Lyu Xinkai, Diao Haixin, Li Jiaxue, Meng Zhixia, Li Bing, Zhou Lisi, Guo Shunxing
Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
State Key Laboratory of Basis and New Drug Development of Natural and Nuclear Drugs, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Front Plant Sci. 2024 Mar 8;15:1368880. doi: 10.3389/fpls.2024.1368880. eCollection 2024.
is a rare, endangered herb with diverse pharmacological properties. Understanding the main metabolite types and characteristics of wild is important for efficiently utilizing resources and examining quality according to origin.
Samples were collected from the main production areas across five regions in Fujian Province, China. An untargeted metabolomics analysis was performed on the entire plants to explore their metabolic profiles. We utilized UPLC-MS/MS to specifically quantify eight targeted flavonoids in these samples. Subsequently, correlation analysis was conducted to investigate the relationships between the flavonoids content and both the biological characteristics and geographical features.
A comprehensive analysis identified a total of 3,170 differential metabolites, with terpenoids and flavonoids being the most prevalent classes. A region-specific metabolite analysis revealed that the Yongchun (YC) region showed the highest diversity of unique metabolites, including tangeretin and oleanolic acid. Conversely, the Youxi (YX) region was found to have the smallest number of unique metabolites, with only one distinct compound identified. Further investigation through KEGG pathway enrichment analysis highlighted a significant enrichment in pathways related to flavonoid biosynthesis. Further examination of the flavonoid category showed that flavonols were the most differentially abundant. We quantified eight specific flavonoids, finding that, on average, the YX region exhibited higher levels of these compounds. Correlation analysis highlighted a significant association between flavonoids and habitat, especially temperature and humidity.
Untargeted metabolomics via LC-MS was suitable for identifying region-specific metabolites and their influence via habitat heterogeneity. The results of this study serve as a new theoretical reference for unique markers exclusively present in a specific sample group.
是一种具有多种药理特性的珍稀濒危草本植物。了解野生的主要代谢物类型和特征对于有效利用资源以及根据产地检验质量很重要。
从中国福建省五个地区的主要产地采集样本。对整株植物进行非靶向代谢组学分析以探索其代谢谱。我们利用超高效液相色谱-串联质谱法对这些样本中的八种靶向黄酮类化合物进行特异性定量。随后,进行相关性分析以研究黄酮类化合物含量与生物学特性和地理特征之间的关系。
综合分析共鉴定出3170种差异代谢物,萜类化合物和黄酮类化合物是最主要的类别。区域特异性代谢物分析表明,永春(YC)地区独特代谢物的多样性最高,包括橘皮素和齐墩果酸。相反,尤溪(YX)地区的独特代谢物数量最少,仅鉴定出一种独特化合物。通过KEGG通路富集分析的进一步研究突出了与黄酮类生物合成相关通路的显著富集。对黄酮类化合物类别的进一步检查表明,黄酮醇的差异最为丰富。我们对八种特定黄酮类化合物进行了定量,发现平均而言,YX地区这些化合物的含量较高。相关性分析突出了黄酮类化合物与栖息地之间的显著关联,尤其是温度和湿度。
通过液相色谱-质谱联用的非靶向代谢组学适用于识别区域特异性代谢物及其受栖息地异质性的影响。本研究结果为特定样本组中独有的标记物提供了新的理论参考。