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首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >Transmission bottlenecks and the evolution of fitness in rapidly evolving RNA viruses
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Transmission bottlenecks and the evolution of fitness in rapidly evolving RNA viruses

机译:迅速发展的RNA病毒的传播瓶颈和适应性进化

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We explored the evolutionary importance of two factors in the adaptation of RNA viruses to their cellular hosts, size of viral inoculum used to initiate a new infection, and mode of transmission (horizontal versus vertical). Transmission bottlenecksshould occur in natural populations of viruses and their profound effects on viral adaptation have been previously documented: However, the role of transmission mode has not received the same attention. Here we used a factorial experimental design to test the combined effects of inoculum (bottleneck) size and mode of transmission in evolution of vesicular stomatitis virus (VSV) in tissue culture, and compared our results to the predictions of a recent theoretical model. Our data were in accord with basic genetic principles concerning the balance between mutation, selection and genetic drift. In particular, attenuation of vertically transmitted viruses was a consequence of the random accumulation of deleterious mutations, whereas horizontally transmitted viruses experiencing similar bottlenecks did not suffer the same fitness losses because effective bottleneck size was actually determined by the number of host individuals. In addition, high levels of viral fitness in horizontally transmitted populations were explained by competition among viral variants.
机译:我们探讨了两个因素在RNA病毒适应其细胞宿主方面的进化重要性,用于引发新感染的病毒接种体大小以及传播方式(水平与垂直)。传播瓶颈应该发生在自然病毒种群中,并且先前已经记录了它们对病毒适应性的深远影响:但是,传播方式的作用并未受到同样的关注。在这里,我们使用析因实验设计来测试接种物(瓶颈)的大小和传播方式对组织培养中水泡性口炎病毒(VSV)进化的综合影响,并将我们的结果与最新理论模型的预测进行比较。我们的数据符合关于突变,选择和遗传漂移之间平衡的基本遗传原理。特别是,垂直传播病毒的衰减是有害突变随机积累的结果,而经历相似瓶颈的水平传播病毒却不会遭受相同的适应性损失,因为有效瓶颈大小实际上取决于宿主个体的数量。此外,水平变异人群中病毒适应性水平高的原因是病毒变异体之间存在竞争。

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