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利用生物炭改良措施增强气候变化下的粮食安全和植物抗逆性。

Leveraging Biochar Amendments to Enhance Food Security and Plant Resilience Under Climate Change.

作者信息

Korai Shakal Khan, Korai Punhoon Khan, Jaffar Muhammad Abuzar, Qasim Muhammad, Younas Muhammad Usama, Shabaan Muhammad, Zulfiqar Usman, Wang Xiaoshan, Artyszak Arkadiusz

机构信息

Department of Grassland, College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China.

Department of Soil Science, Faculty of Agriculture, Lasbela University of Agriculture, Water and Marine Sciences, Uthal 90150, Pakistan.

出版信息

Plants (Basel). 2025 Jun 28;14(13):1984. doi: 10.3390/plants14131984.

Abstract

Climate change poses significant risks to food security and contributes to widespread soil degradation. Effective strategies are urgently needed to mitigate its impacts and ensure stable crop production and food quality. Biochar has shown strong potential to reduce greenhouse gas emissions, enhance carbon sequestration, and immobilize soil contaminants such as heavy metals and organic pollutants. These benefits can lead to increased crop yields, improved nutritional quality, and reduced uptake of harmful substances by plants. This review summarizes the possible mechanisms through which biochar influences the biochar-soil-plant interface, aiming to provide a comprehensive understanding of its multifaceted roles. Although positive effects of biochar on crop production are frequently reported, neutral or even negative outcomes have also been observed. Such adverse effects may be attributed to the presence of volatile organic compounds, free radicals, or heavy metals in certain biochars that inhibit plant growth. Additionally, biochar application has been found to reduce plant infections caused by pathogens, likely due to the presence of organic compounds that act as microbial inhibitors. A deeper understanding of the mechanisms by which biochar affects plant growth is essential for its effective use as a tool to combat climate change and enhance food security.

摘要

气候变化对粮食安全构成重大风险,并导致土壤普遍退化。迫切需要有效的策略来减轻其影响,确保作物稳定生产和粮食质量。生物炭已显示出在减少温室气体排放、增强碳固存以及固定土壤污染物(如重金属和有机污染物)方面的强大潜力。这些益处可带来作物产量增加、营养品质改善以及植物对有害物质吸收减少。本综述总结了生物炭影响生物炭-土壤-植物界面的可能机制,旨在全面了解其多方面作用。尽管生物炭对作物生产的积极影响屡有报道,但也观察到了中性甚至负面的结果。此类不利影响可能归因于某些生物炭中存在抑制植物生长的挥发性有机化合物、自由基或重金属。此外,已发现施用生物炭可减少病原体引起的植物感染,这可能是由于存在作为微生物抑制剂的有机化合物。深入了解生物炭影响植物生长的机制对于其作为应对气候变化和增强粮食安全的工具的有效利用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40f5/12251727/7bb5398725a7/plants-14-01984-g001.jpg

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