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采用扩散梯度薄膜技术(DGT)和选择性提取法提取的DOM-Se 分数评估施肥后土壤-植物系统中硒的潜在有效性。

Assessing the potential availability of selenium in the soil-plant system with manure application using diffusive gradients in thin-films technique (DGT) and DOM-Se fractions extracted by selective extractions.

机构信息

College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi 712100, China; Department of Natural Resources and Environment of Thanh Hoa, Thanh Hoa 400570, Viet Nam.

College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi 712100, China.

出版信息

Sci Total Environ. 2021 Apr 1;763:143047. doi: 10.1016/j.scitotenv.2020.143047. Epub 2020 Oct 17.

Abstract

Knowledge of the Se fractionation and the role of dissolved organic matter (DOM) in soil is the key to understanding Se mobility and its bioavailability in the soil-plant system. In this study, single extractions using phosphate-buffer (PBS), sequential extraction procedures (SEP), and diffusive gradients in thin-films (DGT) were used to measure Se bioavailability in soil supplemented with selenite and organic amendment (cow and chicken manures). Selenium fraction was isolated into DOM-Se fractions, such as hydrophilic acid-bound Se (HY-Se), fulvic acid-bound Se (FA-Se), humic acid-bound Se (HA-Se), and hydrophobic organic neutral-bound Se (HON-Se), by a rapid batch technique using XAD-8 resin (AMBERLITE XAD™, USA). Simultaneous application of either cow or chicken manure with selenite could result in the decrease of Se availability in the soil. Isolating Se available fraction into DOM-Se fractions showed that low-molecular-weight DOM-Se as an available fraction and even HY-Se as a less available fraction (OM-Se) were likely the major sources for Brassica juncea (L.) Czern. et Coss uptake in soil. Moreover, knowledge of the DOM-Se composition, especially the low-molecular-weight DOM-Se fractions, is important for assessing the bioavailability of Se in soil, the results of which are more accurate than the chemical extraction method. The high value of Pearson correlation coefficients between CDGT-Se and Se concentrations in shoots, tubers and roots of Brassica juncea (L.) Czern. et Coss in cow and chicken manures treatment were 0.95 and 0.99, 0.96 and 0,96, and 0.89 and 0.97 (p < 0,05), respectively, indicating that DGT-Se can reflect the Se uptake ability by plants and can be used to predict the bioavailability of Se when manure and selenite are simultaneously applied.

摘要

了解硒的形态以及溶解有机质(DOM)在土壤中的作用是理解硒在土壤-植物系统中迁移性及其生物可利用性的关键。在这项研究中,使用磷酸盐缓冲液(PBS)、顺序提取程序(SEP)和薄膜扩散梯度(DGT)进行单次提取,以测量添加亚硒酸盐和有机改良剂(牛和鸡粪)的土壤中硒的生物可利用性。使用 XAD-8 树脂(美国 AMBERLITE XAD™)通过快速批量技术将硒形态分离成 DOM-Se 形态,例如亲水性酸结合态硒(HY-Se)、富里酸结合态硒(FA-Se)、胡敏酸结合态硒(HA-Se)和疏水性有机中性结合态硒(HON-Se)。同时添加牛或鸡粪与亚硒酸盐可能会导致土壤中硒的可用性降低。将可利用硒形态分离成 DOM-Se 形态表明,低分子量 DOM-Se 作为一种可利用形态,甚至 HY-Se 作为一种较低可利用形态(OM-Se),可能是 Brassica juncea(L.) Czern. et Coss 在土壤中吸收的主要来源。此外,了解 DOM-Se 组成,特别是低分子量 DOM-Se 形态,对于评估土壤中硒的生物可利用性非常重要,其结果比化学提取方法更准确。在牛和鸡粪处理中,CDGT-Se 与 Brassica juncea(L.) Czern. et Coss 地上部、块茎和根部硒浓度之间的 Pearson 相关系数值分别为 0.95 和 0.99、0.96 和 0.00、0.89 和 0.97(p<0.05),表明 DGT-Se 可以反映植物对硒的吸收能力,可用于预测同时施用有机肥和亚硒酸盐时硒的生物可利用性。

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