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从甘薯粉虱烟粉虱中鉴定出的新型双顺反子病毒基因组组织的新特征。

New features on the genomic organization of a novel dicistrovirus identified from the sweet potato whitefly Bemisia tabaci.

机构信息

Embrapa Vegetables, Brasília, Brazil.

Embrapa Vegetables, Brasília, Brazil.

出版信息

Virus Res. 2020 Oct 15;288:198112. doi: 10.1016/j.virusres.2020.198112. Epub 2020 Aug 7.

DOI:10.1016/j.virusres.2020.198112
PMID:32777388
Abstract

The whitefly Bemisia tabaci is an agricultural pest causing large economic losses worldwide. We analysed the genomic sequence of a new viral member of the family Dicistroviridae identified by high-throughput sequencing of total RNA extracted from whiteflies. The virus, tentatively named Bemisia-associated dicistrovirus 2 (BaDV-2), has a genome of 8012 nucleotides with a polyadenylated 3' end. In contrast to typical dicistroviruses, BaDV-2 has a genome containing three open reading frames (ORFs) encoding predicted proteins of 1078 (ORF1a), 481 (ORF1b) and 834 (ORF2) amino acids, which correspond to replicase A (containing helicase and cysteine protease domains), replicase B (a domain of an RNA-dependent RNA polymerase - RdRP) and capsid proteins, respectively. The 3' end of ORF1a contains a potential frameshift signal, suggesting that ORF1a and ORF1b may be expressed as a single polyprotein (replicase), corresponding to other dicistroviruses. The BaDV-2 genomic sequence shares the highest nucleotide identity (61.1 %) with Bemisia-associated dicistrovirus 1 (BaDV-1), another dicistrovirus identified from whiteflies. The full BaDV-2 replicase polyprotein clustered with aparaviruses, whereas the capsid polyprotein clustered with cripaviruses in phylogenetic analyses, as with BaDV-1. The intergenic region (IGR) between ORF1b and ORF2 is predicted to adopt a secondary structure with atypical features that resembles the dicistrovirus IGR IRES structure. Our analyses indicate that BaDV-2 is a novel dicistrovirus and that BaDV-2 together with BaDV-1 may not be appropriately grouped in any of the three currently accepted dicistrovirus genera.

摘要

烟粉虱(Bemisia tabaci)是一种农业害虫,在全球范围内造成了巨大的经济损失。我们通过高通量测序分析了从烟粉虱中提取的总 RNA 鉴定出的一种新的双顺反子病毒家族成员的基因组序列。该病毒暂定名为烟粉虱相关双顺反子病毒 2(BaDV-2),基因组全长 8012 个核苷酸,3'端为多聚腺苷酸化。与典型的双顺反子病毒不同,BaDV-2 的基因组包含三个开放阅读框(ORF),分别编码预测的 1078(ORF1a)、481(ORF1b)和 834(ORF2)个氨基酸的蛋白,分别对应于复制酶 A(包含解旋酶和半胱氨酸蛋白酶结构域)、复制酶 B(RNA 依赖性 RNA 聚合酶 - RdRP 的一个结构域)和衣壳蛋白。ORF1a 的 3'端含有一个潜在的移码信号,表明 ORF1a 和 ORF1b 可能作为一个单一的多蛋白(复制酶)表达,这与其他双顺反子病毒相对应。BaDV-2 基因组序列与另一种从粉虱中鉴定出的双顺反子病毒烟粉虱相关双顺反子病毒 1(BaDV-1)的核苷酸同一性最高(61.1%)。BaDV-2 的全长复制酶多蛋白与 aparaviruses 聚类,而衣壳多蛋白与 cripaviruses 聚类,与 BaDV-1 相同。ORF1b 和 ORF2 之间的基因间区(IGR)预测采用具有非典型特征的二级结构,类似于双顺反子病毒 IGR IRES 结构。我们的分析表明,BaDV-2 是一种新型双顺反子病毒,BaDV-2 与 BaDV-1 可能不适合归属于目前接受的三个双顺反子病毒属中的任何一个。

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Diversity of RNA viruses in agricultural insects.
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