首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Nitric oxide can induce tolerance to oxidative stress of peanut seedlings under cadmium toxicity
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Nitric oxide can induce tolerance to oxidative stress of peanut seedlings under cadmium toxicity

机译:一氧化氮可诱导镉胁迫下花生幼苗对氧化胁迫的耐受性

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摘要

To study the role of sodium nitroprusside (SNP, a donor of NO) in alleviating cadmium (Cd) toxicity in peanut (Arachis hypogaea L.), peanut seedlings exposed to 50, 100, or 200 mu M Cd as CdCl2 were treated with 250 mu M SNP. Cd exposure depressed plant growth, inhibited the photosynthesis, and resulted in oxidative stress. In roots, Cd was mostly trapped in the cell wall under low Cd stress, but most Cd was accumulated in the soluble fraction under high Cd concentrations. In leaves, a majority of Cd was accumulated in the cell wall regardless of Cd treatment level. Addition of SNP at 250 mu M significantly alleviated Cd toxicity in peanut seedlings, including improved photosynthesis, up-regulated antioxidant system, and reduced Cd translocation from roots to shoots as evidenced by decreased Cd accumulation in stems and leaves. SNP application also changed the subcellular distribution of Cd in leaf and root tissues, by increasing Cd retention in root and leaf cell wall while reducing Cd accumulation in the soluble fractions and cell organelles. These results indicate that SNP has great application potential for improving the growth of plants under heavy metal stress such as Cd toxicity.
机译:为了研究硝普钠(NO的供体)在减轻花生(Arachis hypogaea L.)中镉(Cd)毒性方面的作用,将暴露于50、100或200μMCd的CdCl2的花生幼苗用250处理。亩M SNP。镉暴露抑制了植物的生长,抑制了光合作用,并导致了氧化胁迫。在根中,Cd大部分在低Cd胁迫下被困在细胞壁中,但在高Cd浓度下大多数Cd积累在可溶性部分中。在叶片中,无论镉处理水平如何,大多数镉都积累在细胞壁中。 250μM的SNP添加可显着减轻花生幼苗中Cd的毒性,包括改善光合作用,上调抗氧化系统以及减少Cd从根到芽的转运,这可从茎和叶中Cd积累减少来证明。通过增加Cd在根和叶细胞壁中的保留,同时减少Cd在可溶性级分和细胞器中的积累,SNP的应用还改变了Cd在叶和根组织中的亚细胞分布。这些结果表明,SNP在改善重金属胁迫下(例如Cd毒性)下植物的生长方面具有巨大的应用潜力。

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