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Emergence of evolutionary driving forces in pattern-forming microbial populations

机译:形成模式形成微生物种群的进化驱动力的出现

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摘要

Evolutionary dynamics are controlled by a number of driving forces, such as natural selection, random genetic drift and dispersal. In this perspective article, we aim to emphasize that these forces act at the population level, and that it is a challenge to understand how they emerge from the stochastic and deterministic behaviour of individual cells. Even the most basic steric interactions between neighbouring cells can couple evolutionary outcomes of otherwise unrelated individuals, thereby weakening natural selection and enhancing random genetic drift. Using microbial examples of varying degrees of complexity, we demonstrate how strongly cell-cell interactions influence evolutionary dynamics, especially in pattern-forming systems. As pattern formation itself is subject to evolution, we propose to study the feedback between pattern formation and evolutionary dynamics, which could be key to predicting and potentially steering evolutionary processes. Such an effort requires extending the systems biology approach from the cellular to the population scale.
机译:进化动力学由许多驱动力控制,例如自然选择,随机遗传漂移和分散。在这个看法文章中,我们的目标是强调这些力量在人口层面行动,并且了解他们如何从个体细胞的随机和确定性行为中出现的挑战。即使是邻近细胞之间的最基本的空间相互作用也可以耦合否则不相关的个​​体的进化结果,从而削弱了自然选择和增强随机遗传漂移。使用不同程度的复杂性的微生物实例,我们证明了细胞 - 细胞相互作用是如何影响进化动态的,尤其是在图案形成系统中。作为模式形成本身受到进化,我们建议研究模式形成和进化动态之间的反馈,这可能是预测和潜在转向进化过程的关键。这样的努力需要将系统生物学方法从蜂窝到人口规模扩展。

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