Ran Xu, Jizhen Xie, Xueqing Duan, Piao Liu, Xingyi Zheng, Xiaoyang Li, Sheng Jiang, Wenjun Wang, Xixi Cai, Shengchao Ge, Yunfeng Liu, Yuan Su
Phosphate (Pi) starvation severely limits plant growth, and the transcription factor PHR1 is a central regulator of the phosphate starvation response (PSR). However, its role in modulating the secreted proteome remains poorly understood. Here, we performed comparative secretome profiling of wild-type (WT) and phr1 mutant Arabidopsis seedlings under Pi-sufficient (+P) and Pi-deficient (-P) conditions using LC-MS/MS. We quantified 2077 proteins from culture media across four biological replicates. Pi starvation induced 394 differentially abundant secreted proteins in WT, while the phr1 mutation severely attenuated this response, particularly down-regulating 213 proteins under -P conditions. PHR1 was essential for the starvation-induced secretion of phosphate-acquisition enzymes, including GDPD6, PAP1, and RNS1, and its role in the promotion of extracellular phosphatases was confirmed by acid phosphatase activity assays. Additionally, PHR1 modulated redox-related and defense-related secreted proteins, linking nutrient stress with oxidative and immune signaling. Integrative transcriptomic analysis revealed partial concordance between protein and mRNA levels, suggesting both transcriptional and post-transcriptional regulation. Collectively, our findings establish PHR1 as a vital regulator of the Pi-starvation-induced secretome and provide new insights into plant adaptation to phosphorus limitation through coordinated protein secretion.