Cultivar Differentiation and Origin Tracing of Panax quinquefolius Using Machine Learning Model-DrivenComparative Metabolomics
Rongrong Zhou, Yikun Wang, Lanping Zhen, Bingbing Shen, Hongping Long, Luqi Huang

TL;DR
This study uses machine learning and metabolomics to distinguish between wild and cultivated American ginseng, enabling accurate origin tracing and quality evaluation.
Contribution
A novel AI-driven comparative metabolomics strategy is introduced for cultivar differentiation and origin tracing of American ginseng.
Findings
Wild and cultivated American ginseng show distinct metabolic phenotypes.
Eight differential metabolites in ESI+ mode and three in ESI- mode were identified, including seven ginsenosides.
A Random Forest model achieved 100% accuracy in classifying wild and cultivated ginseng.
Abstract
American ginseng (Panax quinquefolius L.) is a rare and valuable plant utilized for medicinal and culinary purposes, with its geographic origin and cultivation significantly affecting its quality and efficacy. However, the metabolic differences between cultivated and wild American ginseng are not well understood. An accurate and reliable method for tracing the origin and evaluating the quality of American ginseng is therefore urgently required. This study introduces a UHPLC-Q/TOF-MS-based comparative metabolomics and machine learning strategy for the rapid identification of wild and cultivated American ginseng. Both principal component analysis and hierarchical cluster analysis revealed distinct metabolic phenotypes between wild and cultivated American ginseng. Furthermore, the integration of univariate and multivariate statistical analyses identified eight differential metabolites in…
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Taxonomy
TopicsGinseng Biological Effects and Applications · Metabolomics and Mass Spectrometry Studies · Traditional Chinese Medicine Analysis
