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Chemotactic Sensing towards Ambient and Secreted Attractant Drives Collective Behaviour of E. coli

机译:对环境和分泌引诱剂的趋化感觉驱动大肠杆菌的集体行为。

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摘要

We simulate the dynamics of a suspension of bacterial swimmers, which chemotactically sense gradients in either ambient or self-secreted attractants (e.g. nutrient or aspartate respectively), or in both. Unlike previous mean field models based on a set of continuum partial differential equations, our model resolves single swimmers and therefore incorporates stochasticity and effects due to fluctuations in the bacterial density field. The algorithm we use is simple enough that we can follow the evolution of colonies of up to over a million bacteria for timescales relevant to pattern formation for E. coli growing in semisolid medium such as agar, or in confined geometries. Our results confirm previous mean field results that the patterns observed experimentally can be reproduced with a model incorporating chemoattractant secretion, chemotaxis (towards gradients in the chemoattractant field), and bacterial reproduction. They also suggest that further experiments with bacterial strains chemotactically moving up both nutrient and secreted attractant field may yield yet more dynamical patterns.
机译:我们模拟了细菌游泳者悬浮液的动力学,该趋化剂在环境或自分泌引诱剂(例如分别为营养物或天冬氨酸)或两者中的趋化上感应梯度。与以前基于一组连续统偏微分方程的均场模型不同,我们的模型可解决单泳者的问题,因此融合了随机性和细菌密度场波动引起的影响。我们使用的算法非常简单,以至于我们可以追踪多达一百万个细菌的菌落演变的时间尺度,这些时间尺度与在半固体培养基(例如琼脂)或有限的几何形状中生长的大肠杆菌的模式形成有关。我们的结果证实了以前的平均视野结果,可以通过包含化学引诱剂分泌,趋化性(趋化性趋于梯度)和细菌繁殖的模型来再现实验观察到的模式。他们还建议,进一步对细菌菌株进行化学趋化移动,使营养物和分泌的引诱剂都向上移动,可能会产生更多的动态模式。

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