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首页> 外文期刊>Plant Physiology and Biochemistry >Evidences for reduced metal-uptake and membrane injury upon application of nitric oxide donor in cadmium stressed rice seedlings
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Evidences for reduced metal-uptake and membrane injury upon application of nitric oxide donor in cadmium stressed rice seedlings

机译:一氧化氮供体在镉胁迫下的水稻幼苗中减少金属吸收和膜损伤的证据

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摘要

Heavy metal Cadmium (Cd) contaminates the environment through various anthropogenic sources. Cadmium-induced productions of free radicals lead to oxidative stress and H_2O_2 formation in plants. Endogenous Nitric oxide (NO) acts as signal molecules in plant stress response and play a significant role in key regulatory pathways of plant development. This study investigates the effect of 50 μM exogenous sodium nitroprusside (SNP, NO donor), on roots and shoots of rice cv. HUR 3022 grown under 50 μM Cdstress at 7 days of growth. Plants treated with Cd alone showed stunted growth, decreased length and weight, lower cell viability and less chlorophyll. An elevated lipid peroxidation complemented with more electrolyte leakage was noted. Levels of hydrogen peroxide and superoxide anion increased in Cdexposed plants with corresponding increase in activity of antioxidant enzymes catalase and superoxide dismutase. Lower chlorophyll levels paralleled with more uptake of cadmium in Cd-treatments as compared to controls. Application of equimolar amount of SNP to cadmium-stressed rice in the growth medium inhibited Cd-uptake and reversed the Cd-induced toxic effects by restoring membrane integrity. The levels of H_2O_2 and O_2~(?-) were considerably recovered due to SNP treatment. The results indicate that exogenous NO diminishes the deleterious effects of Cd in rice plants.
机译:重金属镉(Cd)通过各种人为来源污染环境。镉诱导的自由基产生导致植物体内的氧化应激和H_2O_2的形成。内源性一氧化氮(NO)在植物胁迫反应中充当信号分子,并在植物发育的关键调控途径中发挥重要作用。这项研究调查了50μM外源硝普钠(SNP,NO供体)对水稻简历的根和芽的影响。 HUR 3022在生长7天时在50μM镉胁迫下生长。仅用镉处理的植物生长发育迟缓,长度和重量减少,细胞活力降低,叶绿素降低。注意到脂质过氧化增加,电解质泄漏更多。糊精植物中过氧化氢和超氧阴离子的水平增加,同时抗氧化酶过氧化氢酶和超氧化物歧化酶的活性相应增加。与对照相比,在镉处理中较低的叶绿素水平与更多的镉吸收并行。在生长培养基中向镉胁迫的水稻施用等摩尔量的SNP可以抑制Cd吸收,并通过恢复膜的完整性来逆转Cd诱导的毒性作用。通过SNP处理,H_2O_2和O_2〜(α-)的水平得以恢复。结果表明,外源NO减少了镉对水稻植株的有害作用。

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