School of Environment and Safety Engineering, School of Emergency Management, Jiangsu Province Engineering Research Center of Green Technology and Contingency Management for Emerging Pollutants, Jiangsu University, Zhenjiang 212013, China.
School of Environment and Safety Engineering, School of Emergency Management, Jiangsu Province Engineering Research Center of Green Technology and Contingency Management for Emerging Pollutants, Jiangsu University, Zhenjiang 212013, China; Jiangsu Collaborative Innovation Center of Technology and Material of Water Treatment, Suzhou University of Science and Technology, Suzhou 215009, China.
Plant Physiol Biochem. 2024 Nov;216:109169. doi: 10.1016/j.plaphy.2024.109169. Epub 2024 Sep 30.
Contamination of agricultural soils with heavy metal(loid)s like arsenic (As) and cadmium (Cd) is an ever increasing concern for crop production, quality, and global food security. Numerous in-situ and ex-situ remediation approaches have been developed to reduce As and Cd contamination in soils. However, field-scale applications of conventional remediation techniques are limited due to the associated environmental risks, low efficacy, and large capital investments. Recently, calcium (Ca) and Ca-based nano-formulations have emerged as promising solutions with the large potential to mitigate As and Cd toxicity in soil for plants. This review provides comprehensive insights into the phytotoxic effects of As and Cd stress/toxicity and discusses the applications of Ca-based ionic and nano-agrochemicals to alleviate As and Cd toxicity in important crops such as rice, wheat, maize, and barley. Further, various molecular and physiological mechanisms induced by ionic and nano Ca to mitigate As and Cd stress/toxicity in plants are discussed. This review also critically analyzes the efficiency of these emerging Ca-based approaches, both ionic and nano-formulations, in mitigating As and Cd toxicity in comparison to conventional remediation techniques. Additionally, future perspectives and ecological concerns of the remediation approaches encompassing ionic and nano Ca have been discussed. Overall, the review provides an updated and in-depth knowledge for developing sustainable and effective strategies to address the challenges posed by As and Cd contamination in agricultural crops.
农业土壤中重金属(如砷和镉)的污染对作物生产、质量和全球粮食安全构成了日益严重的威胁。已经开发了许多原位和异位修复方法来减少土壤中的砷和镉污染。然而,由于相关的环境风险、低效率和大量的资本投资,常规修复技术在田间的应用受到限制。最近,钙(Ca)和基于 Ca 的纳米制剂作为有前途的解决方案出现,具有很大的潜力来减轻土壤中砷和镉对植物的毒性。本综述全面深入地探讨了砷和镉胁迫/毒性对植物的生理毒性作用,并讨论了基于 Ca 的离子和纳米农用化学品在减轻水稻、小麦、玉米和大麦等重要作物中砷和镉毒性方面的应用。此外,还讨论了离子和纳米 Ca 诱导的各种分子和生理机制,以减轻植物中的砷和镉胁迫/毒性。本综述还批判性地分析了这些新兴的基于 Ca 的方法(离子和纳米制剂)与传统修复技术相比,在减轻砷和镉毒性方面的效率。此外,还讨论了包含离子和纳米 Ca 的修复方法的未来展望和生态关注。总的来说,该综述为开发可持续和有效的策略提供了最新和深入的知识,以应对农业作物中砷和镉污染带来的挑战。