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Dynamics of formation of symmetrical patterns by chemotactic bacteria.

机译:趋化细菌形成对称模式的动力学。

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Motile cells of Escherichia coli aggregate to form stable patterns of remarkable regularity when grown from a single point on certain substrates. Central to this self-organization is chemotaxis, the motion of bacteria along gradients of a chemical attractant that the cells themselves excrete. Here we show how these complex patterns develop. The long-range spatial order arises from interactions between two multicellular aggregate structures: a 'swarm ring' that expands radially, and focal aggregates that have lower mobility. Patterning occurs through alternating domination by these two sources of excreted attractant (which we identify here as aspartate). The pattern geometries vary in a systematic way, depending on how long an aggregate remains active; this depends, in turn, on the initial concentration of substrate (here, succinate).
机译:当在某些底物上单点生长时,大肠杆菌的运动细胞聚集形成稳定的模式,并具有明显的规律性。这种自组织的核心是趋化作用,即细菌沿着细胞自身排泄的化学引诱剂的梯度运动。在这里,我们展示了这些复杂的模式是如何发展的。远程空间顺序是由两个多细胞聚集体结构之间的相互作用产生的:一个径向扩张的“群体环”和具有较低迁移率的聚集聚集体。通过排泄的引诱剂的这两种来源(在此我们将其识别为天冬氨酸)的交替控制来产生图案。模式的几何形状以系统的方式变化,具体取决于聚合保持活动状态的时间。这又取决于底物(此处为琥珀酸盐)的初始浓度。

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