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黄铁矿和腐殖酸对砷酸盐在莴苣中毒性的调控及其作用机制。

Regulation and mechanism of pyrite and humic acid on the toxicity of arsenate in lettuce.

机构信息

Tianjin Key Laboratory of Agro-Environment and Safe-Product, Key Laboratory for Environmental Factors Control of Agro-Product Quality Safety (Ministry of Agriculture and Rural Affairs), Institute of Agro-Environmental Protection, Ministry of Agriculture and Rural Affairs, 300191 Tianjin, China.

Tianjin Key Laboratory of Agro-Environment and Safe-Product, Key Laboratory for Environmental Factors Control of Agro-Product Quality Safety (Ministry of Agriculture and Rural Affairs), Institute of Agro-Environmental Protection, Ministry of Agriculture and Rural Affairs, 300191 Tianjin, China.

出版信息

Sci Total Environ. 2024 Feb 20;912:168980. doi: 10.1016/j.scitotenv.2023.168980. Epub 2023 Nov 29.

Abstract

Pyrite and humic acid are common substances in nature, and the combined effects of pyrite and humic acid on arsenic phytotoxicity are more widespread in the actual environments than that of a single substance, but have received less attention. In this study, the interaction between pyrite and humic acid in arsenate solution was studied, and the effects of pyrite and humic acid on plant toxicity of arsenate were evaluated. The results showed that arsenate + pyrite + fulvic acid (V-PF) treatment immobilized more arsenic by forming chemical bonds such as AsS and Fe-As-O and reduced the migration of arsenic to plants. Compared to the arsenate + fulvic acid (VF), arsenate + pyrite (VP) and arsenate (V) group, the inorganic arsenic content of lettuce leaves in the V- PF group was reduced by 19.8 %, 13.4 % and 13.4 %, respectively. In addition, the V-PF group increased the absorption of Ca, Fe and Cu in plant roots, and improved the activity of superoxide dismutase (SOD) in plant leaves. Compared to the VF group, SOD and MDA in the V-PF group increased by 34.1 % in 30 days and decreased by 47.3 % in 40 days, respectively. The biomass of lettuce in V-PF group was increased by 29.3 % compared with that in VF group on day 50. The protein content of the V-PF group was 58.3 % higher than that of the VF group and 23.1 % higher than that of the VP group. Furthermore, metabolomics analysis showed that the V-PF group promoted glycolysis by up-regulating glyoxylic acid and dicarboxylic acid metabolism, thus reducing carbohydrate accumulation. Phosphocreatine metabolism was also up-regulated, which decreased the oxidative damage in lettuce induced by arsenic. This study will provide new ideas for scientifically and rationally assessing the ecological environmental risks of arsenic and regulating its toxicity.

摘要

黄铁矿和腐殖酸是自然界中常见的物质,黄铁矿和腐殖酸对砷的植物毒性的联合作用比单一物质更为广泛,但受到的关注较少。本研究探讨了砷酸盐溶液中黄铁矿和腐殖酸的相互作用,并评价了黄铁矿和腐殖酸对砷酸盐植物毒性的影响。结果表明,黄铁矿-腐殖酸-砷(V-PF)处理通过形成 AsS 和 Fe-As-O 等化学键固定了更多的砷,减少了砷向植物的迁移。与砷酸盐-腐殖酸(VF)、砷酸盐-黄铁矿(VP)和砷酸盐(V)相比,V-PF 组生菜叶片中的无机砷含量分别降低了 19.8%、13.4%和 13.4%。此外,V-PF 组增加了植物根部对 Ca、Fe 和 Cu 的吸收,并提高了植物叶片中超氧化物歧化酶(SOD)的活性。与 VF 组相比,V-PF 组 SOD 和 MDA 在 30 天分别增加了 34.1%,40 天分别降低了 47.3%。与 VF 组相比,V-PF 组生菜生物量在第 50 天增加了 29.3%。V-PF 组的蛋白质含量比 VF 组高 58.3%,比 VP 组高 23.1%。此外,代谢组学分析表明,V-PF 组通过上调乙醛酸和二羧酸代谢促进糖酵解,从而减少碳水化合物积累。磷酸肌酸代谢也被上调,降低了砷对生菜的氧化损伤。本研究为科学合理地评估砷的生态环境风险和调控其毒性提供了新的思路。

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