SUMMARY : Phytochromes constitute a family of red/far-red photoreceptors regulating all the major transitions during the life cycle of plants. In Arabidopsis, five members: phyA,_ B, C, D and E, were identified. Phytochromes are synthesized in their inactive red-light absorbing form called Pr. Upon light absorbance they convert to the far-red light absorbing Pfr form. The Pfr form is the active conformer which converts back to the Pr form either rapidly upon far-red perception or in a slower process called dark reversion. ph~A represents an exception, in that it does not significantly dark-revert and two specific processes have been developed by the plants to decrease the amount of biologically active phyA. The first one is alight-dependent...
A synthesis of insights from functional and evolutionary studies reveals how the phytochrome photore...
In etiolated seedlings, phytochrome A (phyA) mediates very-low-fluence responses (VLFRs), which init...
Arabidopsis has five phytochrome (PHY) genes for sensing the Red:Far Red (R:FR) ratio in ambient lig...
All higher plants possess multiple phytochrome photoreceptors, with phytochrome A (phyA) being light...
Higher plants possess multiple members of the phytochrome family of red, far-red light sensors to mo...
All higher plants possess multiple phytochrome photoreceptors, with phytochrome A (phyA) being light...
Higher plants possess multiple members of the phytochrome family of red, far-red light sensors to mo...
Phytochrome regulates various physiological and developmental processes throughout the life cycle of...
Plants rely on light to supply photosynthetic energy and to provide information of the surrounding ...
The psi2 mutant of Arabidopsis displays amplification of the responses controlled by the red/far red...
Phytochrome A (phyA) is the dominant photoreceptor of far-red light sensing in Arabidopsis thaliana....
SummaryThe phytochrome family of red/far-red (R/FR)-responsive photoreceptors plays a key role throu...
Deletion or substitution of the serine-rich N-terminal stretch of grass phytochrome A (phyA) has rep...
Phototropin photoreceptors (phot1 and phot2 in Arabidopsis thaliana) enable responses to directional...
Plantshave the ability to monitor fluctuations in their light environment constantlyand actively adj...
A synthesis of insights from functional and evolutionary studies reveals how the phytochrome photore...
In etiolated seedlings, phytochrome A (phyA) mediates very-low-fluence responses (VLFRs), which init...
Arabidopsis has five phytochrome (PHY) genes for sensing the Red:Far Red (R:FR) ratio in ambient lig...
All higher plants possess multiple phytochrome photoreceptors, with phytochrome A (phyA) being light...
Higher plants possess multiple members of the phytochrome family of red, far-red light sensors to mo...
All higher plants possess multiple phytochrome photoreceptors, with phytochrome A (phyA) being light...
Higher plants possess multiple members of the phytochrome family of red, far-red light sensors to mo...
Phytochrome regulates various physiological and developmental processes throughout the life cycle of...
Plants rely on light to supply photosynthetic energy and to provide information of the surrounding ...
The psi2 mutant of Arabidopsis displays amplification of the responses controlled by the red/far red...
Phytochrome A (phyA) is the dominant photoreceptor of far-red light sensing in Arabidopsis thaliana....
SummaryThe phytochrome family of red/far-red (R/FR)-responsive photoreceptors plays a key role throu...
Deletion or substitution of the serine-rich N-terminal stretch of grass phytochrome A (phyA) has rep...
Phototropin photoreceptors (phot1 and phot2 in Arabidopsis thaliana) enable responses to directional...
Plantshave the ability to monitor fluctuations in their light environment constantlyand actively adj...
A synthesis of insights from functional and evolutionary studies reveals how the phytochrome photore...
In etiolated seedlings, phytochrome A (phyA) mediates very-low-fluence responses (VLFRs), which init...
Arabidopsis has five phytochrome (PHY) genes for sensing the Red:Far Red (R:FR) ratio in ambient lig...