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Evolution of cooperation in an epithelium

机译:上皮合作的演变

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摘要

Cooperation is prevalent in nature, not only in the context of social interactions within the animal kingdom but also on the cellular level. In cancer, for example, tumour cells can cooperate by producing growth factors. The evolution of cooperation has traditionally been studied for well-mixed populations under the framework of evolutionary game theory, and more recently for structured populations using evolutionary graph theory (EGT). The population structures arising due to cellular arrangement in tissues, however, are dynamic and thus cannot be accurately represented by either of these frameworks. In this work, we compare the conditions for cooperative success in an epithelium modelled using EGT, to those in a mechanical model of an epithelium—the Voronoi tessellation (VT) model. Crucially, in this latter model, cells are able to move, and birth and death are not spatially coupled. We calculate fixation probabilities in the VT model through simulation and an approximate analytic technique and show that this leads to stronger promotion of cooperation in comparison with the EGT model.
机译:合作在自然界是普遍的,不仅在动物界内部的社会互动中,而且在细胞水平上。例如,在癌症中,肿瘤细胞可以通过产生生长因子来协同作用。传统上,在进化博弈理论的框架下,对混合良好的群体研究合作的进化,最近,使用进化图论(EGT)对结构化群体进行了研究。但是,由于组织中细胞排列而产生的种群结构是动态的,因此无法通过这两个框架中的任一个准确表示。在这项工作中,我们比较了使用EGT建模的上皮与上皮的机械模型(Voronoi细分(VT)模型)中的合作成功条件。至关重要的是,在后一种模型中,细胞能够移动,并且出生和死亡在空间上不相关。我们通过仿真和近似分析技术计算了VT模型中的固定概率,并表明与EGT模型相比,这会导致更有效地促进合作。

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