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A phylogenomic data-driven exploration of viral origins and evolution

机译:病毒起源和演化的系统核发科学数据驱动探索

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The origin of viruses remains mysterious because of their diverse and patchy molecular and functional makeup. Although numerous hypotheses have attempted to explain viral origins, none is backed by substantive data. We take full advantage of the wealth of available protein structural and functional data to explore the evolution of the proteomic makeup of thousands of cells and viruses. Despite the extremely reduced nature of viral proteomes, we established an ancient origin of the “viral supergroup” and the existence of widespread episodes of horizontal transfer of genetic information. Viruses harboring different replicon types and infecting distantly related hosts shared many metabolic and informational protein structural domains of ancient origin that were also widespread in cellular proteomes. Phylogenomic analysis uncovered a universal tree of life and revealed that modern viruses reduced from multiple ancient cells that harbored segmented RNA genomes and coexisted with the ancestors of modern cells. The model for the origin and evolution of viruses and cells is backed by strong genomic and structural evidence and can be reconciled with existing models of viral evolution if one considers viruses to have originated from ancient cells and not from modern counterparts.
机译:由于其不同的分子和功能化妆,病毒的起源仍然是神秘的。虽然许多假设试图解释病毒起源,但没有通过实质性数据来支持。我们充分利用了可用蛋白质结构和功能数据的财富,探索成千上万细胞和病毒的蛋白质组学构成的演变。尽管病毒蛋白质的性质极其降低,但我们建立了古代起源的“病毒超级”,以及存在遗传信息水平转移的广泛剧集的存在。含有不同复制子类型和感染远方相关主持人的病毒共享许多古代原产地的代谢和信息蛋白质结构域,这些蛋白质结构域也普遍存在细胞蛋白质组中。系统托儿科分析揭示了一种普遍的生命之树,并揭示了现代病毒从多个古代细胞中减少,这些古代细胞被患有分段的RNA基因组,并与现代细胞的祖先共存。通过强大的基因组和结构证据来支持病毒和细胞的起源和演化模型,如果一个人认为病毒起源于古代细胞,并且不是从现代同行,可以与现有的病毒演变模型进行支持。

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