Circadian clocks exhibit ‘temperature compensation’, meaning that they show only small changes in period over a broad temperature range. Several clock genes have been implicated in the temperature‐dependent control of period in Arabidopsis. We show that blue light is essential for this, suggesting that the effects of light and temperature interact or converge upon common targets in the circadian clock. Our data demonstrate that two cryptochrome photoreceptors differentially control circadian period and sustain rhythmicity across the physiological temperature range. In order to test the hypothesis that the targets of light regulation are sufficient to mediate temperature compensation, we constructed a temperature‐compensated clock model by a...
The circadian system ensures that plants respond appropriately to environmental change by predicting...
The circadian system ensures that plants respond appropriately to environmental change by predicting...
DoctorPlants use the environmental signals of light and temperature to co-ordinate diverse physiolog...
Circadian clocks exhibit ‘temperature compensation', meaning that they show only small changes in pe...
Circadian clocks confer advantages by restricting biological processes to certain times of day throu...
Clock‐regulated pathways coordinate the response of many developmental processes to changes in photo...
Author contributions KDE and AJM designed the study. FG characterised the gn7 deletion in the Scott...
The biological interactions underpinning the Arabidopsis circadian clock have been systematically un...
The circadian clock is a biological mechanism that permits some organisms to anticipate daily enviro...
The circadian clock in all organisms is so intimately linked to light reception that it appears as i...
The rising and setting of the sun marks a transition between starkly contrasting environmental condi...
Circadian clocks maintain robust and accurate timing over a broad range of physiological temperature...
Circadian rhythms are widespread in nature and reflect the activity of an endogenous biological cloc...
Photoperiod sensors allow physiological adaptation to the changing seasons. The external coincidence...
Light perception at dawn plays a key role in coordinating multiple molecular processes and in entrai...
The circadian system ensures that plants respond appropriately to environmental change by predicting...
The circadian system ensures that plants respond appropriately to environmental change by predicting...
DoctorPlants use the environmental signals of light and temperature to co-ordinate diverse physiolog...
Circadian clocks exhibit ‘temperature compensation', meaning that they show only small changes in pe...
Circadian clocks confer advantages by restricting biological processes to certain times of day throu...
Clock‐regulated pathways coordinate the response of many developmental processes to changes in photo...
Author contributions KDE and AJM designed the study. FG characterised the gn7 deletion in the Scott...
The biological interactions underpinning the Arabidopsis circadian clock have been systematically un...
The circadian clock is a biological mechanism that permits some organisms to anticipate daily enviro...
The circadian clock in all organisms is so intimately linked to light reception that it appears as i...
The rising and setting of the sun marks a transition between starkly contrasting environmental condi...
Circadian clocks maintain robust and accurate timing over a broad range of physiological temperature...
Circadian rhythms are widespread in nature and reflect the activity of an endogenous biological cloc...
Photoperiod sensors allow physiological adaptation to the changing seasons. The external coincidence...
Light perception at dawn plays a key role in coordinating multiple molecular processes and in entrai...
The circadian system ensures that plants respond appropriately to environmental change by predicting...
The circadian system ensures that plants respond appropriately to environmental change by predicting...
DoctorPlants use the environmental signals of light and temperature to co-ordinate diverse physiolog...