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1.
采用RT—PCR方法对近年来本实验室分离的4株肾型IBV陕西分离株的纤突蛋白S1基因、膜蛋白基因(M)和核蛋白基因(N)分别进行扩增,测序后进行遗传变异分析。结果显示:与肾型疫苗株w93相比,各分离株S1基因均存在广泛的点突变,并且都存在基因插入现象,分离株之间氨基酸同源性为75.8%~99.4%;M基因除了存在点突变外,W09和WNl2在其5’端还存在9个核苷酸的缺失,分离株之间氨基酸同源性为91.0%~99.6%;N基N无插入和缺失,但存在基因点突变,分离株之间氨基酸同源性为99.3%~99.5%。4株IBV分离株在S1、M和N基因氨基酸系统进化树上分属于不同的进化群,且都与较早的肾型IBV陕西分离株w118遗传距离较远。结果表明,4株鸡肾型IBV流行毒株的s1、M和N基因均存在不同程度变异,这可能是免疫鸡群肾型鸡传染性支气管炎长期流行的主要原因.  相似文献   

2.
Huang YP  Lee HC  Cheng MC  Wang CH 《Avian diseases》2004,48(3):581-589
The disease caused by infectious bronchitis virus (IBV) produces great economic for the poultry industry. The purpose of this study is to investigate the molecular epidemiology of IBV in Taiwan. An old IBV strain isolated in 1964 and another 31 strains isolated from 1991 to 2003 were selected for N-terminal S1 gene analysis. Based on their phylogenetic tree, 13 strains were selected for sequencing the entire S1 and partial nucleocapsid (N) genes. The results indicated that Taiwanese IBV strains could be divided into two distinct lineages, Taiwan Group I and Taiwan Group II, with one Massachusetts strain and one Chinese strain. No recombination was found between H120 and the Taiwanese strains in the S1 gene. However, the S1 gene showed a noticeably higher divergence than the N gene. The phylogenetic trees constructed from the S1 and N genes indicate that intergenic recombination has occurred. Since most local strains are in Taiwanese clusters, developing vaccines from local strains is necessary for IBV control in Taiwan.  相似文献   

3.
Xu C  Zhao J  Hu X  Zhang G 《Veterinary microbiology》2007,122(1-2):61-71
Between 2003 and 2005, four strains of infectious bronchitis virus (IBV) were isolated from the vaccinated chicken flocks in China. The results from chicken embryo cross-neutralization assays showed that all the four isolates were relative to strain A2 of IBV, which was isolated in 1996 in Beijing and related to strain 4/91. The S1 gene of the spike protein was amplified and sequenced. The nucleotide and amino acid sequence of the S1 gene had a similar degree of identity (88.98-99.28%) among the four Chinese IBV isolates. The identity of the S1 protein gene between the four Chinese IBV isolates and 14 strains of other IBVs varied from 70.06 to 81.59%. Phylogenetic analysis suggested that there are at least four groups of IBVs circulating in China and the disease outbreaks might have been caused by infection of multiple strains of IBV.  相似文献   

4.
Thirty-three field isolates of avian infectious bronchitis virus (IBV) were recovered from commercial chicken flocks in Korea between 2003 and 2006 and were characterized phylogenetically by nucleotide sequence analysis of the IBV S1 gene hyper-variable region. Our phylogenetic analysis revealed that recent field isolates of IBV formed at least three distinct phylogenetic types, including K-I, K-II, and K-III. K-I type IBV consisted of indigenous, 13 IBV isolates which evolved from the Kr-EJ/95 strain and then separated into the lineages of type K-Ia and type K-Ib. K-II type IBV isolates (n = 19) were closely related to nephropathogenic IBV variants from China and Japan. The K-III type isolate (Kr/D064/05), first identified by this study, was closely related to enteric IBV variants from the Chinese strains that cause proventriculitis. Sequence comparisons showed amino acid differences of >27.5% between IBV types. The molecular epidemiologic characteristics of IBV field isolates are briefly discussed.  相似文献   

