首页> 外文期刊>Archives of microbiology >Complex quorum-sensing regulatory systems regulate bacterial growth and symbiotic nodulation in Mesorhizobium tianshanense.
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Complex quorum-sensing regulatory systems regulate bacterial growth and symbiotic nodulation in Mesorhizobium tianshanense.

机译:复杂的群体感应调节系统调节天山中生根瘤菌的细菌生长和共生结瘤。

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LuxR/LuxI-type quorum-sensing systems have been shown to be important for symbiotic interactions between a number of rhizobium species and host legumes. In this study, we found that different isolates of Mesorhizobium tianshanense, a moderately-growing Rhizobium that forms nodules on a number of types of licorice plants, produces several different N-acyl homoserine lactone-like molecules. In M. tianshanense CCBAU060A, we performed a genetic screen and identified a network of regulatory components including a set of LuxI/LuxR-family regulators as well as a MarR-family regulator that is required for quorum-sensing regulation. Furthermore, compared with the wild-type strains, quorum-sensing deficient mutants showed a reduced growth rate and were defective in nodule formation on their host plant Glycyrrhiza uralensis. These data suggest that different M. tianshanense strains may use diverse quorum-sensing systems to regulate symbiotic process.
机译:已经显示,LuxR / LuxI型群体感应系统对于许多根瘤菌物种与宿主豆类之间的共生相互作用非常重要。在这项研究中,我们发现天山中生根瘤菌的不同分离株(一种中等生长的根瘤菌,在多种类型的甘草植物上形成结节)产生几种不同的N-酰基高丝氨酸内酯样分子。在天山分枝杆菌CCBAU060A中,我们进行了一次基因筛选,并确定了一个调控元件网络,包括一组群体感应调控所需的LuxI / LuxR系列调控子和一个MarR系列调控子。此外,与野生型菌株相比,群体感应缺陷突变体显示出降低的生长速率,并且在其寄主植物甘草中的根瘤形成缺陷。这些数据表明,不同的天山支原体菌株可能使用多种群体感应系统来调节共生过程。

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