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Nitric Oxide Attenuates Oxidative Stress Induced by Arsenic in Lettuce (Lactuca sativa) Leaves

机译:一氧化氮可减轻砷在莴苣叶片上的氧化胁迫。

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Lettuce plants were exposed to different toxic levels of arsenic (As) to induce an oxidative stress response, and the role of nitric oxide (NO) (provided as sodium nitroprusside (SNP)) as an attenuating agent of this stress condition was evaluated. Plants were treated with 50 mu M of As with or without 100 mu M SNP added to the nutrient solution. The hydrogen peroxide, superoxide anion, and malondialdehyde concentrations and enzymatic activities were measured. The increase in As concentration detected in the leaves was followed by a significant increase in H2O2 and malondialdehyde (MDA) concentrations. However, the presence of SPN promoted a reduction in the concentration of these oxidative agents and also reduced the translocation of As to the shoots. The enzymatic activities in the plants exposed to As were increased, which indicates the active participation of these enzymes in the reduction of oxidative stress induced by the metalloid. In the plants exposed to As and SNP, the enzymatic activities were not so high; this result was possibly related to the direct action of NO in scavenging the generated toxic metabolites and with the reduction in the translocation of the pollutant to the shoots. Lettuce and leaves of other vegetables are usually ingested, and this study shows an alternative to avoid human contamination with As.
机译:生菜植物暴露于不同毒性水平的砷(As)诱导氧化应激反应,并评估了一氧化氮(NO)(以硝普钠(SNP)形式提供)作为该胁迫条件的减毒剂的作用。用50μM的As处理植物,在营养溶液中添加或不添加100μMSNP。测量过氧化氢,超氧阴离子和丙二醛的浓度以及酶活性。在叶片中检测到的As浓度增加之后,H2O2和丙二醛(MDA)浓度显着增加。然而,SPN的存在促进了这些氧化剂浓度的降低,并且还减少了As向芽的转运。暴露于砷的植物中的酶活性增加,这表明这些酶积极参与降低了准金属诱导的氧化应激。在暴露于砷和单核苷酸多态性的植物中,酶活性不是很高。该结果可能与NO清除产生的有毒代谢产物的直接作用以及减少污染物向芽的迁移有关。通常会食用生菜和其他蔬菜的叶子,这项研究显示了一种避免人体被砷污染的替代方法。

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