School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing 100029, China.
State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100700, China.
Molecules. 2017 Oct 13;22(10):1721. doi: 10.3390/molecules22101721.
This manuscript elaborates on the establishment of a chemotaxonomic classification strategy for closely-related fruits in Traditional Chinese Medicines (TCMs). UPLC-Q-TOF-MS-based metabolomics was applied to depict the variable chemotaxonomic markers and elucidate the metabolic mechanism of TCMs from different species and at different ripening stages. Metabolomics can capture a comprehensive analysis of small molecule metabolites and can provide a powerful approach to establish metabolic profiling, creating a bridge between genotype and phenotype. To further investigate the different metabolites in four closely-related TCMs, non-targeted metabolite profiling analysis was employed as an efficient technique to profile the primary and secondary metabolites. The results presented in this manuscript indicate that primary metabolites enable the discrimination of species, whereas secondary metabolites are associated with species and the ripening process. In addition, analysis of the biosynthetic pathway highlighted that the syntheses of flavone and flavone glycosides are deeply affected in ripening stages. Ultimately, this work might provide a feasible strategy for the authentication of fruits from different species and ripening stages and facilitate a better understanding of their different medicinal uses.
本文详细阐述了建立中药材近缘果实化学分类策略的方法。采用 UPLC-Q-TOF-MS 代谢组学方法,描绘了变异性化学分类标志物,并阐明了不同种属和不同成熟阶段中药材的代谢机制。代谢组学可以捕捉到小分子代谢物的全面分析,为建立代谢特征图谱提供了有力方法,在基因型和表型之间架起了桥梁。为了进一步研究四种近缘中药材中的不同代谢物,非靶向代谢物分析被用作一种有效的技术来分析主要和次要代谢物。本文的结果表明,初级代谢物可以区分物种,而次级代谢物与物种和成熟过程有关。此外,生物合成途径的分析表明,在成熟阶段黄酮和黄酮糖苷的合成受到了深刻的影响。最终,这项工作可能为不同种属和成熟阶段的果实鉴定提供一种可行的策略,并有助于更好地理解它们不同的药用用途。