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Evolutionary dynamics of fitness recovery from the debilitating effects of Muller's ratchet

机译:从穆勒棘轮的衰弱影响中恢复健康的进化动力学

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摘要

The great adaptability shown by RNA viruses is a consequence of their high mutation rates. The evolution of fitness in a severely debilitated, clonal population of the nonsegmented ribovirus vesicular stomatitis virus (VSV) has been compared under five different demographic regimes, ranging from severe serial bottleneck passages tone virion) to large population passages (10(6) virions or more) under similar environmental conditions (cell culture type and temperature). No matter how small the bottleneck, the fitness of the evolved populations was always higher than the fitness of the starting population; this result is clearly different from that previously reported for viruses with higher fitness. The reattainment of fitness under a regime of serial population passages showed two main characteristics: (1) the rate of adaptation was higher during early passages; and (2) a maximum fitness value was reached after a large number of passages. The maximum fitness reached by this initially debilitated clone was similar to the fitness of wild-type virus. The practical implications of these findings in the design of vaccines using attenuated viruses are also discussed. [References: 29]
机译:RNA病毒显示出的巨大适应性是其高突变率的结果。已在五种不同的人口统计学方案下比较了严重衰弱的无节段性核糖病毒水疱性口炎病毒(VSV)的克隆人群适应性的演变,范围从严重的连续瓶颈传代音调病毒体到大规模的传代(10(6)病毒体或更多)在类似的环境条件(细胞培养类型和温度)下进行。无论瓶颈有多小,进化种群的适应度始终高于起始种群的适应度。该结果明显不同于先前报道的适应性更高的病毒。在连续的人口传代制度下,适应性的恢复表现出两个主要特征:(1)早期传代的适应率更高; (2)经过大量传球后达到了最大适应度值。这个最初使人衰弱的克隆达到的最大适应度类似于野生型病毒的适应度。还讨论了这些发现对使用减毒病毒设计疫苗的实际意义。 [参考:29]

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