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种群具有随机转换承载能力的生态进化动力学。

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

机构信息

Arnold Sommerfeld Center for Theoretical Physics, Department of Physics, Ludwig-Maximilians-Universität München, Theresienstrasse 37, 80333 München, Germany.

Department of Applied Mathematics, School of Mathematics, University of Leeds, Leeds LS2 9JT, UK

出版信息

J R Soc Interface. 2018 Aug;15(145). doi: 10.1098/rsif.2018.0343.

Abstract

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.

摘要

环境变异性极大地影响了种群的生态进化动态,即它影响了其大小和组成的进化方式。在这里,我们研究了一个大小有限且波动的充分混合种群,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。该种群由两种菌株组成,一种比另一种生长略快,在两种情况下竞争:一种是竞争仅针对资源,另一种是慢(合作)菌株产生一种公共利益(PG),也有利于快(搭便车)菌株。我们研究了人口和环境(外部)噪声的耦合如何影响人口的生态进化动态。通过分析和计算手段,我们研究了种群大小与其组成之间的相关性,并讨论了表征 PG 产生的类似于社会困境的“生态进化博弈”。我们确定了在什么条件下生产 PG 是最佳的;当合作有益但被搭便车所击败,以及当 PG 生产对合作者有害时。在大小变化的种群的线性噪声近似中,我们还准确地分析了人口和环境噪声对大小分布的耦合效应。

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