AI Article Synopsis

  • The study aimed to analyze the metabolic differences in ginseng berries by their cultivation age and ripening stages using gas chromatography-mass spectrometry (GC-MS).
  • Harvesting was done weekly during five ripening stages of ginseng aged three and four years, revealing distinct metabolic changes over time.
  • The analysis showed that three-year-old ginseng had higher levels of certain amino acids while four-year-old berries showed different metabolites, and a random forest machine learning model was effective in predicting age and ripening stage with low error rates.

Article Abstract

The purpose of this study was to analyze metabolic differences of ginseng berries according to cultivation age and ripening stage using gas chromatography-mass spectrometry (GC-MS)-based metabolomics method. Ginseng berries were harvested every week during five different ripening stages of three-year-old and four-year-old ginseng. Using identified metabolites, a random forest machine learning approach was applied to obtain predictive models for the classification of cultivation age or ripening stage. Principal component analysis (PCA) score plot showed a clear separation by ripening stage, indicating that continuous metabolic changes occurred until the fifth ripening stage. Three-year-old ginseng berries had higher levels of valine, glutamic acid, and tryptophan, but lower levels of lactic acid and galactose than four-year-old ginseng berries at fully ripened stage. Metabolic pathways affected by different cultivation age were involved in amino acid metabolism pathways. A random forest machine learning approach extracted some important metabolites for predicting cultivation age or ripening stage with low error rate. This study demonstrates that different cultivation ages or ripening stages of ginseng berry can be successfully discriminated using a GC-MS-based metabolomic approach together with random forest analysis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6864821PMC
http://dx.doi.org/10.3390/molecules24213837DOI Listing

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