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A comprehensive analysis of reassortment in influenza A virus

机译:甲型流感病毒重排的综合分析

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Genetic reassortment plays a vital role in the evolution of the influenza virus and has historically been linked with the emergence of pandemic strains. Reassortment is believed to occur when a single host - typically swine - is simultaneously infected with multiple influenza strains. The reassorted viral strains with novel gene combinations tend to easily evade the immune system in other host species, satisfying the basic requirements of a virus with pandemic potential. Therefore, it is vital to continuously monitor the genetic content of circulating influenza strains and keep an eye out for new reassortants. We present a new approach to identify reassortants from large data sets of influenza whole genome nucleotide sequences and report the results of the first ever comprehensive search for reassortants of all published influenza A genomic data. 35 of the 52 well supported candidate reassortants we found are reported here for the first time while our analysis method offers new insight that enables us to draw a more detailed picture of the origin of some of the previously reported reassortants. A disproportionately high number (13/52) of the candidate reassortants found were the result of the introduction of novel hemagglutinin and/or neuraminidase genes into a previously circulating virus. The method described in this paper may contribute towards automating the task of routinely searching for reassortants among newly sequenced strains.
机译:基因重排在流感病毒的进化中起着至关重要的作用,并且历史上与大流行毒株的出现有关。据信,当单个宿主(通常是猪)同时感染多种流感病毒株时,会发生重组。具有新基因组合的重组病毒株易于逃避其他宿主物种的免疫系统,满足具有大流行潜力的病毒的基本要求。因此,至关重要的是不断监测流行的流感病毒株的遗传含量,并密切注意新的重配体。我们提供了一种从流感全基因组核苷酸序列的大型数据集中识别重配体的新方法,并报告了首次全面搜索所有已发布的A型流感基因组数据的重配体的结果。我们在这里首次报告了52个得到良好支持的候选重排子中的35个,而我们的分析方法提供了新的见解,使我们能够更详细地了解一些先前报告的重排子的起源。发现的候选重配体数量过多(13/52)是将新的血凝素和/或神经氨酸酶基因引入先前流行的病毒中的结果。本文中描述的方法可能有助于自动化在新测序菌株中常规搜索重配子的任务。

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