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How do low doses of desferrioxamine B and EDTA affect the phytoextraction of metals in sunflower?

机译:低剂量的去铁胺B和EDTA如何影响向日葵中金属的植物提取?

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The aim of this study was to compare the efficiency of siderophore desferrioxamine B (DFOB) and EDTA in increasing the phytoextraction of metals in sunflower. A 28-day pot experiment was conducted in a metal-contaminated soil supplied with 200 µmol kg~(-1) of DFOB or EDTA. Pore water was collected and pseudo-polarographic analyses were conducted to assess the impact of the two chelators on the mobility and speciatíon of metals in the liquid phase. Our results showed that DFOB is not an efficient mobilizing agent of divalent metals in soil. Adding DFOB selectively increased the mobility of trivalent metals while the supply of EDTA simultaneously inaeased the mobility of both trivalent and divalent metals. EDTA significantly reduced the labile fractions of Cd, Cu, (Pb) and Zn measured in the porewater. The labile concentration of Cd and Zn measured in presence of EDTA was even less than that measured in the control. As expected from the pore water analysis, the addition of DFOB did not affect the phytoextraction of any divalent metals. In contrast, the addition of EDTA enhanced Cu and Ni phytoextraction in sunflower 2.0 to 2.8 fold for Cu and 1.3 to 2.3 fold for Ni, depending on the cultivar. This result supports different hypotheses regarding the forms and the related pathways in which metals are taken up in presence of EDTA. Based on the results obtained for Ni, whose uptake is rate limited by its internalization across the cell membrane, the direct uptake of metal-EDTA complexes via the non-selectìve apoplastic pathway is hypothesized to contribute the most to the overall uptake of metals in presence of EDTA, even added at "low" concentrations.
机译:这项研究的目的是比较铁载体去铁草胺B(DFOB)和EDTA在增加向日葵中金属的植物提取方面的效率。在装有200μmolkg〜(-1)DFOB或EDTA的金属污染土壤中进行了28天的盆栽试验。收集孔隙水并进行伪极谱分析,以评估两种螯合剂对液相中金属的迁移率和形态的影响。我们的结果表明,DFOB不是土壤中二价金属的有效动员剂。添加DFOB有选择地增加了三价金属的迁移率,而EDTA的供应同时提高了三价和二价金属的迁移率。 EDTA显着降低了孔隙水中Cd,Cu,(Pb)和Zn的不稳定成分。在EDTA存在下测得的Cd和Zn的不稳定浓度甚至低于对照中测得的。正如孔隙水分析所预期的那样,添加DFOB不会影响任何二价金属的植物提取。相反,根据品种的不同,EDTA的添加可提高向日葵中Cu和Ni的植物提取率,分别为Cu的2.0至2.8倍和Ni的1.3至2.3倍。该结果支持关于在EDTA存在下金属被吸收的形式和相关途径的不同假设。根据镍的吸收结果,镍的吸收速率受其跨细胞膜内在化的限制,据推测,通过非选择性质外生途径直接吸收金属-EDTA络合物对存在时金属的总体吸收贡献最大EDTA,甚至以“低”浓度添加。

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