5.
Avian infectious bronchitis virus (IBV) causes tremendous economic losses to the poultry industry worldwide. Different serotypes of this virus show little cross-protection. The present study investigated the genotypic relationship between CK/CH/LDL/97I-type strains and reference IBVs based on S1 gene comparisons and the protection provided by vaccination with commercial vaccines and attenuated homologous and heterologous strains. Phylogenetic analysis and the comparison of S1 showed that CK/CH/LDL/97I-type virus might be a new serotype compared to vaccine strains and other types of IBV isolates in China. Protection efficacy was evaluated by morbidity, mortality, and virus re-isolation from the challenged chicks. Complete protection by IBV vaccination was provided by the homologous strain but sufficient respiratory protection was not provided by the commercial vaccines. Heterologous strains against CK/CH/LDL/97I challenge and the development of a vaccine against CK/CH/LDL/97I-type IBV will be necessary to control infectious bronchitis disease in poultry. Further development of the attenuated CK/CH/LDL/97I strain may provide a valuable contribution towards this goal.  相似文献   

6.
Seventeen isolates of infectious bronchitis virus (IBV) were obtained from various prefectures of Japan during 2008–2019 and genetically analyzed. The IBV isolates were classified into six genetic groups, based on phylogenetic analysis of the S1 gene. The S1 genotypes were distinguishable by a newly developed restriction fragment length polymorphism (RFLP) method using three endonucleases, Hae II, Hpa I, and Fok I. Moreover, the isolates were classified into four genetic groups, based on phylogenetic analysis of the S2 gene. However, novel genetic groups based on a combination of S1 and S2 genotypes, which were undetected previously, were confirmed in this study, indicating that various recombinant IBV strains were prevalent in poultry in Japan.  相似文献   

7.
为调查广东地区鸡传染性支气管炎病毒(IBV)的流行及其遗传变异情况,本研究通过病料SPF鸡胚接种和鸡胚尿囊液的RT-PCR鉴定,于2013年从广东湛江地区不同发病鸡场分离到两株IBV,分别命名为CK/CH/GD/ZJ10/2013和CK/CH/GD/ZJ11/2013,并对这两株IBV的S1基因进行序列分析。结果显示,CK/CH/GD/ZJ10/2013株S1基因全长1 626 bp,编码542个氨基酸,其裂解位点为NRFRR,属于基因型Ⅲ,并推测其为基因型Ⅲ毒株(CK/CH/GX/NN11-3)与基因型Ⅰ毒株(GX-NN-6)在S1基因处发生重组而产生的新毒株;CK/CH/GD/ZJ11/2013株S1基因全长1620 bp,编码540个氨基酸,其裂解位点为HRRRR,属于基因型Ⅰ(类QX型);两株IBV的S1基因间核苷酸序列及其推导的氨基酸序列同源性较低,与位于同一基因型的参考毒株间同源性较高,而与中国使用的Mass型常规疫苗H120和H52之间的同源性最低,仅为75.7%~76.3%和77.1%~77.9%。本研究可为广东省IBV的流行病学调查和分子生物学研究提供参考。  相似文献   

8.
In order to investigate the epidemiology and genetic variation of avian infectious bronchitis virus (IBV) in Guangdong province, two strains of IBV were isolated by inoculation of embryo and RT-PCR detection from diseased chickens at different farms in Zhanjiang, Guangdong province in 2013.We denoted these two strains of IBV as CK/CH/GD/ZJ10/2013 and CK/CH/GD/ZJ11/2013, respectively.Analysis of the S1 gene sequences from these two isolated strains showed that the S1 gene of CK/CH/GD/ZJ10/2013 was 1 626 bp, which encoded 542 amino acids with a cleavage site sequence of NRFRR, while the S1 gene of CK/CH/GD/ZJ11/2013 was 1620 bp, encoded 540 amino acids with a cleavage site sequence of HRRRR.Phylogenetic analysis revealed that these two isolated strains were clustered into genetic groups Ⅲ and Ⅰ(QX-like type), respectively.Homology analysis demonstrated that nucleotide and deduced amino acid sequence homologies between these two isolated strains were lower, while the homologies were higher among the same genotypes, however, the homologies were lower comparing with current vaccine strains such as H120 and H52, with which the nucleotide homologies ranged from 75.7% to 76.3% and the amino acid homologies ranged from 77.1% to 77.9%.Further analysis showed that the CK/CH/GD/ZJ10/2013 strain was formed from a recombination event between CK/CH/GX/NN11-3 and GX-NN-6.Taken together, this study provided valuable insight into prevention and control of IBV infection in Guangdong province.  相似文献   

