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Single-Cell Analysis of RNA Virus Infection Identifies Multiple Genetically Diverse Viral Genomes within Single Infectious Units

机译:RNA病毒感染的单细胞分析可鉴定单个感染单位内的多个遗传多样的病毒基因组。

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Genetic diversity enables a virus to colonize novel hosts, evade immunity, and evolve drug resistance. However, viral diversity is typically assessed at the population level. Given the existence of cell-to-cell variation, it is critical to understand viral genetic structure at the single-cell level. By combining single-cell isolation with ultra-deep sequencing, we characterized the genetic structure and diversity of a RNA virus shortly after single-cell bottlenecks. Full-length sequences from 881 viral plaques derived from 90 individual cells reveal that sequence variants pre-existing in different viral genomescan be co-transmitted within the same infectious unit to individual cells. Further, the rate of spontaneous virus mutation varies across individual cells, and early production of diversity depends on the viral yield of the very first infected cell. These results unravel genetic and structural features of a virus at the single-cell level, with implications for viral diversity and evolution.
机译:遗传多样性使病毒能够在新的宿主中定殖,逃避免疫力并发展耐药性。但是,病毒多样性通常是在人群水平上评估的。考虑到细胞间差异的存在,了解单细胞水平的病毒遗传结构至关重要。通过将单细胞分离与超深度测序相结合,我们表征了单细胞瓶颈后不久的RNA病毒的遗传结构和多样性。来自90个单个细胞的881个病毒噬菌斑的全长序列显示,预先存在于不同病毒基因组中的序列变体可以在同一感染单位内共同传播给单个细胞。此外,自发病毒突变的速率在单个细胞之间也不同,多样性的早期产生取决于最初感染的细胞的病毒产量。这些结果揭示了病毒在单细胞水平上的遗传和结构特征,对病毒的多样性和进化有影响。

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