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1.
Highly pathogenic avian influenza (HPAI) H5N1 virus is causing the death of a large number of wild birds and poultry. HPAI H5N1 was reported in the north of Iran in 2011. In this study, two A/Chicken/Iran/271/2011 and A/Duck/Iran/178/2011 viruses were genetically characterized by sequence analysis of Hemagglutinin (HA) and Neuraminidase (NA) genes. Phylogenetic analysis revealed that these viruses were different from previous Iranian isolates (Clade 2.2) and belonged to the subclade 2.3.2.1. The results showed that the detected viruses are almost identical to each other and closely related to HPAI H5N1 strains isolated in Mongolia in 2010. Based on the amino acid sequence analysis, these viruses at their HA cleavage sites contained the multibasic amino acid motif PQRERRRK-R/GLF lacking a lysine residue compared with the previous reports of the same motif. There is also a 20-amino acid deletion (resides 49–69) in the NA stalk similar to other viruses isolated after 2000. It seems that introduction of HPAI H5N1 to Iran might have happened by wild birds from Mongolian origin virus.  相似文献   

2.
Recent introduction of H5N1 highly pathogenic avian influenza virus (HPAIV) in wild birds from poultry in Eurasia signaled the possibility that this virus may perpetuate in nature. Surveillance of avian influenza especially in migratory birds, therefore, has been conducted to provide information on the viruses brought by them to Hokkaido, Japan, from their nesting lakes in Siberia in autumn. During 2008-2009, 62 influenza viruses of 21 different combinations of hemagglutinin (HA) and neuraminidase (NA) subtypes were isolated. Up to September 2010, no HPAIV has been found, indicating that H5N1 HPAIV has not perpetuated at least dominantly in the lakes where ducks nest in summer in Siberia. The PB2 genes of 54 influenza viruses out of 283 influenza viruses isolated in Hokkaido in 2000-2009 were phylogenetically analysed. None of the genes showed close relation to those of H5N1 HPAIVs that were detected in wild birds found dead in Eurasia on the way back to their northern territory in spring.  相似文献   

3.
During 2014–2017 Clade 2.3.4.4 H5N8 highly pathogenic avian influenza viruses (HPAIVs) have spread worldwide. In 2016, an epidemic of HPAIV H5N8 in Iran caused mass deaths among wild birds, and several commercial poultry farms and captive bird holdings were affected and continue to experience problems. Several outbreaks were reported in 2017. One of them is related to Hooded crow (Corvus cornix) in a national park in Esfahan province in 2017. Whole genome sequencing and characterization have been done on the detected H5N8 sample. Based on HA sequencing results, it belongs to 2.3.4.4 clade, and the cleavage site is (PLREKRRKR/G). Phylogenetic analysis of the HA gene showed that the Iran 2017 H5N8 virus clustered within subgroup Russia 2016 2.3.4.4 b of group B in H5 clade 2.3.4.4 HPAIV.On the other hand, the NA gene of the virus is placed in group C of Eurasian lineage. Complete genome characterization of this virus revealed probable reassortment of the virus with East-Asian low-pathogenic influenza viruses. Furthermore, the virus possessed some phenotypic markers related to the increased potential for transmission and pathogenicity to mammals at internal segments. This study is the first full genome characterization H5N8 HPAIV in Iran. The data complete the puzzle of molecular epidemiology of H5N8 HPAIV in Iran and the region. Our study provides evidence for fast and continuing reassortment of H5 clade 2.3.4.4 viruses, that might lead to changes in virus structural and functional characteristics such as the route and method of transmission of the virus and virus infective, pathogenic and zoonotic potential.  相似文献   

