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水痘-带状疱疹病毒进化的全基因组系统发育方法:遗传分化与重组证据

Complete-genome phylogenetic approach to varicella-zoster virus evolution: genetic divergence and evidence for recombination.

作者信息

Norberg Peter, Liljeqvist Jan-Ake, Bergström Tomas, Sammons Scott, Schmid D Scott, Loparev Vladimir N

机构信息

Department of Clinical Virology, Göteborg University, Guldhedsgatan 10b, 413 46 Göteborg, Sweden.

出版信息

J Virol. 2006 Oct;80(19):9569-76. doi: 10.1128/JVI.00835-06.

Abstract

Recent studies of varicella-zoster virus (VZV) DNA sequence variation, involving large numbers of globally distributed clinical isolates, suggest that this virus has diverged into at least three distinct genotypes designated European (E), Japanese (J), and mosaic (M). In the present study, we determined and analyzed the complete genomic sequences of two M VZV strains and compared them to the sequences of three E strains and two J strains retrieved from GenBank (including the Oka vaccine preparation, V-Oka). Except for a few polymorphic tandem repeat regions, the whole genome, representing approximately 125,000 nucleotides, is highly conserved, presenting a genetic similarity between the E and J genotypes of approximately 99.85%. These analyses revealed that VZV strains distinctly segregate into at least four genotypes (E, J, M1, and M2) in phylogenetic trees supported by high bootstrap values. Separate analyses of informative sites revealed that the tree topology was dependent on the region of the VZV genome used to determine the phylogeny; collectively, these results indicate the observed strain variation is likely to have resulted, at least in part, from interstrain recombination. Recombination analyses suggest that strains belonging to the M1 and M2 genotypes are mosaic recombinant strains that originated from ancestral isolates belonging to the E and J genotypes through recombination on multiple occasions. Furthermore, evidence of more recent recombination events between M1 and M2 strains is present in six segments of the VZV genome. As such, interstrain recombination in dually infected cells seems to figure prominently in the evolutionary history of VZV, a feature it has in common with other herpesviruses. In addition, we report here six novel genomic targets located in open reading frames 51 to 58 suitable for genotyping of clinical VZV isolates.

摘要

近期对水痘带状疱疹病毒(VZV)DNA序列变异的研究涉及大量全球分布的临床分离株,结果表明该病毒已分化为至少三种不同的基因型,分别命名为欧洲型(E)、日本型(J)和嵌合型(M)。在本研究中,我们测定并分析了两株M型VZV毒株的完整基因组序列,并将其与从GenBank中检索到的三株E型毒株和两株J型毒株(包括Oka疫苗株V - Oka)的序列进行了比较。除了少数多态性串联重复区域外,代表约125,000个核苷酸的整个基因组高度保守,E型和J型基因型之间的遗传相似性约为99.85%。这些分析表明,在具有高自展值支持的系统发育树中,VZV毒株明显分为至少四种基因型(E、J、M1和M2)。对信息位点的单独分析表明,树的拓扑结构取决于用于确定系统发育的VZV基因组区域;总体而言,这些结果表明观察到的毒株变异至少部分可能是由株间重组导致的。重组分析表明,属于M1和M2基因型的毒株是嵌合重组毒株,它们通过多次重组起源于属于E型和J型基因型的祖先分离株。此外,在VZV基因组的六个片段中存在M1和M2毒株之间更近的重组事件的证据。因此,双重感染细胞中的株间重组似乎在VZV的进化历史中起重要作用,这是它与其他疱疹病毒共有的一个特征。此外,我们在此报告位于开放阅读框51至58中的六个新的基因组靶点,适用于临床VZV分离株的基因分型。

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