首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 343 毫秒
1.
A single-tube RT-PCR technique generated a 387 bp or 300 bp cDNA amplicon covering the F0 cleavage site or the carboxyl (C)-terminus of the HN gene, respectively, of Newcastle disease virus (NDV) strain I-2. Sequence analysis was used to deduce the amino acid sequences of the cleavage site of F protein and the C-terminus of HN protein, which were then compared with sequences for other NDV strains. The cleavage site of NDV strain I-2 had a sequence motif of 112 RKQGRLIG119, consistent with an avirulent phenotype. Nucleotide sequencing and deduction of amino acids at the C-terminus of HN revealed that strain I-2 had a 7-amino-acid extension (VEILKDGVREARSSR. This differs from the virulent viruses that caused outbreaks of Newcastle disease in Australia in the 1930s and 1990s, which have HN extensions of 0 and 9 amino acids, respectively. Amino acid sequence analyses of the F and HN genes of strain I-2 confirmed its avirulent nature and its Australian origin.  相似文献   

2.
Recombinant viruses were rescued after site-specific mutagenesis of a full-length clone of the lentogenic Newcastle disease virus (NDV) strain Clone 30. To assess the contribution of different amino acids to virulence, specific alterations were introduced into the fusion (F) protein and in the hemagglutinin-neuraminidase (HN) protein based on sequence comparison between NDV strains of different virulence. Modification of the proteolytic cleavage site in the F protein to a polybasic motif increased the intracerebral pathogenicity index (ICPI) from 0.0 to 1.28. Moreover, the additional exchange of amino acid 123 of the HN protein from tryptophan to cysteine in combination with alteration of amino acid 27 of the F protein from cysteine to arginine increased the ICPI to 1.5. The HN mutation visibly altered conformation of the protein, resulting in the formation of disulfide-linked HN dimers that may indicate that this HN conformation is beneficial for the virulent phenotype.  相似文献   

3.
The main theme of this project was to develop a Vero cell-adapted, thermostable NDV I-2 vaccine and evaluate its efficacy against challenge infection. For this purpose, serial passages of virus were done in Vero cell line up to 13 times and after each passage samples were subjected to heat treatment at 56°C for 40 min. After 13 passages, the virus was completely adapted on Vero cell line and cytopathic effects were observed, including syncytial formation, rounding, degeneration, and detachment of cells. Hemagglutination and infectivity titers showed that the virus was thermostable after each passages in Vero cell line. One-day-old broiler chicks (Group 1) were vaccinated orally with thermostable NDV I-2 vaccine. A commercially available thermolabile NDV LaSota was used in Group 2 used as positive control. NDV I-2 vaccine produced maximum % inhibition migration at d 6 (50%) as compared with LaSota ND vaccine (i.e., 32%). On encounter with virulent NDV I-2, 100% safety was accomplished in group 1 and 60% in case of group 2. All the birds in the control negative group had died. This study led to the conclusion that thermostable Vero cell adapted I-2 strain vaccine resulted in better immunization in broiler birds than obtained by the use of commercially available thermolabile vaccines.  相似文献   

4.
本研究旨在从分子水平上掌握中国新城疫病毒的变异情况和新城疫的流行规律,对2008-2009年从中国部分省市养殖场分离的9株新城疫病毒毒株,采用RT-PCR方法扩增其F和HN基因,经克隆和测序,对所得序列进行同源性和遗传进化分析。结果显示,9株分离株有8株为基因Ⅶ型,1株为基因Ⅱ型,F基因开放性阅读框架(ORF)为1662 bp,强毒株同La Sota的核苷酸同源性为83.5%~84.2%。HN基因开放性阅读框架(ORF)为1716或1734 bp,强毒株在538位缺失1个糖基化位点。结果表明,近年流行的ND疫情主要是由基因Ⅶ型NDV引起,F和HN基因的变异可能与频繁的疫苗免疫选择压力有关。  相似文献   