4.
分离到1株 H5N1亚型高致病性禽流感病毒, 经序列测定发现HA蛋白裂解位点上插入多个连续的碱性氨基酸(PQREIRRKKR*G),从分子上证实是一株高致病性禽流感病毒。核酸序列比较分析结果表明,分离的流感病毒HA基因与A/duck/VietNam/Ncvd1/2002(H5N1)同源率最高,达到98.8%;NA基因与A/duck/VietNam/Ncvd1/2002(H5N1) 和A/chicken/Jiangsu/cz1/2002(H5N1)同源率最高,达到98.7%。氨基酸水平上,HA与A/duck/Viet Nam/Ncvd1/2002(H5N1)同源率最高,可达99.3%;NA与A/chicken/Jiangsu/cz1/2002(H5N1)同源率最高,达98.7%。HA与NA基因的潜在糖基化位点与作者所选参比毒株一致。通过遗传进化树分析结果表明,A/duck/VietNam/Ncvd1/2002(H5N1)可能是该毒株的来源株。  相似文献   

5.
AIM: To determine if migratory birds arriving in New Zealand in the Southern Hemisphere spring of 2004 were infected with the highly pathogenic avian influenza (AI) virus, H5N1.

METHODS: Cloacal and faecal samples were collected from migratory red knots following their arrival in New Zealand in October 2004. Two species of resident sympatric birds, wrybill and mallard duck, were sampled prior to, and following, the arrival of migratory birds.

RESULTS: No AI viruses were isolated from migratory or resident shorebirds. Non-pathogenic AI viruses were isolated from six resident mallard ducks, comprising the endemic subtypes H4 (n=2), H7 (non-pathogenic), H10, and H11 (n=2).

CONCLUSIONS: Highly pathogenic AI H5N1 virus was not detected in migratory shorebirds or sympatric water birds in the Firth of Thames, New Zealand, in 2004-2005, despite the possible proximity of migratory birds to outbreaks of the disease in East Asia in 2004.  相似文献   

6.
为了解禽流感病毒(AIV)在广西中越边境地区的流行情况,本研究在该地区活禽市场开展禽流感病原监测。监测过程中分离鉴定出1株H1N6亚型禽流感病毒,命名为A/Duck/Guangxi/F01/2016(H1N6),对其HA和NA基因进行序列测定,并与GenBank中下载的相关参考序列进行比对和遗传进化分析。结果显示,分离株HA基因与A/sparrow/Guangxi/GXs-1/2012(H1N2)的核苷酸同源性最高(96.9%),NA基因与A/Pavo cristatus/Jiangxi/JA1/2016(H5N6)的核苷酸同源性最高(98.2%)。HA基因裂解位点氨基酸序列为PSIQSR↓GLF,符合低致病性禽流感病毒分子特征;与部分N6亚型禽流感病毒一样,分离株NA基因有11个氨基酸缺失。此外,本研究还对分离毒株的受体亲和性进行了测定,结果显示该病毒优先结合唾液酸α-2,3-Gal受体。本研究结果表明A/Duck/Guangxi/F01/2016(H1N6)是一株重组低致病性禽流感病毒。  相似文献   

7.
To analyze the contribution of neuraminidase (NA) toward protection against avian influenza virus (AIV) infection, three different recombinant Newcastle disease viruses (NDVs) expressing hemagglutinin (HA) or NA, or both, of highly pathogenic avian influenza virus (HPAIV) were generated. The lentogenic NDV Clone 30 was used as backbone for the insertion of HA of HPAIV strain A/chicken/Vietnam/P41/05 (H5N1) and NA of HPAIV strain A/duck/Vietnam/TG24-01/05 (H5N1). The HA was inserted between the genes encoding NDV phosphoprotein (P) and matrixprotein (M), and the NA was inserted between the fusion (F) and hemagglutinin-neuraminidase protein (HN) genes, resulting in NDVH5VmPMN1FHN. Two additional recombinants were constructed carrying the HA gene between the NDV P and M genes (NDVH5VmPM) or the NA between F and HN (NDVN1FHN). All recombinants replicated well and stably expressed the HA gene, the NA gene, or both. Chickens immunized with NDVH5VmPMN1FHN or NDVH5VmPM were protected against two different HPAIV H5N1 and also against HPAIV H5N2. In contrast, immunization of chickens with NDVN1FHN induced NDV- and AIV N1-specific antibodies but did not protect the animals against a lethal dose of HPAIV H5N1. Furthermore, expression of AIV N1, in addition to AIV H5 by NDV, did not increase protection against HPAIV H5N1.  相似文献   

