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首页> 外文期刊>Biochemical and Biophysical Research Communications >A proteomic analysis of Arabidopsis thaliana seedling responses to 3-oxo-octanoyl-homoserine lactone, a bacterial quorum-sensing signal
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A proteomic analysis of Arabidopsis thaliana seedling responses to 3-oxo-octanoyl-homoserine lactone, a bacterial quorum-sensing signal

机译:拟南芥幼苗对3-氧-辛酰基-高丝氨酸内酯(一种细菌群体感应信号)的响应的蛋白质组学分析

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摘要

N-acyl-homoserine lactones (AHLs) are a class of bacterial quorum-sensing (QS) signals that are commonly used by Gram-negative bacteria for cell-to-cell communication. Recently, it has become evident that AHLs can regulate plant root growth and trigger plant defense responses; however, little is known about the plant response mechanisms to bacterial QS signals. In this study, we used a proteomic approach to investigate the responses of Arabidopsis thaliana seedlings to N-3-oxo-octanoyl-homoserine lactone (3OC8-HSL), a bacterial QS signal. The results revealed that the abundance of 53 protein spots was significantly altered; two thirds of these proteins were found to be up-regulated after 3OC8-HSL treatment. Thirty-four proteins were identified using MALDI-TOF-MS. These 3OC8-HSL-responsive proteins, in addition to one protein of unknown function, are implicated in a variety of physiological processes, including metabolism of carbohydrate and energy, protein biosynthesis and quality control systems, defense response and signal transduction and cytoskeleton remodeling. Our bioinformatic analysis indicated that the chloroplasts are the intracellular organelles most influenced by the exposure to 3OC8-HSL. Our data indicate that plants have an extensive range of functional responses to bacterial AHLs that may play important roles in the interaction between plants and bacteria.
机译:N-酰基高丝氨酸内酯(AHLs)是一类细菌群体感应(QS)信号,革兰氏阴性细菌通常用于细胞间通讯。最近,很明显,AHL可以调节植物根系生长并触发植物防御反应。然而,关于植物对细菌QS信号的反应机制知之甚少。在这项研究中,我们使用蛋白质组学方法来研究拟南芥幼苗对细菌QS信号N-3-氧代辛酰基-高丝氨酸内酯(3OC8-HSL)的反应。结果表明,53个蛋白斑点的丰度发生了显着变化。在3OC8-HSL处理后,发现三分之二的蛋白质被上调。使用MALDI-TOF-MS鉴定了34种蛋白质。除了一种功能未知的蛋白质外,这些3OC8-HSL反应蛋白还涉及多种生理过程,包括碳水化合物和能量的代谢,蛋白质生物合成和质量控制系统,防御反应以及信号转导和细胞骨架重塑。我们的生物信息学分析表明,叶绿体是受3OC8-HSL暴露影响最大的细胞内细胞器。我们的数据表明,植物对细菌AHL具有广泛的功能性响应,这可能在植物与细菌之间的相互作用中起重要作用。

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