Centre for Research in Ecotoxicology and Environmental Remediation, Institute of Agro-Environmental Protection, The Ministry of Agriculture, Tianjin, China.
Biol Trace Elem Res. 2013 Jan;151(1):113-21. doi: 10.1007/s12011-012-9532-4. Epub 2012 Nov 15.
This study was carried out to investigate the effects of selenium (Se) on the uptake and translocation of cadmium (Cd) and essential elements in paddy rice (Oryza sativa L., Shuangyou 998). Selenium could alleviate/aggravate Cd toxicity in paddy rice, which depended on the dosages of Se and/or Cd. When Cd treatment level was as low as 35.6 μM, ≤12.7 μM Se could inhibit the uptake of Cd in paddy rice and increase the biomass of paddy rice; however, with Cd levels reaching 89-178 μM, the addition of Se resulted in increases in Cd uptake and exacerbated the growth of paddy rice. Cd always inhibited the uptake of Se. Cd alone suppressed the uptake of Ca, Mg, Mn, Cu, and Zn; however, Se reversed the decreases in the concentrations of the said elements, suggesting an element regulation mechanism to relieve Cd toxicity. Without Cd in the solution, low doses of Se increased the biomasses of shoots and roots at the expense of the more or less decreases in the concentrations of Ca, Mg, K, Fe, Mn, Cu, and shoot Zn, indicating an antagonistic effect of Se on these cations. The presence of Cd could also reverse these decreases especially at the highest treatment levels for both Se and Cd, also suggesting an element regulation mechanism responsible for the detoxification of high dosages of Se. Consequently, when Se is used to alleviate Cd toxicity, attention must be paid to the Cd pollution extent and doses of Se supplement.
本研究旨在探讨硒(Se)对水稻(Oryza sativa L.,双优 998)吸收和转运镉(Cd)及必需元素的影响。硒(Se)可以缓解/加剧水稻中的 Cd 毒性,具体取决于 Se 和/或 Cd 的剂量。当 Cd 处理水平低至 35.6 μM 时,≤12.7 μM 的 Se 可以抑制水稻对 Cd 的吸收并增加水稻的生物量;然而,当 Cd 水平达到 89-178 μM 时,添加 Se 会导致 Cd 吸收增加并加剧水稻的生长。Cd 总是抑制 Se 的吸收。单独的 Cd 抑制 Ca、Mg、Mn、Cu 和 Zn 的吸收;然而,Se 逆转了这些元素浓度的降低,表明存在一种元素调节机制来缓解 Cd 毒性。在溶液中没有 Cd 的情况下,低剂量的 Se 以或多或少地降低 Ca、Mg、K、Fe、Mn、Cu 和地上部 Zn 的浓度为代价,增加了地上部和根部的生物量,表明 Se 对这些阳离子具有拮抗作用。Cd 的存在也可以逆转这些降低,特别是在 Se 和 Cd 的最高处理水平下,这也表明存在一种元素调节机制,负责对高剂量 Se 进行解毒。因此,当使用 Se 来缓解 Cd 毒性时,必须注意 Cd 污染程度和 Se 补充剂量。