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Using barcoded Zika virus to assess virus population structure in vitro and in Aedes aegypti mosquitoes

机译:使用条形码Zika病毒评估体外病毒人口结构,并在AEDES AEGYPTI蚊子中

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Arboviruses such as Zika virus (ZIKV, Flaviviridae; Flavivirus) must replicate in both mammalian and insect hosts possessing strong immune defenses. Accordingly, transmission between and replication within hosts involves genetic bottlenecks, during which viral population size and genetic diversity may be significantly reduced. To help quantify these bottlenecks and their effects, we constructed 4 "barcoded" ZIKV populations that theoretically contain thousands of barcodes each. After identifying the most diverse barcoded virus, we passaged this virus 3 times in 2 mammalian and mosquito cell lines and characterized the population using deep sequencing of the barcoded region of the genome. C6/36 maintain higher barcode diversity, even after 3 passages, than Vero. Additionally, field-caught mosquitoes exposed to the virus to assess bottlenecks in a natural host. A progressive reduction in barcode diversity occurred throughout systemic infection of these mosquitoes. Differences in bottlenecks during systemic spread were observed between different populations of Aedes aegypti.
机译:Zika病毒(Zikv,Flaviviridae; Flavivirus)等枝病毒必须在哺乳动物和昆虫宿主中复制,具有强烈的免疫防御。因此,宿主内的传输和复制涉及遗传瓶颈,在此期间可能会显着降低病毒群体大小和遗传多样性。为了帮助量化这些瓶颈及其效果,我们构建了4个“条形码”Zikv群体,理论上包含数千个条形码。在鉴定最多样化的条形码病毒后,我们将该病毒传代3次,在2个哺乳动物和蚊子细胞系中进行了3次,并使用基因组的条形码区域的深度测序表征群体。 C6 / 36保持更高的条形码多样性,即使在3段之后也比Vero在3段之后。此外,捕获的蚊子暴露于病毒,以评估天然宿主中的瓶颈。在这些蚊子的全身感染过程中发生了条形码多样性的渐进减少。在AEDESAEGYPTI的不同群体之间观察到系统蔓延期间瓶颈的差异。

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