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Related Experiment Video

Updated: Jun 25, 2026

Biosynthesis of a Flavonol from a Flavanone by Establishing a One-pot Bienzymatic Cascade
09:50

Biosynthesis of a Flavonol from a Flavanone by Establishing a One-pot Bienzymatic Cascade

Published on: August 14, 2019

Antioxidant capacities, phenolic compounds, carotenoids, and vitamin C contents of nectarine, peach, and plum

María I Gil1, Francisco A Tomás-Barberán, Betty Hess-Pierce

  • 1Department of Pomology, University of California, Davis, California 95616, USA.

Journal of Agricultural and Food Chemistry
|August 9, 2002
PubMed
Summary

Genotypic variation in fruit composition impacts antioxidant activity. Phenolic compounds significantly contribute to the antioxidant capacity of nectarines, peaches, and plums.

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Area of Science:

  • Horticultural Science
  • Nutritional Biochemistry
  • Food Chemistry

Background:

  • Fruit genotypes exhibit diverse nutritional profiles.
  • Antioxidant compounds like vitamin C, carotenoids, and phenolics play crucial roles in fruit quality and health benefits.
  • Understanding genotypic variation is key to selecting and breeding fruits with enhanced antioxidant properties.

Purpose of the Study:

  • To evaluate the genotypic variation in the composition of key antioxidant compounds (ascorbic acid, carotenoids, phenolics) and their contribution to the overall antioxidant activity in various nectarine, peach, and plum cultivars.
  • To determine the correlation between specific phenolic compounds and the measured antioxidant activity across different fruit types.

Main Methods:

  • Analysis of 25 cultivars (5 each of white-flesh nectarines, yellow-flesh nectarines, white-flesh peaches, yellow-flesh peaches, and plums) at the ripe stage.
  • Quantification of total ascorbic acid (vitamin C), total carotenoids, and total phenolics using established biochemical assays.
  • Measurement of antioxidant activity and assessment of the contribution of different compound classes.

Main Results:

  • Significant genotypic variation was observed in the concentrations of ascorbic acid, carotenoids, and phenolics across the studied fruit types.
  • Phenolic compounds were found to be the major contributors to the antioxidant activity, surpassing vitamin C and carotenoids.
  • A strong positive correlation (0.93-0.96) was established between total phenolic content and antioxidant activity in nectarines, peaches, and plums.

Conclusions:

  • Fruit genotype is a critical determinant of antioxidant composition and activity.
  • Focusing on phenolic compound content is essential for enhancing the antioxidant potential of nectarines, peaches, and plums.
  • These findings provide valuable insights for fruit breeding programs aiming to develop cultivars with superior health-promoting attributes.