The annual photoperiod cycle provides the critical environmental cue synchronizing rhythms of life in seasonal habitats. In 1936, Bünning proposed a circadian-based coincidence timer for photoperiodic synchronization in plants. Formal studies support the universality of this so-called coincidence timer, but we lack understanding of the mechanisms involved. Here we show in mammals that long photoperiods induce the circadian transcription factor BMAL2, in the pars tuberalis of the pituitary, and triggers summer biology through the eyes absent/thyrotrophin (EYA3/TSH) pathway. Conversely, long-duration melatonin signals on short photoperiods induce circadian repressors including DEC1, suppressing BMAL2 and the EYA3/TSH pathway, triggering winte...
AbstractOrganisms use biological timing mechanisms to synchronise life-history transitions to annual...
SummaryPersistent free-running circannual (approximately year-long) rhythms have evolved in animals ...
SummaryOrganisms must adapt to seasonal changes in the environment and time their physiology accordi...
The annual photoperiod cycle provides the critical environmental cue synchronizing rhythms of life i...
The annual photoperiod cycle provides the critical environmental cue synchronizing rhythms of life i...
peer reviewedThe annual photoperiod cycle provides the critical environmental cue synchronizing rhyt...
From Springer Nature via Jisc Publications RouterHistory: received 2020-01-16, accepted 2020-07-27, ...
“Life in a seasonal environment requires appropriate timing of physiological changes to survive, but...
SummarySeasonal synchronization based on day length (photoperiod) allows organisms to anticipate env...
Seasonal synchronization based on day length (photoperiod) allows organisms to anticipate environmen...
SummaryPersistent free-running circannual (approximately year-long) rhythms have evolved in animals ...
Background/Objectives Recent studies define thyrotoph cells of the pituitary pars tuberalis (PT) as...
Persistent free-running circannual (approximately year-long) rhythms have evolved in animals to regu...
Persistent free-running circannual (approximately year-long) rhythms have evolved in animals to regu...
Recent studies define thyrotrophs of the pituitary pars tuberalis (PT) as key mammalian calendar ce...
AbstractOrganisms use biological timing mechanisms to synchronise life-history transitions to annual...
SummaryPersistent free-running circannual (approximately year-long) rhythms have evolved in animals ...
SummaryOrganisms must adapt to seasonal changes in the environment and time their physiology accordi...
The annual photoperiod cycle provides the critical environmental cue synchronizing rhythms of life i...
The annual photoperiod cycle provides the critical environmental cue synchronizing rhythms of life i...
peer reviewedThe annual photoperiod cycle provides the critical environmental cue synchronizing rhyt...
From Springer Nature via Jisc Publications RouterHistory: received 2020-01-16, accepted 2020-07-27, ...
“Life in a seasonal environment requires appropriate timing of physiological changes to survive, but...
SummarySeasonal synchronization based on day length (photoperiod) allows organisms to anticipate env...
Seasonal synchronization based on day length (photoperiod) allows organisms to anticipate environmen...
SummaryPersistent free-running circannual (approximately year-long) rhythms have evolved in animals ...
Background/Objectives Recent studies define thyrotoph cells of the pituitary pars tuberalis (PT) as...
Persistent free-running circannual (approximately year-long) rhythms have evolved in animals to regu...
Persistent free-running circannual (approximately year-long) rhythms have evolved in animals to regu...
Recent studies define thyrotrophs of the pituitary pars tuberalis (PT) as key mammalian calendar ce...
AbstractOrganisms use biological timing mechanisms to synchronise life-history transitions to annual...
SummaryPersistent free-running circannual (approximately year-long) rhythms have evolved in animals ...
SummaryOrganisms must adapt to seasonal changes in the environment and time their physiology accordi...