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Complete genome sequence and recombination analysis of infectious bronchitis virus attenuated vaccine strain H120

机译:传染性支气管炎病毒减毒疫苗株H120的完整基因组序列和重组分析

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摘要

The strain H120 of infectious bronchitis virus (IBV) is one of the earliest and representative attenuated live Infectious Bronchitis vaccine strains. To investigate the genomic feature of H120 and further understand its role in the epidemiology of IBV, complete genome of H120 was sequenced and compared with sequences of other IBV strains by phylogenetic and recombination analysis. The complete genome of H120 is 27631 nucleotides in length and has a similar structure with that of Beaudette strain. We found that strain ZJ971 is probably a virulence revertant of H120. Nine amino acids changes and a three-nucleotide deletion were identified in ZJ971. Besides, potential recombination events associated with H120 were found in five IBV strains including H52, KQ6, SAIBK, Ark DPI 11, and Ark DPI 101. This study suggested that H120 might have contributed to the emergence of new IBV variants through both virulence reversion and recombination.
机译:传染性支气管炎病毒(IBV)的H120株是最早的和代表性的减毒活感染性支气管炎疫苗株之一。为了研究H120的基因组特征并进一步了解其在IBV流行病学中的作用,对H120的完整基因组进行了测序,并通过系统进化和重组分析将其与其他IBV株的序列进行了比较。 H120的完整基因组的长度为27631个核苷酸,并且具有与博代特菌株相似的结构。我们发现菌株ZJ971可能是H120的毒力回复株。 ZJ971中鉴定出9个氨基酸变化和3个核苷酸缺失。此外,在包括H52,KQ6,SAIBK,Ark DPI 11和Ark DPI 101在内的5种IBV株中发现了与H120相关的潜在重组事件。这项研究表明,H120可能通过毒性逆转和逆转而促进了新的IBV变异体的出现。重组。

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