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IVES 9 IVES Conference Series 9 Terclim 9 Terclim 2026 9 Terclim 2026 – Session 2: Multi-disciplinary approaches for integrated terroir research 9 MYB30 and MYB14 form a repressor-activator module with WRKY8 that controls stilbene biosynthesis in grapevine under UV radiation

MYB30 and MYB14 form a repressor-activator module with WRKY8 that controls stilbene biosynthesis in grapevine under UV radiation

Abstract

When exposed to pathogen infection or UV radiation, grapevine (Vitis vinifera) plants rapidly accumulate the stilbenoid resveratrol (Res) with concomitant increase of stilbene synthase (STS), the key enzyme in stilbene biosynthesis. Although a few transcription factors have been shown to regulate STSs, the molecular mechanism governing the regulation of STSs is not well elucidated. Our previous work showed that: a VvMYB14-VvWRKY8 regulatory loop fine-tunes stilbene biosynthesis in grapevine through protein-protein interaction; overexpression of VvWRKY8 down-regulates VvMYB14 and VvSTS15/21; and application of exogenous Res up-regulates WRKY8 expression. Here, we identified an R2R3-MYB repressor, VvMYB30, which competes with the activator VvMYB14 for binding to the common binding sites in the VvSTS15/21 promoter. Similar to VvMYB14, VvMYB30 physically interacts with VvWRKY8 through their N-termini, forming a complex that does not bind DNA. Exposure to UV-B/C stress induces VvMYB14, VvWRKY8, and VvSTS15/21, but represses VvMYB30 in grapevine leaves. In addition, MYB30 expression is up-regulated by VvWRKY8-overexpression or exogenous Res. These findings suggest that the VvMYB14-VvWRKY8-VvMYB30 regulatory circuit allows grapevine to respond to UV stress by producing Res and prevents over-accumulation of Res to balance metabolic costs. Our work highlights the stress-mediated induction and feedback inhibition of stilbene biosynthesis through a complex regulatory network involving multiple positive and negative transcriptional regulators.

References

Dubos, C. Stracke, R. Grotewold, E. Weisshaar, B. Martin, C. Lepiniec, L. (2010). MYB transcription factors in Arabidopsis. Trends in plant science, 15(10), 573–581. https://doi.org/10.1016/j.tplants.2010.06.005

Höll, J. Vannozzi, A. Czemmel, S. D’Onofrio, C. Walker, A. R. Rausch, T. Lucchin, M., Boss, P. K. Dry, I. B.  Bogs, J. (2013). The R2R3-MYB transcription factors MYB14 and MYB15 regulate stilbene biosynthesis in Vitis vinifera. The Plant cell, 25(10), 4135–4149. https://doi.org/10.1105/tpc.113.117127

Jiang, J. Xi, H. Dai, Z. Lecourieux, F. Yuan, L. Liu, X. Patra, B. Wei, Y. Li, S. Wang, L. (2019). VvWRKY8 represses stilbene synthase genes through direct interaction with VvMYB14 to control resveratrol biosynthesis in grapevine. Journal of experimental botany, 70(2), 715–729. https://doi.org/10.1093/jxb/ery401

Publication date: June 29, 2026

Issue: Terclim 2026

Type: Poster

Authors

Yang Li1, Huayuan Mu1, Lijun Wang1,*

1 Beijing Key Laboratory of Grape Sciences and Enology, CAS Key Laboratory of Plant Resources, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China

Contact the author*

Keywords

grapevine, transcription factor, Stilbene synthase, UV radiation

Tags

IVES Conference Series | terclim | Terclim 2026

Citation

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