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香蕉束顶病毒内源序列的进化:我们能从香蕉(Musa sp.)进化中学到什么?

Evolution of endogenous sequences of banana streak virus: what can we learn from banana (Musa sp.) evolution?

机构信息

CIRAD, UMR BGPI, F-34398 Montpellier Cedex 5, France.

出版信息

J Virol. 2010 Jul;84(14):7346-59. doi: 10.1128/JVI.00401-10. Epub 2010 Apr 28.

DOI:10.1128/JVI.00401-10
PMID:20427523
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2898222/
Abstract

Endogenous plant pararetroviruses (EPRVs) are viral sequences of the family Caulimoviridae integrated into the nuclear genome of numerous plant species. The ability of some endogenous sequences of Banana streak viruses (eBSVs) in the genome of banana (Musa sp.) to induce infections just like the virus itself was recently demonstrated (P. Gayral et al., J. Virol. 83:6697-6710, 2008). Although eBSVs probably arose from accidental events, infectious eBSVs constitute an extreme case of parasitism, as well as a newly described strategy for vertical virus transmission in plants. We investigated the early evolutionary stages of infectious eBSV for two distinct BSV species-GF (BSGFV) and Imové (BSImV)-through the study of their distribution, insertion polymorphism, and structure evolution among selected banana genotypes representative of the diversity of 60 wild Musa species and genotypes. To do so, the historical frame of host evolution was analyzed by inferring banana phylogeny from two chloroplast regions-matK and trnL-trnF-as well as from the nuclear genome, using 19 microsatellite loci. We demonstrated that both BSV species integrated recently in banana evolution, circa 640,000 years ago. The two infectious eBSVs were subjected to different selective pressures and showed distinct levels of rearrangement within their final structure. In addition, the molecular phylogenies of integrated and nonintegrated BSVs enabled us to establish the phylogenetic origins of eBSGFV and eBSImV.

摘要

内源性植物拟反转录病毒(EPRV)是整合到许多植物物种核基因组中的 Caulimoviridae 科病毒序列。最近证明,香蕉条纹病毒(BSV)基因组中的一些内源性序列(eBSVs)能够像病毒本身一样引起感染(P. Gayral 等人,J. Virol. 83:6697-6710, 2008)。尽管 eBSVs 可能是偶然事件产生的,但感染性 eBSVs 构成了一种极端的寄生现象,以及植物中垂直病毒传播的新描述策略。我们通过研究它们在代表 60 种野生 Musa 物种和基因型多样性的选定香蕉基因型中的分布、插入多态性和结构进化,研究了两种不同的 BSV 物种-GF(BSGFV)和 Imové(BSImV)的感染性 eBSV 的早期进化阶段。为此,通过从两个叶绿体区域(matK 和 trnL-trnF)以及核基因组推断香蕉系统发育,使用 19 个微卫星标记,分析了宿主进化的历史框架。我们证明,这两种 BSV 物种都在香蕉进化中最近整合,大约在 640,000 年前。这两种感染性 eBSVs 受到不同的选择压力,并且在其最终结构内显示出不同程度的重排。此外,整合和非整合 BSV 的分子系统发育使我们能够确定 eBSGFV 和 eBSImV 的系统发育起源。

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