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Proteomic analysis of glucohexaose induced resistance to downy mildew in Cucumis sativus

机译:葡萄糖己糖诱导黄瓜黄瓜霜霉病抗性的蛋白质组学分析

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Glucohexaose, as one of synthetic oligosaccharides, induces the resistance response to protect plants from pathogen infection by inducing the systemic acquired resistance-like (SAR-like) response. To study the molecular mechanism of glucohexaose induced resistance, we investigate the physiological, biochemical and proteomic changes after glucohexaose treatment. The results shows cucumber plants had the highest protection level of 66.79% 48 h after the third times of 10 μg mL-1glucohexaose treatment. Significant increases in chlorophyll, photosynthetic rate, soluble sugar, leave dry weight and H2O2 were observed after glucohexaose treatment. Eighteen up-regulated proteins were identified by MALDI-TOF/TOF in glucohexaose-treated plants, predicted to be involved in photosynthesis, photorespiration, oxidative burst, transcriptional regulation, signal transduction and pathogen defense processes. The identification of up-regulated proteins involved in photosynthetic processes is a significant finding which suggests that a boost in metabolites is required for repartition of resources towards defense mechanisms. The proteins which responded to glucohexaose also included those associated with oxidative burst response, such as APX and isocitrate dehydrogenase. More comprehensive studies about the link between the molecular mechanisms regulated by ROS mediated photosynthesis and cucumber induced resistance by glucohexaose, are necessary in the future to broaden our understanding of induced resistance in plants.
机译:葡萄糖己糖作为一种合成的低聚糖,通过诱导全身性获得性抗性样(SAR样)反应,诱导抗性反应,从而保护植物免受病原体感染。为了研究葡萄糖己糖诱导的抗性的分子机制,我们研究了葡萄糖己糖处理后的生理,生化和蛋白质组学变化。结果表明,在10μgmL-1葡萄糖己糖第三次处理48 h后,黄瓜植株的最高保护水平为66.79%。葡萄糖己糖处理后,观察到叶绿素,光合速率,可溶性糖,干重和H2O2显着增加。 MALDI-TOF / TOF在葡萄糖己糖处理过的植物中鉴定出18种上调蛋白,预计它们参与了光合作用,光呼吸,氧化爆发,转录调控,信号转导和病原体防御过程。鉴定参与光合作用过程的上调蛋白是一个重要发现,这表明需要增加代谢产物才能将资源重新分配至防御机制。对葡萄糖己糖有反应的蛋白质还包括与氧化爆发反应相关的蛋白质,例如APX和异柠檬酸脱氢酶。将来有必要对由ROS介导的光合作用调控的分子机制与葡萄糖己糖诱导的黄瓜抗性之间的联系进行更全面的研究,以拓宽我们对植物诱导抗性的理解。

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