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蜻蜓中环病毒的高全球多样性。

High global diversity of cycloviruses amongst dragonflies.

机构信息

School of Biological Sciences, University of Canterbury, Christchurch 8140, New Zealand.

School of Forestry, Northern Arizona University, Flagstaff, AZ 86011, USA.

出版信息

J Gen Virol. 2013 Aug;94(Pt 8):1827-1840. doi: 10.1099/vir.0.052654-0. Epub 2013 Apr 17.

DOI:10.1099/vir.0.052654-0
PMID:23596268
Abstract

Members of the family Circoviridae, specifically the genus Circovirus, were thought to infect only vertebrates; however, members of a sister group under the same family, the proposed genus Cyclovirus, have been detected recently in insects. In an effort to explore the diversity of cycloviruses and better understand the evolution of these novel ssDNA viruses, here we present five cycloviruses isolated from three dragonfly species (Orthetrum sabina, Xanthocnemis zealandica and Rhionaeschna multicolor) collected in Australia, New Zealand and the USA, respectively. The genomes of these five viruses share similar genome structure to other cycloviruses, with a circular ~1.7 kb genome and two major bidirectionally transcribed ORFs. The genomic sequence data gathered during this study were combined with all cyclovirus genomes available in public databases to identify conserved motifs and regulatory elements in the intergenic regions, as well as determine diversity and recombinant regions within their genomes. The genomes reported here represent four different cyclovirus species, three of which are novel. Our results confirm that cycloviruses circulate widely in winged-insect populations; in eight different cyclovirus species identified in dragonflies to date, some of these exhibit a broad geographical distribution. Recombination analysis revealed both intra- and inter-species recombination events amongst cycloviruses, including genomes recovered from disparate sources (e.g. goat meat and human faeces). Similar to other well-characterized circular ssDNA viruses, recombination may play an important role in cyclovirus evolution.

摘要

Circoviridae 科的成员,特别是 Circovirus 属,被认为仅感染脊椎动物;然而,最近在昆虫中检测到了同一科的姐妹群,即拟 Cyclovirus 属的成员。为了探索 Cyclovirus 的多样性,并更好地了解这些新型 ssDNA 病毒的进化,我们在此介绍了从澳大利亚、新西兰和美国分别采集的三种蜻蜓(Orthetrum sabina、Xanthocnemis zealandica 和 Rhionaeschna multicolor)中分离到的五种 Cyclovirus。这五种病毒的基因组与其他 Cyclovirus 具有相似的基因组结构,均为圆形约 1.7 kb 基因组和两个主要双向转录的 ORF。本研究中收集的基因组序列数据与公共数据库中可获得的所有 Cyclovirus 基因组相结合,以鉴定基因间区的保守基序和调控元件,并确定其基因组内的多样性和重组区。本报告中的基因组代表了四种不同的 Cyclovirus 物种,其中三种是新发现的。我们的研究结果证实了 Cyclovirus 在有翅昆虫种群中广泛传播;在迄今为止在蜻蜓中鉴定的八种不同的 Cyclovirus 物种中,其中一些具有广泛的地理分布。重组分析显示了 Cyclovirus 之间的种内和种间重组事件,包括从不同来源(如羊肉和人类粪便)回收的基因组。与其他特征明确的圆形 ssDNA 病毒类似,重组可能在 Cyclovirus 的进化中发挥重要作用。

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High global diversity of cycloviruses amongst dragonflies.蜻蜓中环病毒的高全球多样性。
J Gen Virol. 2013 Aug;94(Pt 8):1827-1840. doi: 10.1099/vir.0.052654-0. Epub 2013 Apr 17.
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