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Response of Zea mays to multimetal contaminated soils: a multibiomarker approach

机译:Zea响应可能对多重污染的土壤:多光驱方法

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摘要

Heavy metals present in mine tailings pollute agroecosystems, put the integrity of the environment at risk and become a major route of exposure to humans. The present study was carried out in Taxco, Guerrero, Mexico, where millions of tons of mine tailings have been deposited. Soils from this region are used for agricultural activities. Maize (Zea mays) was selected as a test plant, because it is one of the most common and important cereal crops in Mexico and worldwide. Thirteen metals were selected and their bioaccumulation in roots, leaves and fruits were measured in plants cultivated in soils contaminated with mine tailings and those cultivated in non-contaminated soils. The effect of metal bioaccumulation on: macro and micromorphology, size, biomass, coloration leaf patterns and on DNA damage levels in different structures were determined. The bioaccumulation pattern was: root leaf fruit, being only Mn and Cr bioaccumulated in all three structures and V in the roots and leaves. A significant effect of metal bioaccumulation on 50% of the size and leaf shape and 55% of the biomass characters in Z. mays exposed plants was detected. Regarding micromorphological characters, a significant effect of metal bioaccumulation on 67% of the leaf characters and on 100% of the color basal leaf characters was noted. The effect of metal bioaccumulation on the induction of DNA damage (leaf fruit root) was detected employing single cell gel electrophoresis analysis. An approach, in which multi endpoints are used is necessary to estimate the extent of the detrimental effects of metal pollution on agroecosystem integrity contaminated with mine tailings.
机译:在矿山尾矿污染农业系统中存在的重金属,使环境的完整性面临风险,成为人类接触的主要途径。目前的研究是在墨西哥的速度,Guerrero,墨西哥进行的,其中已经沉积了数百万吨的矿井。来自该地区的土壤用于农业活动。玉米(Zea Mays)被选为试验厂,因为它是墨西哥和全球最常见和最重要的谷物作物之一。选择了13项金属,并在用矿井尾矿污染的土壤中培养的植物中测量了根,叶和水果的生物累积,并在非污染的土壤中培养。确定了金属生物累积对:宏观和微晶,大小,生物质,着色叶图案和不同结构中的DNA损伤水平的影响。生物积累模式是:Root&叶子&果实,只有Mn和Cr BioAccumuplated在根和叶中的所有三种结构和v中。检测到金属生物累积对50%的尺寸和叶形和55%的Z的血清结构的显着影响。关于微晶特征,注意到金属生物累积对67%的叶子字符和100%的彩色基底叶特征的显着影响。检测用单细胞凝胶电泳分析检测金属生物累积对DNA损伤诱导(叶片的果实&根)。一种方法,其中使用多端点是为了估计金属污染对矿山尾矿污染的农业生物系统完整性的不利影响的程度。

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