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外源硒(镉)抑制水稻对镉(硒)的吸收和运输。

Exogenous selenium (cadmium) inhibits the absorption and transportation of cadmium (selenium) in rice.

机构信息

State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, 550081, China; College of Life Science, Sichuan Normal University, Chengdu, 610101, China.

State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, 550081, China.

出版信息

Environ Pollut. 2021 Jan 1;268(Pt A):115829. doi: 10.1016/j.envpol.2020.115829. Epub 2020 Oct 27.

Abstract

Antagonism between selenium (Se) and cadmium (Cd) has been demonstrated in plants. However, a mutual suppression threshold for Se and Cd has not been identified in previous studies using Cd or Se individually. To fill this knowledge gap, we determined the levels of Se and Cd in various tissues of rice under concentration gradients of Se and Cd with different Se application times via hydroponic experiments. The results showed that the application of exogenous Se or Cd reduced the uptake and transport of the other. When the molar ratio of Se/Cd (R (Se/Cd)) was higher than 1, the concentration and transfer factor of Cd (TF-Cd) in all parts of rice simultaneously reached the lowest values. The minimum Se absorption in rice was obtained at R (Cd/Se) greater than 20, while no inhibition threshold was found for Se transport. In addition, approximately 1:1 R (Se/Cd) was observed in roots and the addition of exogenous Cd or Se promoted the enrichment of the other element in roots. These data suggested a mutual inhibition of Se and Cd in their absorption, transportation and accumulation in rice, which might be related to the formation of insoluble Cd-Se complexes in roots. This study provided new insights into a plausible explanation of the interactions between Se and Cd and contributed to the remediation and treatment of combined Se and Cd pollution in farmland systems.

摘要

硒(Se)和镉(Cd)之间的拮抗作用在植物中已经得到证实。然而,在以前使用 Cd 或 Se 单独进行的研究中,尚未确定 Se 和 Cd 之间的相互抑制阈值。为了填补这一知识空白,我们通过水培实验,在不同的 Se 施加时间下,在 Se 和 Cd 的浓度梯度下,确定了 Se 和 Cd 在水稻不同组织中的含量。结果表明,外源 Se 或 Cd 的应用减少了另一种元素的吸收和运输。当 Se/Cd 的摩尔比(R(Se/Cd))高于 1 时,水稻各部位的 Cd 浓度和转移因子(TF-Cd)同时达到最低值。在 R(Cd/Se)大于 20 时,水稻对 Se 的吸收最少,而对 Se 运输则没有发现抑制阈值。此外,在根中观察到约 1:1 的 R(Se/Cd),外加外源 Cd 或 Se 促进了其他元素在根中的富集。这些数据表明,Se 和 Cd 在水稻的吸收、运输和积累过程中相互抑制,这可能与根中形成不溶性 Cd-Se 复合物有关。本研究为解释 Se 和 Cd 之间的相互作用提供了新的见解,有助于农田系统中 Se 和 Cd 复合污染的修复和治理。

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