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Water reservoir maintained by cell growth fuels the spreading of a bacterial swarm

机译:细胞生长维持的水库助长了细菌群的传播

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摘要

Flagellated bacteria can swim across moist surfaces within a thin layer of fluid, a means for surface colonization known as swarming. This fluid spreads with the swarm, but how it does so is unclear. We used micron-sized air bubbles to study the motion of this fluid within swarms of Escherichia coli. The bubbles moved diffusively, with drift. Bubbles starting at the swarm edge drifted inward for the first 5 s and then moved outward. Bubbles starting 30 μm from the swarm edge moved inward for the first 20 s, wandered around in place for the next 40 s, and then moved outward. Bubbles starting at 200 or 300 μm from the edge moved outward or wandered around in place, respectively. So the general trend was inward near the outer edge of the swarm and outward farther inside, with flows converging on a region about 100 μm from the swarm edge. We measured cellular metabolic activities with cells expressing a short-lived GFP and cell densities with cells labeled with a membrane fluorescent dye. The fluorescence plots were similar, with peaks about 80 μm from the swarm edge and slopes that mimicked the particle drift rates. These plots suggest that net fluid flow is driven by cell growth. Fluid depth is largest in the multilayered region between approximately 30 and 200 μm from the swarm edge, where fluid agitation is more vigorous. This water reservoir travels with the swarm, fueling its spreading. Intercellular communication is not required; cells need only grow.
机译:鞭毛细菌可以在薄薄的液体层中的潮湿表面上游动,这是一种称为群体化的表面定殖方法。这些流体随群散播,但如何传播尚不清楚。我们使用微米级的气泡来研究这种液体在大肠杆菌群中的运动。气泡扩散扩散,漂移。从虫群边缘开始的气泡向内漂移最初的5秒,然后向外移动。从群边缘开始30μm的气泡在最初的20秒钟内向内移动,在接下来的40秒钟内徘徊在适当的位置,然后向外移动。从边缘开始200或300μm的气泡分别向外移动或在适当位置徘徊。因此,总体趋势是在群体外缘附近向内,而在内部更远处向外,流汇聚到距离群体边缘约100μm的区域。我们用表达短寿命GFP的细胞测量细胞的代谢活性,并用膜荧光染料标记的细胞测量细胞的密度。荧光图是相似的,从群边缘和类似于粒子漂移率的斜率开始的峰值约为80μm。这些图表明,净流体流动是由细胞生长驱动的。在距群边缘约30至200μm的多层区域中,流体深度最大,那里的流体搅动更加剧烈。这个水库随群而行,助其扩散。不需要细胞间通讯;细胞只需要生长。

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