DGT and kinetic analyses differentiate Se and Cd bioavailability in naturally enriched paddy soils

IF 8.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Chemosphere Pub Date : 2024-11-01 DOI:10.1016/j.chemosphere.2024.143791
Chao Zhang , Dong-Xing Guan , Paul N. Williams , Guo-Bing Lin , Xiao-Lei Chen , Lena Q. Ma
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Abstract

Naturally selenium (Se)-rich soils often contain elevated cadmium (Cd) levels, complicating safe production of Se-enriched rice. This study employed diffusive gradients in thin-films (DGT) and DGT-induced fluxes in soils (DIFS) model to determine Se and Cd bioavailability in paddy soils. We investigated desorption kinetics and accumulation patterns in rice using paired rhizosphere and grain samples from 65 field sites in Guangxi, China, encompassing Se-enriched karst and non-karst soils. Despite greater total Se and Cd contents in karst soils, their elevated pH, along with greater soil organic matter and total Fe, Mn, and Ca contents, constrained Se and Cd bioavailability, resulting in similar accumulation levels in rice grains from both soil categories. DIFS-derived kinetic data revealed that Se was replenished 75.4 times faster than Cd, but Cd had an 83.2 times larger labile pool, leading to a stronger overall Cd resupply capacity. DGT-based labile Se:Cd molar ratios showed that rice Cd content declined sharply as the ratio increased from 0.7 to 4.0, stabilizing at its lowest level when exceeding 20. Moreover, DGT measurements demonstrated stronger correlations with grain Se and Cd concentrations compared to traditional methods. Our findings highlight the effectiveness of DGT and kinetic analyses in determining Se and Cd bioavailability in high-background paddy soils, offering insights for balancing Se fortification and Cd risk mitigation in rice production.

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DGT 和动力学分析区分了天然富集稻田土壤中硒和镉的生物利用率。
富含硒(Se)的天然土壤往往含有较高的镉(Cd),这使得富硒水稻的安全生产变得更加复杂。本研究采用薄膜扩散梯度(DGT)和 DGT 诱导的土壤通量(DIFS)模型来区分水稻田土壤中硒和镉的生物利用率。我们使用来自中国广西 65 个田间地头的成对根瘤菌和谷物样本研究了水稻的解吸动力学和积累模式,其中包括富含硒的岩溶土壤和非岩溶土壤。尽管喀斯特土壤中的硒和镉总含量较高,但其较高的 pH 值、土壤有机质以及铁、锰和钙的总含量限制了硒和镉的生物利用率,导致两类土壤中的水稻籽粒具有相似的积累水平。DIFS 衍生动力学数据显示,硒的补充速度是镉的 75.4 倍,但镉的可利用池是硒的 83.2 倍,因此镉的总体补给能力更强。基于 DGT 的硒镉摩尔比显示,随着摩尔比从 0.7 增加到 4.0,水稻的镉含量急剧下降,当摩尔比超过 20 时,镉含量稳定在最低水平。此外,与传统方法相比,DGT 测量结果与谷物中的硒和镉浓度具有更强的相关性。我们的研究结果凸显了 DGT 和动力学分析在区分高背景稻田土壤中硒和镉生物利用率方面的有效性,为平衡水稻生产中的硒强化和镉风险缓解提供了启示。
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来源期刊
Chemosphere
Chemosphere 环境科学-环境科学
CiteScore
15.80
自引率
8.00%
发文量
4975
审稿时长
3.4 months
期刊介绍: Chemosphere, being an international multidisciplinary journal, is dedicated to publishing original communications and review articles on chemicals in the environment. The scope covers a wide range of topics, including the identification, quantification, behavior, fate, toxicology, treatment, and remediation of chemicals in the bio-, hydro-, litho-, and atmosphere, ensuring the broad dissemination of research in this field.
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