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September 10, 2025Frontiers in Plant Science54 citationsOpen Access

Light regulates the synthesis and accumulation of plant secondary metabolites

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WWWen‐Yuan WuHWHuan WuRLRentao Liang

Key Points

  • Light influences the synthesis and accumulation of secondary metabolites, enhancing plant defense mechanisms.
  • Photoreceptors mediate how different light qualities activate or suppress metabolic pathways, impacting secondary metabolite production.
  • Photosynthetic efficiency is affected by light intensity, which in turn modulates secondary metabolite accumulation in plants.
  • Understanding these light-responsive mechanisms can help enhance bioactive compounds in medicinal plants and produce functional agricultural products.

Abstract

Secondary metabolites are low-molecular-weight organic compounds produced by plants under specific conditions. While they are not directly involved in fundamental growth and developmental processes, they play crucial roles in plant defense, protection, and regulation. These compounds mainly include phenolics, terpenoids, alkaloids, flavonoids, and others. Light, as a key environmental factor regulating the synthesis of plant secondary metabolites, influences their production and accumulation through multidimensional regulatory mechanisms. Different light qualities activate or suppress specific metabolic pathways via signal transduction networks mediated by specialized photoreceptors. Light intensity dynamically modulates secondary metabolite accumulation by affecting photosynthetic efficiency, while photoperiod coordinates metabolic rhythms through circadian clock genes. These light responsive mechanisms constitute a chemical defense strategy that enables plants to adapt to their environment, while also providing critical targets for the directed regulation of medicinal components and functional nutrients. This study provides a review of recent research on the effects of light on plant secondary metabolites, aiming to deepen the understanding of the molecular mechanisms underlying light-regulated secondary metabolism. The findings may offer an insight for enhancing bioactive compounds in medicinal plants and developing functional agricultural products.

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Cite This Study

Wu et al. (2025) studied this question.

synapsesocial.com/papers/68c1ad5554b1d3bfb60e5052https://doi.org/10.3389/fpls.2025.1644472
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