Model of the bacterial flagellar motor: response to varying viscous load.

G Adam
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引用次数: 0

Abstract

A model of bacterial flagellar drive by cytomembrane streaming is described and applied to experiments of bacterial propulsion under varying viscous load. The theory predicts a linear dependence of the reciprocal propulsion velocity on the viscosity of the suspension medium, if the velocity of cytomembrane streaming far from the basal body of the flagella is assumed independent of the external viscosity. The theoretical predictions are in good agreement with experiments on free-swimming and on tethered bacteria. From comparison of the theory with experiments, the surface viscosity of the bacterial cytomembrane is evaluated for different bacterial species and turns out to be in the range observed experimentally on lipid monolayers.

细菌鞭毛马达的模型:对不同粘性载荷的响应。
描述了一种细菌鞭毛驱动的细胞膜流模型,并将其应用于细菌在不同粘性载荷下的推进实验。该理论预测,如果假设远离鞭毛基底的细胞膜流动速度与外部粘度无关,则相互推进速度与悬浮介质的粘度呈线性关系。这些理论预测与自由游泳和拴住细菌的实验结果非常吻合。通过理论与实验的比较,对不同细菌种类的细菌细胞膜的表面粘度进行了评估,结果表明其在脂质单层上实验观察到的范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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