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Phytochromes: photosensory perception and signal transduction
by
Boylan, M.T
, Quail, P.H. (University of California, Berkeley, CA.)
, Wagner, D
, Xu, Y
, Short, T.W
, Parks, B.M
in
ADN
/ CALCIO
/ CALCIUM
/ calmodulin
/ Cellular signal transduction
/ chemistry
/ cyclic GMP
/ DNA-binding proteins
/ Environmental Influences
/ Evidence
/ Feedback (Response)
/ Flowers & plants
/ Frontiers in Biotechnology: Emerging Plant Science
/ Gene expression
/ Genetic mutation
/ GENETICA
/ genetics
/ GENETIQUE
/ Hypocotyls
/ Light
/ mechanism of action
/ Molecular biology
/ Molecules
/ NUCLEOTIDE
/ NUCLEOTIDOS
/ ORGANE DES SENS
/ ORGANOS SENSORIALES
/ Photoreceptor Cells
/ Photoreceptor Cells - chemistry
/ Photoreceptor Cells - physiology
/ Photoreceptors
/ physiology
/ Phytochrome
/ Phytochrome - chemistry
/ Phytochrome - genetics
/ PIGMENT
/ PIGMENTOS
/ Plant cells
/ Plant Physiological Phenomena
/ Plants
/ Plants - genetics
/ PROTEINAS
/ PROTEINE
/ Receptors
/ Seedlings
/ Signal Transduction
/ Signal Transduction - physiology
/ Specialization
1995
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Phytochromes: photosensory perception and signal transduction
by
Boylan, M.T
, Quail, P.H. (University of California, Berkeley, CA.)
, Wagner, D
, Xu, Y
, Short, T.W
, Parks, B.M
in
ADN
/ CALCIO
/ CALCIUM
/ calmodulin
/ Cellular signal transduction
/ chemistry
/ cyclic GMP
/ DNA-binding proteins
/ Environmental Influences
/ Evidence
/ Feedback (Response)
/ Flowers & plants
/ Frontiers in Biotechnology: Emerging Plant Science
/ Gene expression
/ Genetic mutation
/ GENETICA
/ genetics
/ GENETIQUE
/ Hypocotyls
/ Light
/ mechanism of action
/ Molecular biology
/ Molecules
/ NUCLEOTIDE
/ NUCLEOTIDOS
/ ORGANE DES SENS
/ ORGANOS SENSORIALES
/ Photoreceptor Cells
/ Photoreceptor Cells - chemistry
/ Photoreceptor Cells - physiology
/ Photoreceptors
/ physiology
/ Phytochrome
/ Phytochrome - chemistry
/ Phytochrome - genetics
/ PIGMENT
/ PIGMENTOS
/ Plant cells
/ Plant Physiological Phenomena
/ Plants
/ Plants - genetics
/ PROTEINAS
/ PROTEINE
/ Receptors
/ Seedlings
/ Signal Transduction
/ Signal Transduction - physiology
/ Specialization
1995
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Phytochromes: photosensory perception and signal transduction
by
Boylan, M.T
, Quail, P.H. (University of California, Berkeley, CA.)
, Wagner, D
, Xu, Y
, Short, T.W
, Parks, B.M
in
ADN
/ CALCIO
/ CALCIUM
/ calmodulin
/ Cellular signal transduction
/ chemistry
/ cyclic GMP
/ DNA-binding proteins
/ Environmental Influences
/ Evidence
/ Feedback (Response)
/ Flowers & plants
/ Frontiers in Biotechnology: Emerging Plant Science
/ Gene expression
/ Genetic mutation
/ GENETICA
/ genetics
/ GENETIQUE
/ Hypocotyls
/ Light
/ mechanism of action
/ Molecular biology
/ Molecules
/ NUCLEOTIDE
/ NUCLEOTIDOS
/ ORGANE DES SENS
/ ORGANOS SENSORIALES
/ Photoreceptor Cells
/ Photoreceptor Cells - chemistry
/ Photoreceptor Cells - physiology
/ Photoreceptors
/ physiology
/ Phytochrome
/ Phytochrome - chemistry
/ Phytochrome - genetics
/ PIGMENT
/ PIGMENTOS
/ Plant cells
/ Plant Physiological Phenomena
/ Plants
/ Plants - genetics
/ PROTEINAS
/ PROTEINE
/ Receptors
/ Seedlings
/ Signal Transduction
/ Signal Transduction - physiology
/ Specialization
1995
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Phytochromes: photosensory perception and signal transduction
Journal Article
Phytochromes: photosensory perception and signal transduction
1995
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Overview
The phytochrome family of photoreceptors monitors the light environment and dictates patterns of gene expression that enable the plant to optimize growth and development in accordance with prevailing conditions. The enduring challenge is to define the biochemical mechanism of phytochrome action and to dissect the signaling circuitry by which the photoreceptor molecules relay sensory information to the genes they regulate. Evidence indicates that individual phytochromes have specialized photosensory functions. The amino-terminal domain of the molecule determines this photosensory specificity, whereas a short segment in the carboxyl-terminal domain is critical for signal transfer to downstream components. Heterotrimeric GTP-binding proteins, calcium-calmodulin, cyclic guanosine 5'-phosphate, and the COP-DET-FUS class of master regulators are implicated as signaling intermediates in phototransduction
Publisher
American Society for the Advancement of Science,American Association for the Advancement of Science,The American Association for the Advancement of Science
Subject
/ CALCIO
/ CALCIUM
/ Cellular signal transduction
/ Evidence
/ Frontiers in Biotechnology: Emerging Plant Science
/ GENETICA
/ genetics
/ Light
/ Photoreceptor Cells - chemistry
/ Photoreceptor Cells - physiology
/ PIGMENT
/ Plant Physiological Phenomena
/ Plants
/ PROTEINE
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