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1.
旨在了解河南省猪流感病毒的流行情况及其遗传进化和基因组特征。2018年4月,从河南省某一出现疑似流感症状猪群中采集鼻拭子样品150份用于分离病毒,对分离病毒的全基因组进行序列测定和分析。同时感染6周龄BALB/c小鼠,研究其对小鼠的致病性。结果显示,获得1株H1N1亚型病毒[命名为A/swine/Henan/NY20/2018(H1N1)]。遗传进化表明,其HANA基因属于欧亚类禽H1N1分支,PB2、PB1、PANPM基因属于2009甲型H1N1分支,NS基因属于经典H1N1分支。HA蛋白的裂解位点序列为PSIQSR↓GL,具有低致病性流感病毒的分子特征,在小鼠肺和鼻甲有效复制并能引起肺组织病理学变化。本研究分离到1株3源重排H1N1亚型病毒,对小鼠呈现一定致病力,提示应进一步加强对SIV的监测。  相似文献   
2.
To investigate the epizootic of swine influenza virus(SIV), 60 nasal swabs were collected from a clinical cases of pig farm in Tai'an City, Shandong Province of China in April 2017. SIV was isolated by inoculating into 10-day-old Special Pathogen Free embryonated eggs and the whole genome was sequenced. An H1N1 subtype SIV was isolated and designated as A/swine/Shandong/TA04/2017(H1N1). Phylogenetic analysis showed that apart from the polymerase A(PA) fragment belonging to the 2009 pandemic H1N1 branch, seven genome segments belonged to avian-like H1N1 influenza virus lineage. The cleavage site sequence of the hemagglutinin(HA) protein was PSIQSR↓G, which is a typical molecular biological characteristic. Five potential N-glycosylation sites(N14, N26, N277, N484 and N543) were found in the HA gene. To further investigate the epidemiology of SIV in this farm, the 995 serum samples were assessed with EAH1N1 2009 pandemic H1N1 and H3 N2 antigens. The results showed that the total positive rate was 65.43%. The positive rates of single virus infection detected by EAH1N1, 2009 pdmH1N1 and H3 N2 for serum HI(Hemagglutination inhibition) were 48.35, 30.85 and 7.47%, respectively. The results showed that SIV in Shandong Province has been reassorted in some segments and the SIV-positive rate was high on the SIV outbreak farm. These data provide evidence of an epizootic of SIV.  相似文献   
3.
利用表达 H 5亚型禽流感病毒 (AIV)血凝素基因的重组鸡痘病毒 (r FPV- HA)以不同剂量免疫 1日龄 SPF鸡、有或无母源抗体 (FPV、AIV H5)的商品鸡 ,并于免疫后 2 1d利用同亚型 AIV通过肌肉注射进行致死性攻击 ,通过检测免疫后 HI抗体应答、比较攻毒后发病率和死亡率评价免疫剂量和母源抗体对 r FPV- HA免疫效力的影响。结果发现 ,免疫后 2 1d,15 %~ 2 0 %的 SPF鸡和无母源抗体商品鸡可检出 HI抗体 ,而含母源抗体商品鸡检测不到 HI抗体。利用H5亚型 AIV致死性攻击后 ,10 3~ 10 6 PFU的 r FPV- HA可保护 95 %~ 10 0 %的 SPF鸡和无母源抗体商品鸡抵御强毒攻击 ,使之免于发病和死亡 ;而不同剂量 r FPV- HA接种的含母源抗体商品鸡有 80 %~ 90 %发病和死亡。结果表明 ,在较宽的免疫剂量范围内 ,r FPV- HA对 SPF鸡和无母源抗体商品鸡可提供良好的保护 ,显示出一定的应用前景 ;母源抗体影响 r FPV- HA诱导的免疫应答 ,且提高免疫剂量亦不能克服其干扰作用 ,这提示在实际应用中需优化免疫程序 ,避免母源抗体干扰。  相似文献   
4.
猪多杀性巴氏杆菌的分离鉴定及生物学特性研究   总被引:17,自引:2,他引:17  
用PCR方法配合生化鉴定,从有肺炎症状猪的肺脏及进行性萎缩性鼻炎(Progressive atrophic rhinitis,PAR)症状猪的鼻拭子中分离出66株多杀性巴氏杆菌(Pasteurella multocida,Pm)。然后做了药敏试验,并用PCR方法对这66株Pm进行分型及毒素基因的检测,用豚鼠皮肤坏死试验及小鼠致死试验对产毒素多杀性巴氏杆菌(Toxigenie Pasteurella multocida,T^ Pm)进一步鉴定。结果显示PCR鉴定与生化鉴定Pm结果完全一致;PCR分型表明有46株为D型Pm,18株为A型:Pm,1株为B型Pm,1株无法定型;有8株用PcR检测为T^ Pm;豚鼠皮肤坏死试验及小鼠致死试验对这8株T^ Pm的进一步鉴定也表明均为产毒素菌株。所鉴定的8株T^ Pm都为D型,都分离于有严重PAR症状的猪。  相似文献   
5.
