[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2052":3},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":6,"published_at":11,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":24,"tags":26,"view_count":33,"doi":34,"paper":35,"created_at":50},2052,"Sustainable soil governance pathways toward zero food gap","https:\u002F\u002Fdoi.org\u002F10.36922\u002Feer026320034","Achieving zero food gap has become a strategic global priority in response to increasing pressures from population growth, land degradation, climate change, and resource scarcity. Despite substantial advances in agricultural technologies, persistent disparities between food demand and production highlight the need for integrated approaches that strengthen the natural resource base while improving decision-making and policy implementation. Among these resources, healthy soils constitute the foundation of sustainable food systems, making sustainable soil governance the essential first step toward resilient food production. This review synthesizes recent advances in soil science, Earth observation, artificial intelligence, and decision support systems to develop an integrated conceptual framework—Sustainable Soil Governance Pathways Toward Zero Food Gap. Following the PRISMA 2020 framework, peer-reviewed literature published between 2015 and 2026 was systematically analyzed and organized into four interconnected domains: sustainable soil management, digital soil intelligence, sustainable soil governance, and enabling societal drivers. Rather than treating these domains independently, the review emphasizes their interactions in transforming scientific evidence into coordinated management and policy actions. The proposed framework identifies sustainable soil governance as the central coordinating mechanism that links healthy soils to digital innovation, evidence-based decision-making, and broader environmental, institutional, and socioeconomic conditions influencing food systems. This perspective recognizes that while soil governance is not the sole determinant of food security, it provides the foundation for integrating complementary interventions to advance the long-term vision of zero food gap. The framework offers a practical roadmap for supporting resilient, productive, and sustainable food systems.","实现零食物缺口已成为全球战略优先事项，以应对人口增长、土地退化、气候变化和资源稀缺带来的日益加剧的压力。尽管农业技术取得了实质性进展，但食物需求与生产之间持续存在的差距凸显出需要采取综合方法，在加强自然资源基础的同时改进决策和政策实施。在这些资源中，健康的土壤构成了可持续食物系统的基础，使可持续土壤治理成为迈向韧性食物生产的关键第一步。本综述综合了土壤科学、地球观测、人工智能和决策支持系统的最新进展，构建了一个整合性概念框架——面向零食物缺口的可持续土壤治理路径。遵循PRISMA 2020框架，对2015年至2026年间发表的同行评审文献进行了系统分析，并将其组织为四个相互关联的领域：可持续土壤管理、数字土壤智能、可持续土壤治理和赋能性社会驱动因素。本综述并未将这些领域独立对待，而是强调它们在将科学证据转化为协调管理和政策行动中的相互作用。所提出的框架将可持续土壤治理确定为核心协调机制，将健康土壤与数字创新、循证决策以及影响食物系统的更广泛环境、制度和社会经济条件联系起来。这一视角认识到，尽管土壤治理并非粮食安全的唯一决定因素，但它为整合互补性干预措施奠定了基础，以推进零食物缺口的长期愿景。该框架为支持韧性、高生产力和可持续的食物系统提供了实践路线图。",null,"Explora Environment and Resource","2026-09-07T00:00:00Z","论文",10,false,79,{"impact":17,"substance":18,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":23},22,20,18,13,6,1,"系统性综述提出土壤治理与数字技术融合框架，对农业信息化与粮食安全议题有参考价值，但属学术综述、时效一般，适合主题聚合而非头条精选。",[25],{"name":10,"url":6},[27,28,29,30,31,32],"农业人工智能","农业遥感","粮食安全","决策支持系统","土壤治理","数字土壤",0,"10.36922\u002Feer026320034",{"doi":34,"openalex_id":36,"authors":37,"venue":10,"cited_by_count":33,"oa_url":41,"card":42,"direction":48,"ingested_from":49},"W7211977960",[38],{"name":39,"orcid":40},"R.R. Alí","https:\u002F\u002Forcid.org\u002F0000-0002-2483-2907","https:\u002F\u002Farticle.accscience.com\u002Fjournal\u002FEER\u002Fonline_first\u002Feer026320034\u002Farticle_eer0263200341_17c096.pdf",{"tldr":43,"method":44,"finding":45,"direction":46,"opportunity":47},"综述土壤科学、地球观测、AI与决策支持，提出可持续土壤治理实现零食物缺口的整合框架。","PRISMA 2020系统综述2015-2026年文献，构建四域整合概念框架。","可持续土壤治理是连接健康土壤、数字创新与循证决策的核心协调机制。","农业遥感与作物表型","可实证检验数字土壤智能与治理政策的耦合机制，开发面向零食物缺口的决策支持系统。","智慧农业 \u002F 农业物联网","openalex","2026-09-10T23:30:17.837941Z"]