 180
gggtttgtgt tcacgctcac cgtgcccagt gagcgaggac tgcagcgtag acgatttgtc 240
caaaatgccc taaatgggaa tggagaccca aacaacatgg acagggcagt caaactatac 300
aagaagctga agagggagat gacattccat ggagcaaagg aagttgcact cagttattca 360
actggtgcgc ttgccagttg catgggtctc atatacaacc ggatgggaac ggtaacaaca 420
gaagtggctc ttggcctggt atgtgccact tgtgagcaga ttgctgattc acaccatagg 480
tctcacagac agatggtgac taccaccaac ccactaatca ggcatgagaa cagaatggta 540
ctagccagca ctacagctaa ggccatggag caaatggctg gctcgagcga gcaggcagcg 600
gaagccatgg aggttgcaag tcaggctagg cagatggtgc aggcgatgag gacaattggg 660
actcaaccta gctccagtgc aggtctgaaa gatgatctta ttgaaaattt gcaggcctac 720
cagaaacgga tgggagtgca gatgcagcga ttcaagtgat tctctcgttg ttgcagcaag 780
tgtcattggg atattgcact tgatattgtg gattcttgat cgtcttttct tcaaatgcat 840
ttatcgtcgc tttaaatacg gtttgaaaag agggccttct acggaaggag tgcctgagtc 900
tatgagggaa gagtatcggc aggagcagca gagtgctgtg aatgttgacg atggtcattt 960
tgtcaacata gagctggagt aa 982
<210> 8
<211> 838
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 8
atggattcca acactgtgtc aagcttccag gtagactgct ttctttggca tgtccgcaaa 60
cgatttgcag accaaggacg gggtgatgcc ccatttctag accggcttcg ccgagatcag 120
aagtccctaa gaagaagagg cagcactctt ggtctggaca tcagaaccgc tactcatgaa 180
ggaaagcata tagtggagca gattctggag gaagagtcag atgaggcatt taaaatgact 240
attgcttcag tgctagctcc acgctaccta actgacatga ctattgaaga aatgtcaagg 300
gattggttga tgctcattcc caaacagaaa gtgacagggt ctctttgcat tagaatggac 360
caagcaatag tggataaaac catcacactg aaagcaaact tcagtgttac tttcaatcga 420
ctggaagctc taatactact tagagctttt acagatgaag gggcaatagt gggcgaaatc 480
tcaccattac cttctcttcc aggacatact gatgaggatg tcaaaaatgc aattgagatc 540
ctcatcggag gatttgaatg gaatgataac acagttcgag tctctgaaac tctacagaga 600
ttcgcttgga gaagcagcga tgaggatggg agatctccac tctctccaaa gtagaaacgg 660
gaaatggaga gaacaattga gccagaagtt tgaagaaata agatggctga ttgaagaagt 720
gcgacatagg ttaaagatta cagagaatag ctttgaacaa ataacattta tgcaagcctt 780
gcaactattg cttgaagtgg agcaagagat aagaactttc tcgtttcagc ttatttaa 838
<210> 9
<211> 1842
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 9
atgaacactc aaatcctgat attcgctctg attacgacca ttccaacaga tgcagacaaa 60
atctgcctcg gacatcactc cgtgtcaaac ggaaccaaag taaacacatt aactgaaaaa 120
ggagtggaag tcgtcaatgc aaccgaaaca gtggaacgaa caaacacccc caggatctgc 180
tcaaaaggga aaaggacagt tgacctcggt caatgtggac tcctggggac aatcactgga 240
ccacctcaat gtgaccaatt cctaaaattt tcagccgatt taattgttga gaggcgagaa 300
