首页> 美国卫生研究院文献>Journal of Bacteriology >More than Motility: Salmonella Flagella Contribute to Overriding Friction and Facilitating Colony Hydration during Swarming
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More than Motility: Salmonella Flagella Contribute to Overriding Friction and Facilitating Colony Hydration during Swarming

机译:不仅仅是运动性:沙门氏菌鞭毛有助于在摩擦过程中克服摩擦并促进菌落水合作用

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摘要

We show in this study that Salmonella cells, which do not upregulate flagellar gene expression during swarming, also do not increase flagellar numbers per μm of cell length as determined by systematic counting of both flagellar filaments and hooks. Instead, doubling of the average length of a swarmer cell by suppression of cell division effectively doubles the number of flagella per cell. The highest agar concentration at which Salmonella cells swarmed increased from the normal 0.5% to 1%, either when flagella were overproduced or when expression of the FliL protein was enhanced in conjunction with stator proteins MotAB. We surmise that bacteria use the resulting increase in motor power to overcome the higher friction associated with harder agar. Higher flagellar numbers also suppress the swarming defect of mutants with changes in the chemotaxis pathway that were previously shown to be defective in hydrating their colonies. Here we show that the swarming defect of these mutants can also be suppressed by application of osmolytes to the surface of swarm agar. The “dry” colony morphology displayed by che mutants was also observed with other mutants that do not actively rotate their flagella. The flagellum/motor thus participates in two functions critical for swarming, enabling hydration and overriding surface friction. We consider some ideas for how the flagellum might help attract water to the agar surface, where there is no free water.
机译:我们在这项研究中显示,沙门氏菌细胞不会在蜂拥而至的过程中上调鞭毛基因的表达,并且不会根据鞭毛细丝和钩的系统计数确定每μm细胞长度的鞭毛数目。取而代之的是,通过抑制细胞分裂,使群体细胞的平均长度加倍,实际上会使每个细胞的鞭毛数增加一倍。当鞭毛过量产生或与定子蛋白MotAB结合增强FliL蛋白表达时,沙门氏菌群体聚集的最高琼脂浓度从正常的0.5%增加到1%。我们推测细菌会利用电机功率的增加来克服与较硬琼脂相关的更高摩擦。较高的鞭毛数还抑制了趋化性途径发生变化的突变群的缺陷,这些变异先前已证明在使它们的菌落水合方面存在缺陷。在这里,我们表明这些突变体的群体缺陷也可以通过在群体琼脂表面上应用渗透压来抑制。 che突变体表现出的“干燥”菌落形态也与其他不会主动旋转鞭毛的突变体一起观察到。因此,鞭毛/马达参与了对于群聚至关重要的两个功能,从而实现了水合作用和覆盖表面摩擦。我们考虑鞭毛如何帮助将水吸引到没有游离水的琼脂表面的一些想法。

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