5.
Even though Newcastle disease virus (NDV) live vaccine strains can be applied to 1-day-old chickens, they are pathogenic to chicken embryos when given in ovo 3 days before hatch. Based on the reverse genetics system, we modified recombinant NDV (rNDV) established from lentogenic vaccine strain Clone 30 by introducing specific mutations within the fusion (F) and hemagglutinin-neuraminidase (HN) proteins, which have recently been suggested as being responsible for attenuation of selected vaccine variants (Mast et al. Vaccine 24:1756-1765, 2006) resulting in rNDV49. Another recombinant (rNDVGu) was generated to correct sequence differences between rNDV and vaccine strain NDV Clone 30. Recombinant viruses rNDV, rNDV49, and rNDVGu have reduced virulence compared with NDV Clone 30, represented by lower intracerebral pathogenicity indices and elevated mean death time. After in ovo inoculation, hatchability was comparable for all infected groups. However, only one chicken from the NDV Clone 30 group survived a 21-day observation period; whereas, the survival rate of hatched chicks from groups receiving recombinant NDV was between 40% and 80%, with rNDVGu being the most pathogenic virus. Furthermore, recombinant viruses induced protection against challenge infection with virulent NDV 21 days post hatch. Differences in antibody response of recombinant viruses indicate that immunogenicity is correlated to virulence. In summary, our data show that point mutations can reduce virulence of NDV. However, alteration of specific amino acids in F and HN proteins of rNDV did not lead to further attenuation as indicated by their pathogenicity for chicken after in ovo inoculation.  相似文献   

6.
为了解中国鸭源新城疫病毒(Newcastle disease virus,NDV)的毒力特点,从2009年广东地区发病鸭群中分离和鉴定出1株新城疫病毒(简称NDV-104),对其生物学特性、致病性和融合蛋白(fusion,F)、血凝素神经氨酸酶(hemagglutinin-neuraminidase,HN)基因进行了研究。结果显示,分离株的MDT、ICPI和IVPI分别为56.4 h、1.95和1.64,结合F蛋白裂解位点(112~117位)的氨基酸序列分析,确定了分离株为新城疫强毒。致病性结果表明,分离病毒对雏鸭具有感染性和致病性。F基因遗传进化结果显示,分离株属于基因Ⅶd亚型。F、HN蛋白的氨基酸同源性结果表明,分离株与2000年以来国内外分离到的基因Ⅶ型NDV同源性较高,分别为96.6%~99.3%和97.0%~99.7%,而其与常用疫苗株B1、V4、Clone30、Mukteswar和LaSota的F、HN蛋白氨基酸序列的同源性较低,且与LaSota株和V4株的同源性最低,分别仅为88.1%和87.6%,说明分离株与经典新城疫病毒毒株存在一定的差异。  相似文献   

7.
在浙江地区进行鸭病病因的调查过程中,从患病鸭群中分离到一株引起鸭产蛋锐减而不死亡的病毒,经鉴定该病毒属于禽副粘病毒Ⅰ型,命名为YH99V株。以YH99V株的基因组RNA为模板,通过RT—PCR一步法扩增出其HN基因的cDNA片段,然后将其克隆至pMD18-T载体中,对其进行序列测定。测序后拼接出HN基因的序列长度为1785bp,该基因的ORF总长为1734bp,编码577个氨基酸。将YH99V株HN基因序列和推导的氨基酸序列与新城疫毒株的HN基因相应序列比较后发现,它们的核苷酸序列同源性分别在82.1%~99.7%,氨基酸序列同源性为87.2%~99.5%。在同源性比较的基础上,进一步绘制了Ⅰ型禽副粘病毒株HN基因的系统发育树。这对于Ⅰ型禽副粘病毒毒力基因的功能分析和该病的分子流行病调查有着重要的意义。  相似文献   

8.
从广东粤东地区某商品蛋鸡场的发病鸡群中分离到1株病毒(YS株),经血凝和血凝抑制试验确定为新城疫病毒(NDV).对该分离株的F蛋白氨基酸序列的分析结果表明,其F0裂解位点的氨基酸序列为1nR-R-Q-K-R-F117,且含有101K和121V,符合典型NDV强毒株的分子特点.遗传分析结果显示分离株属于基因Ⅶd亚型.F和HN基因的氨基酸相似性分析表明,分离株与基因Ⅶ型NDV Chicken/China/Shandong/02/2010株的相似性最高,均达到99%,而与常用疫苗株B1、V4、Clone30、Mukteswar和La Sota的相似性则较低,分别在86.8%~ 90.4%和87.2%~88.3%之间,说明分离株与经典的NDV毒株存在一定的差异.  相似文献   

