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Proteomic analysis reveals a role of melatonin in promoting cucumber seed germination under high salinity by regulating energy production

机译:蛋白质组学分析揭示了褪黑素在高盐度下通过调节能量产生来促进黄瓜种子发芽的作用

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摘要

Seed germination is a critical and complex process in the plant life cycle. Although previous studies have found that melatonin can promote seed germination under salt stress, the involvement of melatonin in the regulation of proteomic changes remains poorly understood. In this study, a total of 157 proteins were significantly influenced (ratio ≥ 2 or ≤ −2) by melatonin during seed germination under salt stress using a label-free quantitative technique. Our GO analysis revealed that several pathways were obviously regulated by melatonin, including ribosome biosynthesis, lipid metabolism, carbohydrate metabolism, and storage protein degradation. Not only stress-tolerant proteins but also proteins that produce ATP as part of glycolysis, the citric acid cycle, and the glyoxylate cycle were upregulated by melatonin. Overall, this study provides new evidence that melatonin alleviates the inhibitory effects of NaCl stress on seed germination by promoting energy production. This study is the first to provide insights at the proteomic level into the molecular mechanism of melatonin in response to salt stress in cucumber seeds. This may be helpful to further understand the role of melatonin in cucumber seed germination under stress conditions.
机译:种子发芽是植物生命周期中的关键且复杂的过程。尽管以前的研究发现褪黑激素可以促进盐胁迫下的种子发芽,但是褪黑激素在蛋白质组学变化调控中的作用仍然知之甚少。在这项研究中,使用无标签定量技术,在盐胁迫下的种子萌发期间,褪黑素共显着影响了157种蛋白质(比率≥2或2≤-2)。我们的GO分析显示,褪黑激素明显地调节了几种途径,包括核糖体的生物合成,脂质代谢,碳水化合物代谢和贮藏蛋白降解。褪黑素不仅上调了耐压力蛋白质,而且还产生了糖酵解,柠檬酸循环和乙醛酸循环中产生ATP的蛋白质。总体而言,这项研究提供了新的证据,褪黑素通过促进能量产生来减轻NaCl胁迫对种子发芽的抑制作用。这项研究是第一个在蛋白质组学水平上洞察褪黑激素响应黄瓜种子盐胁迫的分子机制的见解。这可能有助于进一步了解褪黑素在胁迫条件下对黄瓜种子萌发的作用。

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