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优化植物中的碳和氮代谢:从基本原理到实际应用。

Optimizing carbon and nitrogen metabolism in plants: From fundamental principles to practical applications.

作者信息

Liu Hui, Gao Xiuhua, Fan Weishu, Fu Xiangdong

机构信息

State Key Laboratory of Seed Innovation, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, 100101, China.

New Cornerstone Science Laboratory, College of Life Science, Beijing, 100049, China.

出版信息

J Integr Plant Biol. 2025 Jun;67(6):1447-1466. doi: 10.1111/jipb.13919. Epub 2025 May 16.

DOI:10.1111/jipb.13919
PMID:40376749
Abstract

Carbon (C) and nitrogen (N) are fundamental elements essential for plant growth and development, serving as the structural and functional backbone of organic compounds and driving essential biological processes such as photosynthesis, carbohydrate metabolism, and N assimilation. The metabolism and transport of C involve the movement of sugars between shoots and roots through xylem and phloem transport systems, regulated by a sugar-signaling hub. Nitrogen uptake, transport, and metabolism are equally critical, with plants assimilating nitrate and ammonium through specialized transporters and enzymes in response to varying N levels to optimize growth and development. The coordination of C and N metabolism is key to plant productivity and the maintaining of agroecosystem stability. However, inefficient utilization of N fertilizers results in substantial environmental and economic challenges, emphasizing the urgent need to improve N use efficiency (NUE) in crops. Integrating efficient photosynthesis with N uptake offers opportunities for sustainable agricultural practices. This review discusses recent advances in understanding C and N transport, metabolism, and signaling in plants, with a particular emphasis on NUE-related genes in rice, and explores breeding strategies to enhance crop efficiency and agricultural sustainability.

摘要

碳(C)和氮(N)是植物生长和发育所必需的基本元素,是有机化合物的结构和功能骨架,并驱动光合作用、碳水化合物代谢和氮同化等重要生物过程。碳的代谢和运输涉及糖分通过木质部和韧皮部运输系统在地上部和根部之间的移动,这一过程由一个糖信号枢纽调控。氮的吸收、运输和代谢同样至关重要,植物通过特定的转运蛋白和酶来吸收硝酸盐和铵,以响应不同的氮水平,从而优化生长和发育。碳和氮代谢的协调是植物生产力和维持农业生态系统稳定性的关键。然而,氮肥利用效率低下导致了重大的环境和经济挑战,凸显了迫切需要提高作物的氮利用效率(NUE)。将高效光合作用与氮吸收相结合为可持续农业实践提供了机会。本综述讨论了植物中碳和氮运输、代谢及信号传导方面的最新进展,特别强调了水稻中与氮利用效率相关的基因,并探讨了提高作物效率和农业可持续性的育种策略。

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Species Interactions Shape Nitrogen Utilization Characteristics and Influence Soil Quality in Jujube-Alfalfa Intercropping System.物种间相互作用塑造了枣-苜蓿间作系统中的氮素利用特征并影响土壤质量。
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