Yang Qiao, Yu Hao, Yang Chen, Zhao Zhongqiu, Ju Zhengshan, Wang Jinman, Bai Zhongke
Land Consolidation and Rehabilitation Center, Ministry of Natural Resources, Beijing 100035, People's Republic of China.
School of Land Science and Technology, China University of Geosciences (Beijing), Beijing 100083, People's Republic of China.
R Soc Open Sci. 2024 Sep 25;11(9):240672. doi: 10.1098/rsos.240672. eCollection 2024 Sep.
The heavy metal cadmium (Cd) is a major threat to food safety and human health. Phytoremediation is the most widely used remediation technology, and how to improve the remediation efficiency of phytoremediation has become a key issue. In this study, we constructed an intensive phytoremediation technology for remediation of Cd-contaminated soil with biodegradable chelating agent and plant growth regulator combined with maize and investigated the mechanism of this technology. The results showed that the best remediation effect was achieved in the treatment with 10 mol l gibberellic acid (GA) and 6 mmol kg aspartate diethoxysuccinic acid (AES) combined with maize. In this treatment, the total biomass and extraction efficiency of maize were 3.6 and 8.67 times higher than those of the control, respectively, and the antioxidant enzyme activities of maize were also increased. The soil was enriched with dominant bacterial genera that promote plant growth and metabolism and tolerance to heavy metal stress, which in turn promoted maize growth and Cd accumulation. Structural equation modelling results indicated a large effect of plant Cd concentration and plant antioxidant enzyme activity on plant Cd extraction. The enhanced phytoremediation technology showed good potential for safe use of Cd-contaminated soil.
重金属镉(Cd)是食品安全和人类健康的重大威胁。植物修复是应用最广泛的修复技术,如何提高植物修复的效率已成为关键问题。本研究构建了一种利用可生物降解螯合剂和植物生长调节剂结合玉米修复镉污染土壤的强化植物修复技术,并探究了该技术的作用机制。结果表明,10 mol l赤霉素(GA)和6 mmol kg天冬氨酸二乙氧基琥珀酸(AES)结合玉米处理的修复效果最佳。在此处理中,玉米的总生物量和提取效率分别比对照高3.6倍和8.67倍,玉米的抗氧化酶活性也有所提高。土壤中富含促进植物生长、代谢以及对重金属胁迫耐受性的优势细菌属,进而促进了玉米生长和镉积累。结构方程模型结果表明,植物镉浓度和植物抗氧化酶活性对植物镉提取有很大影响。强化植物修复技术在镉污染土壤安全利用方面显示出良好潜力。