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首页> 外文期刊>Environmental Science and Pollution Research >Lower cadmium accumulation and higher antioxidative capacity in edible parts of Brassica campestris L. seedlings applied with glutathione under cadmium toxicity
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Lower cadmium accumulation and higher antioxidative capacity in edible parts of Brassica campestris L. seedlings applied with glutathione under cadmium toxicity

机译:在镉毒性下谷胱甘肽的可食用部分较低的镉积聚和较高的抗氧化能力。幼苗在镉毒性下施用谷胱甘肽

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Glutathione (GSH) is involved in not only plant developmental processes but also plantresponses to abiotic stresses. A hydroponic experiment was performed to explore the protective roles of exogenous GSH in mitigating cadmium (Cd) stress in Brassica campestris L. seedlings by analyzing the morphological and physiological parameters. Results showed that Cd caused severe growth inhibition and Cd accumulation. However, application of GSH significantly mitigated toxic symptoms induced by Cd, including the improvement of the photosynthesis-, plant growth-, and root morphology-related parameters in seedlings under Cd stress. These responses were associated with a striking increase in activities of representative antioxidative enzymes and contents of corresponding non-enzymatic antioxidants. In vivo imaging of O-2(.-) and H2O2, and the detection of lipid peroxidation further demonstrated that increased ability by GSH for Brassica campestris L. seedlings to endure Cd stress was consistent with a striking elevation of ratios of reduced to oxidized glutathione (GSH/GSSG) and ascorbic acid to dehydroascorbic acid (AsA/DHA). Additionally, GSH application increased Cd retained in roots, thus significantly decreased its translocation from root to shoot, ultimately decreased Cd accumulation in shoots. Taken together, our results proved evidence for GSH in ameliorating Cd toxicity via reducing Cd accumulation in shoots and increasing oxidation resistance. Accordingly, application of GSH could be a high-efficiency and promising strategy to decrease Cd concentration in edible parts of Brassica campestris L. in agricultural production.
机译:谷胱甘肽(GSH)不仅涉及植物发育过程,还参与了对非生物胁迫的课程。通过分析形态学和生理学参数,进行水培实验,探讨外源GSH在甘蓝型Campestris L.幼苗中缓解镉(CD)胁迫的保护作用。结果表明,CD引起严重的生长抑制和CD积累。然而,GSH的应用明显减轻了CD诱导的有毒症状,包括在CD胁迫下幼苗中的光合作用,植物生长和根形态相关参数的改善。这些反应与代表性抗氧化酶和相应的非酶促抗氧化剂的含量的活动增加有关。在体内成像O-2(.-)和H 2 O 2,并且脂质过氧化的检测进一步证明了GSH用于芸苔CAMESTRIS L.幼苗以忍受CD胁迫的增加的能力与减少对氧化谷胱甘肽的比例的显着升高一致(GSH / GSSG)和抗坏血酸至脱氢血脂酸(ASA / DHA)。此外,GSH应用程序增加了保留在根中的CD,从而显着降低了其从根部拍摄的易位,最终降低了芽中的CD积累。我们的结果通过降低芽中的CD积累和增加抗氧化性,我们的结果证明了GSH在改善CD毒性中的证据。因此,GSH的应用可以是高效率和有希望的策略,可降低芸苔属Campestris L.在农业生产中的可食用部分中的CD浓度。

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