Suppr超能文献

黄铁矿和谷氨酸对砷酸盐毒性的调控及其相关机制在生菜中的研究。

Regulation of arsenite toxicity in lettuce by pyrite and glutamic acid and the related mechanism.

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. 2023 Jun 15;877:162928. doi: 10.1016/j.scitotenv.2023.162928. Epub 2023 Mar 20.

Abstract

Compared with the effect of a single substance on arsenic plant toxicity, the effect of coexisting pyrite and natural organic matter can better reflect actual environmental conditions. In this study, the interaction between pyrite and glutamic acid in arsenite solution was explored, the influence of pyrite and glutamic acid on arsenite plant toxicity was evaluated, and the metabolic regulation mechanism of pyrite and glutamic acid on the arsenite phytotoxic effect was clarified by metabolomics analysis. Combined pyrite and glutamic acid treatment fixed more arsenic by forming chemical bonds such as AsS, AsO, and As-O-OH in culture solution and reduced inorganic arsenic levels in plants. Compared with glutamic acid alone and pyrite alone, the combined treatment reduced the inorganic arsenic concentration in plants by 4.7 % and 40.0 %, respectively. The combined treatment limited plant ROS accumulation and maintained the leaf chlorophyll content by increasing SOD synthesis. Compared with the effect of As(III) alone, the chlorophyll content increased by 15.1-21.0 % on average under the combined treatment. The combined treatment promoted the absorption of Ca, Cu, Fe, Mo and Zn in lettuce, enhanced plant adaptation to As(III) and significantly improved plant nutritional quality. Compared with glutamic acid alone, the combined treatment increased the VC, fiber and protein contents by 128.9 %, 202.8 % and 36.7 %, respectively. Metabolomics analysis indicated that in the combined treatment group, the upregulation of tyrosine, pyruvate and N metabolism increased the plant chlorophyll content. The upregulation of S metabolism increases VC synthesis in plants and inhibits ROS accumulation, thus maintaining normal plant growth and development. The upregulation of glutathione and glycine metabolism enhances plant stress resistance. This study will provide a new way to scientifically and rationally evaluate the ecological risk of arsenic and regulate its toxicity.

摘要

与单一物质对砷植物毒性的影响相比,黄铁矿和天然有机质共存的影响能更好地反映实际环境条件。本研究探索了亚砷酸盐溶液中黄铁矿和谷氨酸之间的相互作用,评价了黄铁矿和谷氨酸对亚砷酸盐植物毒性的影响,并通过代谢组学分析阐明了黄铁矿和谷氨酸对亚砷酸盐植物毒性的代谢调节机制。固定化黄铁矿和谷氨酸联合处理通过形成 AsS、AsO 和 As-O-OH 等化学键,在培养液中固定更多的砷,降低植物体内无机砷水平。与单独使用谷氨酸和黄铁矿相比,联合处理分别降低了植物体内无机砷浓度 4.7%和 40.0%。联合处理通过增加 SOD 合成来限制植物 ROS 积累,维持叶片叶绿素含量。与单独使用 As(III)相比,联合处理平均使叶绿素含量增加了 15.1-21.0%。联合处理促进了生菜对 Ca、Cu、Fe、Mo 和 Zn 的吸收,增强了植物对 As(III)的适应能力,显著提高了植物的营养品质。与单独使用谷氨酸相比,联合处理使 VC、纤维和蛋白质含量分别增加了 128.9%、202.8%和 36.7%。代谢组学分析表明,在联合处理组中,酪氨酸、丙酮酸和 N 代谢的上调增加了植物叶绿素含量。S 代谢的上调增加了植物中 VC 的合成,抑制了 ROS 的积累,从而维持了植物的正常生长发育。谷胱甘肽和甘氨酸代谢的上调增强了植物的抗逆性。本研究将为科学合理地评价砷的生态风险和调节其毒性提供新途径。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验