The OsNLP3/4-OsRFL module regulates nitrogen-promoted panicle architecture in rice.

Jie Wu, Liang-Qi Sun, Ying Song, Yu Bai, Guang-Yu Wan, Jing-Xian Wang, Jin-Qiu Xia, Zheng-Yi Zhang, Zi-Sheng Zhang, Zhong Zhao, Cheng-Bin Xiang

Journal: The New phytologist 2023;240(6):2404-2418

PMID: 37845836

Abstract

Rice panicles, a major component of yield, are regulated by phytohormones and nutrients. How mineral nutrients promote panicle architecture remains largely unknown. Here, we report that NIN-LIKE PROTEIN3 and 4 (OsNLP3/4) are crucial positive regulators of rice panicle architecture in response to nitrogen (N). Loss-of-function mutants of either OsNLP3 or OsNLP4 produced smaller panicles with reduced primary and secondary branches and fewer grains than wild-type, whereas their overexpression plants showed the opposite phenotypes. The OsNLP3/4-regulated panicle architecture was positively correlated with N availability. OsNLP3/4 directly bind to the promoter of OsRFL and activate its expression to promote inflorescence meristem development. Furthermore, OsRFL activates OsMOC1 expression by binding to its promoter. Our findings reveal the novel N-responsive OsNLP3/4-OsRFL-OsMOC1 module that integrates N availability to regulate panicle architecture, shedding light on how N nutrient signals regulate panicle architecture and providing candidate targets for the improvement of crop yield.

© 2023 The Authors New Phytologist © 2023 New Phytologist Foundation.

Address: Division of Life Sciences and Medicine, Division of Molecular & Cell Biophysics, Hefei National Science Center for Interdisciplinary Sciences at the Microscale, MOE Key Laboratory for Membraneless Organelles and Cellular Dynamics, University of Science and Technology of China, The Innovation Academy of Seed Design, Chinese Academy of Sciences, Hefei, Anhui Province, 230027, China.; Experimental Center of Engineering and Materials Science, University of Science and Technology of China, Hefei, 230027, China.

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