4.7 Article

Characterization of Bioactive Phenolics and Antioxidant Capacity of Edible Bean Extracts of 50 Fabaceae Populations Grown in Thailand

Journal

FOODS
Volume 10, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/foods10123118

Keywords

Fabaceae; bioactive phenolics; antioxidant capacity; edible bean; population level

Funding

  1. Mahidol University
  2. Campus France through the PHC SIAM [44926WK]
  3. Le Studium Institute for Advance Study
  4. French Government via the French Embassy in Thailand
  5. research fellowship of Loire Valley Region

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This study investigated the phytochemical compositions and antioxidant potentials of 50 populations of Fabaceae from different locations in Thailand, revealing high heterogeneity in polyphenols accumulations. The findings contribute to better knowledge for the nutraceutical and phytopharmaceutical sectors in seeking potential raw plant materials.
Fabaceae is the third largest family containing great variation among populations. However, previous studies mainly focus on single species, and phytochemicals at population level have never been reported. This work aims to complete this knowledge with 50 populations from throughout Thailand by (1) determining total phenolic (TPC), flavonoid (TFC), and anthocyanin (TAC) contents; and (2) investigating in vitro and cellular antioxidant potentials. Phytochemicals of 50 populations from different localities are differed, illustrating high heterogeneity occurring in polyphenols accumulations. Vigna unguiculata subsp. sesquipedalis populations showed low variability in TPC ranging from 628.3 to 717.3 mg/100 g DW gallic acid equivalent, whereas the high variability found in TFC and TAC range from 786.9 to 1536.1 mg/100 g DW quercetin equivalent, and 13.4 to 41.6 mg/100 g DW cyanidin equivalent. Red cultivar population #16 had the greatest TAC, but surprisingly the cream cultivars were relatively high in anthocyanins. HPLC quantification of genistein and daidzein showed great variations among populations. In vitro antioxidant results indicated that antioxidant capacity mediated by electron transfer. Cellular antioxidants ranged from 59.7% to 87.9% of ROS/RNS in yeast model. This study investigated at the population level contributing to better and frontier knowledge for nutraceutical/phytopharmaceutical sectors to seek potential raw plant material.

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