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  5. Comparative Metabolomics of Reproductive Organs in the Genus Aesculus (Sapindaceae) Reveals That Immature Fruits Are a Key Organ of Procyanidin Accumulation and Bioactivity.

Comparative Metabolomics of Reproductive Organs in the Genus Aesculus (Sapindaceae) Reveals That Immature Fruits Are a Key Organ of Procyanidin Accumulation and Bioactivity.

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Resource type
Journal article
Creator (person)
Green, Alison
Padilla-Gonzalez, Guillermo Federico
ORCIDORCID logo
Phumthum, Methee
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Simmonds, Monique S. J.
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Sadgrove, Nicholas J.
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Date published
December 8, 2021
Abstract
Fruit from A. hippocastanum L. are used commercially for chronic venous insufficiency (CVI). The isomeric mixture of pentacyclic triterpenoid saponins (β-aescin) exert anti-inflammatory effects. Hence, research has focused on β-aescin, yet the diversity, accumulation, and bioactivity of organ-specific secondary metabolites represent missed pharmacological opportunities. To this end, we applied an untargeted metabolomics approach by liquid chromatography—tandem mass spectrometry (LC–MS/MS) to the chemical profiles of flowers, immature fruits, and pedicels from 40 specimens across 18 species of Aesculus. Principal component analysis (PCA), orthogonal partial least squares (OPLS-DA), and molecular networking revealed stronger chemical differences between plant organs, than between species. Flowers are rich in glycosylated flavonoids, pedicels in organic acids and flavonoid aglycones, and immature fruits in monomeric flavan-3-ols and procyanidins. Although a high diversity of flavonoids and procyanidins was observed, the relative amounts differed by plant organ. Fruit extracts demonstrated the strongest antifungal (Saccharomyces cerevisiae) and antioxidant activity, likely from the procyanidins. Overall, secondary metabolite profiles are organ-specific, and fruits accumulate antifungal and antioxidant compounds. Due to the chemical similarity between species, similar effects may be achieved between species. This creates incentives for further exploration of the entire genus, in bioprospecting for potential therapeutic leads.
Journal title
Plants
Volume
10
Issue
12
Article number
2695
Publisher
MDPI AG
Place of publication
Basel, Switzerland
eISSN
2223-7747
Date accepted
December 1, 2021
Official URL
https://doi.org/10.3390/plants10122695
Related URL
https://www.mdpi.com/2223-7747/10/12/2695
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.3390/plants10122695
Keywords
Mass spectrometry
Bioactivity
Liquid chromatography
Procyanidin
Aesculus
Metabolomics
Additional information
This article belongs to the Special Issue Integrated Metabolomics and Plant Chemical Diversity.
Managed by the British Library and supported by the AHRC

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