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Host-pathogen coevolution in the presence of predators: fluctuating selection and ecological feedbacks

机译:捕食者存在的主机 - 病原体参数:波动选择和生态反馈

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摘要

Host-pathogen coevolution is central to shaping natural communities and is the focus of much experimental and theoretical study. For tractability, the vast majority of studies assume the host and pathogen interact in isolation, yet in reality, they will form one part of complex communities, with predation likely to be a particularly key interaction. Here, I present, to my knowledge, the first theoretical study to assess the impact of predation on the coevolution of costly host resistance and pathogen transmission. I show that fluctuating selection is most likely when predators selectively prey upon infected hosts, but that saturating predation, owing to large handling times, dramatically restricts the potential for fluctuations. I also show how host evolution may drive either enemy to extinction, and demonstrate that while predation selects for low host resistance and high pathogen infectivity, ecological feedbacks mean this results in lower infection rates when predators are present. I emphasize the importance of accounting for varying population sizes, and place the models in the context of recent experimental studies.
机译:Host-ParagogoGo Coevolution是塑造自然社区的核心,是许多实验和理论研究的重点。对于遗传性,绝大多数研究假定宿主和病原体在隔离中互动,但实际上,它们将形成复杂社区的一部分,捕食可能是特别关键的相互作用。在这里,我介绍了我所知,第一个评估捕食对昂贵宿主抗性和病原体传输的共同影响的影响的理论研究。我表明,当捕食者选择性地捕获受感染的宿主时,最有可能选择波动的选择,但由于饱和捕食,由于大量的处理时间,显着地限制了波动的可能性。我还展示了宿主进化可能会驱动敌人消失,并证明捕食性选择低宿主抗性和高病原体感染性,而生态反馈意味着当存在捕食者时导致较低的感染率。我强调会计种群尺寸的重要性,并将模型放在最近的实验研究中。

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