Transcription factor PnMYC2 positively regulates jasmonate-mediated notoginsenoside biosynthesis in Panax notoginseng

Abstract Notoginsenosides are major bioactive ingredients that directly influence the quality of Panax notoginseng herbs. However, the current understanding of the interplay between environmental signaling and notoginsenoside biosynthesis is limited. Although jasmonates (JAs) are known to regulate the biosynthesis and accumulation of notoginsenosides, the associated signaling pathway remains largely unknown. Here, we identify PnMYC2, a central regulator of JA signaling, as a key node bridging JA signaling to notoginsenoside biosynthesis. Methyl jasmonate (MeJA) treatment markedly induced PnMYC2 expression, accompanied by enhanced notoginsenoside biosynthesis. Further assays revealed that PnMYC2 directly bound the promoters of the PnACAT, PnGGPS, and PnSE, which are involved in notoginsenoside biosynthesis, and activated their expression. Additionally, PnMYC2 also activated the expression of PnLOX5, a JA biosynthetic 13-lipoxygenase gene. Overexpression and interference of PnMYC2 in P. notoginseng calli and leaves indicated that PnMYC2 promoted notoginsenoside and JA biosynthesis by synergistically activating the expression of genes involved in both pathways. Furthermore, MeJA treatment reduced the protein abundance of PnJAZ2 and PnJAZ5, which serve as repressors of JA signaling and interact with PnMYC2 to repress its transactivation activity. Together, our results demonstrate that JAs promote notoginsenoside biosynthesis in P. notoginseng by enhancing the transcription and transactivation activity of PnMYC2. Our findings provide mechanistic insight into the transcriptional mechanism underlying JAs-mediated notoginsenoside biosynthesis.

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Publication Details

Journal
Horticulture Research
Published
2026-09-08
DOI
https://doi.org/10.1093/hr/uhag379
Primary Topic
Ginseng Biological Effects and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Transcription factor PnMYC2 positively regulates jasmonate-mediated notoginsenoside biosynthesis in Panax notoginseng

Leilin Li, Mingtao Ai, Jianbin Li, Qian Yang et al.
Horticulture Research
Ginseng Biological Effects and Applications
article

Transcription factor PnMYC2 positively regulates jasmonate-mediated notoginsenoside biosynthesis in Panax notoginseng

Leilin Li, Mingtao Ai, Jianbin Li, Qian Yang, Jiae Hou, Tiantai Liu, Ruiqi Pu, Huiping Luo, Run Li, Ye Yang, Yuan Liu, Xiuming Cui
article en

Abstract

Abstract Notoginsenosides are major bioactive ingredients that directly influence the quality of Panax notoginseng herbs. However, the current understanding of the interplay between environmental signaling and notoginsenoside biosynthesis is limited. Although jasmonates (JAs) are known to regulate the biosynthesis and accumulation of notoginsenosides, the associated signaling pathway remains largely unknown. Here, we identify PnMYC2, a central regulator of JA signaling, as a key node bridging JA signaling to notoginsenoside biosynthesis. Methyl jasmonate (MeJA) treatment markedly induced PnMYC2 expression, accompanied by enhanced notoginsenoside biosynthesis. Further assays revealed that PnMYC2 directly bound the promoters of the PnACAT, PnGGPS, and PnSE, which are involved in notoginsenoside biosynthesis, and activated their expression. Additionally, PnMYC2 also activated the expression of PnLOX5, a JA biosynthetic 13-lipoxygenase gene. Overexpression and interference of PnMYC2 in P. notoginseng calli and leaves indicated that PnMYC2 promoted notoginsenoside and JA biosynthesis by synergistically activating the expression of genes involved in both pathways. Furthermore, MeJA treatment reduced the protein abundance of PnJAZ2 and PnJAZ5, which serve as repressors of JA signaling and interact with PnMYC2 to repress its transactivation activity. Together, our results demonstrate that JAs promote notoginsenoside biosynthesis in P. notoginseng by enhancing the transcription and transactivation activity of PnMYC2. Our findings provide mechanistic insight into the transcriptional mechanism underlying JAs-mediated notoginsenoside biosynthesis.

Horticulture Research
Kunming University of Science and Technology (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 18%
Ginseng Biological Effects and Applications
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