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Active ROP2 triggers leaf senescence and orchestrates the growth-senescence trade-off under nitrogen starvation

作者:Tian Zhang, Heng Ye, Ying Zhang, Yi-Xiang Wang, Jing Wang, Shiyi Lixiang, Zhixi Lin, Yan Xiong, Yanlin Liu · 发表于:Plant Signaling & Behavior · 年份:2026 · DOI:10.1080/15592324.2026.2684389 · 研究领域:Plant Gene Expression Analysis、Plant nutrient uptake and metabolism、Plant Molecular Biology Research

Nitrogen (N) deficiency-induced leaf senescence is a genetically programmed process that facilitates plant adaptation to nutrient-limited conditions. Although numerous transcription factors (TFs) involved in N deficiency-induced leaf senescence have been identified, how they are regulated remains largely unknown. Here, we discovered that a plant-specific small GTPase, RHO of Plant 2 (ROP2), acts as an upstream positive regulator that bridges N starvation to leaf senescence by modulating key leaf senescence-associated TFs. Plants expressing constitutively active ROP2 (CA-ROP2) promote cotyledon early senescence under N-deficient conditions, by inducing the expression of key senescence-promoting NAC family TFs (ORE1, NAP, ANAC005), while strongly suppressing the expression of these TFs' inhibitory regulators (HASTY and NLA). On the contrary, CA-ROP2 suppresses the expression of the negative regulation TFs of N limitation-induced leaf senescence, like WRKY53 and NIGT1. The two opposing regulatory axes of CA-ROP2 coordinately accelerate premature cotyledon senescence under N starvation. Furthermore, phenotypic and time-series transcriptomic analysis revealed that CA-ROP2, relative to the wild type (WT), maintains shoot growth and elevated expression of growth- and development-related genes during early N starvation, yet later induces premature cotyledon senescence and drives a pronounced transcriptional switch to upregulate senescence-associated genes. Together, ROP2 converts fro...