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Absorption and translocation of copper, zinc and chromium by Sesbania virgata

机译:绿藻对铜,锌和铬的吸收和转运

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Heavy metals (HM) incorporated to ecosystems as a mixture could interact and generate contamination, which might be mitigated through phytoremediation. The heavy metal tolerance of native species of Sesbania from the Argentinean Pampas is poorly documented. The objective of this work was to evaluate the effect of interactions between copper, zinc and chromium, in binary form, on Sesbania virgata biomass, absorption and translocation. The HM transfer from a contaminated soil to plants and into plant tissues are discussed in terms of the Bioconcentration Factor (BCF) and the Transfer Factor (TF). In a pot experiment, HM were added either individually or in binary mixture solutions of Cu, Zn and Cr, in low or high doses. In all treatments, the main accumulation of HM appeared in plant roots, and Zn is more removed from soils by S. virgata (BCF average in roots Zn > Cr > Cu). In the binary mixture of Cu and Zn, Sesbania plants absorbed the highest concentrations of these metals. In contrast, Cr was more absorbed in the individual treatments. While the co-presence of metals resulted in a greater reduction in S. virgata biomass than the presence of a single metal, S. virgata tolerated and stabilized high concentrations of Cu, Zn and Cr. In view of this tolerance, S. virgata is excellent specie to be used for heavy metals phytosta-bilization in contaminated soils.
机译:以混合物形式掺入生态系统的重金属(HM)可能相互作用并产生污染,可以通过植物修复减轻污染。阿根廷潘帕斯州塞巴尼亚本地物种对重金属的耐受性文献很少。这项工作的目的是评估二元形式的铜,锌和铬之间的相互作用对Sesbania virgata生物量,吸收和转运的影响。从污染土壤向植物和植物组织中的HM转移将根据生物浓缩因子(BCF)和转移因子(TF)进行讨论。在盆栽实验中,以低剂量或高剂量将HM单独添加或以Cu,Zn和Cr的二元混合溶液添加。在所有处理中,HM的主要积累都出现在植物的根部,锌通过沙门氏菌(S. virgata)从土壤中去除更多(根部BCF平均Zn> Cr> Cu)。在铜和锌的二元混合物中,塞巴尼亚植物吸收了这些金属的最高浓度。相比之下,铬在各个处理中被吸收更多。尽管金属的共存比单一金属的存在导致沙门氏菌生物量的减少更大,但沙门氏菌可以耐受并稳定高浓度的Cu,Zn和Cr。考虑到这种耐受性,S。virgata是可用于受污染土壤中重金属植物稳定化的优良品种。

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