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Functional characterization of the quorum sensing regulator RsaL in the plant-beneficial strain Pseudomonas putida WCS358

机译:植物有益菌株恶臭假单胞菌WCS358中群体感应调节剂RsaL的功能表征

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摘要

In many bacteria, quorum sensing (QS) systems rely on a signal receptor and a. synthase producing N-acyl-homoserine lactone(s) as the signal molecule(s). In some species, the rsaL gene, located between the signal receptor and synthase genes, encodes a repressor limiting signal synthase expression and hence signal molecule production. Here we investigate the molecular mechanism of action of the RsaL protein in the plant growth-promoting rhizobacterium Pseudomonas putida WCS358 (RsaL(WCS)). In P. putida WCS358, RsaL(WCS) displayed a strong repressive effect on the promoter of the QS signal synthase gene, ppuI, while it did not repress the same promoter in Pseudomonas aeruginosa. DNase I protection assays showed that purified RsaL(WCS) specifically binds to ppuI on a DNA region overlapping the predicted σ(70)-binding site, but such protection was observed only at high protein concentrations. Accordingly, electrophoretic mobility shift assays showed that the RsaL(WCS) protein was not able to form stable complexes efficiently with a probe encompassing the ppuI promoter, while it formed stable complexes with the promoter of lasI, the gene orthologous to ppuI in P. aeruginosa. This difference seems to be dictated by the lower dyad symmetry of the RsaL(WCS)-binding sequence on the ppuI promoter relative to that on the lasI promoter. Comparison of the results obtained in vivo and in vitro suggests that RsaL(WCS) needs a molecular interactor/cofactor specific for P. putida WCS358 to repress ppuI transcription. We also demonstrate that RsaL(WCS) regulates siderophore-mediated growth limitation of plant pathogens and biofilm formation, two processes relevant for plant growth-promoting activity.
机译:在许多细菌中,群体感应(QS)系统依赖于信号接收器和信号系统。合酶产生N-酰基-高丝氨酸内酯作为信号分子。在某些物种中,位于信号受体和合酶基因之间的rsaL基因编码阻遏物,限制了信号合酶的表达并因此限制了信号分子的产生。在这里,我们研究了促进植物生长的根瘤菌恶臭假单胞菌WCS358(RsaL(WCS))中RsaL蛋白作用的分子机理。在恶臭假单胞菌WCS358中,RsaL(WCS)对QS信号合酶基因ppuI的启动子表现出强大的抑制作用,而在铜绿假单胞菌中未抑制相同的启动子。 DNase I保护试验表明,纯化的RsaL(WCS)与重叠预测的σ(70)结合位点的DNA区域上的ppuI特异性结合,但是仅在高蛋白浓度下才观察到这种保护。因此,电泳迁移率迁移分析表明,RsaL(WCS)蛋白不能与包含ppuI启动子的探针有效地形成稳定的复合物,而与lasI(铜绿假单胞菌中与ppuI同源的基因)的启动子形成稳定的复合物。 。这种差异似乎是由ppuI启动子上的RsaL(WCS)结合序列相对于lasI启动子上的较低dyad对称性决定的。体内和体外获得的结果比较表明,RsaL(WCS)需要特异恶臭假单胞菌WCS358的分子相互作用子/辅因子来抑制ppuI转录。我们还证明RsaL(WCS)调节铁载体介导的植物病原体和生物膜形成的增长限制,这两个过程与植物的生长促进活性有关。

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