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Citric acid enhanced phytoextraction of nickel (Ni) and alleviate Mentha piperita (L.) from Ni-induced physiological and biochemical damages

机译:柠檬酸增强了镍(Ni)的植物萃取,并从Ni诱导的生理和生化损伤中缓解Mentha piperita(L.)

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Phytoremediation is considered one of the well-established and sustainable techniques for the removal of heavy metals and metalloids from contaminated sites. The metal extraction ability of the plants can be enhanced by using suitable organic materials in combination with metal-tolerant plants. This experiment was carried out to investigate the phytoextraction potential of Mentha piperita L. for nickel (Ni) with and without citric acid (CA) amendment in hydroponic experiment. The experiment was performed in controlled glass containers with continuous aeration in complete randomized design (CRD). Juvenile M. piperita plants were treated with different concentrations of Ni (100, 250, and 500 mu M) alone and/or combined with CA (5 mM). After harvesting the plants, the morpho-physiological and biochemical attributes as well as Ni concentrations in different tissues of M. piperita plants were measured. Results revealed that Ni stress significantly decreased the plant agronomic traits, photosynthesis in comparison to control. Nickel stress enhanced the antioxidant enzymes activities and caused the production of reactive oxygen species (ROS) in M. piperita. The CA treatment under Ni stress significantly improved the plant morpho-physiological and biochemical characteristics when compared with Ni treatments alone. The results demonstrated that CA enhanced the Ni concentrations in roots, stems, and leaves up to 138.2%, 54.2%, and 38%, respectively, compared to Ni-only-treated plants. The improvement in plant growth with CA under Ni stress indicated that CA is beneficial for Ni phytoextraction by using tolerant plant species.
机译:植物化被认为是从污染的位点去除重金属和金属的良好良好和可持续的技术之一。通过使用合适的有机材料与金属耐用的植物组合使用合适的有机材料,可以提高植物的金属提取能力。进行了该实验,以研究Mentha Piperita L的植物萃取潜力,用于镍(Ni),在水培实验中没有柠檬酸(CA)修正。该实验在受控玻璃容器中进行,在完全随机设计(CRD)中连续通气。将幼儿液哌啶哌啶用不同浓度的Ni(100,250和500μm,单独和/或与Ca(5mM)合并处理。测量植物后,测量了M.哌啶植物不同组织中的形态生理和生化学属性以及Ni浓度。结果表明,Ni应力显着降低了植物农艺性状,与控制相比的光合作用。镍应激增强了抗氧化酶活性,并导致M. piperita的活性氧(ROS)产生。与单独的Ni治疗相比,Ni胁迫下的Ca治疗显着改善了植物的静脉生理学和生化特性。结果表明,与Ni处理的植物相比,CA增强了根部,茎的Ni浓度高达138.2%,54.2%和38%。 Ni应力下Ca的植物生长的改善表明,Ca通过使用耐植物物种对Ni植物萃取物有益。

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