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The Genomic Signature of Population Reconnection Following Isolation: From Theory to HIV

机译:隔离后人口重新连接的基因组特征:从理论到艾滋病毒

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摘要

Ease of worldwide travel provides increased opportunities for organisms not only to colonize new environments but also to encounter related but diverged populations. Such events of reconnection and secondary contact of previously isolated populations are widely observed at different time scales. For example, during the quaternary glaciation, sea water level fluctuations caused temporal isolation of populations, often to be followed by secondary contact. At shorter time scales, population isolation and reconnection of viruses are commonly observed, and such events are often associated with epidemics and pandemics. Here, using coalescent theory and simulations, we describe the temporal impact of population reconnection after isolation on nucleotide differences and the site frequency spectrum, as well as common summary statistics of DNA variation. We identify robust genomic signatures of population reconnection after isolation. We utilize our development to infer the recent evolutionary history of human immunodeficiency virus 1 (HIV-1) in Asia and South America, successfully retrieving the successive HIV subtype colonization events in these regions. Our analysis reveals that divergent HIV-1 subtype populations are currently admixing in these regions, suggesting that HIV-1 may be undergoing a process of homogenization, contrary to popular belief.
机译:轻松的全球旅行为有机体提供了更多的机会,使其不仅能够殖民新环境,而且还能遇到相关但分散的种群。在不同的时间尺度上,广泛观察到了先前隔离的种群的这种重新连接和二次接触的事件。例如,在第四纪冰川期,海水水位波动导致种群暂时隔离,通常随后进行二次接触。在较短的时间范围内,通常会观察到病毒的种群隔离和重新连接,并且此类事件通常与流行病和大流行有关。在这里,我们使用合并理论和模拟,描述了隔离后种群重新连接对核苷酸差异和位点频谱的时间影响,以及DNA变异的常见汇总统计数据。我们确定隔离后人口重新连接的稳健的基因组特征。我们利用我们的发展来推断人类免疫缺陷病毒1(HIV-1)在亚洲和南美的近期进化史,成功地检索了这些区域中相继的HIV亚型定植事件。我们的分析表明,目前在这些地区混杂着不同的HIV-1亚型人群,这表明HIV-1可能正处于同质化过程,这与普遍的看法相反。

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