作物生产力
光合作用
农业生产力
生化工程
生产力
固碳
农业
粮食安全
资源(消歧)
过程(计算)
持续性
可持续农业
弹性(材料科学)
业务
生物量(生态学)
全球挑战
固碳
农作物产量
生物技术
环境科学
自然资源经济学
气候变化
计算机科学
生产(经济)
纳米技术
可持续发展
风险分析(工程)
钥匙(锁)
食品加工
环境资源管理
全球变暖
作者
Yezhuo Zhang,Gai Tian,J. F. Lin,Yujie Fu,Ye Li
标识
DOI:10.1021/acs.jafc.5c12837
摘要
Photosynthesis is the fundamental process driving plant productivity and the carbon sequestration capacity of ecosystems, playing a crucial role in global food production and environmental balance. However, traditional agricultural practices face challenges in addressing climate change and resource depletion. Recently, nanozyme-based technology has emerged as a promising solution to enhance plant photosynthesis. Nanozymes, engineered nanomaterials with enzyme-like activities, mimic natural enzymes to optimize key photosynthetic processes. In this review, we systematically summarize the properties, classification, and mechanisms of nanozymes, highlighting how they enhance light absorption, electron transport, and the regulation of carbon fixation pathways and ROS, thereby improving photosynthetic performance. Moreover, we discuss the application methods of nanozymes, including seed treatment, foliar spraying, and root irrigation, emphasizing their importance in maximizing photosynthetic efficiency. Finally, we provide insights into the key challenges and future prospects of nanozyme-based approaches for sustainable agriculture, aiming to provide valuable insights for advancing crop productivity and resilience under environmental stress.
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