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Social Interactions in Myxobacterial Swarming

机译:黏菌群的社会互动

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摘要

Swarming, a collective motion of many thousands of cells, produces colonies that rapidly spread over surfaces. In this paper, we introduce a cell-based model to study how interactions between neighboring cells facilitate swarming. We chose to study Myxococcus xanthus, a species of myxobacteria, because it swarms rapidly and has well-defined cell–cell interactions mediated by type IV pili and by slime trails. The aim of this paper is to test whether the cell contact interactions, which are inherent in pili-based S motility and slime-based A motility, are sufficient to explain the observed expansion of wild-type swarms. The simulations yield a constant rate of swarm expansion, which has been observed experimentally. Also, the model is able to quantify the contributions of S motility and A motility to swarming. Some pathogenic bacteria spread over infected tissue by swarming. The model described here may shed some light on their colonization process.
机译:群聚是成千上万个细胞的集体运动,产生的菌落迅速扩散到整个表面。在本文中,我们介绍了一种基于细胞的模型,以研究相邻细胞之间的相互作用如何促进群体。我们选择研究一种粘菌属细菌Xanthus,因为它迅速成群,并具有由IV型菌毛和粘液痕迹介导的明确的细胞间相互作用。本文的目的是测试基于菌毛的S动力和基于粘液的A动力固有的细胞接触相互作用是否足以解释观察到的野生型群的扩展。模拟产生了恒定的群扩展速率,这已通过实验观察到。而且,该模型能够量化S动力和A动力对群聚的贡献。一些病原菌通过蜂群散布在受感染的组织上。此处描述的模型可能会阐明其定殖过程。

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