9.
为制备基因Ⅶ型新城疫病毒(NDV)血凝素-神经氨酸酶蛋白(HN)的单克隆抗体(MAb),本研究利用JS/17病毒株的HN重组蛋白和活病毒分别免疫BALB/c小鼠,取其脾细胞与骨髓瘤细胞(SP2/0)融合,并通过ELISA、间接免疫荧光和western blot方法筛选,制备了3株特异性识别HN蛋白的单克隆抗体(MAb)。其中,MAb1D4和4D9具有病毒中和活性(VN)及血凝抑制作用(HI),可以识别多种基因型的Ⅱ类NDV,但与Ⅰ类NDV病毒株无反应。MAb 2G8识别线性表位131DYIGGIGKE139,该表位在各病毒株中高度保守。获得的3株MAb可以用于NDV的鉴定及HN蛋白的功能研究。  相似文献   

10.
新城疫病毒(NDV)的HN蛋白是一个多功能蛋白,具有血凝素(HA)和神经氨酸酶(NA)两种活性,在病毒感染过程中扮演重要角色。本研究利用反向遗传操作技术,将NDV强毒株F48E9的HN基因替换弱毒株rLaSota的HN基因,获得嵌合病毒rL-F48E9HN。收获病毒尿囊液,提取基因组RNA,进行序列分析,结果显示嵌合病毒基因组的HN基因获得了正确替换。嵌合病毒在鸡胚内的生长特性与亲本株LaSota一致,与F48E9的生长特性相差甚远。嵌合病毒红细胞吸附性明显增强,较rLaSota株增加51%,而细胞融合作用无明显变化。rL-F48E9HN的鸡胚平均致死时间(MDT)为148 h,脑内致病指数(ICPI)为0.43,静脉接种致病指数(IVPI)为0,说明rL-F48E9HN的毒力仍然属于弱毒力范围,而没有达到中等毒力或者强毒力。  相似文献   

11.
【目的】 试验旨在构建一种基因Ⅶ型新城疫病毒(Newcastle disease virus,NDV)嵌合疫苗,并对其免疫效力进行评估。【方法】 利用反向遗传学技术,以含有禽偏禽腮腺炎病毒2型(Avian metaavulavirus-2,AMAV-2) Y2株基因组的重组质粒pT7-Y2为模板,将Y2株的F和HN蛋白的胞外区替换为基因Ⅶ型NDV HB0901株的F和HN蛋白的胞外区,将HB0901株的F蛋白裂解位点突变为LaSota弱毒株的F蛋白裂解位点,构建嵌合重组病毒rY2-FHNR株。对rY2-FHNR株的增殖特性、致病力及遗传稳定性等生物学特性进行检测,并通过接种2周龄SPF鸡评估rY2-FHNR株的免疫原性及其免疫血清与Y2株的交叉反应性,利用NDV NP蛋白的间接ELISA方法对免疫血清进行检测,验证其鉴别诊断效果。【结果】 试验成功获得了嵌合重组病毒rY2-FHNR株,生物学特性检测结果显示,rY2-FHNR株在鸡胚中的增殖滴度和致病性符合弱毒特征,其鸡胚传代的遗传稳定性良好。rY2-FHNR株可诱导机体产生针对NDV的抗体,且免疫血清不与rY2株抗原发生交叉反应。通过NDV NP ELISA抗体检测方法可以实现区分疫苗免疫与野毒感染。【结论】 本试验研发了一种基因Ⅶ型NDV嵌合候选疫苗,为基因Ⅶ型NDV的监测、防控和净化提供了技术支撑。  相似文献   

