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Rates of Vaccine Evolution Show Strong Effects of Latency: Implications for Varicella Zoster Virus Epidemiology

机译:疫苗进化速度显示出潜伏期的强烈影响:对水痘带状疱疹病毒流行病学的影响

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Varicella-zoster virus (VZV) causes chickenpox and shingles, and is found in human populations worldwide. The lack of temporal signal in the diversity of VZV makes substitution rate estimates unreliable, which is a barrier to understanding the context of its global spread. Here, we estimate rates of evolution by studying live attenuated vaccines, which evolved in 22 vaccinated patients for known periods of time, sometimes, but not always undergoing latency. We show that the attenuated virus evolves rapidly (similar to 10(-6) substitutions/site/day), but that rates decrease dramatically when the virus undergoes latency. These data are best explained by a model in which viral populations evolve for around 13 days before becoming latent, but then undergo no replication during latency. This implies that rates of viral evolution will depend strongly on transmission patterns. Nevertheless, we show that implausibly long latency periods are required to date the most recent common ancestor of extant VZV to an "out-of-Africa" migration with humans, as has been previously suggested.
机译:水痘-带状疱疹病毒 (VZV) 可引起水痘和带状疱疹,在世界各地的人群中都有发现。水痘带状疱疹病毒多样性中缺乏时间信号,使得替代率估计不可靠,这是理解其全球传播背景的障碍。在这里,我们通过研究减毒活疫苗来估计进化速度,这些疫苗在已知的时间段内在 22 名接种疫苗的患者中进化,有时,但并不总是经历潜伏期。我们表明,减毒病毒进化迅速(类似于 10(-6) 次替换/位点/天),但当病毒经历潜伏期时,该比率会急剧下降。这些数据最好用一个模型来解释,在该模型中,病毒种群在潜伏之前进化了大约 13 天,但在潜伏期期间没有发生复制。这意味着病毒的进化速度将在很大程度上取决于传播模式。然而,我们表明,正如之前所建议的那样,需要难以置信的长潜伏期才能确定现存水痘带状疱疹病毒与人类的“非洲以外”迁移的日期。

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