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March 29, 2026Plants0 citationsOpen Access

Integrated Analysis of Polyphenol Oxidase Gene Expression and Enzymatic Activity in Purple-Fleshed Potatoes

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MMMarilu MestanzaPRPablo RituayÁHÁngel David Hernández-Amasifuen

Key Points

  • Investigate the relationship between polyphenol oxidase gene expression and enzymatic activity in colored potatoes.
  • Analyzed total phenolic content and antioxidant capacity using colorimetric and spectrophotometric methods.
  • Conducted gene expression profiling of ten StPPO genes using semi-quantitative and digital PCR.
  • Compared phenolic content and browning kinetics among different potato cultivars.
  • Purple-fleshed cultivars show higher phenolic content and antioxidant capacity than non-pigmented varieties.
  • Accelerated browning kinetics were observed in pigmented potatoes.
  • Cultivar-specific expression patterns of StPPO genes, particularly StPPO2 and StPPO8, were identified.

Abstract

Colored potato cultivars are rich in phenolic compounds that confer high antioxidant capacity; however, these beneficial metabolites could be susceptible to oxidation by polyphenol oxidases (PPOs), leading to enzymatic browning and the loss of antioxidant potential. Despite the agronomic relevance of this trade-off, the dynamics of the PPO gene family (StPPOs) gene expression in pigmented potatoes remains poorly characterized. Here, we present an integrated biochemical and molecular analysis of two purple-fleshed Peruvian landraces (Siriñacha and Angashungo), a partially pigmented landrace (Sapa), and non-pigmented cultivars, including the commercial cultivar Desirée. We quantified the total phenolic content, antioxidant capacity, and enzymatic browning index (EBI) using colorimetric and spectrophotometric methods. We also generated gene expression profiles of ten StPPO genes using semi-quantitative and digital PCR. Purple-fleshed cultivars exhibited significantly higher phenolic content and antioxidant capacity but also displayed accelerated browning kinetics compared to non- or partially pigmented genotypes. Expression analysis revealed cultivar-specific StPPO patterns, with StPPO2 and StPPO8 being markedly upregulated in pigmented materials, particularly StPPO8. These findings provide the first integrated biochemical and transcriptional evidence linking specific StPPO isoforms to enzymatic browning in colored potatoes, and highlight their potential for biotechnological applications.

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Cite This Study

Mestanza et al. (2026) studied this question.

synapsesocial.com/papers/69c8c371de0f0f753b39e47chttps://doi.org/10.3390/plants15071033
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