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Pan-vertebrate comparative genomics unmasks retrovirus macroevolution.

机译:泛脊椎动物比较基因组学揭示逆转录病毒宏观进化。

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摘要

Although extensive research has demonstrated host-retrovirus microevolutionary dynamics, it has been difficult to gain a deeper understanding of the macroevolutionary patterns of host-retrovirus interactions. Here we use recent technological advances to infer broad patterns in retroviral diversity, evolution, and host-virus relationships by using a large-scale phylogenomic approach using endogenous retroviruses (ERVs). Retroviruses insert a proviral DNA copy into the host cell genome to produce new viruses. ERVs are provirus insertions in germline cells that are inherited down the host lineage and consequently present a record of past host-viral associations. By mining ERVs from 65 host genomes sampled across vertebrate diversity, we uncover a great diversity of ERVs, indicating that retroviral sequences are much more prevalent and widespread across vertebrates than previously appreciated. The majority of ERV clades that we recover do not contain known retroviruses, implying either that retroviral lineages are highly transient over evolutionary time or that a considerable number of retroviruses remain to be identified. By characterizing the distribution of ERVs, we show that no major vertebrate lineage has escaped retroviral activity and that retroviruses are extreme host generalists, having an unprecedented ability for rampant host switching among distantly related vertebrates. In addition, we examine whether the distribution of ERVs can be explained by host factors predicted to influence viral transmission and find that internal fertilization has a pronounced effect on retroviral colonization of host genomes. By capturing the mode and pattern of retroviral evolution and contrasting ERV diversity with known retroviral diversity, our study provides a cohesive framework to understand host-virus coevolution better.
机译:尽管广泛的研究已经证明了宿主-逆转录病毒的微观进化动力学,但是很难深入理解宿主-逆转录病毒相互作用的宏观进化模式。在这里,我们使用最新的技术进步,通过使用内源性逆转录病毒(ERV)的大规模系统生物学方法,推断逆转录病毒多样性,进化和宿主病毒关系的广泛模式。逆转录病毒将前病毒DNA拷贝插入宿主细胞基因组以产生新病毒。 ERV是原病毒在种系细胞中的插入,是沿宿主谱系遗传的,因此提供了过去宿主-病毒关联的记录。通过从整个脊椎动物多样性中采样的65个宿主基因组中挖掘ERV,我们发现了很大的ERV多样性,这表明逆转录病毒序列在脊椎动物中的流行程度和传播范围比以前认识的要多。我们回收的大多数ERV进化枝不包含已知的逆转录病毒,这意味着逆转录病毒谱系在进化时间内是高度瞬时的,或者仍有大量逆转录病毒有待鉴定。通过表征ERVs的分布,我们表明没有主要的脊椎动物谱系逃脱了逆转录病毒的活性,逆转录病毒是极端的宿主通才,具有在远距离相关的脊椎动物之间猖ramp的宿主切换的空前能力。此外,我们检查了ERV的分布是否可以通过预测影响病毒传播的宿主因素来解释,并且发现内部受精对宿主基因组的逆转录病毒定殖有显着影响。通过捕获逆转录病毒进化的模式和模式,并将ERV多样性与已知的逆转录病毒多样性进行对比,我们的研究提供了一个有凝聚力的框架,可以更好地了解宿主病毒的协同进化。

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