9.
10.
Sixteen infectious bronchitis virus (IBV) isolates were recovered from broilers and layers from five geographic poultry regions in Colombia. The viruses were isolated from tracheas, lungs, and cecal tonsils of birds, previously vaccinated with the Massachusetts strain, that were showing respiratory signs. Further analysis of the IBV isolates was achieved by phylogenetic analysis comparing their deduced amino acid sequences in the hypervariable region 1 of the S1 gene with reference strains. Four unique genotype clusters containing isolates with indigenous genotypes were observed. One isolate was found to be the Connecticut genotype and three isolates were found to be the Massachusetts genotype.  相似文献   

11.
Infectious bronchitis (IB) is an economically important viral disease with worldwide distribution. Every country with an intensive poultry industry has infectious bronchitis virus (IBV). The virus rapidly spreads from bird to bird through horizontal transmission by aerosol or ingestion. Sentinel bird studies were carried out in southern Ontario and IBV has been isolated from layer flocks. Genetic analysis of the S1 region of the strains showed that they were not vaccine related. The pathogenicity of selected Ontario variants of IBV isolates was studied and the subsequent work was to determine the degree of protection against field isolates provided by a commonly used vaccine MILDVAC-Ma5 in Ontario. The protection was evaluated by challenging immunized chickens with the respiratory (IBV-ON1) and nephropathogenic (IBV-ON4) viruses. The mean vaccine efficacy for IBV-ON1 was 66.7% indicating that a Massachusetts serotype vaccine would provide some protection against IBV field isolates.  相似文献   

12.
Yu L  Wang Z  Jiang Y  Low S  Kwang J 《Avian diseases》2001,45(1):201-209
In order to trace the origin and evolution of avian infectious bronchitis virus (IBV) isolates in China and Southeast Asia, genomic sequencing was used for molecular characterization of 24 IBV isolates and two reference strains in comparison with the published sequences. The 5' region of the S1 genes, containing hypervariable regions I and II, and 3' region of the nucleocapsid genes, containing cytotoxic T lymphocyte epitopes, were used to construct phylogenetic trees for analysis. The results showed that the 24 isolates could be divided into three distinct groups, that is, American, Asian, and European. Some isolates formed a distinct Asian phylogenetic group, suggesting that IBV has existed for some time in Asia. Our results also showed that in vivo recombination of IBV may have occurred at a rather high frequency, contributing to the diversity of these IBV isolates. Importantly, recombination events have probably occurred between vaccine strains and field strains in the natural condition.  相似文献   

13.
14.
Ma H  Shao Y  Sun C  Han Z  Liu X  Guo H  Liu X  Kong X  Liu S 《Avian diseases》2012,56(1):15-28
Fifty-six isolates of avian infectious bronchitis virus (IBV) were obtained from different field outbreaks in China in 2010, and they were genotyped by comparison with 19 reference strains in the present study. The results showed that LX4-type isolates are still the predominant IBVs circulating in chicken flocks in China, and these isolates could be grouped further into two clusters. Viruses in each cluster had favored amino acid residues at different positions in the S1 subunit of the spike protein. In addition, a recombination event was observed to have occurred between LX4- and tl/CH/LDT3/03I-type strains, which contributed to the emergence of a new strain. The most important finding of the study is the isolation and identification of Taiwan II-type (TW II-type) strains of IBV in mainland China in recent years. The genome of TW II-type IBV strains isolated in mainland China has experienced mutations and deletions, as demonstrated by comparison of the entire genome sequence with those of IBV strains isolated in Taiwan. Pathogenicity testing and sequence analysis of the 3' terminal untranslated region revealed that TW II-type IBV strains isolated in mainland China have a close relationship with the embryo-passaged, attenuated TW2296/95.  相似文献   

