Frederix Marijke, Edwards Anne, Swiderska Anna, Stanger Andrew, Karunakaran Ramakrishnan, Williams Alan, Abbruscato Pamela, Sanchez-Contreras Maria, Poole Philip S, Downie J Allan
Department of Molecular Microbiology, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.
Mol Microbiol. 2014 Aug;93(3):464-78. doi: 10.1111/mmi.12670. Epub 2014 Jul 2.
In Rhizobium leguminosarum bv. viciae, quorum-sensing is regulated by CinR, which induces the cinIS operon. CinI synthesizes an AHL, whereas CinS inactivates PraR, a repressor. Mutation of praR enhanced biofilms in vitro. We developed a light (lux)-dependent assay of rhizobial attachment to roots and demonstrated that mutation of praR increased biofilms on pea roots. The praR mutant out-competed wild-type for infection of pea nodules in mixed inoculations. Analysis of gene expression by microarrays and promoter fusions revealed that PraR represses its own transcription and mutation of praR increased expression of several genes including those encoding secreted proteins (the adhesins RapA2, RapB and RapC, two cadherins and the glycanase PlyB), the polysaccharide regulator RosR, and another protein similar to PraR. PraR bound to the promoters of several of these genes indicating direct repression. Mutations in rapA2, rapB, rapC, plyB, the cadherins or rosR did not affect the enhanced root attachment or nodule competitiveness of the praR mutant. However combinations of mutations in rapA, rapB and rapC abolished the enhanced attachment and nodule competitiveness. We conclude that relief of PraR-mediated repression determines a lifestyle switch allowing the expression of genes that are important for biofilm formation on roots and the subsequent initiation of infection of legume roots.
在豌豆根瘤菌蚕豆生物变种中,群体感应由CinR调控,CinR可诱导cinIS操纵子。CinI合成一种AHL,而CinS可使阻遏物PraR失活。praR的突变增强了体外生物膜的形成。我们开发了一种依赖光(lux)的根瘤菌附着于根的检测方法,并证明praR的突变增加了豌豆根上的生物膜。在混合接种中,praR突变体在感染豌豆根瘤方面比野生型更具竞争力。通过微阵列和启动子融合对基因表达进行分析发现,PraR可抑制其自身转录,praR的突变增加了包括那些编码分泌蛋白(黏附素RapA2、RapB和RapC、两种钙黏着蛋白和聚糖酶PlyB)、多糖调节因子RosR以及另一种与PraR相似的蛋白质的几个基因的表达。PraR与其中几个基因的启动子结合,表明存在直接抑制作用。rapA2、rapB、rapC、plyB、钙黏着蛋白或rosR中的突变并不影响praR突变体增强的根附着能力或根瘤竞争力。然而,rapA、rapB和rapC中的突变组合消除了增强的附着能力和根瘤竞争力。我们得出结论,PraR介导的抑制作用的解除决定了一种生活方式的转变,使得对根上生物膜形成以及随后豆科植物根感染起始至关重要的基因得以表达。