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Deciphering the Symbiotic Significance of Quorum Sensing Systems of Sinorhizobium fredii HH103

机译:弗氏中华根瘤菌HH103群体感应系统的共生意义

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摘要

Quorum sensing (QS) is a bacterial cell-to-cell signaling mechanism that collectively regulates and synchronizes behaviors by means of small diffusible chemical molecules. In rhizobia, QS systems usually relies on the synthesis and detection of -acyl-homoserine lactones (AHLs). In the model bacterium functions regulated by the QS systems TraI-TraR and SinI-SinR(-ExpR) include plasmid transfer, production of surface polysaccharides, motility, growth rate and nodulation. These systems are also present in other bacteria of the genus, with variations at the species and strain level. In NGR234 phenotypes regulated by QS are plasmid transfer, growth rate, sedimentation, motility, biofilm formation, EPS production and copy number of the symbiotic plasmid (pSym). The analysis of the HH103 genomes reveal also the presence of both QS systems. In this manuscript we characterized the QS systems of HH103, determining that both TraI and SinI AHL-synthases proteins are responsible of the production of short- and long-chain AHLs, respectively, at very low and not physiological concentrations. Interestingly, the main HH103 -type genes, and , are split into two ORFs, suggesting that in HH103 the corresponding carboxy-terminal proteins, which contain the DNA-binding motives, may control target genes in an AHL-independent manner. The presence of a split gene is common in other strains.
机译:群体感应(QS)是一种细菌细胞间信号传导机制,可通过小的可扩散化学分子共同调节和同步行为。在根瘤菌中,QS系统通常依赖于-酰基-高丝氨酸内酯(AHL)的合成和检测。在模型中,由QS系统调节的细菌功能TraI-TraR和SinI-SinR(-ExpR)包括质粒转移,表面多糖的产生,运动性,生长速率和结瘤。这些系统也存在于该属的其他细菌中,其种类和菌株水平有所不同。在NGR234中,受QS调控的表型为质粒转移,生长速率,沉降,运动性,生物膜形成,EPS产量和共生质粒(pSym)的拷贝数。 HH103基因组的分析还揭示了两个QS系统的存在。在本手稿中,我们对HH103的QS系统进行了表征,确定TraI和SinI AHL合成酶蛋白分别在非常低而不是生理浓度下分别负责短链和长链AHL的产生。有趣的是,主要的HH103型基因和和被分为两个ORF,这表明在HH103中,含有DNA结合动机的相应的羧基末端蛋白可以以AHL独立的方式控制靶基因。分裂基因的存在在其他菌株中很常见。

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