Jiangsu Collaborative Innovation Center of Chinese Medicinal Resources Industrialization, Nanjing University of Chinese Medicine, Nanjing 210023, China.
State Key Laboratory on Technologies for Chinese Medicine Pharmaceutical Process Control and Intelligent Manufacture, Nanjing University of Chinese Medicine, Nanjing 210023, China.
Int J Mol Sci. 2024 Jun 9;25(12):6379. doi: 10.3390/ijms25126379.
An approach based on the heat stress and microbial stress model of the medicinal plant was proposed to elucidate the regulation and mechanism of bioactive phenol accumulation. This method integrates LC-MS/MS analysis, 16S rRNA sequencing, RT-qPCR, and molecular assays to investigate the regulation of phenolic metabolite biosynthesis in rhizome (SL) under stress. Previous research has shown that the metabolites and genes involved in phenol biosynthesis correlate to the upregulation of genes involved in plant-pathogen interactions. High-temperature and the presence of bacteria were observed alongside SL growth. Under conditions of heat stress or bacteria stress, both the metabolites and genes involved in phenol biosynthesis were upregulated. The regulation of phenol content and phenol biosynthesis gene expression suggests that phenol-based chemical defense of SL is stimulated under stress. Furthermore, the rapid accumulation of phenolic substances relied on the consumption of amino acids. Three defensive proteins, namely Ss4CL, SsC4H, and SsF3'5'H, were identified and verified to elucidate phenol biosynthesis in SL. Overall, this study enhances our understanding of the phenol-based chemical defense of SL, indicating that bioactive phenol substances result from SL's responses to the environment and providing new insights for growing the high-phenol-content medicinal herb SL.
提出了一种基于药用植物热应激和微生物应激模型的方法,以阐明生物活性酚类物质积累的调控和机制。该方法结合了 LC-MS/MS 分析、16S rRNA 测序、RT-qPCR 和分子测定,研究了在胁迫下根茎 (SL) 中酚类代谢物生物合成的调控。先前的研究表明,参与酚类生物合成的代谢物和基因与植物-病原体相互作用中涉及的基因的上调相关。在 SL 生长的同时,观察到高温和细菌的存在。在热应激或细菌应激条件下,酚类生物合成的代谢物和基因均上调。酚含量和酚生物合成基因表达的调控表明,SL 受到胁迫时会受到基于酚类的化学防御的刺激。此外,酚类物质的快速积累依赖于氨基酸的消耗。鉴定并验证了三种防御蛋白 Ss4CL、SsC4H 和 SsF3'5'H,以阐明 SL 中的酚类生物合成。总的来说,这项研究增强了我们对 SL 基于酚类的化学防御的理解,表明生物活性酚类物质是 SL 对环境响应的结果,并为种植高酚含量药用草本 SL 提供了新的见解。