12.
Hu Z  Hu S  Meng C  Wang X  Zhu J  Liu X 《Avian diseases》2011,55(3):391-397
To generate a genotype VII Newcastle disease virus (NDV) vaccine with high yield in embryonated chicken eggs, we selected genotype VII NDV strain JS5/05, which possesses a high virus titer in embryos as the parental virus. Using reverse genetics, we generated a genetically tagged derivative (NDV/AI4) of JS5/05 by changing the amino acid sequence of the cleavage site of the F0 protein. Pathogenicity tests showed that NDV/AI4 was completely avirulent. NDV/AI4 was genetically stable and replicated efficiently during 10 consecutive passages in embryos. More importantly, serologic assays showed that oil-emulsion NDV/AI4 induced higher hemagglutination inhibition (HI) titers against the prevalent virus than oil-emulsion LaSota vaccine in chickens and geese. Moreover, NDV/AI4-induced HI titers rose faster than those elicited by LaSota in chickens. Both NDV/AI4 and LaSota provided protection against clinical disease and mortality after the challenge with the genotype VII NDV strain JS3/05. However, NDV/AI4 significantly reduced virus shedding from the vaccinated birds compared to LaSota. Taken together, these results suggest that NDV/AI4 can provide better protection than LaSota and is a promising vaccine candidate against genotype VII NDV.  相似文献   

13.
为观察鸡传染性支气管炎病毒(IBV)HN99株对新城疫病毒(NDV)增殖的干扰作用,该试验采用不同浓度的IBV标准株M41和地方株HN99与鸡新城疫病毒(NDV)分别按不同接种顺序同胚增殖,利用病毒血凝试验(HA)测定NDV的效价,观察IBV对NDV的干扰作用,从而为检测IBV地方株HN99提供方法,也为同胚增殖两种病毒提供一系列的数据参考。试验结果表明,鸡传染性支气管炎病毒地方株HN99对NDV的干扰作用与其浓度和接种顺序有关。  相似文献   

14.
With the advent of subunit vaccines for microbial diseases it is becoming increasingly important to be able to differentiate naturally infected animals from those vaccinated with the corresponding subunit vaccine. For avian viruses such as Newcastle disease virus (NDV), a whole virus-based ELISA cannot make such a differential diagnosis since in both cases the antisera would react with the whole virus. The nucleocapsid protein (NP) gene of the NDV Hitchner B1 strain was cloned, sequenced and expressed to develop a differential ELISA. The B1 NP had 95.7 and 96.1% amino acid identities with the NP of the d26 and Ulster 2C strains, respectively. The B1 NP expressed in a baculovirus expression vector (recNP) was the expected size and reacted with NDV-specific antibodies (Ab) in Western blots and by radioimmunoprecipitation. The ELISA using recNP-coated wells, tested on serum samples from flocks pretested with a commercial NDV kit gave results corresponding to those of the kit. Furthermore, use of both the renNP-based ELISA and a whole virus ELISA allowed the differentiation of birds vaccinated and a NDV haemagglutinin-neuraminidase (HN) expressing fowlpox virus from birds infected with NDV. This provides the basis for establishing an ELISA that discriminates between the antibody response to a recombinant fowlpox vaccine (expressing NDV HN protein) and that to live and inactivated NDV.  相似文献   

15.
Vaccination of chickens with an oil-emulsion vaccine containing a recombinant baculovirus that expressed the hemagglutinin-neuraminidase (HN) of Newcastle disease virus (NDV)-induced hemagglutination-inhibition (HI) and virus-neutralizing antibodies against NDV. HI antibody titers obtained in response to vaccination with the live recombinant virus were higher than those obtained when the recombinant was inactivated with beta-propiolactone, and the titers were lower than those obtained in response to the same HN concentrations in live or beta-propiolactone-inactivated NDV strain B1. The serological response to the recombinant baculovirus was differentiated from the response to NDV by an enzyme-linked immunosorbent assay in which purified NDV nucleoprotein was used as antigen. Chickens vaccinated with the live recombinant or with inactivated NDV resisted an oculonasal challenge with the neurotropic velogenic Texas GB strain of NDV, which was lethal in unvaccinated controls. It was concluded that the HN protein of NDV expressed as a subunit by a recombinant baculovirus was protective against Newcastle disease.  相似文献   

16.
前期研究表明新城疫病毒(NDV)HN蛋白为病毒热稳定性的主要影响因子.为了进一步研究HN蛋白的热稳定性以及影响其热稳定性的结构特征,研究利用杆状病毒表达了NDV TS09-C耐热株的HN蛋白的胞外区,将两个拷贝的TS09-C株HN胞外区基因分别插入到载体pFastBac-dual的PH启动子和p10启动子下游,在HN蛋...  相似文献   

