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属于葡萄病毒属内一个独特谱系的病毒种的进化关系。

Evolutionary relationships of virus species belonging to a distinct lineage within the Ampelovirus genus.

作者信息

Maliogka Varvara I, Dovas Chrysostomos I, Katis Nikolaos I

机构信息

Plant Pathology Laboratory, School of Agriculture, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

Virus Res. 2008 Jul;135(1):125-35. doi: 10.1016/j.virusres.2008.02.015. Epub 2008 Apr 10.

DOI:10.1016/j.virusres.2008.02.015
PMID:18403040
Abstract

A study of the evolutionary relationships of GLRaV-4,-5,-6 and -9, and two new Ampelovirus isolates (GLRaV-Pr and -De) related to grapevine leafroll disease was conducted based on molecular variability, positive selection analysis and maximum likelihood phylogenetic reconstructions. Sequences corresponding to the N-terminal HSP70h and full CP encoding genes were determined for these viruses and datasets including homologous genomic regions from different members of the Closteroviridae were analyzed. GLRaV-Pr and -De were further characterised as distinct from the other closely related species after determination of a large genomic region (4319-4358 nts). ML phylogenetic topologies for both genes established the closer phylogenetic relationships of GLRaV-4,-5,-6,-9,-Pr and -De in regard to the other ampeloviruses, revealing very low inter-species evolutionary distances for this multitudinous lineage. The HSP70h segment phylogeny and bootstrap analysis enabled the identification of species within this lineage and provides a useful taxonomic tool for the rapid demarcation of these viruses. Estimations of d(N)/d(S) using the CP and HSP70h datasets revealed that, within the Closteroviridae, these viruses are subjected to the strongest constraints against amino acid substitutions. These estimations demonstrated a distinct evolutionary trait for this lineage probably related to its particular ecological niche that involves successful adaptation to the host, transmission through vegetative propagation and lack of vectors with high transmission efficiency.

摘要

基于分子变异性、正选择分析和最大似然系统发育重建,对葡萄卷叶病毒4型、5型、6型和9型以及与葡萄卷叶病相关的两种新的葡萄病毒属分离株(葡萄卷叶相关病毒Pr和De)的进化关系进行了研究。测定了这些病毒对应于N端HSP70h和完整CP编码基因的序列,并分析了包含来自长线形病毒科不同成员同源基因组区域的数据集。在确定一个大的基因组区域(4319 - 4358个核苷酸)后,葡萄卷叶相关病毒Pr和De被进一步鉴定为与其他密切相关的物种不同。两个基因的最大似然系统发育拓扑结构确定了葡萄卷叶病毒4型、5型、6型、9型、Pr和De与其他葡萄病毒属之间更密切的系统发育关系,揭示了这个众多谱系的种间进化距离非常低。HSP70h片段系统发育和自展分析能够识别该谱系内的物种,并为这些病毒的快速划分提供了一种有用的分类工具。使用CP和HSP70h数据集对d(N)/d(S)的估计表明,在长线形病毒科中,这些病毒受到对氨基酸替换的最强限制。这些估计表明该谱系具有独特的进化特征,可能与其特定的生态位有关,包括成功适应宿主、通过营养繁殖传播以及缺乏高效传播的介体。

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