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Exogenous Melatonin Improves Antioxidant Defense in Cucumber Seeds (Cucumis sativus L.) Germinated under Chilling Stress

机译:外源褪黑激素可改善低温胁迫下萌发的黄瓜种子的抗氧化防御能力(​​Cucumis sativus L.)

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摘要

The relationship between exogenous melatonin applied into cucumber seeds during osmopriming and modifications of their antioxidant defense was studied. Accumulation of hydrogen peroxide, antioxidant enzyme activities and glutathione pool were investigated in embryonic axes isolated from the control, osmoprimed, and osmoprimed with melatonin seeds. Germinating cucumber seeds are very sensitive to chilling. Temperature 10°C causes oxidative stress in young seedlings. Seed pre-treatment with melatonin seemed to limit H2O2 accumulation during germination under optimal condition as well as during chilling stress and recovery period. Melatonin affected superoxide dismutase (SOD) activity and its isoforms during stress and recovery period but did not influence CAT and POX activities. Thus it is possible that in cucumber this indoleamine could act mostly as a direct H2O2 scavenger, but superoxide anion combat via SOD stimulation. The GSH/GSSG ratio is considered as an indirect determinant of oxidative stress. When the cells are exposed to oxidative stress GSSG is accumulated and the ratio of GSH to GSSG decreases. In our research pre-sowing melatonin application into the cucumber seeds caused high beneficial value of GSH/GSSG ratio that could be helpful for stress countering. Glutathione reductase (GSSG-R) activity in the axes isolated from these seeds was two fold higher than in those isolated from the control and from the osmoprimed without melatonin ones. Additional isoforms of GSSG-R in melatonin treated seeds were also observed. It explains high and effective GSH pool restoration in the seeds pre-treated with melatonin. We confirmed that melatonin could protect cucumber seeds and young seedlings against oxidative stress directly and indirectly detoxifying ROS, thereby plants grown better even in harmful environmental conditions. This work is the first that investigated on plant in vivo model and documented melatonin influence on redox state during seed germination. This way we try to fill lack of information about melatonin-regulated pathways involved in antioxidant strategy of plant defense.
机译:研究了渗透胁迫下黄瓜种子中外源褪黑素与抗氧化防御修饰作用的关系。研究了从褪黑激素种子的对照,渗透引发和渗透引发的胚轴中过氧化氢的积累,抗氧化酶活性和谷胱甘肽库。发芽的黄瓜种子对冷藏非常敏感。温度为10°C会引起幼苗的氧化应激。在最佳条件下,发芽过程中褪黑素似乎限制了H2O2的积累,以及在寒冷胁迫和恢复期。褪黑素在压力和恢复期影响过氧化物歧化酶(SOD)活性及其同工型,但不影响CAT和POX活性。因此,在黄瓜中这种吲哚胺可能主要起直接的H2O2清除剂的作用,但可能通过SOD刺激对抗超氧阴离子。 GSH / GSSG比被认为是氧化应激的间接决定因素。当细胞暴露于氧化应激时,GSSG积累并且GSH与GSSG的比率降低。在我们的研究中,将褪黑激素预播于黄瓜种子中会产生较高的GSH / GSSG比有益值,这可能有助于应对压力。从这些种子中分离出的轴中的谷胱甘肽还原酶(GSSG-R)活性是从对照和未经褪黑素渗透压剂中分离出的轴中的两倍。还观察到了褪黑素处理过的种子中GSSG-R的其他同工型。它解释了褪黑激素预处理过的种子中高有效的谷胱甘肽库恢复。我们证实褪黑素可以保护黄瓜种子和幼苗免受氧化应激的直接和间接解毒,从而使植物即使在有害的环境条件下也能更好地生长。这项工作是首次在植物体内模型上进行研究,并记录了褪黑激素对种子发芽期间氧化还原状态的影响。这样,我们试图填补有关褪黑素调节植物防御抗氧化策略的途径的信息不足。

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