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Complex Regulation of Symbiotic Functions Is Coordinated by MucR and Quorum Sensing in Sinorhizobium meliloti

机译:苜蓿中华根瘤菌的MucR和群体感应协调共生功能的复杂调控。

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In Sinorhizobium meliloti, the production of exopolysaccharides such as succinoglycan and exopolysaccharide II (EPS II) enables the bacterium to invade root nodules on Medicago sativa and establish a nitrogen-fixing symbiosis. While extensive research has focused on succinoglycan, less is known concerning the regulation of EPS II or the mechanism by which it mediates entrance into the host plant. Previously, we reported that the ExpR/Sin quorum-sensing system is required to produce the symbiotically active low-molecular-weight fraction of this exopolysaccharide. Here, we show that this system induces EPS II production by increasing expression of the expG-expC operon, encoding both a transcriptional regulator (ExpG) and a glycosyl transferase (ExpC). ExpG derepresses EPS II production at the transcriptional level from MucR, a RosR homolog, while concurrently elevating expression of expC, resulting in the synthesis of the low-molecular-weight form. While the ExpR/Sin system abolishes the role of MucR on EPS II production, it preserves a multitude of other quorum-sensing-independent regulatory functions which promote the establishment of symbiosis. In planktonic S. meliloti, MucR properly coordinates a diverse set of bacterial behaviors by repressing a variety of genes intended for expression during symbiosis and enhancing the bacterial ability to induce root nodule formation. Quorum sensing precisely modulates the functions of MucR to take advantage of both the production of symbiotically active EPS II as well as the proper coordination of bacterial behavior required to promote symbiosis.
机译:中,胞外多糖(例如琥珀聚糖和胞外多糖II(EPS II))的产生使细菌能够入侵 Medicago sativa 上的根瘤并建立固氮共生关系。尽管广泛的研究集中在琥珀聚糖上,但对EPS II的调控或其介导进入宿主植物的机理了解较少。以前,我们报道需要ExpR / Sin群体感应系统来生产这种胞外多糖的共生活性低分子量级分。在这里,我们显示该系统通过增加 expG-expC 操纵子的表达来诱导EPS II产生,该操纵子同时编码转录调节因子(ExpG)和糖基转移酶(ExpC)。 ExpG在Rosc同源物MucR的转录水平上抑制EPS II的产生,同时提高 expC 的表达,从而合成了低分子量形式。虽然ExpR / Sin系统取消了MucR在EPS II生产中的作用,但它保留了许多其他不依赖群体感应的调节功能,这些功能促进了共生的建立。在浮游生物中。 meliloti ,MucR可通过抑制共生过程中表达的多种基因并增强细菌诱导根瘤形成的能力来恰当地协调多种细菌行为。群体感应精确地调节MucR的功能,以利用共生活性EPS II的产生以及促进共生所需的细菌行为的适当协调。

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