ggaagtgatg tctgttatcc tggaaaattc gtgaatgaag aagctctgag gcaaattctc 360
agagaatcag gcggaattga caaggaaccc atgggattca aatacaatgg aataaggact 420
aatgggacaa ccagtgcatg taggagatca ggatcttcat tctatgcaga aatgaaatgg 480
ctcctgtcaa acacagataa tgctacattc ccgcagatga ccaagtcata taaaaataca 540
agagaaagcc cagctatagt agtatggggg atccatcatt ccgtttcaac tgcagagcaa 600
accaagctat atgggagtgg aaacaaactg gtgacagttg ggagttctaa ttatcaacaa 660
tctttcgtac cgagtccagg agcaagacca caagttaatg gtcaatctgg aagaattgac 720
tttcattggc taatactaaa tcccaatgat acagtcactt tcagtttcaa tggggctttc 780
atagctccag atcgtgcaag cttcctgaga gggaaatcta tgggaatcca gagtggagta 840
caggttgatg ccaattgtga aggggactgc tatcatagtg gagggacaat aataagtaac 900
ttgccatttc agaacataga tagcagggca gttggaaaat gtccgagata tgttaggcaa 960
aggagtcttc tgctggcaac agggatgaag aatgttcctg aggttccaaa gggaagaggc 1020
ctatttggtg ctatagcggg gttcattgaa aatggatggg aaggcctaat tgatggttgg 1080
tatggtttca gacatcaaaa tgcacaggga gagggaactg ctgcagatta caaaagcact 1140
caatcggcaa tagatcaaat aacagggaaa ttaaaccgac ttatagcaaa aaccaaccaa 1200
caatttgagt tgatagacaa tgaattcaat gaggtagaga agcaaatcgg taatgtgata 1260
aattggacca gagattctat aacagaagta tggtcataca atgctgaatt cttggtggca 1320
atggagaacc aacatacaat tgatctggct gattcagaaa tgaacaaact gtatgaacga 1380
gtgaaaagac agttgagaga gaatgctgaa gaagacggca cgggttgctt tgaaatattt 1440
cacaagtgtg atgatgactg tatggccagt attagaaata acacctatga tcacagaaaa 1500
tacagagaag aggcaatgca aaatagaata cagattgacc caatcaaact aagcagcggc 1560
tacaaagatg tgatactttg gtttagcttc ggggcatcat gtttcatact tctagccatt 1620
gtaatgggcc ttgtcttcat atgtgtgaag aatggaaaca tgcggtgcac tatttgtata 1680
ggcagcggat atattcctga ggcccctaga gatggacagg cctatgtgag aaaggatggc 1740
gaatgggtgc tgctgtctac atttctggga tccggcctga acgacatctt cgaggcccag 1800
aagatcgagt ggcacgaggg ccaccaccac caccaccact ga 1842
<210> 10
<211> 1455
<212> DNA
<213> 禽流感病毒(Avian influenza virus)
<400> 10
atggctcgag tttttcagca agatattggt ctcagggagc ataaagcagg ggtcaagatg 60
aatccaaacc agaagattct atgcacttca gccactgcta tcgcaatagg cgcaatcaca 120
gtactcattg gaatagcaaa cataggactg aacataggac tgcatctaaa atcgggctgc 180
aattgctcac gctcacaacc tgaaacaacc aacacaagcc aaacaacaat aaacaactat 240
tataatgaaa caaacatcac caacatccaa atgggagaaa gaacaagcag gaatttcaat 300
aacttaacta aagggctctg tactataaat tcatggcaca tatatgggaa agacaacgca 360
gtaagaattg gagaaagctc ggatgtttta gtcacaagag aaccctatgt ttcatgcggc 420
ccagatgaat gcaagttcta tgctctcagc caaggaacaa caatcagagg gaaacactca 480
