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Drought Induces Oxidative Stress and Enhances the Activities of Antioxidant Enzymes in Growing Rice Seedlings

机译:干旱引起水稻幼苗氧化应激并增强抗氧化酶活性

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When rice seedlings grown for 10 and 20 days were subjected to in vitro drought stress of −0.5 and −2.0 MPa for 24 h, an increase in the concentration of superoxide anion (O2 .−), increased level of lipid peroxidation and a decrease in the concentration of total soluble protein and thiols was observed in stressed seedlings compared to controls. The concentration of H2O2 as well as ascorbic acid declined with imposition of drought stress, however glutathione (GSH) concentration declined only under severe drought stress. The activities of total superoxide dismutases (SODs) as well as ascorbate peroxidase (APX) showed consistent increases with increasing levels of drought stress, however catalase activity declined. Mild drought stressed plants had higher guaiacol peroxidase (GPX) and chloroplastic ascorbate peroxidase (c-APX) activity than control grown plants but the activity declined at the higher level of drought stress. The activities of enzymes involved in regeneration of ascorbate i.e. monodehydroascorbate reductase (MDHAR), dehydroascorbate reductase (DHAR) and glutathione reductase (GR) were higher in drought stressed plants compared to controls. Results suggest that drought stress induces oxidative stress in rice plants and that besides SOD, the enzymes of ascorbate-glutathione cycle, which have not been studied in detail earlier under stressful conditions, appear to function as important component of antioxidative defense system under drought stress.
机译:当生长10和20天的水稻幼苗经受-0.5和-2.0 MPa的体外干旱胁迫24小时时,超氧阴离子(O2 .- )的浓度增加,与对照相比,在胁迫的幼苗中观察到脂质过氧化的水平以及总可溶性蛋白质和硫醇的浓度降低。 H2 O2 和抗坏血酸的浓度随干旱胁迫而降低,而谷胱甘肽(GSH)的浓度仅在严重干旱胁迫下才降低。总的超氧化物歧化酶(SODs)和抗坏血酸过氧化物酶(APX)的活性随着干旱胁迫水平的增加而显示出一致的增加,但是过氧化氢酶的活性却下降了。轻度干旱胁迫植物比对照生长的植物具有更高的愈创木酚过氧化物酶(GPX)和叶绿体抗坏血酸过氧化物酶(c-APX)活性,但在干旱胁迫水平较高时活性下降。与干旱相比,干旱胁迫植物抗坏血酸再生的酶活性,即单脱氢抗坏血酸还原酶(MDHAR),脱氢抗坏血酸还原酶(DHAR)和谷胱甘肽还原酶(GR)更高。结果表明干旱胁迫在水稻植株中诱导了氧化胁迫,除SOD以外,尚没有在胁迫条件下进行过详细研究的抗坏血酸-谷胱甘肽循环酶似乎在干旱胁迫下起着抗氧化防御系统的重要作用。

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