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Proteomic Analysis of Irradiation with Millimeter Waves on Soybean Growth under Flooding Conditions

机译:淹水条件下毫米波辐照对大豆生长的蛋白质组学分析

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摘要

Improving soybean growth and tolerance under environmental stress is crucial for sustainable development. Millimeter waves are a radio-frequency band with a wavelength range of 1–10 mm that has dynamic effects on organisms. To investigate the potential effects of millimeter-waves irradiation on soybean seedlings, morphological and proteomic analyses were performed. Millimeter-waves irradiation improved the growth of roots/hypocotyl and the tolerance of soybean to flooding stress. Proteomic analysis indicated that the irradiated soybean seedlings recovered under oxidative stress during growth, whereas proteins related to glycolysis and ascorbate/glutathione metabolism were not affected. Immunoblot analysis confirmed the promotive effect of millimeter waves to glycolysis- and redox-related pathways under flooding conditions. Sugar metabolism was suppressed under flooding in unirradiated soybean seedlings, whereas it was activated in the irradiated ones, especially trehalose synthesis. These results suggest that millimeter-waves irradiation on soybean seeds promotes the recovery of soybean seedlings under oxidative stress, which positively regulates soybean growth through the regulation of glycolysis and redox related pathways.
机译:在环境压力下改善大豆的生长和耐受性对于可持续发展至关重要。毫米波是一个波长范围为1–10 mm的无线电频带,会对生物产生动态影响。为了研究毫米波辐射对大豆幼苗的潜在影响,进行了形态学和蛋白质组学分析。毫米波辐射改善了根/下胚轴的生长以及大豆对水淹胁迫的耐受性。蛋白质组学分析表明,辐照的大豆幼苗在生长过程中在氧化胁迫下恢复,而与糖酵解和抗坏血酸/谷胱甘肽代谢相关的蛋白质则不受影响。免疫印迹分析证实了在淹没条件下毫米波对糖酵解和氧化还原相关途径的促进作用。在未辐照的大豆幼苗中,水淹抑制了糖代谢,而在辐照的大豆幼苗中糖代谢被激活,尤其是海藻糖合成。这些结果表明,毫米波照射大豆种子可促进大豆幼苗在氧化胁迫下的恢复,从而通过调节糖酵解和氧化还原相关途径积极调节大豆的生长。

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