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Evolutionary Dynamics of MERS-CoV: Potential Recombination, Positive Selection and Transmission

机译:MERS-CoV的进化动力学:潜在的重组,正选择和传递

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Middle East respiratory syndrome coronavirus (MERS-CoV) belongs to beta group of coronavirus and was first discovered in 2012. MERS-CoV can infect multiple host species and cause severe diseases in human. We conducted a series of phylogenetic and bioinformatic analyses to study the evolution dynamics of MERS-CoV among different host species with genomic data. Our analyses show: 1) 28 potential recombinant sequences were detected and they can be classified into seven potential recombinant types; 2) The spike (S) protein of MERS-CoV was under strong positive selection when MERS-CoV transmitted from their natural host to human; 3) Six out of nine positive selection sites detected in spike (S) protein are located in its receptor-binding domain which is in direct contact with host cells; 4) MERS-CoV frequently transmitted back and forth between human and camel after it had acquired the human-camel infection capability. Together, these results suggest that potential recombination events might have happened frequently during MERS-CoV's evolutionary history and the positive selection sites in MERS-CoV's S protein might enable it to infect human.
机译:中东呼吸综合征冠状病毒(MERS-CoV)属于冠状病毒的β组,于2012年首次发现。MERS-CoV可以感染多种宿主物种并引起人类严重疾病。我们进行了一系列的系统发育和生物信息学分析,以利用基因组数据研究MERS-CoV在不同宿主物种之间的进化动力学。我们的分析表明:1)检测到28个潜在的重组序列,可以将它们分为7个潜在的重组类型。 2)当MERS-CoV从其天然宿主传播给人类时,MERS-CoV的突触(S)蛋白处于强烈的正选择状态; 3)在刺突蛋白中检测到的九个阳性选择位点中有六个位于与宿主细胞直接接触的受体结合域。 4)MERS-CoV获得骆驼感染能力后,经常在人与骆驼之间来回传播。总之,这些结果表明,潜在的重组事件可能在MERS-CoV的进化历史中频繁发生,而MERS-CoV的S蛋白中的阳性选择位点可能使其感染人类。

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