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合作与背叛者在空间囚徒困境中的集体追逐行为。

Collective chasing behavior between cooperators and defectors in the spatial prisoner's dilemma.

机构信息

Systems and Control Engineering, Anan National College of Technology, Anan, Tokushima, Japan.

出版信息

PLoS One. 2013 Jul 5;8(7):e67702. doi: 10.1371/journal.pone.0067702. Print 2013.

Abstract

Cooperation is one of the essential factors for all biological organisms in major evolutionary transitions. Recent studies have investigated the effect of migration for the evolution of cooperation. However, little is known about whether and how an individuals' cooperativeness coevolves with mobility. One possibility is that mobility enhances cooperation by enabling cooperators to escape from defectors and form clusters; the other possibility is that mobility inhibits cooperation by helping the defectors to catch and exploit the groups of cooperators. In this study we investigate the coevolutionary dynamics by using the prisoner's dilemma game model on a lattice structure. The computer simulations demonstrate that natural selection maintains cooperation in the form of evolutionary chasing between the cooperators and defectors. First, cooperative groups grow and collectively move in the same direction. Then, mutant defectors emerge and invade the cooperative groups, after which the defectors exploit the cooperators. Then other cooperative groups emerge due to mutation and the cycle is repeated. Here, it is worth noting that, as a result of natural selection, the mobility evolves towards directional migration, but not to random or completely fixed migration. Furthermore, with directional migration, the rate of global population extinction is lower when compared with other cases without the evolution of mobility (i.e., when mobility is preset to random or fixed). These findings illustrate the coevolutionary dynamics of cooperation and mobility through the directional chasing between cooperators and defectors.

摘要

合作是所有生物在主要进化转变中必不可少的因素之一。最近的研究调查了迁移对合作进化的影响。然而,人们对于个体的合作性是否以及如何与流动性共同进化知之甚少。一种可能性是,流动性通过使合作者能够逃避背叛者并形成集群来增强合作;另一种可能性是,流动性通过帮助背叛者捕捉和利用合作者群体来抑制合作。在这项研究中,我们通过在格状结构上使用囚徒困境博弈模型来研究共同进化的动态。计算机模拟表明,自然选择以合作者和背叛者之间的进化追逐的形式维持合作。首先,合作群体成长并集体朝同一方向移动。然后,出现了突变的背叛者并入侵了合作群体,之后背叛者利用了合作者。然后由于突变出现了其他合作群体,这个循环重复。值得注意的是,由于自然选择,流动性朝着定向迁移进化,而不是随机或完全固定的迁移。此外,与没有流动性进化的情况相比(即,当流动性预设为随机或固定时),定向迁移降低了全球种群灭绝的速度。这些发现通过合作者和背叛者之间的定向追逐说明了合作和流动性的共同进化动态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16fc/3702560/a3bcc4b6808d/pone.0067702.g001.jpg

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