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不同钙镉生态化学计量比在镉胁迫下对辣椒解毒机制的影响

Effects of different eco-stoichiometric ratios of calcium and cadmium on the detoxification mechanisms of Capsicum annuum L. under cadmium stress.

作者信息

Yan Qiuxiao, Lin Shaoxia, Wei Fuxiao, Deng Tingfei, Yang Yin, Zhang Zhenming, Wang Daoping

机构信息

College of Resources and Environmental Engineering, Guizhou University, Guiyang, China; Natural Products Research Center of Guizhou Province, Guiyang, China; Guizhou Medical University Key Laboratory of Chemistry for Natural Products, Guiyang, China.

Natural Products Research Center of Guizhou Province, Guiyang, China; Guizhou Medical University Key Laboratory of Chemistry for Natural Products, Guiyang, China.

出版信息

J Hazard Mater. 2025 Apr 5;487:137059. doi: 10.1016/j.jhazmat.2024.137059. Epub 2024 Dec 31.

Abstract

The eco-stoichiometry of Ca/Cd in soil significantly affects Cd uptake and accumulation by plants in carbonate regions. In this study, the physiological responses and detoxification mechanisms of Capsicum annuum L. (capsicum) were investigated based on the eco-stoichiometric relationship of Ca/Cd in production substrates under varying pH levels (5, 6, and 7). The results revealed that increased Ca/Cd ratio enhanced the Cd accumulation in roots at pH values of 5 and 6. The enrichment of Cd in stems and leaves gradually decreased with varying Ca/Cd ratios at different pH levels. In addition, root vigor, relative chlorophyll content, biomass, and catalase and peroxidase activities increased across various pH levels, while the concentration of protein carbonyl and malondialdehyde decreased. The ability of pectin and cellulose in the cell wall and that of soluble components within the cell to adsorb and partition Cd improved as the Ca/Cd ratio increased at different pH values. Notably, the effects of varying Ca/Cd ratios were most significant at pH 6. Overall, Ca enhanced the tolerance of capsicum to Cd stress, thereby promoting the fixation of Cd in root cells, reducing its transfer to aboveground tissues, and improving both the growth and antioxidant stress response. The effect was attributed to different Ca/Cd stoichiometric ratios, pH levels, and their interactions. These findings enhance the understanding of the mechanism of the interaction between Ca and Cd on crops in the karst agroecosystem.

摘要

土壤中钙/镉的生态化学计量显著影响碳酸盐地区植物对镉的吸收和积累。本研究基于不同pH值(5、6和7)下生产基质中钙/镉的生态化学计量关系,研究了辣椒的生理响应和解毒机制。结果表明,在pH值为5和6时,钙/镉比值的增加增强了根部对镉的积累。在不同pH水平下,随着钙/镉比值的变化,茎和叶中镉的富集逐渐减少。此外,在不同pH水平下,根系活力、相对叶绿素含量、生物量以及过氧化氢酶和过氧化物酶活性均有所增加,而蛋白质羰基和丙二醛浓度则降低。随着不同pH值下钙/镉比值的增加,细胞壁中果胶和纤维素以及细胞内可溶性成分吸附和分配镉的能力提高。值得注意的是,钙/镉比值的变化在pH 6时影响最为显著。总体而言,钙增强了辣椒对镉胁迫的耐受性,从而促进了镉在根细胞中的固定,减少了其向地上组织的转移,并改善了生长和抗氧化应激反应。这种影响归因于不同的钙/镉化学计量比、pH水平及其相互作用。这些发现增进了对喀斯特农业生态系统中钙和镉对作物相互作用机制的理解。

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