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Heavy metal bioaccumulation and antioxidative responses in Cardaminopsis arenosa and Plantago lanceolata leaves from metalliferous and non-metalliferous sites: A field study

机译:Cardaminopsis arenosa和Plantago Lanceolata的重金属生物累积和抗氧化反应来自金属和非金属遗址:田间研究

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The purpose of this study was to determine the concentrations of heavy metals (cadmium, lead, zinc, copper, iron and manganese) in soil, their bioavailability and bioaccumulation in plants leaves. This study also examined their influences on the antioxidant response of the plants Cardaminopsis arenosa and Plantago lanceolata grown in metal-contaminated and non-contaminated soils. The activities of guaiacol peroxidase and superoxide dismutase and the levels of antioxidants such as glutathione, proline and non-protein thiols were measured. Concentrations of the examined metals were several to thousands of times lower in the potentially bioavailable fraction than in the acid-extracted fraction of the soil. Similar mode of antioxidant responses in plant leaves of metalliferous populations indicates the tolerance of plants towards heavy metals. However POD and GSHt had a particularly strong role in defense reactions, as their increase was the most common reaction to heavy metal contamination.The levels of Zn, Cd and Pb in the leaves of C. arenosa better reflected metal concentrations in the metalliferous and non-metalliferous soil than the determined metal concentrations in P. lanceolata. Bioaccumulated Zn, Cd and Pb concentrations were above or in the ranges mentioned as toxic for plant tissues and therefore the studied plants have potential for use in phytostabilization.
机译:本研究的目的是确定土壤中的重金属(镉,铅,锌,铜,熨斗和锰),它们在植物叶中的生物利用度和生物累计。本研究还研究了它们对金属污染和非受污染的土壤种植的植物Cardaminopsis arenosa和Plantago Lanceolata的抗氧化反应的影响。测定了愈菌过氧化物酶和超氧化物歧化酶的活性和抑制剂如谷胱甘肽,脯氨酸和非蛋白质硫醇的水平。在潜在的生物可利用的级分中,所检查金属的浓度比在土壤的酸提取的馏分中较低的几到数千次。植物叶片中抗氧化反应的类似模式表明植物对重金属的耐受性。然而,豆荚和Gsht在防御反应中具有特别强烈的作用,因为它们的增加是对重金属污染的最常见的反应。C.Arenosa叶片中Zn,Cd和Pb水平更好地反映了金属和非的金属浓度 - 比兰克拉塔的确定金属浓度比确定的金属浓度。对植物组织的毒性有毒的Zn,Cd和Pb浓度的生物累计Zn,Cd和Pb浓度在上述范围内,因此研究的植物具有在植物中使用的可能性。

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