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Heterogeneous network promotes species coexistence: metapopulation model for rock-paper-scissors game

机译:异质网络促进物种共存:岩纸剪刀的比例模型

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Understanding mechanisms of biodiversity has been a central question in ecology. The coexistence of three species in rock-paper-scissors (RPS) systems are discussed by many authors; however, the relation between coexistence and network structure is rarely discussed. Here we present a metapopulation model for RPS game. The total population is assumed to consist of three subpopulations (nodes). Each individual migrates by random walk; the destination of migration is randomly determined. From reaction-migration equations, we obtain the population dynamics. It is found that the dynamic highly depends on network structures. When a network is homogeneous, the dynamics are neutrally stable: each node has a periodic solution, and the oscillations synchronize in all nodes. However, when a network is heterogeneous, the dynamics approach stable focus and all nodes reach equilibriums with different densities. Hence, the heterogeneity of the network promotes biodiversity.
机译:理解生物多样性机制是生态学中的核心问题。许多作者讨论了岩石剪刀(RPS)系统中三种种类的共存;然而,很少讨论共存与网络结构之间的关系。在这里,我们为RPS游戏提出了一种元造型模型。假设总群体由三个亚群(节点)组成。每个人都是随机散步迁移;迁移目的地是随机确定的。从反应迁移方程,我们获得人口动态。发现动态高度依赖于网络结构。当网络均匀时,动态中性稳定:每个节点具有周期性解决方案,并且振荡在所有节点中同步。然而,当网络是异构的时,动力学方法稳定焦点,并且所有节点都达到不同密度的平衡。因此,网络的异质性促进了生物多样性。

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