15.
Infectious bronchitis virus (IBV) is the causative agent of avian infectious bronchitis, which is characterized by respiratory, reproductive, and renal signs. However, the role of IBV as an enteric pathogen in still controversial. In Brazil, antigenic groups of IBV divergent from the Massachusetts serotype used for vaccination schedules in that country have already been demonstrated. The present study aimed to assess the different genotypes of IBV in Brazilian commercial poultry flocks by partial sequencing of the S1 amino-terminus coding region using enteric contents as samples and examine their relationship with the vaccine serotype currently in use. Samples of enteric contents were taken as pools of five birds from each of 18 poultry farms (17 broiler and one laying farm) from five Brazilian states between 2002 and 2006. Birds were presenting watery diarrhea and poor general condition but were without respiratory, renal, or reproductive signs. Conventional antibacterial and anticoccidial therapies were unsuccessful and, furthermore, all samples proved negative for rotavirus, reovirus, and astrovirus. Eleven IBV samples were isolated in embryonated eggs and resulted in S1 sequences. Phylogenetic analysis showed that these segregated into an exclusive cluster, close to serotype D274, but distant from Massachusetts. Mean amino acid identity amongst these Brazilian strains was 94.07%; amongst these and serotypes D274, 4/91, and Massachusetts, mean amino acid identity was 77.17%, 69.94%, and 68.93%, respectively. In conclusion, the presence of genotype variant strains of IBV in Brazilian poultry flocks has been demonstrated and might be the reason for the unsuccessful control of IBV in Brazil. Furthermore, these results also strengthen the implications of IBV in enteric diseases of poultry.  相似文献   

16.
Thirteen field isolates of infectious bronchitis virus (IBV) were isolated from broiler flocks in Thailand between January and June 2008. The 878-bp of the S1 gene covering a hypervariable region was amplified and sequenced. Phylogenetic analysis based on that region revealed that these viruses were separated into two groups (I and II). IBV isolates in group I were not related to other IBV strains published in the GenBank database. Group 1 nucleotide sequence identities were less than 85% and amino acid sequence identities less than 84% in common with IBVs published in the GenBank database. This group likely represents the strains indigenous to Thailand. The isolates in group II showed a close relationship with Chinese IBVs. They had nucleotide sequence identities of 97-98% and amino acid sequence identities 96-98% in common with Chinese IBVs (strain A2, SH and QXIBV). This finding indicated that the recent Thai IBVs evolved separately and at least two groups of viruses are circulating in Thailand.  相似文献   

17.
It is essential to understand the latest situation regarding avian coronaviruses (ACoVs), commonly referred to as the well-known avian infectious bronchitis virus (IBV), given that new and diverse types of IBV are continually being identified worldwide, particularly ones that are isolated from commercial poultry and associated with a wide range of disease conditions. The existing IBVs continue to evolve in various geographic areas in Asia, which results in the recombination and co-circulation between IBV types. This makes it increasingly difficult to prevent and control IBV infections, despite routine vaccination. Some ACoVs have also been identified in other avian species and they may pose a threat of cross-transmission to commercial sectors. The present review provides an overview of IBV circulation and the dynamic emergence of new variants found throughout Asia via the recombination of IBV strains. In addition to commercial poultry, backyard poultry and free-ranging birds may serve as a ‘hub’ for ACoV transmission within a particular area. These birds may be capable of spreading viruses, either to areas of close proximity, or to remote places via migration and trade.  相似文献   

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20.
利用设计的1对特异性引物,通过RT-PCR方法扩增出4株鸡传染性支气管炎病毒(IBV)安徽地方分离株膜蛋白M基因全长片段并进行了克隆测序。将各IBV安徽地方分离株与GenBank中注册的一些毒株M基因核苷酸序列及推导的氨基酸序列进行比较和系统进化关系分析,发现毒株间核苷酸序列同源性为88.5%~100%,其相应的氨基酸序列同源性为90.3%~100%;不同毒株间存着重组、缺失、插入及点突变等变异,从ATG至第140 bp区段的核苷酸序列变异频率最高;4株分离毒株属于同一个进化群的2个不同进化亚群,与我国常用疫苗毒株H120、M41和W 93不属同一个进化亚群。  相似文献   

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