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Abundant and Diverse RNA Viruses in Insects Revealed by RNA-Seq Analysis: Ecological and Evolutionary Implications

机译:RNA-SEQ分析显示的昆虫中的丰富和多样化的RNA病毒:生态和进化意义

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Increasing data indicate that insects serve as major reservoirs and vectors of viruses, which account for the continuously increasing ecological burden and infectious disease outbreaks. Uncovering the hidden diversity of viruses in insects will further the understanding of the ecological and evolutionary perspectives in the emergence of insect-associated virus diseases. In this study, we queried transcriptome sequencing (RNA-Seq) data from more than 600 species across 32 insect orders dwelling in different ecological habitats and recovered more than 1,213 RNA viruses that were recapitulated in 40 families, 2 unclassified genera, and many unspecified viral groups. These novel viruses included the well-known insect-associated viruses within Flaviviridae , Picornavirales , Bunyavirales , Mononegavirales , Nidovirales , Reoviridae , and Negevirus . More appeared to form novel clusters within previously described taxa or could be resolved as paraphyletic, including the first astrovirus identified in insects, in which many were sufficiently divergent to warrant the establishment of new virus genera or families. Additionally, some viruses were closely related to the recognized plant-, fungus-, and vertebrate-specific species, implying the importance of relationships between insect behavior and virus spread. Comparative genome analyses also revealed high genomic variability with respect to the flexible gene pool and genome architecture of these newly described viruses, including the evidence for genome reshuffling first discovered in Dicistroviridae . The data reflecting the genetically and ecologically diverse viral populations in insects greatly expand our understanding of RNA viruses in nature and highlight that the biodiversity of RNA viruses remains largely unexplored. IMPORTANCE Insects comprise the largest proportion of animals on earth and are frequently implicated in the transmission of vector-borne diseases. However, considerable attention has been paid to the phytophagous and hematophagous insects, with results that provide insufficient and biased information about the viruses in insects. Here, we have delivered compelling evidence for the exceptional abundance and genetic diversity of RNA viruses in a wide range of insects. Novel viruses were found to cover major categories of RNA viruses, and many formed novel clusters divergent from the previously described taxa, dramatically broadening the range of known RNA viruses in insects. These newly characterized RNA viruses exhibited high levels of genomic plasticity in genome size, open reading frame (ORF) number, intergenic structure, and gene rearrangement and segmentation. This work provides comprehensive insight into the origin, spread, and evolution of RNA viruses. Of course, a large-scale virome project involving more organisms would provide more-detailed information about the virus infections in insects.
机译:增加数据表明,昆虫作为病毒的主要储层和载体,这考虑了不断增加的生态负担和传染病爆发。揭开昆虫中病毒的隐藏多样性将进一步了解在昆虫相关病毒疾病的出现中的生态和进化视角。在这项研究中,我们在不同生态栖息地的32个昆虫订单中查询超过600种物种的转录组测序(RNA-SEQ)数据,并在40个家庭中恢复超过1,213个RNA病毒,其中2个未分类的属,以及许多未指明的病毒团体。这些新型病毒包括在黄病毒尿的众所周知的昆虫病毒,Picornavirales,Bunyavirales,单噬菌体,Nidovirales,Reoviridae和Negevirus中。更似乎在先前描述的分类群内形成了新型簇,或者可以被解析为胰岛素,包括在昆虫中鉴定的第一个阿星病毒,其中许多人足够分歧,以保证建立新的病毒属或家庭。此外,一些病毒与公认的植物,真菌和脊椎动物的物种密切相关,这意味着昆虫行为和病毒传播之间关系的重要性。对比基因组分析还揭示了这些新描述的病毒的柔性基因库和基因组结构的高基因组可变性,包括在Dicistroviridae中首次发现的基因组重新洗脱的证据。反映昆虫的遗传和生态型病毒种群的数据大大扩大了我们对性质中RNA病毒的理解,并强调RNA病毒的生物多样性仍然很大程度上是未开发的。重要性昆虫包括地球上最大的动物比例,并且经常涉及载体传播疾病的传播。然而,对植物和嗜慢性昆虫进行了相当大的关注,结果提供了有关昆虫中病毒的不足和偏见的信息。在这里,我们已经为广泛的昆虫提供了令人兴奋的丰富和遗传多样性的旨在证据。发现新型病毒涵盖了主要类别的RNA病毒,并且许多形成的新型簇从先前描述的分类群中发散,从而大大拓宽了昆虫中已知的RNA病毒的范围。这些新特征的RNA病毒在基因组大小,开放阅读框(ORF)数,非基因结构和基因重排和分割中表现出高水平的基因组可塑性。这项工作提供了全面的洞察RNA病毒的起源,传播和演化。当然,涉及更多有机体的大型病毒项目将提供有关昆虫中病毒感染的更多详细信息。

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