Complete genome sequence of a novel iflavirus from wheat sawfly (Dolerus tritici)

IF 2.5 4区 医学 Q3 VIROLOGY
Jiashu Guo, Wenwen Liu, Chen Chen, Zhongtian Xu, Frederic Francis, Xifeng Wang
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Abstract

Little is known about the insect viruses in wheat sawfly, Dolerus tritici, which is an important agricultural insect feeding on wheat leaves. Here, we used RNA sequencing to identify a novel single positive-strand RNA virus from the larvae of wheat sawfly collected in northern China and then determined its complete genome sequence by rapid amplification of cDNA ends. The complete genome is 9,594 nt in length, including a polyA tail at its 3′ terminus, and it is predicted to encode a 326.3-kDa polyprotein. Phylogenetic analysis based on deduced amino acid sequences of the polyprotein revealed that this RNA virus clustered in a clade with deformed wing virus of the genus Iflavirus, family Iflaviridae. The full genome of this RNA virus shows 42.0–50.0% sequence identity with other iflaviruses. Comparisons of amino acid sequences showed that the coat protein of this RNA virus is most similar to that of slow bee paralysis virus, with 33.6% identity, suggesting that this virus is a new member in the genus Iflavirus. Thus, we have tentatively designated it as “Dolerus tritici iflavirus 1” (DtIV1). To our knowledge, this is the first report of an insect virus in wheat sawfly.

来自小麦锯蝇(Dolerus tritici)的新型伊夫拉病毒的完整基因组序列
人们对以小麦叶片为食的重要农业昆虫小麦锯蝇(Dolerus tritici)的昆虫病毒知之甚少。在此,我们利用 RNA 测序技术从中国北方采集的麦锯蝇幼虫中鉴定出一种新型单正链 RNA 病毒,然后通过快速扩增 cDNA 末端确定了其完整的基因组序列。完整的基因组全长 9,594 nt,包括其 3′末端的 polyA 尾部,预计编码 326.3 kDa 的多聚蛋白。基于多聚蛋白氨基酸序列的系统进化分析表明,该 RNA 病毒与伊夫拉病毒科伊夫拉病毒属的畸形翅病毒同属一个支系。这种 RNA 病毒的全基因组与其他伊夫拉病毒的序列同一性为 42.0-50.0%。氨基酸序列比较显示,该 RNA 病毒的衣壳蛋白与慢蜂麻痹病毒最为相似,同一性为 33.6%,这表明该病毒是伊夫拉病毒属的一个新成员。因此,我们暂时将其命名为 "Dolerus tritici iflavirus 1"(DtIV1)。据我们所知,这是首次报道在小麦锯蝇中发现昆虫病毒。
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来源期刊
Archives of Virology
Archives of Virology 医学-病毒学
CiteScore
5.10
自引率
7.40%
发文量
324
审稿时长
4.5 months
期刊介绍: Archives of Virology publishes original contributions from all branches of research on viruses, virus-like agents, and virus infections of humans, animals, plants, insects, and bacteria. Coverage spans a broad spectrum of topics, from descriptions of newly discovered viruses, to studies of virus structure, composition, and genetics, to studies of virus interactions with host cells, organisms and populations. Studies employ molecular biologic, molecular genetics, and current immunologic and epidemiologic approaches. Contents include studies on the molecular pathogenesis, pathophysiology, and genetics of virus infections in individual hosts, and studies on the molecular epidemiology of virus infections in populations. Also included are studies involving applied research such as diagnostic technology development, monoclonal antibody panel development, vaccine development, and antiviral drug development.Archives of Virology wishes to publish obituaries of recently deceased well-known virologists and leading figures in virology.
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