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The role of dispersal in competition success and in the emerging diversity

机译:分散在竞争中的作用以及新兴多样性的作用

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The dynamics of dispersal-structured populations, consisting of competing individuals that are characterized by different diffusion coefficients but are otherwise identical, is investigated. Competition is taken into account through demographic processes. The problem addressed models natural selection. It is observed that the mean value and the relative width of the initial distribution of the diffusion coefficients characterizing the individuals together with the temporal fluctuations determine the final distribution of the diffusivities (diffusion coefficients leading to the competition success) as well as the final diversity of the system at finite time (the number of different diffusion coefficients present in the system). Large initial mean diffusivity of the system leads to a rather fast disappearance of the diversity. Instead, small initial mean diffusivity of the system leads to a diversity equal to the number of niches forming in the system due to the competitive interactions. The cluster formation is also associated to the competition success of the slower diffusing individuals. The diversity is diminished by the increase of the temporal fluctuations that give the competition advantage to the faster diffusing individuals. Somewhat counterintuitively, under certain conditions the competition success is given by intermediate values of the diffusion coefficients.
机译:调查了分散结构群体的动态,由竞争的个体组成,其特征在于不同的扩散系数但是否则相同。通过人口流程考虑竞争。问题解决了模型自然选择。观察到,与时间波动一起表征各个的延伸系数的初始值和相对宽度决定了扩散性的最终分布(导致竞争成功的扩散系数)以及最终的多样性系统处于有限时间(系统中存在的不同扩散系数的数量)。系统的大型初始平均扩散性导致多样性相当快的消失。相反,由于竞争性相互作用,系统的小初始平均扩散性导致等于系统中形成的核心的数量。群集形成也与较慢漫射个人的竞争成功相关。通过增加竞争优势的时间波动对更快的扩散个体的时间波动来减少多样性。在某些情况下,在某些条件下,竞争取得的成功由扩散系数的中间值给出。

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