University of São Paulo, Center for Nuclear Energy in Agriculture, Piracicaba 13416-000, Brazil.
Federal University of Lavras, Department of Soil Science, Lavras 37200-000, Brazil.
J Hazard Mater. 2023 Apr 5;447:130771. doi: 10.1016/j.jhazmat.2023.130771. Epub 2023 Jan 10.
It has been speculated that selenium (Se) supply can affect cadmium (Cd) 'availability' and increase the Cd tolerance of plants used for phytoextraction, in a pH-dependent process. Thus, we evaluated the interaction Cd-Se and the effects of soil pH in this interaction on plant availability of Cd and phytoextraction efficiency of Urochloa decumbens cv. Basilisk grown in Oxisol. Two soil concentrations of Cd (0.93 and 3.6 mg kg) and Se (<0.2 and 1 mg kg) and two soil pH (0.01 mol L CaCl) conditions (4.1 and 5.7) were considered. At both pH, Se supply increased the exchangeable fraction of Cd and decreased the residual Cd fraction. At pH 4.1, the growth of U. decumbens was impaired by Se addition, regardless of Cd exposure. The lower root growth and tillering of U. decumbens exposed to Cd disappeared at pH 5.7 due to uptake of low Se concentrations. Thus, the toxic or beneficial effects of Se on growth of U. decumbens used for Cd phytoextraction depend on the amount of Se assimilated. The Cd phytoextraction efficiency of U. decumbens was not improved by Se supply, regardless of soil pH. Therefore, we cannot recommend the application of Se to increase Cd phytoextraction by this grass.
有人推测,硒(Se)供应可以影响镉(Cd)的“可利用性”,并在依赖于 pH 的过程中增加用于植物提取的植物对 Cd 的耐受性。因此,我们评估了 Cd-Se 的相互作用以及土壤 pH 对这种相互作用的影响,对在 Oxisol 中生长的 Urochloa decumbens cv. Basilisk 植物的 Cd 植物可利用性和植物提取效率的影响。考虑了两种土壤 Cd 浓度(0.93 和 3.6 mg kg)和 Se(<0.2 和 1 mg kg)以及两种土壤 pH(0.01 mol L CaCl)条件(4.1 和 5.7)。在这两种 pH 值下,Se 供应都增加了 Cd 的可交换部分,减少了剩余 Cd 部分。在 pH 4.1 下,无论 Cd 暴露与否,Se 的添加都会损害 U. decumbens 的生长。在 pH 5.7 下,由于低浓度 Se 的吸收,U. decumbens 对 Cd 的根生长和分蘖减少消失了。因此,Se 对用于 Cd 植物提取的 U. decumbens 生长的毒性或有益影响取决于同化的 Se 量。无论土壤 pH 值如何,Se 供应都不能提高 U. decumbens 的 Cd 植物提取效率。因此,我们不能推荐应用 Se 来增加这种草对 Cd 的植物提取。