对H5亚型禽流感DNA疫苗质粒pCAGGoptiHA5的免疫效果进行了研究。pCAGGoptiHA5分别以100和10μg剂量一次或两次免疫3周龄SPF鸡,首次免疫后4周以同样剂量和途径进行第二次免疫,一次免疫后4周、两次免疫后2周分别用100LD50的HPAIV A/Goose/GuangDong/1/96(H5N1)鼻腔途径进行攻击,观察发病与死亡情况,分别于攻毒后第3、5、7天采集喉头及泄殖腔拭子进行病毒分离、滴定检测排毒情况,同时检测免疫后、攻毒前及攻毒后血清HI抗体、NT抗体以及AGP抗体的动态变化。结果,100μg pCAGGoptiHA5一次免疫、100μg pCAGGoptiHA5两次免疫以及10μg pCAGGoptiHA5两次免疫均可对免疫鸡形成100%完全保护(不发病、不致死、不排毒),10μg剂量pCAGGoptiHA5一次免疫可对免疫鸡形成100%的保护(不发病、不致死),结果表明,pCAGGoptiHA5作为疫苗效果良好、成本低廉,有望成为预防H5亚型高致病力禽流感的高效、安全新型基因工程疫苗。  相似文献   
6.
为研究一株鸭源H9N2亚型禽流感病毒(JN1株)全基因组的分子特征和遗传进化情况以及感染雏鸭后的排毒规律,对其生物学特性、全基因组序列以及遗传进化进行了分析,通过点眼滴鼻方式感染3周龄健康雏鸭,利用建立的实时荧光定量PCR(RT-PCR)检测鸭的排毒规律,并测定血清抗体效价。JNI株的鸡胚半数感染量为10~(-7.54)/0.2mL,鸡胚最小致死量的平均死亡时间为72h,静脉致病指数为0.266,抗原相关系数为0.47。系统发育分析表明,JN1株的HA与CK/HK/G9/97和DK/HK/Y280/97在同一分支上,NA、M、NP、PA、PB1、PB2基因与SH/F/98同源性较高,NS基因则与H5N1亚型禽流感病毒进化关系较近。HA的裂解位点为PSRSSR↓GL,存在6个潜在糖基化位点,在234位的氨基酸残基为L,NA基因颈部存在缺失。雏鸭在感染该病毒后,饮食正常,精神良好,3~17d均有排毒,咽拭子和泄殖腔棉拭子排毒规律基本一致,分别在第3天和第13天出现排毒高峰。该H9N2亚型禽流感病毒属欧亚大陆分支,为低致病性禽流感,病毒可通过呼吸道和泄殖腔向外界排毒,排毒时间较长。  相似文献   
7.
Pestiviruses isolated from sheep and goats in India thus far have been bovine viral diarrhoea virus 1 (BVDV-1) or BVDV-2. During routine genetic typing of pestiviruses in the years 2009-10, border disease virus (BDV) was detected in eight Indian sheep of a flock showing clinical signs of BD by real time RT-PCR. All the samples yielded positive virus isolates in cell culture but were found negative by a BVDV antigen ELISA. A representative BDV isolate was characterized at genetic and antigenic level. Phylogenetic analysis carried out in 5′-UTR, Npro and E2 regions of genome typed the Indian BDV isolate as BDV-3. A more detailed analysis in Npro and entire region coding structural proteins showed that the Npro (168), C (100 aa), Erns (227 aa), E1 (195 aa) and E2 (373 aa) proteins were of size characteristic for BDV reference strain X818. Antigenic differences were evident between the BDV-3 isolate and previously reported BDV-1, BDV-5 and BDV-7 strains. Although origin of BDV-3 in India is not clear, the results reflect probable introduction through trade in sheep between India and other countries or BDV-3 may be more widely distributed. Additionally, this study suggests that for diagnosis of BDV infection, the commercial BVDV Ag-ELISA should be used with caution. This is the first identification of BDV in sheep in India which highlights the need for continued pestivirus surveillance and assessing its impact on sheep and goat production.  相似文献   
8.
To investigate the epidemic situation of H6N6 subtype avian influenza virus (AIV) in Guizhou province,A/duck/Guizhou/013/2014 was isolated from Sansui duck in live poultry market of Guizhou in 2014,the hemagglutinin (HA) and neuraminidase (NA) genes of DK/GZ/14 were subjected to clone and sequence analysis.The results showed that HA gene had the highest nucleotide homologies (97.5%) with the duck-origin H6N6 subtype AIV isolated from Eastern China in 2009,and the strains of HA gene proteolytic cleavage sites was P-Q-I-E-T-R-G,which accordeol with the molecular characteristic of low pathogenic AIV (LPAIV).However,NA gene of A/duck/Guizhou/013/2014 had the highest nucleotide homologies (98.2%) with the duck-origin H6N6 subtype AIV isolated from Fujian in 2007.The phylogenetic tree showed that A/duck/Guizhou/013/2014 and Hunan strains located in the same branch,while three duck-origin H6N6 subtype AIV isolated from Guizhou in 2007 and A/duck/Guizhou/013/2014 located in the different branch for HA and NA genes in genetic evolution,which suggested that A/duck/Guizhou/013/2014 was far with the local H6N6 subtype.The results also clearly indicated that duck-origin H6N6 subtype AIV had genetic diversity in duck population in Guizhou.  相似文献   
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