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Comprehensive Metabolite Profile Uncovers the Bioactive Components, Antioxidant and Antibacterial Activities in Wild Tree Peony Leaves

Ziwei Xin, Weizong Yang, Lixin Niu, Yanlong Zhang

2023International Journal of Molecular Sciences11 citationsDOIOpen Access PDF

Abstract

Tree peonies (Paeonia Section Moutan)—including nine wild species, which belong to subsections Vaginatae and Delavayanae—are economically important plants with ornamental, nutritional, and medicinal applications. In this study, for the first time, we determined the bioactive components and antioxidant activities and antibacterial activities of the newly grown leaves of nine wild tree peony species (WTPS). A total of 276 bioactive components were identified through non-targeted metabolomics; more than 80% of the 276 metabolites identified are terpenoids and flavonoids. A total of 42 differential metabolites were quantitatively determined. The main differential metabolites were Paeoniflorin, Luteoloside, Hyperin, Apigenin-7-glucoside, Rhoifolin, and Cantharidin. Such a high terpenoid and flavonoid content of the leaf extracts renders them as species with strong antibacterial capacities, and most of the bacteria tested showed greater sensitivity derived from the members of subsection Vaginatae than those of subsection Delavayanae. All WTPS have significant antioxidant activity; this activity is attributed to high levels of the total phenolic content (TPC) and total flavonoid content (TFC), of which, among the nine WTPS, P. lutea has the strongest antioxidant capacity. Our results provided a theoretical basis for the in-deep application of tree peony leaves for food, medical, and pharmaceutical industries.

Topics & Concepts

FlavonoidTerpenoidPaeoniflorinAntioxidantSecondary metaboliteMetaboliteBotanyAntibacterial activityBiologyChemistryTraditional medicineFood scienceBiochemistryBacteriaHigh-performance liquid chromatographyChromatographyGeneticsGeneMedicinePlant biochemistry and biosynthesisPhytochemistry and Biological ActivitiesNatural product bioactivities and synthesis