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存在监管时合作的生态进化动力学。

Eco-evolutionary dynamics of cooperation in the presence of policing.

机构信息

Physics and Applied Mathematics Unit, Indian Statistical Institute, 203 B. T. Road, Kolkata 700108, India.

BYJU'S, Think & Learn Pvt. Ltd., IBC Knowledge Park, 4/1 Bannerghatta Main Road, Bangalore 560029, India.

出版信息

J Theor Biol. 2021 Jun 7;518:110606. doi: 10.1016/j.jtbi.2021.110606. Epub 2021 Feb 11.

Abstract

Ecology and evolution are inherently linked, and studying a mathematical model that considers both holds promise of insightful discoveries related to the dynamics of cooperation. In the present article, we use the prisoner's dilemma (PD) game as a basis for long-term apprehension of the essential social dilemma related to cooperation among unrelated individuals. We upgrade the contemporary PD game with an inclusion of evolution-induced act of punishment as a third competing strategy in addition to the traditional cooperators and defectors. In a population structure, the abundance of ecologically-viable free space often regulates the reproductive opportunities of the constituents. Hence, additionally, we consider the availability of free space as an ecological footprint, thus arriving at a simple eco-evolutionary model, which displays fascinating complex dynamics. As possible outcomes, we report the individual dominance of cooperators and defectors as well as a plethora of mixed states, where different strategies coexist followed by maintaining the diversity in a socio-ecological framework. These states can either be steady or oscillating, whereby oscillations are sustained by cyclic dominance among different combinations of cooperators, defectors, and punishers. We also observe a novel route to cyclic dominance where cooperators, punishers, and defectors enter a coexistence via an inverse Hopf bifurcation that is followed by an inverse period doubling route.

摘要

生态学和进化学本质上是相互关联的,研究同时考虑这两个方面的数学模型有望对合作动力学的深入发现有所启示。在本文中,我们使用囚徒困境(PD)游戏作为基础,长期研究与非相关个体之间合作相关的基本社会困境。我们在传统的合作者和背叛者之外,增加了一种进化诱导的惩罚行为作为第三种竞争策略,对当代 PD 游戏进行了升级。在种群结构中,生态可行的自由空间的丰度通常调节着组成部分的繁殖机会。因此,我们还将自由空间的可用性视为生态足迹,从而得出一个简单的生态进化模型,该模型显示出引人入胜的复杂动态。作为可能的结果,我们报告了合作者和背叛者的个体优势,以及大量的混合状态,其中不同的策略共存,并在社会生态框架中保持多样性。这些状态可以是稳定的,也可以是振荡的,其中振荡是由不同组合的合作者、背叛者和惩罚者之间的循环优势维持的。我们还观察到一种新的循环优势途径,其中合作者、惩罚者和背叛者通过逆 Hopf 分岔进入共存,随后通过逆倍周期分岔途径。

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