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Giant viruses, giant chimeras: The multiple evolutionary histories of Mimivirus genes

机译:巨型病毒,大型嵌合体:Mimivirus基因的多种进化史

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Background Although capable to evolve, viruses are generally considered non-living entities because they are acellular and devoid of metabolism. However, the recent publication of the genome sequence of the Mimivirus, a giant virus that parasitises amoebas, strengthened the idea that viruses should be included in the tree of life. In fact, the first phylogenetic analyses of a few Mimivirus genes that are also present in cellular lineages suggested that it could define an independent branch in the tree of life in addition to the three domains, Bacteria, Archaea and Eucarya. Results We tested this hypothesis by carrying out detailed phylogenetic analyses for all the conserved Mimivirus genes that have homologues in cellular organisms. We found no evidence supporting Mimivirus as a new branch in the tree of life. On the contrary, our phylogenetic trees strongly suggest that Mimivirus acquired most of these genes by horizontal gene transfer (HGT) either from its amoebal hosts or from bacteria that parasitise the same hosts. The detection of HGT events involving different eukaryotic donors suggests that the spectrum of hosts of Mimivirus may be larger than currently known. Conclusion The large number of genes acquired by Mimivirus from eukaryotic and bacterial sources suggests that HGT has been an important process in the evolution of its genome and the adaptation to parasitism.
机译:背景技术尽管病毒能够进化,但由于它们是无细胞的并且没有新陈代谢,因此通常被认为是非生命实体。但是,最近发表的米米病毒基因组序列(一种寄生于变形虫的巨大病毒)加强了将病毒包括在生命树中的想法。实际上,对在细胞谱系中也存在的一些拟南芥病毒基因的首次系统发育分析表明,除细菌,古细菌和真核生物这三个域外,它还可以在生命树中定义一个独立的分支。结果我们通过对所有在细胞有机体中具有同源性的保守的拟南芥病毒基因进行详细的系统进化分析,检验了这一假设。我们发现没有证据支持模仿病毒作为生命树中的新分支。相反,我们的系统发育树强烈暗示,拟南芥病毒通过水平基因转移(HGT)从其变形虫宿主或寄生于同一宿主的细菌中获得了大多数这些基因。对涉及不同真核生物供体的HGT事件的检测表明,拟病毒的宿主谱可能比目前已知的大。结论Mimivirus从真核生物和细菌来源获得了大量基因,这表明HGT是其基因组进化和对寄生虫适应的重要过程。

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