论文标题

周期性的时间环境变化在资源竞争模型中引起共存

Periodic temporal environmental variations induce coexistence in resource competition models

论文作者

Burkart, Tom, Willeke, Jan, Frey, Erwin

论文摘要

天然生态系统,尤其是在微生物尺度上,都有大量物种居住。每个物种的种群规模都受到个体相互作用以及环境条件(例如资源丰度)的空间和时间变化的影响。在这里,我们使用通用的人群动力学模型来研究如何以及在什么条件下,周期性的时间环境变化可以改变生态系统的组成和生物多样性。我们证明,使用时间尺度分离使人们可以在不同环境中定性预测相互作用物种的长期种群动态。我们表明,如果环境变化的时间尺度(例如,季节性变化)比人口增长的时间尺度快得多(细菌倍增时间),则可以扩展到适用于恒定环境的众所周知的原则(适用于恒定环境的众所周知的原则)的概念。当这些时间尺度相似时,我们的分析表明,变化的环境阻止了系统达到稳定状态,并且多个物种之间的稳定共存将成为可能。我们的结果表明,生物多样性可以部分归因于自然的环境变化。

Natural ecosystems, in particular on the microbial scale, are inhabited by a large number of species. The population size of each species is affected by interactions of individuals with each other and by spatial and temporal changes in environmental conditions, such as resource abundance. Here, we use a generic population dynamics model to study how, and under what conditions, a periodic temporal environmental variation can alter an ecosystem's composition and biodiversity. We demonstrate that using time scale separation allows one to qualitatively predict the long-term population dynamics of interacting species in varying environments. We show that the notion of Tilman's R* rule, a well-known principle that applies for constant environments, can be extended to periodically varying environments if the time scale of environmental changes (e.g., seasonal variations) is much faster than the time scale of population growth (doubling time in bacteria). When these time scales are similar, our analysis shows that a varying environment deters the system from reaching a steady state, and stable coexistence between multiple species becomes possible. Our results posit that biodiversity can in part be attributed to natural environmental variations.

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