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Eco-evolutionary dynamics of a population with randomly switching carrying capacity

机译:具有随机切换承载能力的种群的生态进化动力学

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摘要

Environmental variability greatly influences the eco-evolutionary dynamics of a population, i.e. it affects how its size and composition evolve. Here, we study a well-mixed population of finite and fluctuating size whose growth is limited by a randomly switching carrying capacity. This models the environmental fluctuations between states of resources abundance and scarcity. The population consists of two strains, one growing slightly faster than the other, competing under two scenarios: one in which competition is solely for resources, and one in which the slow (cooperating) strain produces a public good (PG) that benefits also the fast (free-riding) strain. We investigate how the coupling of demographic and environmental (external) noise affects the population's eco-evolutionary dynamics. By analytical and computational means, we study the correlations between the population size and its composition, and discuss the social-dilemma-like ‘eco-evolutionary game’ characterizing the PG production. We determine in what conditions it is best to produce a PG; when cooperating is beneficial but outcompeted by free riding, and when the PG production is detrimental for cooperators. Within a linear noise approximation to populations of varying size, we also accurately analyse the coupled effects of demographic and environmental noise on the size distribution.
机译:环境可变性极大地影响了人口的生态进化动态,即影响了人口规模和构成的演变方式。在这里,我们研究了大小有限且波动很大的混合种群,其增长受到随机切换承载能力的限制。这模拟了资源丰富和稀缺状态之间的环境波动。人口由两种品系组成,一种品系比另一种品系增长更快,在两种情况下竞争:一种品系仅竞争资源,另一种品类中缓慢的(合作)品系产生公共利益(PG),也使人类受益。快速(搭便车)应变。我们调查人口统计和环境(外部)噪声的耦合如何影响人口的生态进化动态。通过分析和计算的方式,我们研究了人口规模与其构成之间的相关性,并讨论了社会困境类似的“生态进化博弈”来表征PG的生产。我们确定在什么条件下生产PG最好。当合作是有益的,但是却被搭便车所击败,而PG的生产对合作者是有害的。在对大小不同的人群进行线性噪声近似处理后,我们还可以准确地分析人口统计和环境噪声对大小分布的耦合影响。

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