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Shape matters: Lifecycle of cooperative patches promotes cooperation in bulky populations

机译:形状很重要:合作补丁程序的生命周期可促进庞大人群的合作

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Natural cooperative systems take many forms, ranging from one-dimensional cyanobacteria arrays to fractal-like biofilms. We use in silico experimental systems to study a previously overlooked factor in the evolution of cooperation, physical shape of the population. We compare the emergence and maintenance of cooperation in populations of digital organisms that inhabit bulky (100 x 100 cells) or slender (4 x 2500) toroidal grids. Although more isolated subpopulations of secretors in a slender population could be expected to favor cooperation, we find the opposite: secretion evolves to higher levels in bulky populations. We identify the mechanistic explanation for the shape effect by analyzing the lifecycle and dynamics of cooperator patches, from their emergence and growth, to invasion by noncooperators and extinction. Because they are constrained by the population shape, the cooperator patches expand less in slender than in bulky populations, leading to fewer cooperators, less public good secretion, and generally lower cooperation. The patch dynamics and mechanisms of shape effect are robust across several digital cooperation systems and independent of the underlying basis for cooperation (public good secretion or a cooperation game). Our results urge for a greater consideration of population shape in the study of the evolution of cooperation across experimental and modeling systems.
机译:天然的合作系统有多种形式,从一维蓝藻阵列到分形生物膜。我们使用计算机模拟实验系统来研究合作发展,人口的身体形态方面先前被忽视的因素。我们比较了居住在庞大(100 x 100个细胞)或细长(4 x 2500个)环形网格中的数字生物种群中合作的出现和维持。尽管可以预期苗条人口中更多的隔离的分泌物亚群有利于合作,但我们发现相反的情况:在庞大的人口中,分泌物发展到更高的水平。我们通过分析合作者斑块的生命周期和动力学,从它们的出现和成长,到非合作者的入侵和灭绝,来确定形状效应的机械解释。因为它们受到人口形状的限制,所以苗条的合作者斑块的扩张程度要比庞大的人群少,从而导致合作者的减少,公共物品的分泌减少以及合作程度的降低。补丁动态和形状效应机制在多个数字合作系统中均很健壮,并且独立于合作的基础(公共物品或合作游戏)。我们的结果敦促在跨实验和建模系统的合作演变研究中更多地考虑人口形状。

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