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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Fe modulates Cd-induced oxidative stress and the expression of stress responsive proteins in the nodules of Vigna radiata
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Fe modulates Cd-induced oxidative stress and the expression of stress responsive proteins in the nodules of Vigna radiata

机译:Fe调节Cd诱导的氧化胁迫和辐射Vi豆结节中应激反应蛋白的表达

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摘要

The aim of this study was to investigate the protective role of Fe in providing tolerance against Cd-stress in root nodules of Vigna radiata, because Cd may be more deleterious in the absence of Fe. Biochemical, histological and proteomic responses to Cd-exposure (50 μM CdCl2) were examined under Fe-sufficient (+Fe/+Cd) or Fe-deficient (-Fe/+Cd) soils by comparing non -Cd exposed control (+Fe/-Cd) plants with additional control of Fe-deficient and non-exposed Cd plants (-Fe/-Cd). Cd-exposure negatively affected on growth and some physiological parameters of host plant and nodules, and also induced oxidative stress with the decline of antioxidative enzyme activities. The negative effects of Cd-exposure in +Fe/+Cd plants were much less than those in -Fe/+Cd and -Fe/-Cd ones. When compared with -Fe/Cd and -Fe/-Cd plants, a marked improvement of bacteriod development and cell division was observed and deformation of cell wall remarkably alleviated in the nodules of (+Fe/Cd) plants. Proteomic study revealed that 20 proteins were differentially expressed by Fe/Cd combined treatment. Eleven proteins of interest were identified and classified as precursor for RNA metabolism, storage of seeds, hypothetical proteins, and unknown proteins. These results indicate that Fe plays a pivotal role in alleviating Cd-stress, as evidence by reduction in oxidative damage and protection of cell wall and bacteriods in nodules.
机译:这项研究的目的是调查铁在提供对Vigna radiata根瘤中Cd胁迫耐受性方面的保护作用,因为在没有Fe的情况下Cd可能更具有害性。通过比较非-Cd暴露对照(+ Fe)在铁充足(+ Fe / + Cd)或铁缺乏(-Fe / + Cd)土壤下检查对镉暴露(50μMCdCl2)的生化,组织学和蛋白质组学响应/ -Cd)植物,并进一步控制缺铁和未暴露的Cd植物(-Fe / -Cd)。镉暴露对寄主植物和根瘤的生长和某些生理参数产生负面影响,并且随着抗氧化酶活性的下降而诱导氧化应激。 + Fe / + Cd植物中Cd暴露的负面影响远小于-Fe / + Cd和-Fe / -Cd植物。与-Fe / Cd和-Fe / -Cd植物相比,在(+ Fe / Cd)根瘤中观察到细菌发育和细胞分裂的显着改善,并且细胞壁的变形显着减轻。蛋白质组学研究表明,Fe / Cd联合处理可差异表达20种蛋白质。确定了11种目标蛋白质,并将其分类为RNA代谢,种子储存,假设蛋白质和未知蛋白质的前体。这些结果表明,Fe在减轻Cd胁迫方面起着关键作用,这是通过减少氧化损伤和保护结核中细胞壁和细菌的证据。

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