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非靶向代谢组学分析甲醇提取物的野生模拟和野外生长的西洋参。

Non-Targeted Metabolomic Analysis of Methanolic Extracts of Wild-Simulated and Field-Grown American Ginseng.

机构信息

Research Center of Natural Drug, School of Pharmaceutical Sciences, Jilin University, Changchun 130021, China.

出版信息

Molecules. 2019 Mar 18;24(6):1053. doi: 10.3390/molecules24061053.

Abstract

Aiming at revealing the structural diversity of secondary metabolites and the different patterns in wild-simulated American ginseng (WsAG) and field-grown American ginseng (FgAG), a comprehensive and unique phytochemical profile study was carried out. In the screening analysis, a total of 121 shared compounds were characterized in FgAG and WsAG, respectively. The results showed that both of these two kinds of American ginseng were rich in natural components, and were similar in terms of the kinds of compound they contained. Furthermore, in non-targeted metabolomic analysis, when taking the contents of the constituents into account, it was found that there indeed existed quite a difference between FgAG and WsAG, and 22 robust known biomarkers enabling the differentiation were discovered. For WsAG, there were 12 potential biomarkers including two ocotillol-type saponins, two steroids, six damarane-type saponins, one oleanane-type saponins and one other compound. On the other hand, for FgAG, there were 10 potential biomarkers including two organic acids, six damarane-type saponins, one oleanane-type saponin, and one ursane. In a word, this study illustrated the similarities and differences between FgAG and WsAG, and provides a basis for explaining the effect of different growth environments on secondary metabolites.

摘要

为了揭示次生代谢产物的结构多样性和野生模拟西洋参(WsAG)与田间生长西洋参(FgAG)之间的不同模式,我们进行了一项全面而独特的植物化学特征研究。在筛选分析中,分别在 FgAG 和 WsAG 中鉴定出 121 种共有化合物。结果表明,这两种西洋参都富含天然成分,所含化合物的种类相似。此外,在非靶向代谢组学分析中,考虑到成分的含量,确实发现 FgAG 和 WsAG 之间存在相当大的差异,并发现了 22 种强大的已知可区分的生物标志物。对于 WsAG,有 12 种潜在的生物标志物,包括两种奥克替醇型皂苷、两种甾体、六种达玛烷型皂苷、一种齐墩果烷型皂苷和一种其他化合物。另一方面,对于 FgAG,有 10 种潜在的生物标志物,包括两种有机酸、六种达玛烷型皂苷、一种齐墩果烷型皂苷和一种乌苏烷。总之,本研究阐明了 FgAG 和 WsAG 之间的相似性和差异,为解释不同生长环境对次生代谢产物的影响提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b80d/6470646/9e7bc975a592/molecules-24-01053-g001.jpg

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