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首页> 外文期刊>Molecular phylogenetics and evolution >Birth-and-death evolution of protein-coding regions and concerted evolution of non-coding regions in the multi-component genomes of nanoviruses
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Birth-and-death evolution of protein-coding regions and concerted evolution of non-coding regions in the multi-component genomes of nanoviruses

机译:纳米病毒多组分基因组中蛋白质编码区的生死演化和非编码区的协调进化

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摘要

Genomes of the four plant viruses of the genus Nanovirus consist of multiple circular single-stranded DNA components, each of which encodes a single protein. Protein phylogenies supported the hypothesis that faba bean necrotic yellows virus (FBNYV) and milk vetch disease virus (MDV) are sister taxa; that subterranean clover stunt virus (SCSV) branched next; and that banana bunchy top virus (BBTV) is an outgroup to the three other species. The phylogeny of replication (Rep) proteins indicate that this small viral multi-gene family has evolved by a process of duplication and subsequent loss of Rep-encoding genome components, analogous to the "birth-and-death" process of evolution which has been described in eukaryotic multi-gene families. By contrast, repeated recombinational events between components were found to have homogenized the non-coding portions of several components encoding unrelated components. For example, as result of recent recombination a portion of the non-coding region is virtually identical among SCSV components 1, 3, 4, 5, and 7. Thus, there is a process of concerted evolution of non-coding regions of Nanovirus genome components, which raises the possibility that certain non-coding regions are subject to functional constraint.
机译:纳米病毒属的四种植物病毒的基因组由多个环状单链DNA成分组成,每个成分编码一个蛋白质。蛋白质系统发育学支持以下假设:蚕豆坏死性黄病毒(FBNYV)和紫disease病病毒(MDV)是姐妹类群;接下来是地下三叶草特技病毒(SCSV);香蕉束顶病毒(BBTV)是其他三个物种的绝种。复制(Rep)蛋白的系统发育表明,这个小的病毒多基因家族是通过复制和随后丢失Rep编码基因组成分的过程进化而来的,类似于进化过程中的“生与死”过程。在真核生物多基因家族中有描述。相比之下,发现组件之间的重复重组事件已经使几个编码无关组件的组件的非编码部分变得同质。例如,由于最近的重组,SCSV组件1、3、4、5和7中一部分非编码区实际上是相同的。因此,存在纳米病毒基因组非编码区协同进化的过程。组件,这增加了某些非编码区域受到功能限制的可能性。

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