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聚天冬氨酸,一种可生物降解的螯合剂,可提高杨树在高度重金属污染农田中的植物修复潜力。

Polyaspartate, a biodegradable chelant that improves the phytoremediation potential of poplar in a highly metal-contaminated agricultural soil.

机构信息

Dipartimento di Chimica e Biologia, Università di Salerno, Via Giovanni Paolo II 132, 84085 Fisciano, Italy.

Dipartimento di Scienze e Innovazione Tecnologica, Università del Piemonte Orientale, Via Teresa Michel 11, 15121 Alessandria, Italy.

出版信息

J Environ Manage. 2014 Jan;132:9-15. doi: 10.1016/j.jenvman.2013.10.015. Epub 2013 Nov 16.

DOI:10.1016/j.jenvman.2013.10.015
PMID:24252633
Abstract

Phytoremediation is a cost-effective and environment friendly in situ technique for the reclamation of heavy metal-polluted soils. The efficacy of this technique, which relies on tolerant plant species, can be improved by the use of chelating agents. A pot experiment was carried out to evaluate the phytoextraction and phytostabilisation capacities of a white poplar (Populus alba L.) clone named AL35 previously selected for its marked tolerance to copper (Cu) and zinc (Zn). Cuttings were grown on agricultural soil highly contaminated with Cu and Zn, in the presence or not (controls) of a chelant mixture (EDTA/EDDS) known to enhance metal bioavailability and, hence, uptake by plant roots, or the not yet investigated synthetic, highly biodegradable polyaspartic acid (PASP). Both chelant treatments improved the phytostabilisation of Cu and Zn in AL35 plants, whilst the phytoextraction capacity was enhanced only in the case of Cu. Considering that the effectiveness of PASP as phytostabilizer was comparable or better than that of EDTA/EDDS, the low cost of its large-scale chemical synthesis and its biodegradability makes it a good candidate for chelant-enhanced metal phytoextraction from soil while avoiding the toxic side-effects previously described for both EDTA and EDDS.

摘要

植物修复是一种经济且环保的原位技术,可用于治理重金属污染土壤。该技术依赖于耐受植物物种,可以通过使用螯合剂来提高其效果。进行了一项盆栽实验,以评估先前因对铜 (Cu) 和锌 (Zn) 表现出明显耐受性而被选中的白杨 (Populus alba L.) 无性系 AL35 的植物提取和植物稳定能力。在存在或不存在螯合剂混合物 (EDTA/EDDS) 的情况下,将无性系的插条种植在农业土壤上,这些土壤高度污染 Cu 和 Zn,螯合剂混合物已知会提高金属的生物利用度,从而增强植物根系对金属的吸收,或者使用尚未研究的合成、高生物降解性多聚天冬氨酸 (PASP)。两种螯合剂处理均提高了 AL35 植物对 Cu 和 Zn 的植物稳定化能力,而仅在 Cu 的情况下提高了植物提取能力。考虑到 PASP 作为植物稳定剂的有效性与 EDTA/EDDS 相当或更好,其大规模化学合成的低成本及其生物降解性使其成为螯合增强土壤中金属植物提取的候选物质,同时避免了之前描述的 EDTA 和 EDDS 的毒性副作用。

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