4.7 Article

Ripening-Induced Changes in the Nutraceutical Compounds of Differently Coloured Pepper (Capsicum annuum L.) Breeding Lines

Journal

ANTIOXIDANTS
Volume 11, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/antiox11040637

Keywords

Capsicum; pepper; anthocyanin; antioxidant; secondary metabolites; gene expression

Funding

  1. European Union
  2. European Social Fund
  3. [EFOP-3.6.3-VEKOP-16-2017-00008]

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This study investigates the correlation between anthocyanin accumulation and antioxidant capacity in purple pepper berries during ripening. The results show a decreasing trend in polyphenolic and flavonoid content as well as antioxidant capacity as the maturity of the samples increases. Both genotype and phenophase have significant effects on phytonutrients, with the extreme purple pepper exhibiting the highest polyphenolic and flavonoid content, as well as antioxidant capacity.
To date, several research studies addressed the topic of phytochemical analysis of the different coloured pepper berries during ripening, but none discussed it in the case of purple peppers. In this study we examine whether the anthocyanin accumulation of the berries in the early stages of ripening could result in a higher antioxidant capacity due to the elevated amount of polyphenolic compounds. Therefore, enzymatic and non-enzymatic antioxidant capacity was measured in four distinct phenophases of fruit maturity. Furthermore, the expression of structural and regulatory genes of the anthocyanin biosynthetic pathway was also investigated. An overall decreasing trend was observed in the polyphenolic and flavonoid content and antioxidant capacity of the samples towards biological ripeness. Significant changes both in between the genotypes and in between the phenophases were scored, with the genotype being the most affecting factor on the phytonutrients. An extreme purple pepper yielded outstanding results compared to the other genotypes, with its polyphenolic and flavonoid content as well as its antioxidant capacity being the highest in every phenophase studied. Based on our results, besides MYBa (Ca10g11650) two other putative MYBs participate in the regulation of the anthocyanin biosynthetic pathway.

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