从接种疫苗的肉鸡中再分离的禽传染性支气管炎疫苗病毒的进化

Q3 Veterinary
A. Boudaoud, A. Barberis
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引用次数: 0

摘要

传染性支气管炎病毒(ibv)的遗传和表型多样性是禽传染性支气管炎流行病学的一个关键因素。实际上,所有的研究都集中在野生病毒的进化上。减毒活疫苗毒株值得特别注意。采用定量反转录聚合酶链反应(qRT-PCR)方法,从H120疫苗接种后出现呼吸体征的鸡标本中检测到2株IBV 2T/17和16T/17,对其S1基因进行了遗传分析。采用经典Trizol法提取总RNA。在测序之前,使用特定的引物对在终点RT-PCR中扩增整个S1基因。将获得的序列与疫苗株和参考病毒的序列进行比较,最后进行系统发育分析。这两株分离株与H120疫苗株(100%自举)形成的单系群证明是疫苗株。此外,它们与该疫苗株的2T/17和16T/17分别具有99.60%和99.47%的核苷酸(nt)。序列比对显示,两株菌株在高变区C56T和T39G外各有一个非同义的nt替换,导致菌株2T/17和16T/17的两个氨基酸(aa)替换:Alv19Val和Cys13Trp。菌株2T/17的第二个高变区在345位和347位出现了2个nt的取代,导致一个aa取代Lys116Thr。对于16T/17菌株,它包含两个非同义的nt替换(T353G和T380G),导致两个aa替换:Val118Gly和Met127Arg。色谱分析显示,在观察到nt变化的所有位置都有小峰和主峰。与小峰相关的核苷酸与在相同位置的H120疫苗株序列中观察到的核苷酸相匹配,表明亚群体选择。只有替换T353G导致突变,在该位置没有小峰。IBV减毒活疫苗中包含的病毒亚群很容易在体内被选择,并出现持久的致病型,并恢复到毒力。这使人们注意到监测IBV疫苗株演变的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolution of avian infectious bronchitis vaccine viruses reisolated from vaccinated broilers
Genetic and phenotypic diversity among infectious bronchitis virus (IBVs) is a key element of the epidemiology of avian infectious bronchitis. Virtually, all studies have focused on the evolution of wild viruses. Live-attenuated vaccine strains deserve a special attention. Two strains of IBV, 2T/17 and 16T/17, detected by quantitative reverse transcription polymerase chain reaction (qRT-PCR) in samples from H120 vaccinated chickens showing respiratory signs, were genetically analysed targeting the S1 gene. The total RNA was extracted by the classical Trizol method. The whole S1 gene was amplified in an end-point RT-PCR using a specific primer pair, before being sequenced. The obtained sequences were compared to those of vaccine strains and reference viruses and finally subjected to a phylogenetic analysis. The two isolates turned out to be vaccine strains as evidenced by the monophyletic cluster they formed with the H120 vaccine strain (100% bootstrap). Also, they shared with this vaccine strain 99.60% and 99.47% of nucleotides (nt) for strain 2T/17 and 16T/17 respectively. The sequence alignment revealed, for each of the two strains, one non-synonymous nt substitution outside the hypervariable regions: C56T and T39G leading to two amino acid (aa) substitutions: Alv19Val and Cys13Trp, respectively for the strain 2T/17 and 16T/17. The second hypervariable region of strain 2T/17 displayed 2 nt substitutions at positions 345 and 347, resulting in an aa substitution Lys116Thr. As for 16T/17 strain, it harboured two non-synonymous nt substitutions (T353G and T380G), leading to two aa substitutions: Val118Gly and Met127Arg. The chromatogram analysis revealed minor and major peaks at all positions where nt changes were observed. Nucleotides associated with minor peaks matched with those observed in the sequence of the H120 vaccine strain at the same positions, indicating subpopulation selection. Only the substitution T353G results in a mutation as evidenced by the absence of minor peak at this position. Viral subpopulations contained in IBV live-attenuated vaccines are susceptible to be in vivo selected and emerge as persistent pathotype with reversion to virulence. This draws attention to the need of monitoring the evolution of IBV vaccine strains.
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来源期刊
BULGARIAN JOURNAL OF VETERINARY MEDICINE
BULGARIAN JOURNAL OF VETERINARY MEDICINE Veterinary-Veterinary (all)
CiteScore
1.00
自引率
0.00%
发文量
26
审稿时长
15 weeks
期刊介绍: BJVM is a no-fee open-access scientific quarterly journal which covers topics related to both fundamental and applied aspects of veterinary medicine and to closely connected subjects with it. The journal publishes original papers, short communications and reviews.
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