Light-regulated transcriptional networks in higher plants
Author:
Publisher
Springer Science and Business Media LLC
Subject
Genetics (clinical),Genetics,Molecular Biology
Link
http://www.nature.com/articles/nrg2049.pdf
Reference149 articles.
1. Chen, M., Chory, J. & Fankhauser, C. Light signal transduction in higher plants. Annu. Rev. Genet. 38, 87–117 (2004). This review provides a comprehensive, up-to-date overview of plant photoreceptors.
2. Tepperman, J. M., Zhu, T., Chang, H.-S., Wang, X. & Quail, P. H. Multiple transcription-factor genes are early targets of phytochrome A signaling. Proc. Natl Acad. Sci. USA 98, 9437–9442 (2001). This work identifies the transcriptional cascades that lie downstream of PHYA, which involve multiple transcription factors as primary targets.
3. Ma, L. et al. Light control of Arabidopsis development entails coordinated regulation of genome expression and cellular pathways. Plant Cell 13, 2589–2607 (2001). A landmark paper that demonstrates the massive effects of light on genome-wide transcription.
4. Jiao, Y., Ma, L., Strickland, E. & Deng, X. W. Conservation and divergence of light-regulated genome expression patterns during seedling development in rice and Arabidopsis. Plant Cell 17, 3239–3256 (2005). This paper compares light-regulated transcription profiles in A. thaliana and rice. Organ specificity of the transcriptome and the evolution of the light-regulated transcriptome are also discussed.
5. Quail, P. H. Phytochrome photosensory signalling networks. Nature Rev. Mol. Cell Biol. 3, 85–93 (2002).
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