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首页> 外文期刊>Nature Communications >The effect of flow on swimming bacteria controls the initial colonization of curved surfaces
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The effect of flow on swimming bacteria controls the initial colonization of curved surfaces

机译:流动对游泳细菌的影响控制了弯曲表面的初始定殖

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摘要

The colonization of surfaces by bacteria is a widespread phenomenon with consequences on environmental processes and human health. While much is known about the molecular mechanisms of surface colonization, the influence of the physical environment remains poorly understood. Here we show that the colonization of non-planar surfaces by motile bacteria is largely controlled by flow. Using microfluidic experiments with Pseudomonas aeruginosa and Escherichia coli, we demonstrate that the velocity gradients created by a curved surface drive preferential attachment to specific regions of the collecting surface, namely the leeward side of cylinders and immediately downstream of apexes on corrugated surfaces, in stark contrast to where nonmotile cells attach. Attachment location and rate depend on the local hydrodynamics and, as revealed by a mathematical model benchmarked on the observations, on cell morphology and swimming traits. These results highlight the importance of flow on the magnitude and location of bacterial colonization of surfaces.
机译:细菌的殖民化是具有对环境过程和人类健康影响的普遍存存现象。虽然关于表面殖民化的分子机制众所周知,但物理环境的影响仍然很差。在这里,我们表明,通过动机细菌的非平面表面定植大大通过流动控制。使用具有假单胞菌铜绿假单胞菌和大肠杆菌的微流体实验,我们证明由弯曲表面驱动的速度梯度优先连接到收集表面的特定区域,即圆柱体的背风侧,并在瓦楞纸表面上的顶端下游,在呈现鲜明对比度到非含量细胞附着的地方。附件位置和速率取决于当地的流体动力学,并且如在观察结果上基准的数学模型所揭示,对细胞形态和游泳特征。这些结果突出了流动对表面的细菌定植的幅度和位置的重要性。

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