8.
A total of 512 tissue samples collected from 30 farms located in various states of Iran during 2008–2009 as part of a program to monitor avian influenza viruses (AIVs) infection in Iran’s poultry population. To determine the genetic relationship of Iranian viruses, neuraminidase (NA) genes from ten isolates of H9N2 viruses isolated from commercial chickens in Iran during 2008–2009 were amplified and sequenced. The viruses’ neuraminidase gene was >90% similar to those of A/Quail/Hong Kong/G1/97 (H9N2) sublineage. The neuraminidase stalk regions in these Viruses had no deletion as compared to that of chicken/Beijing/1/94 sublineage (Beijing-like viruses) and the two human isolates A/HK/1073/99, A/HK/1074/99. Phylogenetic analysis of neuraminidase (NA) gene showed that it shares a common ancestor A/Quail/Hong Kong/G1/97 isolate which had contributed the internal genes of the H5N1 virus. The results of this study indicated that No (Beijing-like) virus and (Korean-like) virus were found in chickens in Iran, and the NA genes of H9N2 influenza viruses circulating in Iran during the past years were well conserved and the earlier Iranian isolates may be considered to represent such a progenitor.  相似文献   

9.
禽流感病毒N4亚型神经氨酸酶基因的克隆和序列分析   总被引:1,自引:0,他引:1  
应用无特定病原体 (SPF)鸡胚增殖禽流感病毒 A/ Turkey/ Ontario/ 6 118/ 6 8(H8N4 )毒株 ,Tri Zol L S Reagent提取病毒 RNA,RT- PCR扩增神经氨酸酶 (NA)基因全片段 ,克隆到 p MD18- T载体上 ,并进行了鉴定和序列测定。所获得的 NA基因片段长 14 4 1bp,编码 4 90个氨基酸残基。根据推导的氨基酸序列进行预测 ,有 9个潜在的糖基化位点和2 0个半胱氨酸残基  相似文献   

10.
Development of vaccine strains of H5 and H7 influenza viruses   总被引:1,自引:0,他引:1  
To establish vaccine strains of H5 and H7 influenza viruses, A/duck/Hokkaido/Vac-1/04 (H5N1) [Vac-1/04 (H5N1)], A/duck/Hokkaido/Vac-3/07 (H5N1) [Vac-3/07 (H5N1)], and A/duck/Hokkaido/ Vac-2/04 (H7N7) [Vac-2/04 (H7N7)] were generated from non-pathogenic avian influenza viruses isolated from migratory ducks. Vac-1/04 (H5N1) and Vac-3/07 (H5N1) were generated by genetic reassortment between H5N2 or H5N3 virus as an HA gene provider and H7N1 or H6N1 viruses as an NA gene provider. Vac-2/04 (H7N7) was a genetic reassortant obtained using H7N7 and H9 N2 viruses to give high growth character of the H9N2 virus in chicken embryonated eggs. The results of sequence analyses and experimental infections revealed that these H5N1 and H7N7 reassortant viruses were non-pathogenic in chickens and embryos, and had good growth potential in embryonated eggs. These viruses should be useful to develop vaccines against H5 and H7 highly pathogenic avian influenza viruses.  相似文献   

