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钩的瞬时锁定为鞭毛细菌提供了增强的运动性。

Transient locking of the hook procures enhanced motility to flagellated bacteria.

机构信息

Department of Physics, Engineering Physics and Optics, Center for Optics, Photonics and Lasers, Laval University, Quebec city, G1V 0A6, Canada.

出版信息

Sci Rep. 2017 Nov 27;7(1):16354. doi: 10.1038/s41598-017-16562-4.

Abstract

Flagellated bacteria often proliferate in inhomogeneous environments, such as biofilms, swarms and soil. In such media, bacteria are observed to move efficiently only if they can get out of "dead ends" by changing drastically their swimming direction, and even to completely reverse it. Even though these reorientations are ubiquitous, we have only recently begun to describe and understand how they happen. In the present work, we visualized the flagella of bacteria swimming in a soft agar solution. The surprising observation that the filaments do not rotate while being flipped from one side of the cell to the other suggests that reversals are driven directly by the motor rather than by the thrust created by the rotating filament. This was confirmed by observing bacteria in a liquid crystal, where the linear movement of bacteria greatly simplifies the analysis. These observations suggest that the reversal and reorientation processes involve a temporary locking of the flagellum's hook, which is the normally flexible joint between the rotary motor and the long helical filament that propels the cell. This newly described locked-hook mode occurs only when the motor switches to a clockwise rotation. That correlates with other phenomena that are triggered by a switch in one direction and not the other.

摘要

鞭毛细菌常在非均相环境中增殖,如生物膜、菌团和土壤。在这些介质中,细菌只有通过剧烈改变游动方向,甚至完全反转,才能有效地从“死胡同”中解脱出来。尽管这些重新定向现象无处不在,但我们直到最近才开始描述和理解它们是如何发生的。在本工作中,我们可视化了在软琼脂溶液中游动的细菌的鞭毛。一个令人惊讶的观察结果是,当鞭毛从细胞的一侧翻转到另一侧时,细丝并没有旋转,这表明反转是由马达直接驱动的,而不是由旋转细丝产生的推力驱动的。通过在液晶中观察细菌,这一假设得到了证实,在液晶中,细菌的线性运动极大地简化了分析。这些观察结果表明,反转和重新定向过程涉及到鞭毛钩的暂时锁定,鞭毛钩是旋转马达和推动细胞的长螺旋丝状结构之间通常灵活的连接点。这种新描述的锁钩模式仅在马达切换到顺时针旋转时发生。这与其他仅由一个方向的开关触发而不是另一个方向的开关触发的现象相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f0a/5703839/33f0375e6a2c/41598_2017_16562_Fig1_HTML.jpg

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