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Tracking Dengue Virus Intra-host Genetic Diversity during Human-to-Mosquito Transmission

机译:在人对蚊子传输期间跟踪登革热病毒内遗传多样性

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Dengue virus (DENV) infection of an individual human or mosquito host produces a dynamic population of closely-related sequences. This intra-host genetic diversity is thought to offer an advantage for arboviruses to adapt as they cycle between two very different host species, but it remains poorly characterized. To track changes in viral intra-host genetic diversity during horizontal transmission, we infected Aedes aegypti mosquitoes by allowing them to feed on DENV2-infected patients. We then performed whole-genome deep-sequencing of human- and matched mosquito-derived DENV samples on the Illumina platform and used a sensitive variant-caller to detect single nucleotide variants (SNVs) within each sample. >90% of SNVs were lost upon transition from human to mosquito, as well as from mosquito abdomen to salivary glands. Levels of viral diversity were maintained, however, by the regeneration of new SNVs at each stage of transmission. We further show that SNVs maintained across transmission stages were transmitted as a unit of two at maximum, suggesting the presence of numerous variant genomes carrying only one or two SNVs each. We also present evidence for differences in selection pressures between human and mosquito hosts, particularly on the structural and NS1 genes. This analysis provides insights into how population drops during transmission shape RNA virus genetic diversity, has direct implications for virus evolution, and illustrates the value of high-coverage, whole-genome next-generation sequencing for understanding viral intra-host genetic diversity.
机译:登革热病毒(DENV)个人或蚊子宿主的感染产生动态相关的密切序列。这种宿主内的遗传多样性被认为为arboviruses提供优势,以适应它们在两个非常不同的宿主物种之间的循环,但其特征仍然很差。为了在水平传输期间跟踪病毒内宿主遗传多样性的变化,我们通过允许它们在Denv2感染患者上喂食Aedes Aegypti蚊子。然后,我们对Illumina平台进行了人类和匹配的蚊子衍生的Denv样品的全基因组深度测序,并使用敏感的变体呼叫者来检测每个样品内的单个核苷酸变体(SNV)。在从人们到蚊子的过渡时,90%的SNV丢失,以及从蚊子腹部到唾液腺。然而,通过在每个阶段的新SNV的再生,维持病毒多样性的水平。我们进来进一步表明,在最大值的单位中保持跨传输阶段的SNV被称为两个单位,表明存在只携带一个或两个SNV的许多变体基因组。我们还提出了人与蚊子宿主之间的选择压力差异的证据,特别是在结构和NS1基因上。该分析提供了对传播形状RNA病毒遗传多样性的群体下降的洞察,对病毒演化具有直接影响,并说明了高覆盖,全基因组的下一代测序的值,以了解病毒内宿主内遗传多样性。

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