Lee Sarah, Oh Dong-Gu, Lee Sunmin, Kim Ga Ryun, Lee Jong Seok, Son Youn Kyoung, Bae Chang-Hwan, Yeo Joohong, Lee Choong Hwan
National Institute of Biological Resources, Environmental Research Complex, Incheon 404-708, Korea.
Department of Bioscience and Biotechnology, Konkuk University, Seoul 143-701, Korea.
Molecules. 2015 Nov 2;20(11):19719-34. doi: 10.3390/molecules201119652.
Chemotaxonomic metabolite profiling of 62 indigenous Korean plant species was performed by ultrahigh performance liquid chromatography (UHPLC)-linear trap quadrupole-ion trap (LTQ-IT) mass spectrometry/mass spectrometry (MS/MS) combined with multivariate statistical analysis. In partial least squares discriminant analysis (PLS-DA), the 62 species clustered depending on their phylogenetic family, in particular, Aceraceae, Betulaceae, and Fagaceae were distinguished from Rosaceae, Fabaceae, and Asteraceae. Quinic acid, gallic acid, quercetin, quercetin derivatives, kaempferol, and kaempferol derivatives were identified as family-specific metabolites, and were found in relatively high concentrations in Aceraceae, Betulaceae, and Fagaceae. Fagaceae and Asteraceae were selected based on results of PLS-DA and bioactivities to determine the correlation between metabolic differences among plant families and bioactivities. Quinic acid, quercetin, kaempferol, quercetin derivatives, and kaempferol derivatives were found in higher concentrations in Fagaceae than in Asteraceae, and were positively correlated with antioxidant and tyrosinase inhibition activities. These results suggest that metabolite profiling was a useful tool for finding the different metabolic states of each plant family and understanding the correlation between metabolites and bioactivities in accordance with plant family.
采用超高效液相色谱(UHPLC)-线性阱四极杆-离子阱(LTQ-IT)质谱/质谱(MS/MS)联用多元统计分析方法,对62种韩国本土植物进行了化学分类代谢产物分析。在偏最小二乘判别分析(PLS-DA)中,62个物种根据其系统发育科进行聚类,特别是槭树科、桦木科和壳斗科与蔷薇科、豆科和菊科区分开来。奎尼酸、没食子酸、槲皮素、槲皮素衍生物、山奈酚和山奈酚衍生物被鉴定为科特异性代谢产物,在槭树科、桦木科和壳斗科中含量相对较高。根据PLS-DA结果和生物活性选择壳斗科和菊科,以确定植物科间代谢差异与生物活性之间的相关性。壳斗科中奎尼酸、槲皮素、山奈酚、槲皮素衍生物和山奈酚衍生物的含量高于菊科,且与抗氧化和酪氨酸酶抑制活性呈正相关。这些结果表明,代谢产物分析是发现每个植物科不同代谢状态以及理解代谢产物与植物科生物活性之间相关性的有用工具。