FaNAC047-FaNAC058 module coordinately promotes chlorophyll degradation and reactive oxygen species production during heat-induced leaf senescence in tall fescue
Liwen Cao1, Yao Chen1,2, Kai Xiao1,2, Liang Chen1,2,3,*
1. State Key Laboratory of Plant Diversity and Specialty Crops, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan 430074, China; 2. University of Chinese Academy of Science, Beijing 100049, China; 3. Academician Workstation of Agricultural High-tech Industrial Area of the Yellow River Delta, National Center of Technology Innovation for Comprehensive Utilization of Saline-Alkali Land, Dongying 257300, China
National Natural Science Foundation of China (NSFC) (Grant Nos. 32471765, 32101430, and 32441039), the Major Science and Technology Innovation Project of Shandong Province (No. 2022LZGC018), the National Science Foundation for Distinguished Young Scholars of Hubei Province (No. 2021CFA060), International Science and Technology Cooperation Project of Hubei Province (No. 2021EHB021), and the Science & Technology Specific Projects in Agricultural Hightech Industrial Demonstration Area of the Yellow River Delta (No. 2022SZX13). We thank Professor Jianye Chen (South China Agricultural University) for providing pGreenII BD-62- SK and pGreenII BD-62-SK-VP16 vectors.
Liwen Cao, Yao Chen, Kai Xiao, Liang Chen. FaNAC047-FaNAC058 module coordinately promotes chlorophyll degradation and reactive oxygen species production during heat-induced leaf senescence in tall fescue[J]. J Integr Plant Biol., 2025, 67(4): 1009-1027.