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Marine algae and land plants share conserved phytochrome signaling systems
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Light intensity modulates the regulatory network of the shade avoidance response in Arabidopsis
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Suhua Feng et al.
NATURE (2008)
Amino acid polymorphisms in Arabidopsis phytochrome B cause differential responses to light
Daniele L. Filiault et al.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2008)
Mutant Screen Distinguishes between Residues Necessary for Light-Signal Perception and Signal Transfer by Phytochrome B
Yoshito Oka et al.
PLOS GENETICS (2008)
Rhythmic growth explained by coincidence between internal and external cues
Kazunari Nozue et al.
NATURE (2007)
Light-independent phytochrome signaling mediated by dominant GAF domain tyrosine mutants of Arabidopsis phytochromes in transgenic plants
Yi-shin Su et al.
PLANT CELL (2007)
Phytochrome A is an irradiance-dependent red light sensor
Keara A. Franklin et al.
PLANT JOURNAL (2007)
DELLAs contribute to plant photomorphogenesis
Patrick Achard et al.
PLANT PHYSIOLOGY (2007)
The serine-rich N-terminal region of Arabidopsis phytochrome A is required for protein stability
Santiago A. Trupkin et al.
PLANT MOLECULAR BIOLOGY (2007)
Nuclear accumulation of the phytochrome A photoreceptor requires FHY1
A Hiltbrunner et al.
CURRENT BIOLOGY (2005)
Conservation and divergence of light-regulated genome expression patterns during seedling development in rice and Arabidopsis
YL Jiao et al.
PLANT CELL (2005)
Phytochrome B in the mesophyll delays flowering by suppressing FLOWERING LOCUS T expression in Arabidopsis vascular bundles
M Endo et al.
PLANT CELL (2005)
Regulation of phytochrome B nuclear localization through light-dependent unmasking of nuclear-localization signals
M Chen et al.
CURRENT BIOLOGY (2005)
Cereal phytochromes: targets of selection, targets for manipulation?
RJH Sawers et al.
TRENDS IN PLANT SCIENCE (2005)
Constitutive photomorphogenesis 1 and multiple photoreceptors control degradation of phytochrome interacting factor 3, a transcription factor required for light signaling in Arabidopsis
D Bauer et al.
PLANT CELL (2004)
Characterization of the requirements for localization of phytochrome B to nuclear bodies
M Chen et al.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2003)
Isolation and characterization of phyC mutants in Arabidopsis reveals complex crosstalk between phytochrome signaling pathways
E Monte et al.
PLANT CELL (2003)
Nuclear translocation of the photoreceptor phytochrome B is necessary for its biological function in seedling photomorphogenesis
E Huq et al.
PLANT JOURNAL (2003)
Dimers of the N-terminal domain of phytochrome B are functional in the nucleus
T Matsushita et al.
NATURE (2003)
Patterns of expression and normalized levels of the five Arabidopsis phytochromes
RA Sharrock et al.
PLANT PHYSIOLOGY (2002)
Nucleocytoplasmic partitioning of the plant photoreceptors phytochrome A, B, C, D, and E is regulated differentially by light and exhibits a diurnal rhythm
S Kircher et al.
PLANT CELL (2002)
Arabidopsis phytochromes C and E have different spectral characteristics from those of phytochromes A and B
K Eichenberg et al.
FEBS LETTERS (2000)