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Profiles of Secondary Metabolites (Phenolic Acids, Carotenoids, Anthocyanins, and Galantamine) and Primary Metabolites (Carbohydrates, Amino Acids, and Organic Acids) during Flower Development in . | LitMetric

AI Article Synopsis

  • This study explored changes in primary and secondary metabolites during flower development using advanced techniques like HPLC and GC-TOFMS.
  • It identified 51 metabolites, finding that while amino acids generally increased, levels of TCA cycle intermediates and sugars decreased as the flowers matured.
  • The results suggest correlations among key nitrogen-carrying amino acids and highlight potential biochemical pathways, laying groundwork for further research in flower metabolism.

Article Abstract

This study aimed to elucidate the variations in primary and secondary metabolites during flower development using high performance liquid chromatography (HPLC) and gas chromatography time-of-flight mass spectrometry (GC-TOFMS). The result showed that seven carotenoids, seven phenolic acids, three anthocyanins, and galantamine were identified in the . flowers. Most secondary metabolite levels gradually decreased according to the flower developmental stages. A total of 51 metabolites, including amines, sugars, sugar intermediates, sugar alcohols, amino acids, organic acids, phenolic acids, and tricarboxylic acid (TCA) cycle intermediates, were identified and quantified using GC-TOFMS. Among the hydrophilic compounds, most amino acids increased during flower development; in contrast, TCA cycle intermediates and sugars decreased. In particular, glutamine, asparagine, glutamic acid, and aspartic acid, which represent the main inter- and intracellular nitrogen carriers, were positively correlated with the other amino acids and were negatively correlated with the TCA cycle intermediates. Furthermore, quantitation data of the 51 hydrophilic compounds were subjected to partial least-squares discriminant analyses (PLS-DA) to assess significant differences in the metabolites of . flowers from stages 1 to 4. Therefore, this study will serve as the foundation for a biochemical approach to understand both primary and secondary metabolism in . flower development.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914633PMC
http://dx.doi.org/10.3390/biom11020248DOI Listing

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