11.
一株绿鹭源H9N2亚型禽流感病毒全基因组序列分析   总被引:1,自引:0,他引:1  
为了解野生水禽绿鹭(Butorides striata)中分离到的1株H9N2亚型禽流感病毒(A/striated heron/Yunnan/2018)的生物学特性;对其进行全基因组序列扩增、测序、进化分析;序列分析显示:该分离株HA、NA基因位于Y280-like分支、PB2、M基因位于G1-like分支、PA、PB1、NP、NS基因位于F98-like分支,分别与H9、H7、H10等多种亚型的AIV同源性较高,该分离株不同基因片段来源较复杂。HA裂解位点氨基酸序列为333PSRSSR↓GL340,符合低致病性禽流感病毒(LPAIV)氨基酸序列特征;S145N突变增加了一个糖基化位点,提示该位点出现可能会使毒株致病性提高,免疫原性发生改变;HA受体结合位点发生Q234L突变,表现出人流感病毒受体结合特性;NA基因出现第63—65位氨基酸缺失,M1发生N30D,T215A突变,M2发生S31N的突变,PB2、PB1、NS、NP、PA关键位点未发生变化,分析结果提示当前分离株已出现耐药性、致病性增强的变化。本研究表明该分离株呈现遗传演化的多样性及基因重组的复杂性,因此加强对野生水禽类禽流感病毒的监测和研究具有重要的公共卫生意义。  相似文献   

12.
国家禽流感参考实验室在2006年,从来自青、藏两省(区)3种野鸟及辽宁省的2种死亡的野鸟体内共分离到14株H5N1亚型高致病力禽流感病毒(High pathogenic avian influenza virus,HPAIV),比较发现其HA、NA基因核苷酸的同源率在97.9%~99.9%之间。所有病毒的HA基因的裂解位点均具有HPAIV特有的连续碱性氨基酸-RRRKKR-,并具有近年来H5N1亚型流行株所特有的NA基因颈部49~68位20个氨基酸缺失及NS基因80~84位5个氨基酸的缺失;遗传进化分析表明2006年野鸟病毒由2005年野鸟病毒进化而来,并形成独立的进化分支;辽宁省近2年的4株野鸟病毒亲缘关系较近,说明引起2005年该省锦州地区H5N1 HPAI疫情的病毒在该地区的野鸟体内继续存在。  相似文献   

13.
14.
采用常规血清学试验和特异性RT-PCR方法,对我国华东地区家养水禽流感病毒进行了长达4年的跟踪监测,分离到多株H1亚型禽流感病毒,并对其中的1株A/Duck/Yangzhou/163/2003(简称Dk/YZ/163/03)的血凝素基因进行了序列测定,并与GenBank中收录的其他序列进行了比较。结果发现,Dk/YZ/163/03的血凝素基因(HA)与禽流感日本分离株A/Japan/91(H1)的同源性最高;而神经氨酸酶基因(NA)与Mallard dk/A1b/35/1976(H1N1)同源性最高;其推导的氨基酸剪切位点序列为P-S-I-Q-S-R,是典型低致病性禽流感病毒的特征序列,这与该毒株对SPF鸡和BALB/c小鼠的低致病特性相吻合。  相似文献   

15.
为了解一株可引起产蛋鸭产蛋异常的H9N2亚型禽流感病毒A/Duck/Fujian/FQ107/2007(H9N2)(以下简称Dk/FQ107/07)分离株的分子特性及其遗传进化地位,运用RT-PCR方法对其基因组进行扩增,克隆至pMD18-T载体后测序。结果显示,Dk/FQ107/07病毒株的血凝素(haemagglutini,HA)蛋白裂解位点的氨基酸组成为-PARSSR↓GLF-,其静脉接种指数(intravenous pathogenicity index,IVPI)为0.04,符合低致病性禽流感病毒特征;Dk/FQ107/07株HA基因与A/chicken/Shantou/5269/2005(H9N2)同源性最高,为98.9%,和我国首次哺乳动物流感病毒分离株A/Swine/HongKong/9/98(H9N2)有较近的遗传进化关系,三者均属于经典的H9N2/Y280群系;神经氨酸酶(neuraminidase,NA)基因与中国大陆首次分离株A/chicken/Beijing/1/1994(H9N2)相比,在63、64、65位点上缺失3个氨基酸(T、E、I);核蛋白(nucleoprotein,NP)基因与高致病性鸭源禽流感分离株A/Duck/Fujian/1734/05(H5N1)和A/Duck/Fujian/9713/2005(H5N1)在同一遗传进化分支上,而从聚合酶(polymerase PA,PA)基因的遗传进化分析发现其基因属于H9N2/Y439群系。由此可见,Dk/FQ107/07可能是由不同禽流感病毒基因亚群间发生自然重排的产物。  相似文献   

