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Lead accumulation and distribution in maize seedlings: Relevance to biomass production and metal phytoextraction

机译:玉米幼苗的铅积累和分布:与生物质生产和金属植物萃取的相关性

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摘要

Among trace metals, lead is a highly toxic contaminant, being hazardous to humans and animals. Application of maize plants for phytoremediation of polluted soils and waters has recently been of particular interest. The aim of this work is to investigate the Pb-phytoextraction potential of the maize cv. Tzariza used widely in Eastern European agriculture. Maize seedlings were exposed in a nutrient solution to 1-10000 mu M of Pb2+ for 21 days. Lead accumulated mostly in conductive tissues and shoots at 0.1 mM and higher concentrations of Pb in growth medium. Pb at concentrations of 1 and 10 mM caused an increase in the superoxide anion level and the catalase activity in maize leaves. Lead ions were tolerable to maize seedlings within a concentration range up to 1000 mu M of Pb2+. The levels of lead in the nutrient solution above 1 mM resulted in inhibition of the growth of axial organs, decrease in leaf area, inhibition of water absorption, and reduction in accumulation of biomass. Theoretical considerations indicate that in the temperate climates of the phytoremediation with maize may allow annual removal up to 90 kg of Pb per km(2), depending on the initial level of soil contamination.
机译:在痕量金属中,铅是一种剧毒污染物,对人类和动物造成危害。玉米植物对污染土壤和水域植物修复的应用最近特别感兴趣。这项工作的目的是探讨玉米CV的PB-PhytoExtraction潜力。 Tzariza广泛用于东欧农业。玉米幼苗在营养溶液中暴露于1-10000μm的PB2 + 21天。主要在导电组织中累积并在生长培养基中以0.1mm且较高浓度的Pb芽累积。浓度为1和10mm的PB导致超氧化物阴离子水平的增加和玉米叶中的过氧化氢酶活性。铅离子可容许浓度范围内的玉米幼苗,其Pb2 +的1000μm。营养溶液中的铅水平为1毫米,导致抑制轴向器官的生长,叶面积减少,吸水性抑制,以及减少生物质的积累。理论考虑表明,在玉米植物化的温带气候中,可以允许年度去除高达90千克PB每公里(2),这取决于土壤污染的初始水平。

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