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Directed migration shapes cooperation in spatial ecological public goods games

机译:定向迁移塑造了空间生态公益游戏中的合作

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摘要

From the microscopic to the macroscopic level, biological life exhibits directed migration in response to environmental conditions. Chemotaxis enables microbes to sense and move towards nutrient-rich regions or to avoid toxic ones. Socio-economic factors drive human populations from rural to urban areas. The effect of collective movement is especially significant when triggered in response to the generation of public goods. Microbial communities can, for instance, alter their environment through the secretion of extracellular substances. Some substances provide antibiotic-resistance, others provide access to nutrients or promote motility. However, in all cases the maintenance of public goods requires costly cooperation and is consequently susceptible to exploitation. The threat of exploitation becomes even more acute with motile individuals because defectors can avoid the consequences of their cheating. Here, we propose a model to investigate the effects of targeted migration and analyze the interplay between social conflicts and migration in ecological public goods. In particular, individuals can locate attractive regions by moving towards higher cooperator densities or avoid unattractive regions by moving away from defectors. Both migration patterns not only shape an individual’s immediate environment but also affects the entire population. For example, defectors hunting cooperators have a homogenizing effect on population densities. This limits the production of the public good and hence inhibits the growth of the population. In contrast, aggregating cooperators promote the spontaneous formation of patterns through heterogeneous density distributions. The positive feedback between cooperator aggregation and public goods production, however, poses analytical and numerical challenges due to its tendency to develop discontinuous distributions. Thus, different modes of directed migration bear the potential to enhance or inhibit the emergence of complex and sometimes dynamic spatial arrangements. Interestingly, whenever patterns emerge, cooperation is promoted, on average, population densities rise, and the risk of extinction is reduced.
机译:从微观到宏观,生物生命都表现出对环境条件的定向迁移。趋化作用使微生物能够感知并移向营养丰富的区域或避免有毒区域。社会经济因素驱使人口从农村转向城市地区。集体运动的影响在响应公共物品的产生而触发时尤其重要。微生物群落可以例如通过细胞外物质的分泌改变环境。一些物质提供抗药性,另一些物质提供获取营养或促进运动的能力。然而,在所有情况下,公共物品的维护都需要昂贵的合作,因此容易被剥削。对于运动个体来说,剥削的威胁变得更加严重,因为叛逃者可以避免他们作弊的后果。在这里,我们提出了一个模型,以调查目标移民的影响,并分析社会冲突与生态公益物中移民之间的相互作用。特别是,人们可以通过向更高的合作者密度移动来定位有吸引力的区域,或者通过远离叛逃者而避开没有吸引力的区域。两种迁移方式不仅会影响一个人的近期环境,而且还会影响整个人口。例如,叛逃者狩猎合作者对人口密度具有同质化作用。这限制了公共物品的生产,因此抑制了人口的增长。相反,聚集的合作者通过不均匀的密度分布促进图案的自发形成。但是,由于合作社聚集与公共产品生产之间的积极反馈,由于其倾向于形成不连续的分布,因此在分析和数值上都面临挑战。因此,不同的定向迁移模式具有增强或抑制复杂的,有时是动态的空间排列出现的潜力。有趣的是,只要出现了这种模式,就促进了合作,平均而言,人口密度增加了,灭绝的风险降低了。

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