16.
2017年在江苏省野生豆雁粪便中分离得到1株H6N1亚型禽流感病毒A/Anser fabalis/Jiangsu/J746/2017(H6N1)(J746)。本研究对J746进行了全基因组测序,并对其进行了遗传进化分析。遗传进化分析结果表明:与HA和NA基因同源性最高的毒株为A/wild waterfowl/Korea/F14-5/2016(H6N1),同源性为99.4%。HA基因与流行于韩国、日本和孟加拉的N1、N2、N8亚型毒株处于同一分支,NA基因与韩国野生水禽的H6、H7亚型毒株处于同一分支,PB2基因与中亚及东亚地区低致性病毒株处于同一分支,PB1基因和NP基因与流行在东南亚的低致病性毒株处于同一分支,PA基因和M基因均处于欧亚分支,但PA形成了独立的小分支,NS基因与分离于中国中南部和日本的毒株聚集在一起。氨基酸位点分析表明,神经氨酸(NA)蛋白存在H274Y突变,该突变可增强病毒对神经氨酸酶抑制剂药物的耐药性;同时在PB2蛋白中发现与增强对小鼠致病性有关的L89V突变,在NS1蛋白中发现与增强对小鼠致病性、提高复制能力和改变宿主嗜性有关的P42S、L103F、I106M、N205S突变。综上所述,J746毒株基因组构成来源复杂,是由多个国家和地区形成的一株多元重组病毒。  相似文献   

17.
重组高繁殖力疫苗株H5N2(H5/PR8)病毒的制备和鉴定   总被引:1,自引:1,他引:1  
作为禽流感疫苗株,不但要求其具有良好的免疫原性,而且要求在生产中具有良好的生长特性,现用的A/Turkey/England/N28/73(H5N2)疫苗株,血凝价28,生长滴度较差.本研究利用自然重组法,预制备一株高繁殖力的预备疫苗株,使它的表面基因血凝素(HA)和神经氨酸酶(NA)来源于A/Turkey/England/N28/73(H5N2)毒株,并使其保持原有的良好的免疫原性,内部基因来源于流感病毒PR8,A/Puerto Rico/8/34(H1N1)毒株,并使其重组病毒赋有了流感病毒PR8高繁殖力的特性.实验结果表明,已获得一株高繁殖力的重组流感病毒H5/PR8,血凝价达到211,生长繁殖特性明显增强.抗原性分析显示,H5/PR8重组病毒与亲本毒株H5N2抗原性无明显差异;致病性分析发现,H5/PR8重组病毒的致病能力较亲本毒株H5N2有明显下降.这为疫苗株的改良奠定了坚实的基础,对禽流感灭活疫苗的生产具有重大意义.  相似文献   

18.
We have completed the genetic characterization of all eight gene segments for four low pathogenic avian influenza (LPAI) viruses. The objective of this study was to detect the presence of novel signatures that may serve as early warning indicators of the conversion of LPAI viruses to high pathogenic avian influenza (HPAI) viruses. This study included three H5N2 and one H5N3 viruses that were isolated from live poultry imported into Singapore as part of the national avian influenza virus (AIV) surveillance program. Based on the molecular criterion of the World Organisation for Animal Health (OIE), sequence analysis with the translated amino acid (aa) sequence of the hemagglutinin (HA) gene revealed the absence of multibasic aa at the HA cleavage site, identifying all four virus isolates as LPAI. Detailed phylogenetic tree analyses using the HA and neuraminidase (NA) genes clustered these isolates in the Eurasian H5 lineage, but away from the HPAI H5 subtypes. This analysis further revealed that the internal genes clustered to different avian and swine subtypes, suggesting that the four isolates may possibly share their ancestry with these different influenza subtypes. Our results suggest that the four LPAI isolates in this study contained mainly avian signatures, and the phylogenetic tree for the internal genes further suggests the potential for reassortment with other different circulating avian subtypes. This is the first comprehensive report on the genetic characterization of LPAI H5N2/3 viruses isolated in South-East Asia.  相似文献   

