Li Shuhao, Xu Yang, Tian Jun, Zheng Hanbing, Sun Ji, Wu Haitao, Zhong Fenglin
Southern Zhejiang Key Laboratory of Crop Breeding, Wenzhou Academy of Agricultural Sciences, Wen'zhou, 325006, People's Republic of China.
College of Horticulture, Fujian Agriculture and Forestry University, Fu'zhou, 350002, People's Republic of China.
Plant Cell Rep. 2025 Sep 6;44(10):208. doi: 10.1007/s00299-025-03598-4.
GA participates in FR light-induced internode elongation of cucumber by regulating the expression of genes/proteins related to aquaporins, expansins, cell wall biosynthesis, hormone metabolism, and signal transduction. This study investigated the effects of the interaction between far-red (FR) light and gibberellin (GA) on the internode elongation of cucumber (Cucumis sativus L. 'Zhongnong No. 26') seedlings through combined physiological, biochemical, transcriptomic, and proteomic analyses. The results revealed that FR light and GA significantly promoted internode elongation in cucumber seedlings, whereas a GA biosynthesis inhibitor (PAC) inhibited the promoting effect of FR light. Hormone content determination revealed that FR light and GA decreased the contents of abscisic acid (ABA), indole-3-acetic acid (IAA), cytokinin (CTK), and jasmonate (JA) in cucumber seedling internodes. Bioinformatics analysis revealed that the expression patterns of the Co-DEGs and Co-DEPs were consistent in the FR (WL combined with FR light) and WLG (WL, in which plants were sprayed GA) groups, as well as in the FRP (FR, in which plants were sprayed PAC) and WL (full-spectrum LED white light) groups, suggesting that the mechanisms of FR and GA were similar in these Co-DEGs and Co-DEPs. Further analysis of these Co-DEGs and Co-DEPs revealed that they were involved mainly in cell wall biosynthesis and modification, lignin synthesis, hormone metabolism, and signal transduction pathways. In conclusion, this study revealed the important role of GA in FR light-induced internode elongation in cucumber seedlings, and this promoting effect was achieved mainly through the regulation of aquaporins, expansins, hormone metabolism, and signal transduction-related genes/proteins. This study provides new insights into the molecular mechanism of FR light-induced internode elongation in cucumber seedlings.
赤霉素通过调控与水通道蛋白、扩张蛋白、细胞壁生物合成、激素代谢及信号转导相关的基因/蛋白质的表达,参与远红光诱导的黄瓜节间伸长。本研究通过生理、生化、转录组和蛋白质组联合分析,探究了远红光(FR)与赤霉素(GA)相互作用对黄瓜(Cucumis sativus L. 'Zhongnong No. 26')幼苗节间伸长的影响。结果表明,远红光和赤霉素显著促进黄瓜幼苗节间伸长,而赤霉素生物合成抑制剂(多效唑)抑制了远红光的促进作用。激素含量测定显示,远红光和赤霉素降低了黄瓜幼苗节间脱落酸(ABA)、吲哚 - 3 - 乙酸(IAA)、细胞分裂素(CTK)和茉莉酸(JA)的含量。生物信息学分析表明,在FR(白光 + 远红光)和WLG(白光,喷施GA)组以及FRP(远红光,喷施多效唑)和WL(全光谱LED白光)组中,共差异表达基因(Co - DEGs)和共差异表达蛋白(Co - DEPs)的表达模式一致,表明这些Co - DEGs和Co - DEPs中远红光和赤霉素的作用机制相似。对这些Co - DEGs和Co - DEPs的进一步分析表明,它们主要参与细胞壁生物合成与修饰、木质素合成、激素代谢及信号转导途径。总之,本研究揭示了赤霉素在远红光诱导黄瓜幼苗节间伸长中的重要作用,且这种促进作用主要通过调控水通道蛋白、扩张蛋白、激素代谢及信号转导相关基因/蛋白质来实现。本研究为远红光诱导黄瓜幼苗节间伸长的分子机制提供了新见解。