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首页> 外文期刊>E3S Web of Conferences >Metal tolerance and phytoremoval ability in Amaranthus paniculatus L. grown in nickel-spiked nutrient solution
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Metal tolerance and phytoremoval ability in Amaranthus paniculatus L. grown in nickel-spiked nutrient solution

机译:含镍营养液中生长的A菜的金属耐性和植物迁移能力

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摘要

To evaluate a possible utilization in the phytoremediation of metal contaminated substrates, Amaranthus paniculatus L. plants were grown for one week in Ni-spiked growth solutions at 0, 25, 50, 100, 150 μM NiCl2 in hydroponics under controlled climate conditions. Results showed a high tolerance to Ni in plants exposed to low Ni concentrations. Tolerance decreased as Ni concentration in the growth solutions enhanced. Ni concentrations in plant organs (root, stem and leaves) revealed a trend to increase in parallel with the enhancement of Ni content in the growth solution. The ability to accumulate Ni in plants was also evaluated by calculating the bioconcentration factor (BCF). An inverse relation between BCF and Ni concentrations in the growth solution was evidenced. Ni phytoremoval ability of A. paniculatus plants was particularly appreciable at 25 μM NiCl2, where more than 65% of the initial Ni amount was taken up by plants in one week of treatment. The capability of plants to translocate Ni from roots to shoots (stem+leaves) was evaluated by the translocation factor (Tf). Results revealed a low Tf in plants exposed to low Ni concentration, suggesting a tolerance mechanism to protect physiological processes occurring in leaves. Overall, A. paniculatus plants showed a valuable capability to phytodecontaminate Ni-polluted waters, particularly at low Ni concentrations.Key words: Heavy metals / hydroponics / phytoremediation / metal bioconcentration
机译:为了评估在对金属污染的底物进行植物修复中的可能利用,在受控气候条件下,将Amaranthus paniculatus L.植物在Ni尖刺生长溶液中以0、25、50、100、150μMNiCl2在水培法中生长一周。结果表明,暴露于低Ni浓度的植物对Ni具有很高的耐受性。随着生长溶液中镍浓度的增加,公差降低。植物器官(根,茎和叶)中的镍浓度显示出与生长溶液中镍含量增加同时增加的趋势。还可以通过计算生物富集因子(BCF)来评估植物中Ni的累积能力。证明了生长溶液中BCF和Ni浓度成反比关系。在25μMNiCl2下,A。paniculatus植物的Ni植物动植物能力尤为明显,其中在处理的一周内植物吸收了初始Ni量的65%以上。通过易位因子(Tf)评估了植物将Ni从根转移到芽(茎+叶)的能力。结果表明,暴露于低Ni浓度的植物中的Tf较低,这表明了一种保护机制来保护叶片中发生的生理过程。总体而言,沙地土壤杆菌植物具有极高的植物去污染Ni污染水的能力,特别是在低Ni浓度下。关键词:重金属/水培/植物修复/金属生物富集

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