Illuminating UVR8: Signal Transduction Pathways of the Plant UV-B Photoreceptor.

Huize Chen, Shirong Zhang, Zihao Li, Songrong Teng, Meiting Du

Journal: Physiologia plantarum 2026;178(1):e70769

PMID: 41612588

Abstract

Ultraviolet-B (UV-B) radiation is an intrinsic component of the solar spectrum that acts as an environmental cue, exerting a strong influence on plant physiology, morphology, and environmental acclimation. UV RESISTANCE LOCUS 8 (UVR8) is recognized as the sole specific UV-B photoreceptor, mediating perception and initiating a sophisticated signaling cascade that facilitates developmental and protective responses. UV-B irradiation triggers the dissociation of the cytosolic UVR8 homodimer into biologically active monomers. This structural transition enables rapid, regulated nuclear translocation, where the UVR8 monomer interacts with the E3 ubiquitin ligase CONSTITUTIVELY PHOTOMORPHOGENIC 1 (COP1). This interaction, involving a critical two-interface binding mechanism, inhibits COP1 activity toward key transcription factors, notably ELONGATED HYPOCOTYL 5 (HY5), thereby stabilizing them and orchestrating the UV-B acclimation transcriptome. Furthermore, UVR8 functions as a crucial hub for signaling integration, directly modulating multiple phytohormone pathways, coordinating spectral responses with other photoreceptors, and regulating novel non-canonical modules in both the nucleus and the cytoplasm. This comprehensive review examines the molecular architecture, photocycle dynamics, integrated signaling mechanisms, and critical physiological roles of UVR8. Finally, we provide perspectives on unresolved questions concerning its full array of post-translational modifications and the potential to apply this knowledge to enhance crop resilience.

© 2026 Scandinavian Plant Physiology Society.

Address: Shanxi Key Laboratory of Plant Macromolecules Stress Response, TaiYuan, People's Republic of China.; School of Life Sciences, Shanxi Normal University, TaiYuan, People's Republic of China.
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