泛素连接酶
光合作用
化学
生物化学
细胞生物学
泛素
盐(化学)
生物
DNA连接酶
转录因子
泛素蛋白连接酶类
基因表达
细胞生长
植物
酵母
生长因子
植物生长
基因
转录组
作者
Kai Chen,Xiaoning Hao,Lulu Zhao,Ningning Chen,Li Xu,Heng Huang,T. Luo,Wensen Shi,Jiale Zhao,Sijia Li,Yubo Wang,Yongran Luo,Yao Li,Shaoming Liang,Yuxuan Ren,Jianquan Liu,Tao Ma,Yuanzhong Jiang
标识
DOI:10.1016/j.xplc.2026.101840
摘要
Salt stress imposes a major constraint on plant growth and prompts plants to actively suppress developmental programs, including the downregulation of photosynthesis-related genes, to prioritize stress defense and survival. However, the dynamic transcriptional regulation underlying this growth-to-stress transition remains poorly understood. Here, we identified the bifunctional transcription factor (TF) GROWTH REGULATORY FACTOR 1 (GRF1) and its interacting partner, the RING-H2 E3 ubiquitin ligase RHB1A, in poplar, and delineated the GRF1 regulatory network by demonstrating RHB1A-mediated ubiquitination and proteasomal degradation of GRF1 using transgenic poplar lines and an integrated multi-omics approach. Under favorable conditions, GRF1 acts as a transcriptional activator of photosynthesis-related genes and a repressor of stress-responsive genes, thereby enhancing photosynthetic growth. However, salt stress induces RHB1A, which promotes GRF1 degradation, attenuating growth-promoting pathways and derepressing stress response genes, ultimately conferring salt tolerance. These findings uncover a GRF1-RHB1A regulatory module that dynamically coordinates the trade-off between photosynthetic growth and salt responses in poplar, providing key mechanistic insights into the transcriptional control of environmental responses in woody plants.
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