Blue light regulates terpenoid biosynthesis via jasmonic acid signaling in the medicinal plant Andrographis paniculata

  • Plant Physiol. 2026 May 6;201(1):kiag188. doi: 10.1093/plphys/kiag188.
Dongxiao Li  1  2  3 Fulai Li  3 Zhenqin Lai  3 Qi Qi  3 Jie Li  3 Peijun Lu  3 Yaqi Zhou  3 Zhihao Hong  3 Daiyuan Liao  3 Siyou Ruan  3 Huixian Mai  3 Yutong Lin  3 Jiaqi Zeng  3 Zejun Ren  3 Hong-Bin Wang  1  3  4  5 Hong-Lei Jin  1  3  4  5
Affiliations
  • 1. School of Pharmaceutical Sciences/State Key Laboratory of Traditional Chinese Medicine Syndrome, Guangzhou University of Chinese Medicine, Guangzhou 510006, China.
  • 2. Guangdong Engineering Research Center of Chinese Herbal Vesicles, The Third Affiliated Hospital of Guangzhou University of Chinese Medicine, Guangzhou 510375, China.
  • 3. Institute of Medical Plant Physiology and Ecology, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou 510006, China.
  • 4. Key Laboratory of Chinese Medicinal Resource from Lingnan (Guangzhou University of Chinese Medicine), Ministry of Education, Guangzhou 510006, China.
  • 5. Chinese Medicine Guangdong Laboratory, Guangdong-Macao In-Depth Cooperation Zone in Hengqin, Zhuhai 529031, China.
Abstract

The medicinal plant Andrographis paniculata has garnered attention for its remarkable effectiveness in treating inflammation, which is attributed to its active terpenoid compounds. However, the regulatory mechanisms governing their biosynthesis remain unknown. In this study, we showed that exposing Andrographis paniculata Plants to blue light increases the contents of the main active components, andrographolide and 14-deoxyandrographolide, and promotes the expression of key genes encoding Enzymes in the diterpene lactone biosynthetic pathway, including ent-copalyl diphosphate synthase (ApCPS2), geranyl(geranyl)diphosphate synthase 1 (ApGGPPS1), and ApGGPPS2. Combined transcriptomic and metabolomic analysis revealed that blue light regulates the light and jasmonic acid (JA) signaling pathways. Furthermore, we demonstrated that the transcription factor ApHY5 directly binds to the promoters of ApCPS2, ApGGPPS1, and ApGGPPS2, thereby activating transcription. In addition, ApHY5 interacted with the transcription factor ApMYC2 to enhance its function, thereby promoting the accumulation of diterpene lactones. Silencing of ApHY5 or ApMYC2 resulted in lower expression levels of genes involved in diterpene lactone biosynthesis and reduced accumulation of these components, while overexpression of either gene had the opposite effect. This study elucidates a mechanism for blue light-regulated terpenoid metabolism that involves the JA signaling pathway, offering strategies to enhance the biosynthesis of effective components in medicinal Plants.

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