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The unavoidable costs and unexpected benefits of parasitism: population and metapopulation models of parasite-mediated competition

机译:寄生虫病的不可避免的成本和意想不到的好处:寄生虫介导的竞争的种群和种群模型

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摘要

When faced with limited resources, organisms have to determine how to allocate their resources to maximize fitness. In the presence of parasites, hosts may be selected for their ability to balance between the two competing needs of reproduction and immunity. These decisions can have consequences not only for host fitness, but also for the ability of parasites to persist within the population, and for the competitive dynamics between different host species. We develop two mathematical models to investigate how resource allocation strategies evolve at both population and metapopulation levels. The evolutionarily stable strategy (ESS) at the population level is a balanced investment between reproduction and immunity that maintains parasites, even though the host has the capacity to eliminate parasites. The host exhibiting the ESS can always invade other host populations through parasite-mediated competition, effectively using the parasites as biological weapons. At the metapopulation level, the dominant strategy is sometimes different from the population-level ESS, and depends on the ratio of local extinction rate to host colonization rate. This study may help to explain why parasites are as common as they are, and can serve as a modeling framework for investigating parasite-mediated ecological invasions. Furthermore, this work highlights the possibility that the ‘introduction of enemies’ process may facilitate species invasion.
机译:当面临有限的资源时,有机体必须确定如何分配其资源以最大程度地适应环境。在存在寄生虫的情况下,可以根据宿主在繁殖和免疫力这两个相互竞争的需求之间取得平衡的能力来选择宿主。这些决定不仅会影响寄主的健康状况,还会影响寄生虫在种群中的持久能力以及不同寄主物种之间的竞争动态。我们开发了两个数学模型来研究资源分配策略如何在人口和子种群水平上发展。即使宿主具有消灭寄生虫的能力,在种群一级的进化稳定战略(ESS)是在繁殖和免疫之间保持寄生虫的平衡投资。展示ESS的宿主可以始终通过寄生虫介导的竞争入侵其他宿主种群,从而有效地利用寄生虫作为生物武器。在种群的水平上,优势策略有时与种群水平的ESS不同,并且取决于局部灭绝率与宿主定殖率的比率。这项研究可能有助于解释为什么寄生虫如此普遍,并且可以作为调查寄生虫介导的生态入侵的建模框架。此外,这项工作突显了“引进敌人”过程可能促进物种入侵的可能性。

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