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Dissecting the drivers of population cycles: Interactions between parasites and mountain hare demography

机译:剖析人口周期的驱动因素:寄生虫与山区野兔人口学之间的相互作用

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摘要

There is a growing awareness that cyclic population dynamics in vertebrate species are driven by a complex set of interactions rather than a single causal factor. While theory suggests that direct host-parasite interactions may destabilise population dynamics, the interaction between host and parasite may also influence population dynamics through indirect effects that result in delayed responses to either density or to life-history traits. Using empirical data on mountain hares (Lepus timidus) infected with a nematode parasite (Trichostrongylus retortaeformis), we developed an individual-based model (IBM) that incorporated direct effects and delayed life-history effects (DLHEs) of a macroparasite, alternative transmission mechanisms and seasonality in host population dynamics. The full model describes mean characteristics of observed mountain hare time series and parasite abundance, but by systematically removing model structure we dissect out dynamic influences of DLHEs. The DLHEs were weakly destabilising, increasing the propensity for cyclic dynamics and suggesting DLHEs could be important processes in host-parasite systems. Further, by modifying model structure we identify a strong influence of parasite transmission mechanism on host population stability, and discuss the implications for parasite aggregation mechanisms, host movement and natural geographical variation in host population dynamics. The effect of T. retortaeformis on mountain hares likely forms part of a complex set of interactions that lead to population cycles.
机译:人们越来越意识到,脊椎动物物种中的周期性种群动态是由复杂的相互作用集而不是单个因果因子驱动的。尽管理论表明,寄主与寄生虫之间的直接相互作用可能会破坏种群动态,但是寄主与寄生虫之间的相互作用也可能通过间接效应影响种群动态,从而导致对密度或生活史特征的反应延迟。使用关于被线虫寄生虫(Trichostrongylus retortaeformis)感染的山野兔(Lepus timidus)的经验数据,我们开发了一个基于个体的模型(IBM),该模型结合了大型寄生虫的直接效应和延迟生命历史效应(DLHEs),以及其他传播机制和寄主人口动态的季节性。完整的模型描述了观测到的山区野兔时间序列和寄生虫丰度的平均特征,但是通过系统地删除模型结构,我们剖析了DLHE的动态影响。 DLHEs不稳定,不稳定,增加了循环动力学的倾向,并暗示DLHEs可能是宿主-寄生虫系统中的重要过程。此外,通过修改模型结构,我们确定了寄生虫传播机制对寄主种群稳定性的强烈影响,并讨论了寄主种群动态对寄生虫聚集机制,寄主移动和自然地理变异的影响。龟形山毛榉对山兔的影响可能是导致种群周期的一系列复杂相互作用的一部分。

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