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The Symbiosis Regulator CbrA Modulates a Complex Regulatory Network Affecting the Flagellar Apparatus and Cell Envelope Proteins

机译:共生调节剂CbrA调节影响鞭毛器具和细胞包膜蛋白的复杂调节网络。

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摘要

Sinorhizobium meliloti participates in a nitrogen-fixing symbiosis with legume plant host species of the genera Medicago, Melilotus, and Trigonella. We recently identified an S. meliloti two-component sensory histidine kinase, CbrA, which is absolutely required to establish a successful symbiosis with Medicago sativa (K. E. Gibson, G. R. Campbell, J. Lloret, and G. C. Walker, J. Bacteriol. 188:4508-4521, 2006). In addition to having a symbiotic defect, the cbrA::Tn5 mutant also has free-living phenotypes that suggest a cell envelope perturbation. Because the bases for these phenotypes are not well understood, we undertook an identification of CbrA-regulated genes. We performed a microarray analysis and compared the transcriptome of the cbrA::Tn5 mutant to that of the wild type. Our global analysis of gene expression identified 162 genes that are differentially expressed in the cbrA::Tn5 mutant, including those encoding proteins involved in motility and chemotaxis, metabolism, and cell envelope function. With regard to those genes with a known role in symbiosis, we observed increased expression of nine genes with overlapping functions in bacterial invasion of its host, which suggests that the mutant could be competent for invasion. Since these CbrA-repressed genes are vital to the invasion process, it appears that down-regulation of CbrA activity is important at this stage of nodule development. In contrast, our previous work showed that CbrA is required for bacteria to establish themselves within the host as nitrogen-fixing symbionts. Therefore, we propose a model in which CbrA functions as a developmental switch during symbiosis.
机译:苜蓿中华根瘤菌与苜蓿,紫花苜蓿和三角藻属的豆类植物寄主物种共同参与固氮共生。我们最近鉴定了一种苜蓿链球菌两组分感觉组氨酸激酶CbrA,它是与苜蓿成功共生所必需的(KE Gibson,GR Campbell,J. Lloret,and GC Walker,J. Bacteriol。188:4508 -4521,2006)。除了具有共生缺陷外,cbrA :: Tn5突变体还具有自由生存的表型,表明细胞被膜微扰。由于这些表型的基础还不太清楚,因此我们进行了CbrA调控基因的鉴定。我们进行了微阵列分析,并比较了cbrA :: Tn5突变体与野生型的转录组。我们对基因表达的全球分析确定了162个在cbrA :: Tn5突变体中差异表达的基因,包括那些编码与运动性和趋化性,代谢和细胞包膜功能有关的蛋白质的基因。关于在共生中具有已知作用的那些基因,我们观察到九种具有重叠功能的基因在其宿主的细菌入侵中的表达增加,这表明该突变体可能具有入侵能力。由于这些CbrA抑制的基因对于入侵过程至关重要,因此在结节形成的这一阶段,CbrA活性的下调似乎很重要。相反,我们以前的工作表明,细菌必须在细菌内将CbrA固定为固氮共生体。因此,我们提出了一个模型,其中CbrA在共生过程中起着发育转换的作用。

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