19.
为明确中国鸭源H5N6 AIV的HA和NA基因特征及其遗传变异情况,研究选取了NCBI流感病毒资源库里的32株具有完整ORF编码区的中国鸭源H5N6 AIV的HA和NA基因序列,利用分子生物学软件分析其HA和NA基因特征及其遗传进化情况。结果显示,中国鸭源H5N6 AIV的HA裂解位点有REKRRKR↓G、RERRRKR↓G和KEKRRKR↓G三种类型,HA有6个潜在的N-糖基化位点,其中第182、222、224位氨基酸依次为N、Q、G,具有与禽源唾液酸α-2,3受体结合的特性,然而HA发生了S123P/T、T156A、S223R氨基酸位点突变,部分毒株发生了I151T氨基酸位点突变;HA基因核苷酸遗传进化分析显示,中国鸭源H5N6 AIV遗传进化上均处于clade2.3.4.4分支,并进一步进化出Ⅰ和Ⅱ两个亚分支。部分中国鸭源H5N6 AIV NA第59~69位缺失11个氨基酸,中国鸭源H5N6 AIV NA基因遗传进化上分为两个大的分支,分别对应NA基因颈部缺失型和完整型两种类型;NA颈部完整型的NA有6个潜在的N-糖基化位点,NA颈部缺失型的NA由于第59~69位氨基酸的缺失,导致其第67位丢失了一个N-糖基化位点。研究为中国鸭源H5N6 AIV的生物学特性和遗传进化特征研究奠定基础。  相似文献   

20.
在2019年1月-2019年6月对云南出现呼吸道疫病的57个鸡场进行H9亚型禽流感检测的基础上,选取石林和楚雄2个H9亚型禽流感阳性样品进行病毒分离。从分离的H9N2亚型禽流感病毒感染鸡胚尿囊液中提取总RNA,采用特异性引物经反转录PCR分别扩增HANA基因,PCR产物纯化后进行测序。序列比对及系统发育分析结果表明,云南2株H9N2毒株HA基因核苷酸序列同源性为94.2%,NA基因核苷酸序列同源性为93.6%,系统进化分析表明云南H9N2亚型禽流感病毒HANA基因均属于欧亚谱系中的类ADKHKY28097分支(Y280-like),ACKYN12019和ACKYN72019 HA基因之间的同源性为94.3%,与参考毒株ACKJX2448的同源性最高,为95.6%~98.5%,与中国流行的H9N2代表株和疫苗株同源性较低。HA蛋白333-340位裂解位点为PSRSSR↓GLF,具有低致病性禽流感病毒分子特征,受体结合位点均发生E198T和Q234L的突变,具有人样受体结合特征,在29、141、298、305、313、492位氨基酸有6个糖基化位点。ACKYN12019和ACKYN72019 NA基因同源性为93.6%,与Y280-like代表毒株的同源性分别为97.1%~97.5%和93.7%~94.6%,NA蛋白缺失63、64、65位氨基酸,在44、69、86、146、200、234位氨基酸处存在6个潜在的糖基化位点,NA蛋白红细胞结合(HB)位点分析发现,368-369、399-403、432位氨基酸处存在变异。研究结果显示,H9N2亚型禽流感病毒一直处于不断的变异之中,故应加强其监测与防控。  相似文献   

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