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Chelators induced uptake of cadmium and modulation of water relation, antioxidants, and photosynthetic traits of maize

机译:螯合剂诱导镉的吸收,玉米抗氧化剂和光合特性的摄取

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摘要

The present study was aimed to reveal the effect of cadmium (Cd)-polluted soil on the activation of antioxidant enzymes, photosynthesis, pigments, water relation, and other biochemical traits and comparative effect of synthetic and organic chelators. A pot experiment was conducted using two maize varieties grown in Cd-contaminated (15 and 30mgkg(-1)) soil and chelators (1mM EDTA, and 1mM citric acid). Cd decreased biomass and photosynthetic traits while increased malondialdehyde (MDA) contents, total proteins, and antioxidant enzyme activities. Addition of EDTA enhanced Cd uptake, antioxidative enzyme, and total proteins; however, it reduced the water, osmotic, and turgor potential as compared to Cd alone. Addition of citric acid has lessened the antioxidant enzyme activities and MDA contents and enhanced the plant biomass as compared to Cd alone. Increases in antioxidants and MDA content were found to be positively related to the Cd contents in shoot and root. The application of citric acid significantly alleviated the Cd-induced toxic effects, showing remarkable improvement in biomass. These results indicated that EDTA was more effective for mobilizing Cd from soil to the root and shoot than citric acid; however, the physiological traits and plant biomass were more strongly inhibited by EDTA than by the Cd. Our study implies that citric acid ameliorated the negative effect of Cd on physiological traits and biomass, and hence could be used effectively for Cd phytoextraction.
机译:目前的研究旨在揭示镉(CD) - 颗粒土壤对抗氧化酶活性,光合作用,颜料,水关系等生物化学性状的影响以及合成和有机螯合剂的比较作用。使用在CD污染(15和30mgkg(-1))土壤和螯合剂(1mm EDTA和1mM柠檬酸)中生长的两种玉米品种进行罐实验。 Cd降低生物质和光合性状,而丙二醛(MDA)含量增加(MDA)含量,总蛋白质和抗氧化酶活性。添加EDTA增强型CD吸收,抗氧化酶和总蛋白质;然而,与单独的CD相比,它减少了水,渗透和Turgor潜力。加入柠檬酸已经减少了抗氧化酶活性和MDA含量,并与单独的CD相比增强了植物生物质。发现抗氧化剂和MDA含量的增加与芽和根部的CD含量正相关。柠檬酸的施用显着减轻了CD诱导的毒性作用,呈现出显着的生物量改善。这些结果表明,EDTA更有效地将CD从土壤从土壤中调动到根并射击而不是柠檬酸;然而,EDTA比CD更强烈地抑制生理性状性状和植物生物质。我们的研究意味着柠檬酸改善了CD对生理性状性状和生物质的负面影响,因此可以有效地用于CD phytoExtraction。

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