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寄生蜂基因组的染色体水平组装揭示了共生病毒的定殖。

Chromosomal scale assembly of parasitic wasp genome reveals symbiotic virus colonization.

机构信息

Institut de Recherche sur la Biologie de l'Insecte, UMR 7261 CNRS-Université de Tours, Faculté des Sciences et Techniques, Parc de Grandmont, 37200, Tours, France.

Geneva Natural History Museum, 1208, Geneva, Switzerland.

出版信息

Commun Biol. 2021 Jan 22;4(1):104. doi: 10.1038/s42003-020-01623-8.

Abstract

Endogenous viruses form an important proportion of eukaryote genomes and a source of novel functions. How large DNA viruses integrated into a genome evolve when they confer a benefit to their host, however, remains unknown. Bracoviruses are essential for the parasitism success of parasitoid wasps, into whose genomes they integrated ~103 million years ago. Here we show, from the assembly of a parasitoid wasp genome at a chromosomal scale, that bracovirus genes colonized all ten chromosomes of Cotesia congregata. Most form clusters of genes involved in particle production or parasitism success. Genomic comparison with another wasp, Microplitis demolitor, revealed that these clusters were already established ~53 mya and thus belong to remarkably stable genomic structures, the architectures of which are evolutionary constrained. Transcriptomic analyses highlight temporal synchronization of viral gene expression without resulting in immune gene induction, suggesting that no conflicts remain between ancient symbiotic partners when benefits to them converge.

摘要

内源性病毒是真核生物基因组的重要组成部分,也是新功能的来源。然而,当它们给宿主带来益处时,整合到基因组中的大型 DNA 病毒是如何进化的,目前还不得而知。柄腹茧蜂病毒对于寄生蜂的寄生成功至关重要,大约 10300 万年前它们就整合到了寄生蜂的基因组中。在这里,我们通过对一种寄生蜂基因组的染色体规模组装表明,柄腹茧蜂病毒基因已经殖民到了舞毒蛾黑瘤姬蜂的所有十个染色体中。其中大多数形成了与颗粒产生或寄生成功相关的基因簇。与另一种黄蜂,M. demolitor 的基因组比较表明,这些簇已经在大约 5300 万年前建立,因此属于非常稳定的基因组结构,其结构受到进化的限制。转录组分析突出了病毒基因表达的时间同步,而不会导致免疫基因的诱导,这表明当古老的共生伙伴的利益趋同时,它们之间不再存在冲突。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2696/7822920/93aaf58842e0/42003_2020_1623_Fig1_HTML.jpg

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