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基因变异和重组在 Aichi 病毒中的作用。

Genetic variation and recombination in Aichi virus.

机构信息

Chumakov Institute of Poliomyelitis and Viral Encephalitides, Moscow, Russia.

Institute of Virology, University of Bonn Medical Centre, Bonn, Germany.

出版信息

J Gen Virol. 2012 Jun;93(Pt 6):1226-1235. doi: 10.1099/vir.0.040311-0. Epub 2012 Feb 29.

DOI:10.1099/vir.0.040311-0
PMID:22377582
Abstract

Aichi virus (AiV), a member of the genus Kobuvirus in the family Picornaviridae, causes gastroenteritis in humans. It was noted that AiV differs from other picornaviruses in its unusually high C content and a very high degree of genome-ordered RNA secondary structures. However, the genetic variability and mutational restrictions on a full-genome scale have not been studied. In addition to the available five complete AiV genomes, we determined here another five complete coding sequences of AiV sampled in Germany, 2004. Distinctive AiV genetic features included a low incidence of recombination along the genome without obvious hotspots or spared regions and very low rates of synonymous and non-synonymous variation, supporting an absence of AiV serotypes. In addition, the absence of recombination between AiV genotypes A and B suggested the existence of reproductive isolation between taxonomic units below the species level. In contrast to most other picornaviruses, AiV genomes strongly avoided the UpA dinucleotide, while there was no obvious selection against the CpG dinucleotide. AiV genomes also appeared to contain a codon usage bias (CUB) apparent as an effective number of codons of 39.5, which was amongst the most extreme among RNA viruses. A set of sequence scrambling algorithms was developed to determine the origin of CUB in AiV. While in most picornaviruses the genomic dinucleotide content contributed significantly to CUB, in AiV its extreme nucleotide content, i.e. 57 % third codon position C, was the main driving force behind the apparent CUB.

摘要

爱知病毒(AiV)是小 RNA 病毒科肠道病毒属的成员,可引起人类胃肠炎。研究表明,AiV 与其他小 RNA 病毒在其异常高的 C 含量和非常高的基因组有序 RNA 二级结构方面存在差异。然而,全基因组规模的遗传变异性和突变限制尚未得到研究。除了现有的五个完整的 AiV 基因组外,我们还在这里确定了 2004 年在德国采样的另外五个完整的 AiV 编码序列。AiV 的独特遗传特征包括基因组中没有明显热点或免区的重组发生率低,以及同义和非同义变异率非常低,这支持了 AiV 血清型的不存在。此外,AiV 基因型 A 和 B 之间没有重组,这表明在种以下分类单元之间存在生殖隔离。与大多数其他小 RNA 病毒相反,AiV 基因组强烈避免使用 UpA 二核苷酸,而 CpG 二核苷酸则没有明显的选择作用。AiV 基因组似乎也包含一种密码子使用偏性(CUB),有效密码子数为 39.5,这在 RNA 病毒中是最极端的。开发了一组序列混淆算法来确定 AiV 中 CUB 的起源。虽然在大多数小 RNA 病毒中,基因组二核苷酸含量对 CUB 有重要贡献,但在 AiV 中,其极端的核苷酸含量,即第三位密码子位置 57%的 C,是明显的 CUB 的主要驱动力。

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