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贝叶斯合并分析揭示了GB病毒C的高分子进化速率。

Bayesian coalescent analysis reveals a high rate of molecular evolution in GB virus C.

作者信息

Romano Camila M, Zanotto Paolo M de A, Holmes Edward C

机构信息

Laboratory of Molecular Evolution and Bioinformatics, Department of Microbiology, Biomedical Sciences Institute-ICBII, University of São Paulo, São Paulo, Brazil.

出版信息

J Mol Evol. 2008 Mar;66(3):292-7. doi: 10.1007/s00239-008-9087-3. Epub 2008 Mar 5.

Abstract

GB virus C/hepatitis G (GBV-C) is an RNA virus of the family Flaviviridae. Despite replicating with an RNA-dependent RNA polymerase, some previous estimates of rates of evolutionary change in GBV-C suggest that it fixes mutations at the anomalously low rate of approximately 10(-7) nucleotide substitution per site, per year. However, these estimates were largely based on the assumption that GBV-C and its close relative GBV-A (New World monkey GB viruses) codiverged with their primate hosts over millions of years. Herein, we estimated the substitution rate of GBV-C using the largest set of dated GBV-C isolates compiled to date and a Bayesian coalescent approach that utilizes the year of sampling and so is independent of the assumption of codivergence. This revealed a rate of evolutionary change approximately four orders of magnitude higher than that estimated previously, in the range of 10(-2) to 10(-3) sub/site/year, and hence in line with those previously determined for RNA viruses in general and the Flaviviridae in particular. In addition, we tested the assumption of host-virus codivergence in GBV-A by performing a reconciliation analysis of host and virus phylogenies. Strikingly, we found no statistical evidence for host-virus codivergence in GBV-A, indicating that substitution rates in the GB viruses should not be estimated from host divergence times.

摘要

庚型肝炎病毒/GB病毒C型(GBV-C)是黄病毒科的一种RNA病毒。尽管它通过依赖RNA的RNA聚合酶进行复制,但之前对GBV-C进化变化速率的一些估计表明,它以每年约10^(-7)个核苷酸替换/位点的异常低速率固定突变。然而,这些估计很大程度上基于GBV-C及其近亲GBV-A(新大陆猴GB病毒)与它们的灵长类宿主在数百万年中共同分化的假设。在此,我们使用迄今汇编的最大一组有时间标注的GBV-C分离株以及一种利用采样年份且独立于共同分化假设的贝叶斯合并方法,估计了GBV-C的替换率。这揭示了进化变化速率比之前估计的高约四个数量级,在每年10^(-2)至10^(-3)个替换/位点的范围内,因此与之前一般为RNA病毒特别是黄病毒科所确定的速率一致。此外,我们通过对宿主和病毒系统发育进行调和分析,检验了GBV-A中宿主 - 病毒共同分化的假设。令人惊讶的是,我们没有发现GBV-A中宿主 - 病毒共同分化的统计证据,这表明不应从宿主分化时间来估计GB病毒的替换率。

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