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细菌鞭毛丝纠缠的几何限制。

Geometrical Constraints on the Tangling of Bacterial Flagellar Filaments.

机构信息

Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Cambridge, CB3 0WA, United Kingdom.

出版信息

Sci Rep. 2020 May 21;10(1):8406. doi: 10.1038/s41598-020-64974-6.

Abstract

Many species of bacteria swim through viscous environments by rotating multiple helical flagella. The filaments gather behind the cell body and form a close helical bundle, which propels the cell forward during a "run". The filaments inside the bundle cannot be continuously actuated, nor can they easily unbundle, if they are tangled around one another. The fact that bacteria can passively form coherent bundles, i.e. bundles which do not contain tangled pairs of filaments, may appear surprising given that flagella are actuated by uncoordinated motors. In this article, we establish the theoretical conditions under which a pair of rigid helical filaments can form a tangled bundle, and we compare these constraints with experimental data collected from the literature. Our results suggest that bacterial flagella are too straight and too far apart to form tangled bundles based on their intrinsic, undeformed geometry alone. This makes the formation of coherent bundles more robust against the passive nature of the bundling process, where the position of individual filaments cannot be controlled.

摘要

许多种细菌通过旋转多个螺旋状鞭毛在粘性环境中游动。这些丝状体聚集在细胞体后面,形成一个紧密的螺旋束,在“奔跑”过程中推动细胞前进。如果丝状体相互缠绕,束内的丝状体不能连续地被激活,也不容易解开。考虑到鞭毛是由不协调的发动机驱动的,细菌能够被动地形成连贯的束,即不包含缠结对丝状体的束,这一事实可能令人惊讶。在本文中,我们建立了一对刚性螺旋丝状体形成缠结束的理论条件,并将这些约束与从文献中收集的实验数据进行了比较。我们的结果表明,仅基于细菌鞭毛的固有、未变形的几何形状,其过于直且彼此之间相距太远,无法形成缠结束。这使得连贯束的形成对捆绑过程的被动性质更具鲁棒性,在该过程中无法控制单个丝状体的位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ca2/7242426/71ddcc44d1ac/41598_2020_64974_Fig1_HTML.jpg

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