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April 23, 2026New Phytologist0 citations

Light regulates capsaicinoid biosynthesis via the CaHY5 ‐ CaBBX2 ‐ CaACS8 module in pepper

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YYYouxin YangDWDan WuJLJiaxin Liu

Key Points

  • To understand how light influences capsaicinoid biosynthesis in pepper fruits by examining specific regulatory mechanisms.
  • Conducted metabolic analysis on light- and dark-adapted pepper fruits
  • Silenced and overexpressed key transcription factor genes (CaHY5, CaBBX2, CaACS8)
  • Monitored capsaicinoid levels and gene expression changes
  • Dark-adapted fruits showed lower capsaicinoid levels and downregulated biosynthetic genes
  • Silencing CaHY5 reduced capsaicinoid content, while its overexpression increased levels
  • CaHY5 activates transcription of CaBBX2 and CaACS8, which are essential for capsaicinoid biosynthesis.

Abstract

Capsaicinoids are a class of unique alkaloids that confer the pungent taste to pepper fruits. However, it remains largely unknown how light regulates the biosynthesis of capsaicinoids. We conducted a metabolic analysis on light- and dark-adapted pepper fruits. The results showed that dark-adapted pepper fruits had lower capsaicinoid contents and correspondingly downregulated transcription of capsaicinoid biosynthetic genes (CBGs), indicating that light plays a crucial role in capsaicinoid biosynthesis. Furthermore, silencing of CaHY5, a pivotal transcription factor gene in the light signaling pathway, decreased the content of capsaicinoid and suppressed the expression of CBGs, whereas transient overexpression of CaHY5 generated exactly opposite results. CaHY5 can bind to the G-box motif in the promoters of CaBBX2 and CaACS8, thereby enhancing their transcriptional levels. The activated CaBBX2 then binds to the T/G-box in the CaACS8 promoter to stimulate its expression. CaBBX2 or CaACS8 silencing led to decreased levels of capsaicinoids, while their transient overexpression produced increased capsaicinoid contents. Collectively, our results indicated that the light-activated CaHY5-CaBBX2-CaACS8 regulatory module plays a pivotal role in capsaicinoid biosynthesis. These findings provide new insights into the influence of light on capsaicinoid biosynthesis and potential targets for activation of this biosynthetic pathway in pepper.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69e9bb6285696592c86ed0e9https://doi.org/10.1111/nph.71193
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