Li, B.; Wang, D.; Ren, L.; Qiao, B.; Wei, L.; Han, L.
iTRAQ-Based Phosphoproteomic Profiling Reveals Spermidine Enhanced SOS Signaling and Metabolic Reprogramming in Cucumber Seedlings Under Salt Stress. Horticulturae 2025, 11, 973.
https://doi.org/10.3390/horticulturae11080973
AMA Style
Li B, Wang D, Ren L, Qiao B, Wei L, Han L.
iTRAQ-Based Phosphoproteomic Profiling Reveals Spermidine Enhanced SOS Signaling and Metabolic Reprogramming in Cucumber Seedlings Under Salt Stress. Horticulturae. 2025; 11(8):973.
https://doi.org/10.3390/horticulturae11080973
Chicago/Turabian Style
Li, Bin, Danyi Wang, Liru Ren, Bo Qiao, Lincao Wei, and Lingjuan Han.
2025. "iTRAQ-Based Phosphoproteomic Profiling Reveals Spermidine Enhanced SOS Signaling and Metabolic Reprogramming in Cucumber Seedlings Under Salt Stress" Horticulturae 11, no. 8: 973.
https://doi.org/10.3390/horticulturae11080973
APA Style
Li, B., Wang, D., Ren, L., Qiao, B., Wei, L., & Han, L.
(2025). iTRAQ-Based Phosphoproteomic Profiling Reveals Spermidine Enhanced SOS Signaling and Metabolic Reprogramming in Cucumber Seedlings Under Salt Stress. Horticulturae, 11(8), 973.
https://doi.org/10.3390/horticulturae11080973