光合作用
光合效率
光呼吸
粮食安全
用水效率
生物量(生态学)
高效能源利用
生物
持续性
农业工程
环境科学
农林复合经营
农业
农学
生态学
植物
工程类
作者
Edward Smith,Marvin van Aalst,Tiina Tosens,Ülo Niinemets,Benjamin Stich,Tomas Morosinotto,Alessandro Alboresi,Tobias J. Erb,Paul A. Gómez-Coronado,Dimitri Tolleter,Guido Finazzi,Gilles Curien,Matthias Heinemann,Oliver Ebenhöh,Julian M. Hibberd,Urte Schlüter,Tiejun Sun,Andreas P.M. Weber
出处
期刊:Molecular Plant
[Elsevier]
日期:2023-10-01
卷期号:16 (10): 1547-1563
被引量:6
标识
DOI:10.1016/j.molp.2023.08.017
摘要
Photosynthesis in crops and natural vegetation allows light energy to be converted into chemical energy and thus forms the foundation for almost all terrestrial trophic networks on Earth. The efficiency of photosynthetic energy conversion plays a crucial role in determining the portion of incident solar radiation that can be used to generate plant biomass throughout a growth season. Consequently, alongside the factors such as resource availability, crop management, crop selection, maintenance costs, and intrinsic yield potential, photosynthetic energy use efficiency significantly influences crop yield. Photosynthetic efficiency is relevant to sustainability and food security because it affects water use efficiency, nutrient use efficiency, and land use efficiency. This review focuses specifically on the potential for improvements in photosynthetic efficiency to drive a sustainable increase in crop yields. We discuss bypassing photorespiration, enhancing light use efficiency, harnessing natural variation in photosynthetic parameters for breeding purposes, and adopting new-to-nature approaches that show promise for achieving unprecedented gains in photosynthetic efficiency.
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