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The RrHY5-RrNAC2-RrOSC5 Module Promotes UV-B-Induced Sterol Defence in Rosa roxburghii.

Created on 22 Jul 2026

Authors

Di Xin, Xue Wu, Litao Wang, Jiandong Wang, Yuan Ning, Huaming An, Linan Sun, Han Yang, Yujie Fu

Published in

Plant, cell & environment. Jul 21, 2026. Epub Jul 21, 2026.

Abstract

Rosa roxburghii Tratt. is a high-elevation fruit shrub with strong ultraviolet-B (UV-B) tolerance, and plant sterols are critical for its UV-B adaptation, but their regulatory mechanisms remain unknown. Here, we identified a key oxidosqualene cyclase gene, RrOSC5, which encodes a functional cycloartenol synthase and is dynamically upregulated under UV-B stress. Overexpression of RrOSC5 enhanced sterol accumulation in both native and transgenic hosts, significantly improving their UV-B resistance. We further discovered that the transcription factor RrNAC2 directly binds to a non-canonical AC-rich repeat within the RrOSC5 promoter, activating its transcription. Crucially, heterologous overexpression of RrNAC2 in tobacco conferred the enhanced UV-B tolerance, establishing its role as a core regulator in this pathway. Notably, we found that the master UV-B signalling regulator RrHY5 physically interacts with RrNAC2, thereby integrating the RrNAC2-RrOSC5 sterol module Into the canonical UV-B signalling pathway. Our findings revealed a hierarchical RrHY5-RrNAC2-RrOSC5 cascade governs UV-B-induced sterol defence, wherein RrNAC2 drives protective sterol biosynthesis via RrOSC5, and both components synergistically enhance antioxidant and osmotic adjustment defences. This work provides novel insights into sterol-mediated plant adaptation to UV-B stress for molecular breeding of fruit plants.

PMID:
42479919
Bibliographic data and abstract were imported from PubMed on 22 Jul 2026.

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