Bahlawane Christelle, McIntosh Matthew, Krol Elizaveta, Becker Anke
Institute for Genome Research and Systems Biology, Center for Biotechnology, Bielefeld University, 33594 Bielefeld, Germany.
Mol Plant Microbe Interact. 2008 Nov;21(11):1498-509. doi: 10.1094/MPMI-21-11-1498.
In order to enter symbiosis with its legume partner, Sinorhizobium meliloti requires regulatory systems for the appropriate responses to its environment. For example, motility is required for the chemotactic movement of bacteria toward the compounds released by its host, and exopolysaccharides (EPS) are required for bacterial attachment to the root or for invasion of the infection thread. Previous research has shown that ExoR/ExoS/ChvI as well as the ExpR/Sin quorum-sensing system inversely regulate both motility and EPS production, although the regulation mechanisms were unknown. We were able to attribute the ExpR-mediated regulation of motility to the ability of ExpR to bind a DNA sequence upstream of visN when activated by N-acyl-homoserine lactone. Furthermore, MucR, previously characterized as a regulator of EPS production, also affected motility. MucR inhibited expression of rem encoding an activator of motility gene expression and, consequently, the expression of Rem-regulated genes such as flaF and flgG. Binding of MucR to the rem promoter region was demonstrated and a sequence motif similar to the previously identified MucR binding consensus was identified within this region. The swarming ability of S. meliloti Rm2011 was shown to depend on a functional ExpR/Sin quorum-sensing system and the production of both flagella and EPS. Finally, we propose a model for the coordination of motility and EPS synthesis in S. meliloti.
为了与其豆科植物伙伴建立共生关系,苜蓿中华根瘤菌需要调控系统以对其环境做出适当反应。例如,细菌向宿主释放的化合物进行趋化运动需要运动性,而细菌附着于根部或侵入感染线需要胞外多糖(EPS)。先前的研究表明,ExoR/ExoS/ChvI以及ExpR/群体感应系统对运动性和EPS产生具有反向调控作用,尽管调控机制尚不清楚。我们能够将ExpR介导的运动性调控归因于当被N-酰基高丝氨酸内酯激活时,ExpR与visN上游DNA序列结合的能力。此外,先前被鉴定为EPS产生调节因子的MucR也影响运动性。MucR抑制了编码运动性基因表达激活因子的rem的表达,因此也抑制了Rem调控的基因如flaF和flgG的表达。证明了MucR与rem启动子区域的结合,并在该区域内鉴定出一个与先前鉴定的MucR结合共有序列相似的序列基序。苜蓿中华根瘤菌Rm2011的群体运动能力被证明依赖于功能性ExpR/群体感应系统以及鞭毛和EPS的产生。最后,我们提出了一个苜蓿中华根瘤菌运动性与EPS合成协调的模型。