塑形:棒状细菌如何控制它们的几何形状?

Systems and Synthetic Biology Pub Date : 2014-09-01 Epub Date: 2014-04-22 DOI:10.1007/s11693-014-9143-9
Ariel Amir, Sven van Teeffelen
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引用次数: 20

摘要

杆状细菌在生长过程中以惊人的精度保持其圆柱形。然而,它们也能够适应外力和约束,例如通过生长成狭窄或弯曲的限制。尽管是最简单的形态之一,我们仍然远远没有完全理解形状是如何被强有力地调节的,以及细菌是如何以极好的精度获得近乎完美的圆柱形的。然而,最近的实验和理论发现表明,细胞壁几何形状和机械应力在杆状细菌的细胞形状调节中起重要作用。我们回顾了我们目前对细胞壁结构和生长动力学的理解,并讨论了在没有或存在外部约束的情况下形状调节的可能候选调节线索。最后,我们提出了进一步的实验和理论方向,可能有助于阐明这一基本问题。
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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Getting into shape: How do rod-like bacteria control their geometry?

Rod-like bacteria maintain their cylindrical shapes with remarkable precision during growth. However, they are also capable to adapt their shapes to external forces and constraints, for example by growing into narrow or curved confinements. Despite being one of the simplest morphologies, we are still far from a full understanding of how shape is robustly regulated, and how bacteria obtain their near-perfect cylindrical shapes with excellent precision. However, recent experimental and theoretical findings suggest that cell-wall geometry and mechanical stress play important roles in regulating cell shape in rod-like bacteria. We review our current understanding of the cell wall architecture and the growth dynamics, and discuss possible candidates for regulatory cues of shape regulation in the absence or presence of external constraints. Finally, we suggest further future experimental and theoretical directions which may help to shed light on this fundamental problem.

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