17.
The efficacy of green-coloured (GC) I-2 Newcastle disease vaccine was determined in the present study. I-2 vaccine was mixed with a green coloured dye and stored at 4°C for 6 months while assayed for the virus infectivity at a monthly interval. Chickens were vaccinated with the GC vaccine by eye drop. Serum samples were collected from all birds before and after vaccination at weekly interval for 4 weeks and tested for haemagglutination-inhibition (HI) antibody against Newcastle disease virus (NDV). These chickens were challenged with NDV virulent strain four weeks after vaccination. The results showed that there was no difference between the infectivity titres of GC and uncoloured vaccines. However, chickens vaccinated with GC vaccine produced higher HI antibody titres than chickens vaccinated with uncoloured vaccine. Results from the challenge trial showed that all vaccinated chickens survived whereas all unvaccinated chickens died. The findings from this study have shown that the GC vaccine is safe and produced protective antibodies against NDV in vaccinated chickens. Wambura, P. N., 2008. Protective antibody response produced by the chickens vaccinated with green coloured thermostable Newcastle disease virus. Tropical Animal Health and Production.  相似文献   

18.
为研究新城疫病毒(Newcastle disease virus,NDV)的HN(血凝素-神经氨酸酶,hemagglutinin—neuraminidase)基因分子流行病学规律,利用RT—PCR扩增了2006~2008年间分离自我国华东地区的43株NDV的HN基因片段。基因序列分析显示,分离株中基因Ⅰ型2株,基因Ⅱ型3株,基因Ⅵ型1株,其它37株都属于基因Ⅶd亚型。根据遗传发生进化树可将基因Ⅶd亚型进一步分为Ⅶd1和Ⅶd2两个亚型,基因Ⅶd1亚型HN蛋白的第102、118、443位氨基酸分别为T,A和T,而基因Ⅶd2亚型则分别为I,E和M。另外,研究表明HN蛋白线性表位发生E347K突变的变异株的分离率在我国呈上升趋势。  相似文献   

19.
应用抗多肽抗体鉴别新城疫病毒强弱毒株   总被引:2,自引:0,他引:2  
在克隆我国流行的新城疫病毒(NDV)强毒株F48E8株、四平株及弱毒株长春株、V4株和HN和F基因并进行测序的基础上,针对我国流行的NDV强毒株F蛋白前体(F0)的F2片段的特异结构,人工合成特异性多肽,将其与小牛血清白蛋白(BSA)化学偶联制备成全抗原,免疫小鼠制备出抗多肽血清。经ELISA检测,该抗体与NDV强毒株呈强阳性反应,而与鸡痘病毒、鸡传染性法氏囊病病学、ND 弱毒株长春株和V4株呈阴  相似文献   

20.
采用RT-PCR技术对Ⅰ类新城疫病毒(NDV)09-014分离株完整的融合蛋白(F)基因和血凝素-神经氨酸酶(HN)基因进行了扩增和遗传进化分析。F基因的序列测定结果表明:该分离株F基因全长为1 792 bp,可编码553个氨基酸,裂解位点的氨基酸组成为112E-R-Q-E-R-L117,具有典型的新城疫弱毒株特征。同源性分析表明本分离株的F基因与Ⅰ类新城疫病毒代表毒株之间核苷酸的同源性为93%~95.2%,而与Ⅱ类新城疫病毒代表毒株的同源性较低,介于70.6%~72.4%。HN基因的序列测定结果表明:HN基因全长2 001 bp,可编码616个氨基酸,同源性分析表明本分离株的HN基因与Ⅰ类新城疫病毒代表毒株之间核苷酸的同源性在92.7%~94.7%之间,而与Ⅱ类新城疫病毒同源性较低,为70.7%~71.5%。根据完整的F基因和HN基因构建的遗传进化树均表明:本分离株在分类地位上属于Ⅰ类新城疫病毒基因3型,因此Ⅰ类新城疫病毒的F基因和HN基因具有相似的进化速率。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号