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首页> 外文期刊>Ecotoxicology >Salicylic acid alleviates aluminum toxicity in rice seedlings better than magnesium and calcium by reducing aluminum uptake, suppressing oxidative damage and increasing antioxidative defense.
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Salicylic acid alleviates aluminum toxicity in rice seedlings better than magnesium and calcium by reducing aluminum uptake, suppressing oxidative damage and increasing antioxidative defense.

机译:通过减少铝吸收,抑制氧化损伤和增加抗氧化防御,优于镁幼苗在水稻幼苗中的铝毒性更好地减轻水稻幼苗。

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Aluminum toxicity is a major constraint to crop production in acid soils. The present study was undertaken to examine the comparative ameliorating effects of salicylic acid, Ca and Mg on Al toxicity in rice (Oryza sativa L.) seedlings grown in hydroponics. Al treatment (0.5爉M AlCl3) caused decrease in plant vigour, loss of root plasma membrane integrity, increased contents of O 2 (-) , H2O2, lipid peroxidation, protein carbonyls and decline in the level of protein thiol. Al treatment caused significant changes in activity of antioxidative enzymes in rice seedlings. Exogenously added salicylic acid (60牸M), Ca (1爉M) and Mg (0.25爉M) significantly alleviated Al toxicity effects in the seedlings marked by restoration of growth, suppression of Al uptake, restoration of root plasma membrane integrity and decline in O 2 (-) , H2O2, lipid peroxidation and protein carbonyl contents. Salicylic acid, Ca and Mg suppressed Al-induced increase in SOD, GPX and APX activities while it elevated Al-induced decline in CAT activity. By histochemical staining of O 2 (-) using NBT and H2O2 using DAB, it was further confirmed that added salicylic acid, Ca or Mg decreased Al-induced accumulation of O 2 (-) and H2O2 in the leaf tissues. Results indicate that exogenously added salicylic acid, Ca or Mg alleviates Al toxicity in rice seedlings by suppressing Al uptake, restoring root membrane integrity, reducing ROS level and ROS induced oxidative damage and regulating the level of antioxidative enzyme activities. Further salicylic appears to be superior to Mg and Ca in alleviating Al toxicity effects in rice plants.
机译:铝毒性是在酸性土壤中产生生产的主要约束。本研究旨在检测水杨酸,Ca和Mg在水培中生长的水稻(Oryza Sativa L.)幼苗中毒性的比较改善效果。 Al治疗(0.5μmAlCl3)导致植物活力降低,根部质膜损失的完整性,o 2( - - ),H 2 O 2,脂质过氧化,蛋白质羰基和蛋白质硫醇水平下降的含量增加。 Al治疗导致水稻幼苗抗氧化酶活性的显着变化。外源性添加水杨酸(60℃),Ca(1μm)和mg(0.25‰m)显着减轻了通过恢复生长,抑制Al摄取,恢复根质膜完整性和下降的幼苗中的患者毒性作用在O 2( - ),H 2 O 2,脂质过氧化和蛋白质羰基含量。水杨酸,Ca和Mg抑制了SOD,GPX和APX活性的增加,同时它升高了猫活性的下降。通过使用DAB使用NBT和H 2 O 2的O 2( - )的组织化学染色,进一步证实加入水杨酸,Ca或Mg下降,降低了叶组织中的O 2( - )和H 2 O 2的α诱导的累积。结果表明,通过抑制Al吸收,恢复根膜完整性,减少ROS水平和ROS诱导氧化损伤并调节抗氧化酶活性水平,外源添加水杨酸,Ca或Mg通过抑制铝幼苗而缓解水稻幼苗中的Al毒性。进一步的水杨酸似乎优于Mg和Ca,缓解水稻植物中的毒性作用。

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