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Influence of topology on bacterial social interaction

机译:拓扑结构对细菌社交互动的影响

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The environmental topology of complex structures is used by Esch-erichia coli to create traveling waves of high cell density, a prelude to quorum sensing. When cells are grown to a moderate density within a confining microenvironment, these traveling waves of cell density allow the cells to find and collapse into confining topologies, which are unstable to population fluctuations above a critical threshold. This was first observed in mazes designed to mimic complex environments, then more clearly in a simpler geometry consisting of a large open area surrounding a square (250 x 250 μm) with a narrow opening of 10-30 μm. Our results thus show that under nutrient-deprived conditions bacteria search out each other in a collective manner and that the bacteria can dynamically confine themselves to highly enclosed spaces.
机译:大肠杆菌利用复杂结构的环境拓扑结构来创建高细胞密度的行波,这是群体感应的前奏。当细胞在封闭的微环境中生长到中等密度时,这些行进的细胞密度波使细胞能够找到并坍缩成封闭的拓扑结构,这些拓扑结构对于高于临界阈值的种群波动是不稳定的。最初在设计用于模拟复杂环境的迷宫中观察到这种现象,然后在更简单的几何形状中更清楚地看到,该几何形状由围绕正方形(250 x 250μm)的大开口区域和10-30μm的狭窄开口组成。因此,我们的结果表明,在营养缺乏的情况下,细菌以集体的方式相互搜寻,并且细菌可以动态地将自身限制在高度封闭的空间中。

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