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A Distributed Simulation of Roost-Based Selection for Altruistic Behavior in Vampire Bats

机译:吸血鬼蝙蝠利他性行为的基于Roost的选择分布式模拟

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Vampire bats exhibit a unique behavior: they help unlucky conspecifics by sharing part of their meal. This altruistic act seems to happen in their group of reference even between individuals not genetically related. Inspired by this biological example, we have developed a simulation that reproduces its essential traits, where group selection counteracts selective pressure towards cheating: the roosting effect. Previous work on the same theme has shown how the roosting effect can cope with sensible mutation levels. Here, leveraging the features of D-MASON that allows to run massive simulations on a distributed environment, as well as performing a batch scheduling of the experiments, we derive a relationship between mutation rate and roost size.
机译:吸血鬼蝙蝠展现出独特的行为:他们通过分享部分膳食来帮助不利于不幸的人。即使在没有转基因相关的人之间,这种利他主义行为似乎发生在他们的一组参考组中。灵感来自这个生物学示例,我们开发了一种模拟,可再现其基本特征,其中群组选择抵消了作弊的选择性压力:速率。以前的工作在同一主题上表明了栖息的效果如何应对明智的突变水平。在这里,利用D-Mason的特征,其允许在分布式环境上运行大规模模拟,以及执行实验的批量调度,我们推出了突变率和栖息大小之间的关系。

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