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Proteomic Study to Understand Promotive Effects of Plant-Derived Smoke on Soybean (Glycine maxL.) Root Growth Under Flooding Stress

机译:蛋白质组学研究了解植物衍生烟雾对大豆(甘氨酸MaxL。)促进压力的根生长的促进作用

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Plant-derived smoke plays a key role in plant growth. Proteomic technique was used for underlying mechanisms of plant-derived smoke on the growth of soybean (Glycine maxL.) under flooding stress. The length and weight of soybean root increased with 2000 parts per million plant-derived smoke under flooding stress within 4 days. Altered proteins by plant-derived smoke treatment under flooding stress were mainly related to protein metabolism, stress, and redox. Furthermore, proteins related to mitochondrial electron transport chain decreased by flooding stress; however, they increased by addition of plant-derived smoke under flooding stress. Based on the results of proteomic analysis, confirmation experiments were performed. ATPase abundance and ATP content increased with the treatment of plant-derived smoke under flooding stress. Furthermore, the ascorbate/glutathione cycle was activated with the treatment of plant-derived smoke under flooding stress. These results suggest that plant-derived smoke improves the root growth of soybean with energy production and reactive oxygen scavenging even if it is under flooding stress, which might positively regulate soybean tolerance towards flooding stress.
机译:植物产生的烟雾在植物生长中起着关键作用。利用蛋白质组学技术研究了植物源烟雾对大豆(Glycine maxL.)生长的潜在机制在洪水压力下。在淹水胁迫下,大豆根的长度和重量在4天内随着2000份/100万植物源烟雾的增加而增加。在淹水胁迫下,植物源烟雾处理引起的蛋白质变化主要与蛋白质代谢、胁迫和氧化还原有关。此外,与线粒体电子传递链相关的蛋白质在淹水胁迫下减少;然而,在淹水胁迫下,通过添加植物源性烟雾,它们会增加。基于蛋白质组学分析的结果,进行了确认实验。在淹水胁迫下,随着植物源烟雾的处理,ATP酶丰度和ATP含量增加。此外,抗坏血酸/谷胱甘肽循环在淹水胁迫下通过处理植物产生的烟雾被激活。这些结果表明,即使在淹水胁迫下,植物源烟雾通过能量产生和活性氧清除促进大豆根系生长,这可能正调节大豆对淹水胁迫的耐受性。

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