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Coupled effects of chemotaxis and growth on traveling bacterial waves

机译:化学趋化和生长对传播的细菌波的耦合作用

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Traveling bacterial waves are capable of improving contaminant remediation in the subsurface. It is fairly well understood how bacterial chemotaxis and growth separately affect the formation and propagation of such waves. However, their interaction is not well understood. We therefore perform a modeling study to investigate the coupled effects of chemotaxis and growth on bacterial migration, and examine their effects on contaminant remediation. We study the waves by using different initial electron acceptor concentrations for different bacteria and substrate systems. Three types of traveling waves can occur: a chemotactic wave due to the biased movement of chemotactic bacteria resulting from metabolism-generated substrate concentration gradients; a growth/decay/motility wave due to a dynamic equilibrium between bacterial growth, decay and random motility; and an integrated wave due to the interaction between bacterial chemotaxis and growth. Chemotaxis hardly enhances the bacterial propagation if it is too weak to form a chemotactic wave or its wave speed is less than half of the growth/decay/motility wave speed. However, chemotaxis significantly accelerates bacterial propagation once its wave speed exceeds the growth/decay/motility wave speed. When convection occurs, it speeds up the growth/decay/motility wave but slows down or even eliminates the chemotactic wave due to the dispersion. Bacterial survival proves particularly important for bacterial propagation. Therefore we develop a conceptual model to estimate the speed of growth/decay/motility waves.
机译:传播的细菌波能够改善地下的污染物修复。众所周知,细菌的趋化性和生长如何分别影响这种波的形成和传播。但是,它们之间的相互作用尚不十分清楚。因此,我们进行了建模研究,以研究趋化性和生长对细菌迁移的耦合作用,并检查它们对污染物修复的影响。我们通过对不同的细菌和底物系统使用不同的初始电子受体浓度研究波。可能发生三种类型的行波:由于新陈代谢产生的底物浓度梯度而导致的趋化细菌的偏向运动引起的趋化波;由于细菌生长,衰变和随机运动之间的动态平衡而产生的生长/衰减/运动波;由于细菌趋化性和生长之间的相互作用而产生的积分波。如果趋化性太弱而无法形成趋化波,或者其波速小于生长/衰减/运动波速的一半,则趋化性几乎不会增强细菌的繁殖。但是,一旦细菌的波速超过生长/衰减/运动波速,其趋化性就会大大促进细菌的繁殖。当对流发生时,它会加速生长/衰减/运动波,但会由于分散而减慢甚至消除趋化波。细菌存活证明对细菌繁殖特别重要。因此,我们开发了一个概念模型来估计增长/衰减/运动波的速度。

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