aacggaacaa tacacgatag gtcccagtat cgtgccctga taagctggcc actatcatca 540
ccgcccacag tgtacaacag cagggtggag tgcatcgggt ggtcaagtac tagttgccat 600
gatggcaaat ccagaatgtc aatatgtata tcaggaccaa acaacaatgc atctgcagta 660
gtatggtaca acagacggcc tgttgcagaa attaacacat gggcccgaaa catactaaga 720
acacaggaat ctgaatgtgt atgccacaac ggcgtatgcc cagtagtgtt caccgatggg 780
cctgccactg gacctgcaga cacaagaata tactatttta aagaggggaa aatattgaag 840
tgggagtctc tgattggagc tgctaagcat gttgaagaat gctcatgtta cgggaaacga 900
acagggatta cctgcacatg cagggacaat tggcagggct caaatagacc agtgattcag 960
atagacccag tagcaatgac acacactagt caatatatat gcagtcctgt ccttacagac 1020
agtccccgac cgaatgaccc aaacataggt aagtgtaatg acccttatcc aggtaatgat 1080
aacaatggag tcaagggatt ctcatacctg gatgggaata acacttggct agggaggaca 1140
ataagcacat cctcgaggtc tgggtacgag atgttaaaag tgccaaatgc attgacagat 1200
gatagatcaa agcccatcca aggtcagaca attgtattaa acgctgactg gagtggttac 1260
agtgggtctt tcatagacta ttgggctgaa ggggactgct atcgagcgtg tttttatgtg 1320
gagctaatac gtgggaaacc caaggagggt aaagtgtggt ggaccagcaa tagtatagta 1380
tcgatgtgtt ccagtacaga attcctggga caatggaact ggcctgacgg ggctaaaata 1440
gagtacttcc tctaa 1455

Claims (10)

1.一种基于H5N2亚型禽流感D7株的全禽源反向遗传操作系统,其特征在于,为H5N2亚型禽流感D7株的八质粒反向遗传操作系统,所述八质粒为分别包含H5N2亚型禽流感D7株PB2、PB1、PA、HA、NP、NA、M和NS 8个基因片段的重组质粒;所述D7株的八个内部基因PB2、PB1、PA、HA、NP、NA、M和NS的核苷酸序列依次如SEQ ID NO:1~8所示。
2.根据权利要求1所述全禽源反向遗传操作系统,其特征在于,所述重组质粒为pSMC-PB2,pSMC-PB1,pSMC-PA,pSMC-HA,pSMC-NP,pSMC-NA,pSMC-M,pSMC-NS。
3.根据权利要求2所述全禽源反向遗传操作系统,其特征在于,所述pSMC载体的构建方法为将pCI载体质粒上的BsmBI酶切位点去除,得到pCI-NEW,通过基因合成的方式得到转录启动子序列、终止子序列以及转录元件;最后将载体pCI-NEW及获得的转录元件用XhoI、MluI双酶切,酶切鉴定为阳性的质粒即为pSMC。
4.权利要求1~3任一所述全禽源反向遗传操作系统在制备H7N9亚型禽流感疫苗中的应用。
5.一种H7N9亚型禽流感重组毒株,其特征在于,由高致病性H7N9亚型禽流感流行毒株改造后的HA基因和NA基因与H5N2亚型禽流感D7株的六个内部基因PB2、PB1、PA、NP、M和NS构成;所述改造后的HA基因序列如SEQ ID NO:9所示,NA基因序列如SEQ ID NO:10所示。
6.根据权利要求5所述H7N9亚型禽流感重组毒株,其特征在于,所述高致病性H7N9亚型禽流感流行毒株为A/Chicken/Liaoning/19155/2019。
7.权利要求5或6所述H7N9亚型禽流感重组毒株的制备方法,其特征在于,将高致病性H7N9亚型禽流感流行毒株改造后的HA基因和NA基因与H5N2亚型禽流感D7株的六个内部基因PB2、PB1、PA、NP、M和NS一起拯救出重组病毒,即得。
8.根据权利要求7所述制备方法,其特征在于,所述方法具体包括构建分别表达H5N2亚型禽流感D7株PB2、PB1、PA、NP、M和NS的6个质粒,构建分别表达SEQ ID NO:9所述序列的改造后HA基因和SEQ ID NO:10所述序列的NA基因的2个质粒,将上述8种质粒混合,并与转染试剂加入到293T细胞中,培养后获得H7N9亚型禽流感重组病毒株。
9.一种基于反向遗传技术的重组全禽源H7N9亚型禽流感疫苗候选株H71903,其特征在于,包括免疫量的权利要求5或6所述的H7N9亚型禽流感重组毒株抗原。
10.权利要求5或6所述H7N9亚型禽流感重组毒株、或权利要求9所述的重组全禽源H7N9亚型禽流感疫苗候选株H71903在制备预防和治疗H7N9亚型禽流感病毒的药物中的应用。
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