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Random walk in genome space: a key ingredient of intermittent dynamics of community assembly on evolutionary time scales.

机译:基因组空间中的随机游动:在进化时间尺度上,社区聚集的间歇性动力学的关键要素。

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摘要

Community assembly is studied using individual-based multispecies models. The models have stochastic population dynamics with mutation, migration, and extinction of species. Mutants appear as a result of mutation of the resident species, while migrants have no correlation with the resident species. It is found that the dynamics of community assembly with mutations are quite different from the case with migrations. In contrast to mutation models, which show intermittent dynamics of quasi-steady states interrupted by sudden reorganizations of the community, migration models show smooth and gradual renewal of the community. As a consequence, instead of the 1/f diversity fluctuations found for the mutation models, 1/f(2), random-walk like fluctuations are observed for the migration models. In addition, a characteristic species-lifetime distribution is found: a power law that is cut off by a "skewed" distribution in the long-lifetime regime. The latter has a longer tail than a simple exponential function, which indicates an age-dependent species-mortality function. Since this characteristic profile has been observed, both in fossil data and in several other mathematical models, we conclude that it is a universal feature of macroevolution.
机译:使用基于个体的多物种模型研究社区组装。这些模型具有随机的种群动态,包括种群的突变,迁移和灭绝。突变体是常驻物种突变的结果,而移民与常驻物种没有相关性。发现带有突变的社区集会的动态与迁移的情况大不相同。与突变模型不同,突变模型显示了由于社区的突然重组而中断的准稳定状态的间歇性动态,而迁移模型则显示了社区的平稳和逐步更新。结果,不是针对突变模型发现的1 / f分集波动,而是1 / f(2),而是针对迁移模型观察到了类似随机游走的波动。此外,还发现了一个特征性的物种-寿命分布:一个幂律,该功率定律在长寿命方案中被“偏斜”分布所切断。后者的尾巴比简单的指数函数长,后者表明年龄相关的物种死亡函数。由于在化石数据和其他几个数学模型中都观察到了这种特征轮廓,因此我们得出结论,这是宏观进化的普遍特征。

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