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Invading parasites cause a structural shift in red fox dynamics.

机译:寄生虫的入侵导致了赤狐动力学的结构性转变。

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摘要

The influence of parasites on host life histories and populations is pronounced. Among several diseases affecting animal populations throughout the world, sarcoptic mange has influenced many carnivore populations dramatically and during the latest epizootic in Fennoscandia reduced the abundance of red fox by over 70%. While the numerical responses of red fox populations, their prey and their competitors as well as clinical implications are well known, knowledge of how sarcoptic mange affects the structure of the dynamics of red fox populations is lacking. Integrating ecological theory and statistical modelling, we analysed the long-term dynamics (1955-1996) of 14 Danish red fox populations. As suggested by the model, invading sarcoptic mange significantly affected direct and delayed density dependence in red fox dynamics and concomitant shifts in fluctuation patterns were observed. Our statistical analyses also revealed that the spatial progressive spread of mange mites was mirrored in the autocovariate structures of red fox populations progressively exposed to sarcoptic mange.
机译:寄生虫对宿主生活史和种群的影响是明显的。在影响世界各地动物种群的几种疾病中,窃性ge瘤已极大地影响了许多食肉动物种群,在芬诺斯坎迪亚的最新流行病期间,赤狐的数量减少了70%以上。尽管众所周知红狐种群,其猎物和其竞争者以及他们的临床意义的数值响应,但尚缺乏关于窃man势如何影响红狐种群动态结构的知识。结合生态理论和统计模型,我们分析了14个丹麦红狐种群的长期动态(1955-1996)。正如模型所暗示的那样,入侵的猴man显着影响了赤狐动力学中直接和延迟的密度依赖性,并观察到了波动模式的伴随变化。我们的统计分析还显示,man螨的空间渐进传播反映在逐渐暴露于螨的man狐种群的自协变量结构中。

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