首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Differential responses of antioxidant enzymes to aluminum toxicity in two rice (Oryza sativa L.) cultivars with marked presence and elevated activity of Fe SOD and enhanced activities of Mn SOD and catalase in aluminum tolerant cultivar
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Differential responses of antioxidant enzymes to aluminum toxicity in two rice (Oryza sativa L.) cultivars with marked presence and elevated activity of Fe SOD and enhanced activities of Mn SOD and catalase in aluminum tolerant cultivar

机译:两种耐铝品种水稻中铁超氧化物歧化酶的存在和活性增强,锰超氧化物歧化酶和过氧化氢酶活性增强的两个水稻抗氧化酶对铝毒性的差异响应

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Seedlings of two Indica rice (Oryza sativa L.) cvs. HUR-105 and Vandana, differing in Al-tolerance were used to identify the key mechanisms involved in their differential behaviour towards Al toxicity. Cv. HUR-105 appeared to be Al sensitive by showing significant reduction (p ≤ 0.01) in root/shoot length, fresh weight, dry weight and water content in presence of 421 μM Al~(3+) in growth medium whereas cv. Vandana appeared to be fairly Al~(3+) tolerant. A conspicuous and significant reduction in dry weight of root and shoot was observed in Al sensitive cv. HUR-105 with 178 μM Al~(3+) treatment for 3 days. Al was readily taken up by the roots and transported to shoots in both the rice cultivars. Localization of absorbed Al was always greater in roots than in shoots. Our results of the production of reactive oxygen species (ROS) H_2O_2 and O_2 .- and activities of major antioxidant enzymes such as total superoxide dismutase (SOD), Cu/Zn SOD, Mn SOD, Fe SOD, catalase (CAT) and guaiacol peroxidase revealed Al induced higher oxidative stress, greater production of ROS and lesser capacity to scavenge ROS in cv. HUR-105 than Vandana. With Al treatment, higher oxidative stress was noted in shoots than in roots. Greatly enhanced activities of SOD (especially Fe and Mn SOD) and CAT in Al treated seedlings of cv. Vandana suggest the role of these enzymes in Al tolerance. Furthermore, a marked presence of Fe SOD in roots and shoots of the seedlings of Al tolerant cv. Vandana and its significant (p ≤ 0.01) increase in activity due to Al-treatment, appears to be the unique feature of this cultivar and indicates a vital role of Fe SOD in Al-tolerance in rice.
机译:两个In稻(Oryza sativa L.)cvs的幼苗。使用铝耐受性不同的HUR-105和Vandana来确定其对铝毒性的不同行为所涉及的关键机制。简历。 HUR-105在生长培养基中存在421μMAl〜(3+)的情况下,根/茎长,鲜重,干重和水含量显着降低(p≤0.01),似乎对Al敏感。万丹娜似乎对Al〜(3+)具有相当的耐受性。在铝敏感品种中,根和茎的干重明显降低。 HUR-105经178μMAl〜(3+)处理3天。铝很容易被根部吸收,并运到两个水稻品种的芽中。被吸收的铝在根中的定位总是比芽中更大。我们的活性氧(ROS)H_2O_2和O_2 .-的产生以及主要抗氧化剂酶(如总超氧化物歧化酶(SOD),Cu / Zn SOD,Mn SOD,Fe SOD,过氧化氢酶(CAT)和愈创木酚过氧化物酶)活性的结果揭示铝诱导较高的氧化应激,ROS的更大生产和清除cv中的ROS的能力较小。 HUR-105比Vandana好。铝处理后,发芽中的氧化应激高于根部。铝处理的黄瓜幼苗中SOD(尤其是Fe和Mn SOD)和CAT的活性大大增强。万丹纳建议这些酶在铝耐受性中的作用。此外,耐铝cv幼苗的根和芽中明显存在Fe SOD。由于铝处理,Vandana及其活性显着增加(p≤0.01),似乎是该品种的独特特征,并且表明Fe SOD在水稻耐铝性中起着至关重要的作用。

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