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Rice and bean AHL-mimic quorum-sensing signals specifically interfere with the capacity to form biofilms by plant-associated bacteria

机译:大米和豆类的AHL模拟群体感应信号特别干扰植物相关细菌形成生物膜的能力

摘要

Many bacteria regulate their gene expression in response to changes in their population density in a process called quorum sensing (QS), which involves communication between cells mediated by small diffusible signal molecules termed autoinducers. n-acyl-homoserine-lactones (AHLs) are the most common autoinducers in proteobacteria. QS-regulated genes are involved in complex interactions between bacteria of the same or different species and even with some eukaryotic organisms. Eukaryotes, including plants, can interfere with bacterial QS systems by synthesizing molecules that interfere with bacterial QS systems.In this work, the presence of AHL-mimic QS molecules in diverse Oryza sativa (rice) and Phaseolus vulgaris (bean) plant-samples were detected employing three biosensor strains. A more intensive analysis using biosensors carrying the lactonase enzyme showed that bean and rice seed-extract contain molecules that lack the typical lactone ring of AHLs. Interestingly, these molecules specifically alter the QS-regulated biofilm formation of two plant-associated bacteria, Sinorhizobium fredii SMH12 and Pantoea ananatis AMG501, suggesting that plants are able to enhance or to inhibit the bacterial QS systems depending on the bacterial strain. Further studies would contribute to a better understanding of plant–bacteria relationships at the molecular level.
机译:许多细菌在称为群体感应(QS)的过程中响应种群密度的变化来调节其基因表达,该过程涉及由称为自动诱导物的小扩散信号分子介导的细胞之间的通讯。正酰基高丝氨酸内酯(AHL)是蛋白细菌中最常见的自诱导剂。 QS调控的基因参与相同或不同物种的细菌之间甚至与某些真核生物之间的复杂相互作用。真核生物,包括植物,可以通过合成干扰细菌QS系统的分子来干扰细菌QS系统。在这项工作中,AHL模拟QS分子存在于不同的稻(稻)和菜豆(豆)植物样品中。使用三种生物传感器菌株检测到。使用带有内酯酶的生物传感器进行的更深入的分析表明,豆类和大米种子提取物中含有的分子缺少典型的AHL内酯环。有趣的是,这些分子特异性地改变了两种与植物相关的细菌,即Sinorhizobium fredii SMH12和Pantoea ananatis AMG501的QS调控生物膜形成,表明植物能够根据细菌菌株增强或抑制细菌QS系统。进一步的研究将有助于在分子水平上更好地理解植物与细菌之间的关系。

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