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Effects of insoluble Zn, Cd, and EDTA on the growth, activities of antioxidant enzymes and uptake of Zn and Cd in Vetiveria zizanioides

机译:锌,镉和EDTA不溶性对香根草生长,抗氧化酶活性以及锌和镉吸收的影响

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A root-bag experiment was conducted to study the effects of insoluble Zn, Cd, and ethylenediaminetetraacetic acid (EDTA) on the plant growth, activities of antioxidant enzymes, proline, glutathione (GSH), water-soluble proteins and malondialdehyde (MDA) of Vetiveria zizanioides. The V. zizanioides uptake capacity of Zn and Cd also determined. The results showed that plant growth of V. zizanioides was inhibited by Zn and Cd. The shoot dry weight (SDW) and root dry weight (RDW) decrease by 14.2%, 14.1%, 17.0% and 17.3%, 32.5%, 35.7%, respectively, compared to the control without EDTA addition. After adding EDTA, shoot and root dry weight decreased over 10% and 15%, respectively. The toxicity from insoluble Zn and Cd in soil on SDW and RDW of V. zizanioides was in order: Zn+Cd > Cd > Zn. The activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT), and contents of MDA and proline increased significantly, while the contents of GSH and water-soluble proteins decreased markedly with increasing Zn and Cd toxicity. With EDTA, shoot and root Zn concentrations increased in the Zn treatment by 7.3% and 37.4% , and Cd concentrations in the combined Zn and Cd treatment increased by 18.6% and 391.9% compared to the treatment without EDTA. However, Zn and Cd concentrations in shoot and roots decreased in the Cd treatment compared to the plants grown in absence of EDTA, with exception of root Cd concentration in the presence of EDTA.
机译:进行了根袋实验,研究了不溶性锌,镉和乙二胺四乙酸(EDTA)对植物生长,抗氧化酶,脯氨酸,谷胱甘肽(GSH),水溶性蛋白和丙二醛(MDA)活性的影响。香根草zizanioides。还确定了锌和镉的V. zizanioides吸收能力。结果表明,Zn和Cd抑制了V. zanzanioides的生长。与不添加EDTA的对照相比,枝干干重(SDW)和根干重(RDW)分别降低了14.2%,14.1%,17.0%和17.3%,32.5%,35.7%。加入EDTA后,枝干和根的干重分别降低了10%和15%以上。土壤中的不溶性锌和镉对V.zizanioides的SDW和RDW的毒性为:Zn + Cd> Cd> Zn。随着Zn和Cd毒性的增加,超氧化物歧化酶(SOD),过氧化物酶(POD)和过氧化氢酶(CAT)的活性以及MDA和脯氨酸的含量显着增加,而GSH和水溶性蛋白的含量则显着下降。使用EDTA时,与不使用EDTA的处理相比,在Zn处理中芽和根的Zn浓度分别增加7.3%和37.4%,并且在Zn和Cd组合处理中Cd的浓度分别增加18.6%和391.9%。但是,与不存在EDTA的植物相比,在Cd处理中,茎和根中的Zn和Cd浓度降低,除了在EDTA存在下的根Cd浓度外。

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