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Rapid Viral Symbiogenesis via Changes in Parasitoid Wasp Genome Architecture

机译:通过改变寄生蜂基因组结构实现病毒共生

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摘要

Viral genome integration provides a complex route to biological innovation that has rarely but repeatedly occurred in one of the most diverse lineages of organisms on the planet, parasitoid wasps. We describe a novel endogenous virus in braconid wasps derived from pathogenic alphanudiviruses. Limited to a subset of the genus Fopius , this recent acquisition allows an unprecedented opportunity to examine early endogenization events. Massive amounts of virus-like particles (VLPs) are produced in wasp ovaries. Unlike most endogenous viruses of parasitoid wasps, the VLPs do not contain DNA, translating to major differences in parasitism-promoting strategies. Rapid changes include genomic rearrangement, loss of DNA processing proteins, and wasp control of viral gene expression. These events precede the full development of tissue-specific viral gene expression observed in older associations. These data indicate that viral endogenization can rapidly result in functional and evolutionary changes associated with genomic novelty and adaptation in parasitoids.
机译:病毒基因组整合为生物创新提供了一条复杂的途径,这种创新很少但反复发生在地球上最多样化的生物谱系之一——寄生蜂中。我们描述了一种源自致病性甲核病毒的短尾蜂中的新型内源性病毒。仅限于Fopius属的一个子集,最近的收购为研究早期内生化事件提供了前所未有的机会。黄蜂卵巢中会产生大量的病毒样颗粒(VLP)。与寄生蜂的大多数内源性病毒不同,VLPs不含DNA,这意味着寄生促进策略存在重大差异。快速变化包括基因组重排、DNA 加工蛋白的丢失和黄蜂对病毒基因表达的控制。这些事件发生在较早的关联中观察到的组织特异性病毒基因表达的完全发育之前。这些数据表明,病毒内源化可以迅速导致与类寄生虫基因组新颖性和适应性相关的功能和进化变化。

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