College of Life Sciences, North China University of Science and Technology, 063210, China.
College of Life Sciences, North China University of Science and Technology, 063210, China.
Int J Biol Macromol. 2024 Nov;279(Pt 2):135273. doi: 10.1016/j.ijbiomac.2024.135273. Epub 2024 Sep 1.
Light quality considerably influences plant secondary metabolism, yet the precise mechanism underlying its impact on Eleutherococcus senticosus remains elusive. Comprehensive metabolomic and transcriptomic analyses revealed that varying light quality alters the biosynthesis of triterpene saponins by modulating the expression of genes involved in the process in E. senticosus. Through correlation analysis of gene expression and saponin biosynthesis, we identified four light-responsive transcription factors, namely EsbZIP1, EsbZIP2, EsbZIP4, and EsbZIP5. EsbZIP transcription factors function in the nucleus, with light quality-dependent promoter activity. Except for EsbZIP2, the other EsbZIP transcription factors exhibit transcriptional self-activation. Furthermore, EsbZIP can bind to the promoter areas of genes that encode important enzymes (EsFPS, EsSS, and EsSE) involved in triterpene saponin biosynthesis, thereby regulating their expression. Overexpression of EsbZIP resultes in significant down-regulation of most downstream target genes,which leads to a decrease in saponin content. Overall, varying light quality enhances the content of triterpene saponins by suppressing the expression of EsbZIP. This study thus elucidates the molecular mechanism by which E. senticosus adjusts triterpene saponin levels in response to changes in light quality.
光照质量对植物次生代谢有很大的影响,但光照质量对刺五加影响的确切机制仍不清楚。全面的代谢组学和转录组学分析表明,不同的光照质量通过调节参与刺五加次生代谢过程的基因的表达来改变三萜皂苷的生物合成。通过基因表达和皂苷生物合成的相关分析,我们鉴定出了四个光响应转录因子,即 EsbZIP1、EsbZIP2、EsbZIP4 和 EsbZIP5。EsbZIP 转录因子在细胞核内发挥作用,其启动子活性依赖于光照质量。除了 EsbZIP2 之外,其他 EsbZIP 转录因子表现出转录自激活。此外,EsbZIP 可以与编码三萜皂苷生物合成中重要酶(EsFPS、EsSS 和 EsSE)的基因的启动子区域结合,从而调节它们的表达。EsbZIP 的过表达导致大多数下游靶基因的显著下调,从而导致皂苷含量降低。总的来说,光照质量的变化通过抑制 EsbZIP 的表达来提高三萜皂苷的含量。因此,本研究阐明了刺五加响应光照质量变化调节三萜皂苷水平的分子机制。