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首页> 外文期刊>Environmental microbiology >The plant compound rosmarinic acid induces a broad quorum sensing response in Pseudomonas aeruginosa PAO1
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The plant compound rosmarinic acid induces a broad quorum sensing response in Pseudomonas aeruginosa PAO1

机译:植物复合罗肉桂酸诱导铜绿假单胞菌Pao1的宽批量传感反应

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摘要

The interference of plant compounds with bacterial quorum sensing (QS) is a major mechanism through which plants and bacteria communicate. However, little is known about the modes of action and effects on signal integrity during this type of communication. We have recently shown that the plant compound rosmarinic acid (RA) specifically binds to the Pseudomonas aeruginosa RhlR QS receptor. To determine the effect of RA on expression patterns, we carried out global RNA-seq analysis. The results show that RA induces the expression of 128 genes, amongst which many virulence factor genes. RA triggers a broad QS response because 88% of the induced genes are known to be controlled by QS, and because RA stimulated genes were found to be involved in all four QS signalling systems within P. aeruginosa. This finding was confirmed through the analysis of transcriptional fusions transferred to wt and a rhlI/lasI double mutant. RA did not induce gene expression in the rhlI/lasI/rhlR triple mutant indicating that the effects observed are due to the RA-RhlR interaction. Furthermore, RA induced seven sRNAs that were all encoded in regions close to QS and/or RA induced genes. This work significantly enhances our understanding of plant bacteria interaction.
机译:植物化合物与细菌仲裁感测(QS)的干扰是植物和细菌连通的主要机制。然而,关于这种类型的通信期间的动作模式和对信号完整性的影响很少。我们最近表明植物化合物罗霉酸(RA)特异性结合假单胞菌铜绿假单胞菌QS受体。为了确定RA对表达模式的影响,我们进行了全局RNA-SEQ分析。结果表明,RA诱导128个基因的表达,其中许多毒力因子基因。 RA触发了广泛的QS响应,因为已知88%的诱导基因被QS控制,并且因为发现RA刺激基因参与P. Aeruginosa内的所有四个信号传导系统。通过分析转移至WT和RHLI / LASI双突变体的转录融合来证实该发现。 Ra没有诱导RHLI / LASI / RHLR三重突变体中的基因表达,表明观察到的效果是由于RA-RHLR相互作用。此外,RA诱导七个SRNA,其全部在接近QS和/或RA诱导基因的区域中编码。这项工作显着提高了我们对植物细菌相互作用的理解。

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