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充足的硫供应同时提高了水培培养的水稻中铁的吸收和减少了镉的积累。

Adequate supply of sulfur simultaneously enhances iron uptake and reduces cadmium accumulation in rice grown in hydroponic culture.

机构信息

College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, 210095, China.

Laboratory Centre of Life Science, College of Life Science, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Environ Pollut. 2020 Jul;262:114327. doi: 10.1016/j.envpol.2020.114327. Epub 2020 Mar 6.

Abstract

Cadmium (Cd) pollution poses serious risks to human health and the rice consumption is a major contribution to dietary intake of this toxic metal. In addition, Cd causes interference to iron (Fe) uptake by rice, leading to Fe deficiency, which is a common malnutrition worldwide. Sulfur (S) is essential for the rice yield and quality; however, the roles of S supply in the Cd and Fe absorption and distribution in rice have not been systematically investigated. Here, we conducted a hydroponic experiment to examine the effects of S application on the uptake and translocation of Cd and Fe in rice under Cd treatment (1.0 μM) combined with four S levels (0, 1.75, 3.5, 7.0 mM). Rice growth was suppressed by Cd but the toxicity was alleviated with S treatment, which also led to decline of Cd concentrations in rice roots, stems and leaves. In the case of low S (1.75 mM), the Fe plaque on the root surface did not decline in the presence of Cd, but it markedly decreased with the increase of S supply (3.5 and 7.0 mM). The Fe contents in rice roots and leaves consistently increased with the S provision regardless of Cd treatment. In addition, the Cd exposure and S supply significantly promoted syntheses of thiol molecules and nicotianamine (NA), but the NA levels in rice tissues decreased when the S addition reached 7.0 mM. Taken together, results of this study demonstrate that sufficient supply of S may augment Fe bioavailability and minimize Cd accumulation in rice under hydroponic conditions.

摘要

镉(Cd)污染对人类健康构成严重威胁,而食用大米是摄入这种有毒金属的主要途径。此外,Cd 会干扰水稻对铁(Fe)的吸收,导致铁缺乏,这是全球范围内常见的营养不良问题。硫(S)是水稻产量和品质的必需元素;然而,S 供应在水稻中 Cd 和 Fe 的吸收和分布中的作用尚未得到系统研究。在这里,我们进行了水培实验,以研究在 Cd 处理(1.0 μM)下,S 供应对水稻中 Cd 和 Fe 吸收和转运的影响,同时设置了四个 S 水平(0、1.75、3.5、7.0 mM)。Cd 抑制了水稻的生长,但 S 处理缓解了其毒性,同时也降低了水稻根、茎和叶中的 Cd 浓度。在低 S(1.75 mM)的情况下,Cd 存在时根表面的 Fe 斑没有减少,但随着 S 供应的增加(3.5 和 7.0 mM),它明显减少。无论 Cd 处理如何,S 供应都能持续增加水稻根和叶中的 Fe 含量。此外,Cd 暴露和 S 供应显著促进了巯基分子和烟碱酸(NA)的合成,但当 S 添加量达到 7.0 mM 时,水稻组织中的 NA 水平下降。综上所述,本研究结果表明,在水培条件下,充足的 S 供应可能会增加 Fe 的生物利用度,并最大限度地减少水稻中 Cd 的积累。

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