Institute of Highland Forest Science, Chinese Academy of Forestry, Kunming 650224, China.
Molecules. 2022 Mar 18;27(6):1982. doi: 10.3390/molecules27061982.
is a woody plant with economic and medicinal value. As the pharmacological qualities and properties of the wood from this plant primarily depend on its extractives, in this study, the metabolomic analysis of extractives from its stems was carried out using UPLC-MS/MS. A total of 735 metabolites were detected from two groups of samples, heartwood and sapwood, with the largest number of terpenoids in type and the largest number of flavonoids in quantity. The PCA and cluster analysis showed significant differences in the metabolite composition between the two groups. The differential metabolites were mainly organic oxygen compounds, flavonoids, and isoflavones. Among the 105 differential metabolites, 26 metabolites were significantly higher in relative content in sapwood than in heartwood, while the other 79 metabolites were significantly higher in relative content in heartwood than in sapwood. KEGG metabolic pathway enrichment analysis showed that these differential metabolites were mainly enriched in three metabolic pathways: Flavonoid biosynthesis, isoflavonoid biosynthesis, and flavonoid and flavonol biosynthesis. This study provides a reference for metabolomics studies in and other woody plants.
是一种具有经济和药用价值的木本植物。由于该植物木材的药理性质和特性主要取决于其提取物,因此本研究采用 UPLC-MS/MS 对其茎部提取物进行了代谢组学分析。从心材和边材两组样品中检测到 735 种代谢物,其中萜类化合物数量最多,黄酮类化合物数量最多。PCA 和聚类分析表明两组样品在代谢物组成上存在显著差异。差异代谢物主要为有机氧化合物、黄酮类和异黄酮类。在 105 种差异代谢物中,26 种代谢物在心材中的相对含量明显高于边材,而另外 79 种代谢物在心材中的相对含量明显高于边材。KEGG 代谢通路富集分析表明,这些差异代谢物主要富集在三个代谢通路中:类黄酮生物合成、异黄酮生物合成以及类黄酮和黄酮醇生物合成。本研究为 及其他木本植物的代谢组学研究提供了参考。