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循环竞争进化博弈动力学中的介观相互作用与物种共存

Mesoscopic interactions and species coexistence in evolutionary game dynamics of cyclic competitions.

作者信息

Cheng Hongyan, Yao Nan, Huang Zi-Gang, Park Junpyo, Do Younghae, Lai Ying-Cheng

机构信息

1] School of Science, Beijing University of Posts and Telecommunications, Beijing, 100876, China [2] School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, AZ 85287, USA.

1] School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, AZ 85287, USA [2] Department of Physics, Beijing Normal University, Beijing 100875, China.

出版信息

Sci Rep. 2014 Dec 15;4:7486. doi: 10.1038/srep07486.

Abstract

Evolutionary dynamical models for cyclic competitions of three species (e.g., rock, paper, and scissors, or RPS) provide a paradigm, at the microscopic level of individual interactions, to address many issues in coexistence and biodiversity. Real ecosystems often involve competitions among more than three species. By extending the RPS game model to five (rock-paper-scissors-lizard-Spock, or RPSLS) mobile species, we uncover a fundamental type of mesoscopic interactions among subgroups of species. In particular, competitions at the microscopic level lead to the emergence of various local groups in different regions of the space, each involving three species. It is the interactions among the groups that fundamentally determine how many species can coexist. In fact, as the mobility is increased from zero, two transitions can occur: one from a five- to a three-species coexistence state and another from the latter to a uniform, single-species state. We develop a mean-field theory to show that, in order to understand the first transition, group interactions at the mesoscopic scale must be taken into account. Our findings suggest, more broadly, the importance of mesoscopic interactions in coexistence of great many species.

摘要

用于三种物种循环竞争(例如,石头、剪刀和布,即RPS)的进化动力学模型,在个体相互作用的微观层面上提供了一个范例,以解决共存和生物多样性中的许多问题。真实的生态系统通常涉及三种以上物种之间的竞争。通过将RPS博弈模型扩展到五种(石头-剪刀-布-蜥蜴-史波克,即RPSLS)可移动物种,我们揭示了物种亚群之间一种基本类型的介观相互作用。特别是,微观层面的竞争导致在空间的不同区域出现各种局部群体,每个群体都涉及三种物种。正是这些群体之间的相互作用从根本上决定了多少物种能够共存。事实上,随着迁移率从零开始增加,可能会发生两种转变:一种是从五种物种共存状态转变为三种物种共存状态,另一种是从后者转变为均匀的单一物种状态。我们发展了一种平均场理论来表明,为了理解第一次转变,必须考虑介观尺度上的群体相互作用。更广泛地说,我们的研究结果表明了介观相互作用在大量物种共存中的重要性。

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