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自身产生的细胞外刺激调节铜绿假单胞菌的群体游动行为。

Self-produced extracellular stimuli modulate the Pseudomonas aeruginosa swarming motility behaviour.

作者信息

Tremblay Julien, Richardson Anne-Pascale, Lépine François, Déziel Eric

机构信息

INRS-Institut Armand-Frappier, Laval (Québec), H7V 1B7, Canada.

出版信息

Environ Microbiol. 2007 Oct;9(10):2622-30. doi: 10.1111/j.1462-2920.2007.01396.x.

Abstract

Pseudomonas aeruginosa presents three types of motilities: swimming, twitching and swarming. The latter is characterized by rapid and coordinated group movement over a semisolid surface resulting from morphological differentiation and intercellular interactions. A striking feature of P. aeruginosa swarming motility is the formation of migrating tendrils producing colonies with complex fractal-like patterns. Previous studies have shown that normal swarming motility is intimately related to the production of extracellular surface-active molecules: rhamnolipids (RLs), composed of monorhamnolipids (mono-RLs) and dirhamnolipids (di-RLs), and 3-(3-hydroxyalkanoyloxy) alkanoic acids (HAAs). Here, we report that (i) di-RLs attract active swarming cells while HAAs behave as strong repellents, (ii) di-RLs promote and HAAs inhibit tendril formation and migration, (iii) di-RLs and HAAs display different diffusion kinetics on a surface as di-RLs spread faster than HAAs in agar, (iv) di-RLs and HAAs have no effect on swimming cells, suggesting that swarming cells are different from swimming cells not only in morphology but also at the regulatory level and (v) mono-RLs act as wetting agents. We propose a model explaining how HAAs and di-RLs together modulate the behaviour of swarming migrating cells by acting as self-produced negative and positive chemotactic-like stimuli.

摘要

铜绿假单胞菌具有三种运动方式

游泳运动、颤动运动和群体运动。群体运动的特征是在半固体表面上快速且协调的群体移动,这是由形态分化和细胞间相互作用导致的。铜绿假单胞菌群体运动的一个显著特征是形成迁移卷须,产生具有复杂分形图案的菌落。先前的研究表明,正常的群体运动与细胞外表面活性分子的产生密切相关:鼠李糖脂(RLs),由单鼠李糖脂(单 - RLs)和双鼠李糖脂(双 - RLs)组成,以及3 -(3 - 羟基烷酰氧基)链烷酸(HAAs)。在此,我们报告:(i)双 - RLs吸引活跃的群体运动细胞,而HAAs表现为强排斥剂;(ii)双 - RLs促进且HAAs抑制卷须形成和迁移;(iii)双 - RLs和HAAs在表面显示出不同的扩散动力学,因为双 - RLs在琼脂中的扩散速度比HAAs快;(iv)双 - RLs和HAAs对游泳运动细胞没有影响,这表明群体运动细胞不仅在形态上与游泳运动细胞不同,而且在调节水平上也不同;(v)单 - RLs充当湿润剂。我们提出了一个模型,解释了HAAs和双 - RLs如何通过作为自身产生的类似负性和正性趋化刺激物共同调节群体迁移细胞的行为。

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