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February 27, 20260 citations

SmCPK20 phosphorylates SmWRKY2 to regulate jasmonate-mediated tanshinone synthesis in Salvia miltiorrhiza.

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XLXueying LiNorthwest A&F UniversityXNXiumin NieNorthwest A&F UniversityBLBolun LiNanjing University of Information Science and Technology

Key Points

  • The study aims to elucidate the post-translational regulation of jasmonate-induced tanshinone biosynthesis in Salvia miltiorrhiza.
  • Identification of SmWRKY2 as a key regulator in JA signaling.
  • Analysis of the interaction between SmCPK20 and SmWRKY2.
  • Phosphorylation assays to determine the effect of SmCPK20 on SmWRKY2.
  • Evaluation of transcriptional activation of SmCPS1 by SmWRKY2 in the presence of JA.
  • SmCPK20 enhances tanshinone accumulation through phosphorylation of SmWRKY2 at Thr-256.
  • Phosphorylated SmWRKY2 shows increased binding to the SmCPS1 promoter.
  • The interaction between SmWRKY2 and SmJAZ3 is inhibited by JA, promoting tanshinone biosynthesis.

Abstract

Jasmonates (JAs) are vital to plant defense and stress adaptation. In Salvia miltiorrhiza, JA significantly promotes tanshinone accumulation, a class of bioactive diterpenoids. Although transcriptional regulation of JA signaling is well characterized, the post-translational mechanisms governing JA-mediated tanshinone biosynthesis remain poorly understood. Here, we identify SmWRKY2 as a critical regulator of JA-induced tanshinone accumulation, which interacts with SmCPK20. SmCPK20 positively regulates JA-induced tanshinone accumulation. JA signaling activates SmCPK20, promoting phosphorylation of SmWRKY2 at Thr-256. This phosphorylation event significantly enhances SmWRKY2's binding to the SmCPS1 promoter and its transcriptional activation capacity, thereby promoting tanshinone accumulation. Furthermore, SmWRKY2 interacts with the JA signaling repressor SmJAZ3. SmJAZ3 inhibits the SmWRKY2-SmCPK20 interaction in the absence of JA. JA-triggered degradation of SmJAZ3 releases SmWRKY2, enabling SmCPK20-mediated phosphorylation and promoting tanshinone biosynthesis. Collectively, our results demonstrate that JA and Ca2+ signaling pathways cooperate to regulate plant secondary metabolism.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69a13591ed1d949a99abf845https://doi.org/10.1111/jipb.70195
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