Phytochrome Signaling Networks
Overview
Molecular Biology
Affiliations
The perception of light signals by the phytochrome family of photoreceptors has a crucial influence on almost all aspects of growth and development throughout a plant's life cycle. The holistic regulatory networks orchestrated by phytochromes, including conformational switching, subcellular localization, direct protein-protein interactions, transcriptional and posttranscriptional regulations, and translational and posttranslational controls to promote photomorphogenesis, are highly coordinated and regulated at multiple levels. During the past decade, advances using innovative approaches have substantially broadened our understanding of the sophisticated mechanisms underlying the phytochrome-mediated light signaling pathways. This review discusses and summarizes these discoveries of the role of the modular structure of phytochromes, phytochrome-interacting proteins, and their functions; the reciprocal modulation of both positive and negative regulators in phytochrome signaling; the regulatory roles of phytochromes in transcriptional activities, alternative splicing, and translational regulation; and the kinases and E3 ligases that modulate PHYTOCHROME INTERACTING FACTORs to optimize photomorphogenesis.
Light regulates seed dormancy through FHY3-mediated activation of ACC OXIDASE 1 in Arabidopsis.
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PMID: 40082285 DOI: 10.1007/s11103-025-01559-9.
Garhwal V, Das S, Gangappa S Plant Direct. 2025; 9(2):e700042.
PMID: 39950159 PMC: 11825187. DOI: 10.1002/pld3.70042.
How does light regulate plant regeneration?.
Han J, Li Y, Zhao Y, Sun Y, Li Y, Peng Z Front Plant Sci. 2025; 15:1474431.
PMID: 39944943 PMC: 11813890. DOI: 10.3389/fpls.2024.1474431.
Yang Z, Kan W, Wang Z, Tang C, Cheng Y, Wang D Front Plant Sci. 2025; 15:1520457.
PMID: 39906238 PMC: 11790602. DOI: 10.3389/fpls.2024.1520457.
Algae use the underwater light spectrum to sense depth.
Cvetkovska M Nature. 2024; 637(8046):553-554.
PMID: 39695286 DOI: 10.1038/d41586-024-04079-6.