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拮抗的Ghd7-OsNAC42复合物调节碳氮代谢以实现水稻的优质高产。

Antagonistic Ghd7-OsNAC42 Complexes Modulate Carbon and Nitrogen Metabolism to Achieves Superior Quality and High Yield in Rice.

作者信息

Lou Guangming, Chen Pingli, Li Pingbo, Gao Haozhou, Xiong Jiawang, Wan Shanshan, Zheng Yuanyuan, Wang Yufu, Alam Mufid, Chen Yingnanjun, Wang Lei, Bai Jingjing, Tan Xuan, Rao Wenting, Wu Bian, Zhou Hao, Li Yanhua, Gao Guanjun, Zhang Qinglu, Xiao Jinghua, Li Xianghua, Lai Xuelei, Zhang Qifa, He Yuqing

机构信息

National Key Laboratory of Crop Genetic Improvement and National Center of Plant Gene Research (Wuhan), Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

Adv Sci (Weinh). 2025 Aug;12(31):e04163. doi: 10.1002/advs.202504163. Epub 2025 Jun 10.

Abstract

Close coordination of carbon and nitrogen (C/N) metabolism is necessary to maintain optimal growth and development of plants and other cellular organisms. The central regulator for achieving high-yield and quality synergy in rice through regulating the dynamic C/N balance has seldom been reported. Here, the novel function of Grain number, plant height, and heading date7 (Ghd7) gene are reported as both a negative regulator of grain protein content and a positive regulator of rice grain quality (including appearance quality and eating quality). As a transcription factor with both activating and inhibitory functions, Ghd7 directly binds to CCACC motif genes involved in C/N metabolism. OsNAC42, an interacting protein of Ghd7, antagonistically regulates the expression of these target genes in rice seedlings and endosperm by forming a heterodimer with Ghd7. The antagonistic Ghd7-OsNAC42 module can flexibly regulate C/N metabolism in vivo in response to various nitrogen levels, thereby maintaining a dynamic C/N balance. Phenotypically, OsNAC42 enhances grain protein content but compromises quality-functions opposing Ghd7's effects. In summary, the discovery of the Ghd7-OsNAC42 antagonistic module provides new insights into the synergy between superior quality and high yield in rice.

摘要

碳氮(C/N)代谢的紧密协调对于维持植物和其他细胞生物体的最佳生长发育至关重要。通过调节动态C/N平衡来实现水稻高产与优质协同效应的核心调控因子鲜有报道。本文报道了粒数、株高和抽穗期7(Ghd7)基因的新功能,它既是籽粒蛋白质含量的负调控因子,也是水稻籽粒品质(包括外观品质和食用品质)的正调控因子。作为一种兼具激活和抑制功能的转录因子,Ghd7直接与参与C/N代谢的CCACC基序基因结合。Ghd7的互作蛋白OsNAC42通过与Ghd7形成异源二聚体,在水稻幼苗和胚乳中拮抗调控这些靶基因的表达。拮抗的Ghd7-OsNAC42模块能够响应不同氮水平,灵活地在体内调节C/N代谢,从而维持动态的C/N平衡。从表型上看,OsNAC42提高了籽粒蛋白质含量,但损害了与Ghd7作用相反的品质功能。总之,Ghd7-OsNAC42拮抗模块的发现为水稻优质与高产协同效应提供了新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39da/12376526/bade8d9599c0/ADVS-12-e04163-g005.jpg

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