环境科学
土壤盐分
粮食安全
环境修复
可持续农业
土壤治理
农业
农林复合经营
植物修复
作物产量
农业工程
农学
土壤肥力
可持续发展
农业生产力
业务
环境规划
环境资源管理
土壤退化
土壤管理
农作物产量
土壤水分
自然资源经济学
环境保护
土地利用
土壤功能
作者
Zhang Wenjing,Wang Zhen,Du Xinyue,Ning Xu,Zhang Lili,Zhaoming Qi,Xue Han
摘要
ABSTRACT Soil salinization is a major threat to global food security and sustainable agriculture, soil salinization affects approximately 8.31 × 10 8 hm 2 of soil resources globally. The remediation and productive use of saline‐alkali land have therefore become urgent global challenges. This review summarises the classification and global distribution of saline‐alkali soils and critically compares physical, chemical, microbial, and phytoremediation strategies. It then examines the physiological, cellular, and molecular mechanisms that support plant salt and alkali tolerance, with emphasis on ion transporters that maintain ion homoeostasis, the interactions among phytohormone pathways, including ABA, JA, and GA, in balancing growth and stress responses, and the contribution of epigenetic regulation to stress adaptation. Although substantial progress has been made in identifying salt‐alkali‐tolerance genes and developing soil amendments, a considerable gap remains between laboratory‐based studies and field‐level yield improvement. Future progress will depend on moving from single‐factor seedling assays to field‐based yield validation, combining CRISPR/Cas‐mediated genome editing with microbiome engineering, and addressing the socioeconomic feasibility of large‐scale remediation. Integrated strategies that link soil improvement, crop genetics, microbial regulation, and field management can provide both theoretical insights and practical guidance for sustainable agriculture in saline‐alkali environments.
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