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Quorum signal molecules as biosurfactants affecting swarming in Rhizobium etli

机译:群体信号分子作为生物表面活性剂,影响根瘤菌群

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Swarming motility is suggested to be a social phenomenon that enables groups of bacteria to coordinately and rapidly move atop solid surfaces. This multicellular behavior, during which the apparently organized bacterial populations are embedded in an extracellular slime layer, has previously been linked with biofilm formation and virulence. Many population density-controlled activities involve the activation of complex signaling pathways using small diffusible molecules, also known as autoinducers. In Gram-negative bacteria, quorum sensing (QS) is achieved primarily by means of N-acylhomoserine lactones (AHLs). Here, we report on a dual function of AHL molecules in controlling swarming behavior of Rhizobium etli. the bacterial symbiotic partner of the common bean plant. The major swarming regulator of R. etli is the cinIR QS system, which is specifically activated in swarming cells by its cognate AHL and other long-chain AHLs. This signaling role of long-chain AHLs is required for high-level expression of the cin and rai QS systems. Besides this signaling function, the long-chain AHLs also have a direct role in surface movement of swarmer cells as these molecules possess significant surface activity and induce liquid flows, known as Marangoni flows, as a result of gradients in surface tension at biologically relevant concentrations. These results point to an as-yet-undisclosed direct role of long-chain AHL molecules as biosurfactants.
机译:群体运动被认为是一种社会现象,它使细菌群体能够协调并迅速地在固体表面上移动。这种多细胞的行为,其之前有组织的细菌种群被嵌入到细胞外的粘液层中,以前与生物膜的形成和毒力有关。许多人口密度控制的活动涉及使用小的可扩散分子(也称为自诱导剂)激活复杂的信号通路。在革兰氏阴性细菌中,主要通过N-酰基高丝氨酸内酯(AHL)实现群体感应(QS)。在这里,我们报道了AHL分子在控制根瘤菌等虫群中的双重功能。普通豆类植物的细菌共生伴侣。 R. etli的主要种群调节因子是cinIR QS系统,该系统通过其同源AHL和其他长链AHL在种群细胞中被特异性激活。 cin和rai QS系统的高水平表达需要长链AHL的这种信号传导作用。除了这种信号传导功能外,长链AHL在成群的细胞的表面运动中也具有直接作用,因为这些分子具有显着的表面活性,并且由于生物学相关浓度下的表面张力梯度而导致液体流动,称为Marangoni流动。 。这些结果表明,长链AHL分子作为生物表面活性剂尚未发挥直接作用。

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