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The volatile organic compound dimethylhexadecylamine affects bacterial growth and swarming motility of bacteria

机译:挥发性有机化合物二甲基己二胺影响细菌生长和细菌的蜂拥而至

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Bacteria have developed different intra- and inter-specific communication mechanisms that involve the production, release, and detection of signaling molecules, because these molecules serve as the autoinducers involved in "quorum sensing" systems. Other communication mechanisms employ volatile signaling molecules that regulate different bacterial processes. The Arthrobacter agilis strain UMCV2 is a plant growth promoting actinobacterium, which induces plant growth and inhibits phytopathogenic fungi by emitting the dimethylhexadecylamine (DMHDA). However, little is known about the effect of this volatile compound on A. agilis UMCV2 itself, as well as on other bacteria. By exposing A. agilis UMCV2 and bacteria of the genus Bacillus and Pseudomonas to different concentrations of DMHDA, this study showed the dose-dependent effects of DMHDA on A. agilis UMCV2 growth, cellular viability, swarming motility, and expression of marker genes of the flagellar apparatus of bacteria. DMHDA was found to also modulate swarming motility of Bacillus sp. ZAP018 and P. fluorescens UM270, but not that of P. aeruginosa PA01. These data indicate that DMHDA is involved in both intra- and inter-specific bacterial interaction.
机译:细菌已经开发出不同的内际通信机制,其涉及发信号分子的生产,释放和检测,因为这些分子用作涉及“法定传感”系统的自动化器。其他通信机制采用调节不同细菌过程的挥发性信号传导分子。关节杆菌Agilis菌株UMCV2是一种植物生长促进抗菌杆菌,其诱导植物生长并通过发射二甲基己酰胺(DMHDA)来抑制植物致病性真菌。然而,关于该挥发性化合物对A. Agilis UMCV2本身以及其他细菌的影响很少。通过暴露于芽孢杆菌属的Agilis Umcv2和细菌和假芽孢杆菌的不同浓度的DMHDA,这项研究显示了DMHDA对A. Agilis UMCV2生长,细胞活力,蜂拥运动和标志物基因表达的剂量依赖性作用鞭毛细菌设备。发现DMHDA也调节芽孢杆菌的蜂拥而至。 ZAP018和P.荧光荧光素UM270,但不是P. Aeruginosa PA01的荧光素。这些数据表明DMHDA参与了特异性和特异性间的细菌相互作用。

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