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三种类似微小 RNA 病毒与叶螨(蜱螨目:叶螨科)相关。

Three picorna-like viruses found associated with the spider mite, Tetranychus truncatus (Acari: Tetranychidae).

机构信息

Laboratory of Insect Virology, Cell Biology Department, University of Brasilia, Brasilia, DF 70910-900, Brazil.

Laboratory of Insect Virology, Cell Biology Department, University of Brasilia, Brasilia, DF 70910-900, Brazil.

出版信息

J Invertebr Pathol. 2024 Sep;206:108169. doi: 10.1016/j.jip.2024.108169. Epub 2024 Jul 15.

Abstract

Herbivorous arthropods, such as mites and insects, host a variety of microorganisms that significantly influence their ecology and evolution. While insect viruses have been extensively studied, our understanding of the diversity and composition of mite viromes and the interactions with mite hosts remains limited. The Asian spider mite, Tetranychus truncatus Ehara (Acari: Tetranychidae), a major agricultural pest, has not yet been reported to harbor any viruses. Here, using publicly available RNA-Seq data, we identified and characterized three picorna-like viruses associated with T. truncatus: Tetranychus truncatus-associated iflavirus 1 (TtAIV-1), Tetranychus truncatus-associated picorna-like virus 1 (TtAV-1), and Tetranychus truncatus-associated picorna-like virus 2 (TtAV-2). TtAIV-1 has a typical Iflaviridae genome structure with a single ORF, representing the first iflavirus associated with the Tetranychus genus. TtAV-1 and TtAV-2 exhibit bicistronic arrangements similar to dicistroviruses and other picorna-like viruses, with complex secondary structures in their non-coding regions. Phylogenetic analysis places TtAIV-1 within Iflaviridae, possibly as a new species, while TtAV-1 and TtAV-2 form distinct clades within unclassified picorna-like viruses, suggesting new families within Picornavirales. We analyzed in silico the presence and abundance of these viruses in T. truncatus across four bioproject SRAs, mostly finding them co-associated, with viral reads reaching up to 30% of total reads. Their presence and abundance varied by mite treatment and origin, with no significant impact from Wolbachia infection or abamectin exposure, although TtAV-2 was absent in abamectin-treated mites. Temperature influenced virus abundance, and variations were observed among Chinese mite populations based on geography and host plant association. Our findings offer insights into picorna-like virus diversity and dynamics in T. truncatus, revealing potential roles in mite biology and suggesting applications for mite population control, thereby enhancing agricultural productivity and food security.

摘要

植食性节肢动物,如螨和昆虫,宿主着各种对其生态和进化有重要影响的微生物。虽然昆虫病毒已被广泛研究,但我们对螨病毒组的多样性和组成以及与螨宿主的相互作用的理解仍然有限。亚洲叶螨,Tetranychus truncatus Ehara(蜱螨目:叶螨科),一种主要的农业害虫,尚未报道其携带任何病毒。在这里,我们使用公开的 RNA-Seq 数据,鉴定并描述了与 T. truncatus 相关的三种类微小 RNA 病毒:Tetranychus truncatus-associated iflavirus 1(TtAIV-1)、Tetranychus truncatus-associated picorna-like virus 1(TtAV-1)和 Tetranychus truncatus-associated picorna-like virus 2(TtAV-2)。TtAIV-1 具有典型的 Iflaviridae 基因组结构,具有单个 ORF,代表与 Tetranychus 属相关的第一个 iflavirus。TtAV-1 和 TtAV-2 表现出类似于双顺反子病毒和其他类微小 RNA 病毒的双顺反子排列,其非编码区具有复杂的二级结构。系统发育分析将 TtAIV-1 置于 Iflaviridae 内,可能是一个新种,而 TtAV-1 和 TtAV-2 在未分类的类微小 RNA 病毒中形成独特的分支,表明 Picornavirales 内有新的家族。我们在四个生物项目 SRAs 中分析了 T. truncatus 中这些病毒的存在和丰度,主要发现它们共同存在,病毒读数高达总读数的 30%。它们的存在和丰度因螨处理和来源而异,Wolbachia 感染或阿维菌素暴露没有显著影响,尽管 TtAV-2 不存在于阿维菌素处理的螨中。温度影响病毒丰度,并且根据地理位置和宿主植物的关联,观察到中国螨种群之间的变化。我们的研究结果提供了关于 T. truncatus 中类微小 RNA 病毒多样性和动态的见解,揭示了它们在螨生物学中的潜在作用,并为螨种群控制提供了应用,从而提高农业生产力和粮食安全。

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