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首页> 外文期刊>Ciência Rural >Changes caused by heavy metals in micronutrient content and antioxidant system of forage grasses used for phytoremediation: an overview
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Changes caused by heavy metals in micronutrient content and antioxidant system of forage grasses used for phytoremediation: an overview

机译:重金属对植物修复用饲草的微量营养素含量和抗氧化系统的影响:概述

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An increase in the content of heavy metals in the environment causes many socio-environmental problems, and phytoremediation is a tool to reduce the environmental impact caused by these elements, with prospects for the use of forage grasses. This group of plants features characteristics for the environment-decontamination process, but further studies are necessary about the damages caused by heavy metals on the uptake of cationic micronutrients and on the antioxidant system, which are essential processes for the growth of plants in contaminated sites. Exposure of forage grasses to heavy metals results in a lower content of Mn in the shoots of almost all plants, but the contents of Cu, Fe, and Zn vary according to heavy metal and forage grass. Activities of enzymes superoxide dismutase (SOD), ascorbate peroxidase (APX), catalase (CAT), and guaiacol peroxidase (GPX) usually increase to reduce the oxidative stress induced by heavy metals, but when the content of any of these metals is high, enzymatic activity is decreased. Scale of toxicity of heavy metals to forage grasses can be described as: Pb a?? Cr > Cd a?? As > Zn a?? Cu a?? Ni > Mn.
机译:环境中重金属含量的增加会引起许多社会环境问题,而植物修复是减少这些元素对环境的影响的一种工具,具有使用草料的前景。这一组植物具有环境净化过程的特征,但是有必要进一步研究重金属对阳离子微量营养素的吸收和抗氧化剂系统的损害,这是植物在受污染部位生长的重要过程。牧草暴露于重金属会导致几乎所有植物的芽中锰含量较低,但铜,铁和锌的含量会因重金属和牧草而异。通常会增加超氧化物歧化酶(SOD),抗坏血酸过氧化物酶(APX),过氧化氢酶(CAT)和愈创木酚过氧化物酶(GPX)的活性,以减轻重金属引起的氧化应激,但是当这些金属中的任何一种含量高时,酶活性降低。重金属对草料草的毒性程度可描述为: Cr> Cd a ?? As> Zn a ??铜吗? Ni> Mn。

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