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Transmission bottlenecks as determinants of virulence in rapidly evolving pathogens

机译:传播瓶颈是毒力的决定因素 在迅速发展的病原体中

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摘要

Transmission bottlenecks occur in pathogen populations when only a few individual pathogens are transmitted from one infected host to another in the initiation of a new infection. Transmission bottlenecks can dramatically affect the evolution of virulence in rapidly evolving pathogens such as RNA viruses. Characterizing pathogen diversity with the quasispecies concept, we use analytical and simulation methods to demonstrate that severe bottlenecks are likely to drive down the virulence of a pathogen because of stochastic loss of the most virulent pathotypes, through a process analogous to Muller’s ratchet. We investigate in this process the roles of host population size, duration of within-host viral replication, and transmission bottleneck size. We argue that the patterns of accumulation of deleterious mutation may explain differing levels of virulence in vertically and horizontally transmitted diseases.
机译:当新感染开始时,只有少数几种单独的病原体从一个感染的宿主传播到另一个宿主时,在病原体种群中就会出现传播瓶颈。传播瓶颈会极大地影响快速发展的病原体(如RNA病毒)中毒力的演变。我们用准种概念来描述病原体的多样性,我们使用分析和模拟方法来证明,由于最强病原体的随机损失,严重的瓶颈可能会通过类似于穆勒棘轮的过程降低病原体的毒力。我们在这个过程中研究了宿主种群大小,宿主内病毒复制的持续时间和传播瓶颈大小的作用。我们认为有害突变积累的模式可以解释垂直和水平传播疾病中毒力的不同水平。

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