Measuring Seasonal Time within the Circadian System: Regulation of the Suprachiasmatic Nuclei by Photoperiod
- 23 May 2005
- journal article
- review article
- Published by Wiley in Journal of Neuroendocrinology
- Vol. 17 (7) , 459-465
- https://doi.org/10.1111/j.1365-2826.2005.01326.x
Abstract
Day‐length (photoperiod) is the primary environmental signal used to synchronise endogenous rhythms of physiology and behaviour. In mammals, the suprachiasmatic nuclei (SCN) of the hypothalamus house the master circadian clock. The SCN incorporate photoperiodic information and therefore measure both daily and seasonal time. Over the past decade, there have been significant advances in the understanding of the molecular basis of circadian clocks. It is now becoming apparent that the core molecular clock mechanism is itself regulated by photoperiod, although there is currently debate as to how this occurs. One recent model proposes that distinct groups of core ‘clock genes’ are associated with either morning or evening phases of the daily light/dark cycle. However, the validity of associating particular genes to morning and evening has been questioned. This article reviews the evidence for photoperiodic regulation of circadian clock function and then discusses alternative models that may explain the available data.Keywords
This publication has 63 references indexed in Scilit:
- Phase Responses to Light Pulses in Mice Lacking Functional per or cry GenesJournal of Biological Rhythms, 2004
- MAMMALIAN CIRCADIAN BIOLOGY: Elucidating Genome-Wide Levels of Temporal OrganizationAnnual Review of Genomics and Human Genetics, 2004
- Photoperiod Differentially Regulates Circadian Oscillators in Central and Peripheral Tissues of the Syrian HamsterCurrent Biology, 2003
- Loss of a circadian adrenal corticosterone rhythm following suprachiasmatic lesions in the ratPublished by Elsevier ,2003
- Assembling a Clock for All Seasons: Are There M and E Oscillators in the Genes?Journal of Biological Rhythms, 2001
- mPer1 and mPer2 Are Essential for Normal Resetting of the Circadian ClockJournal of Biological Rhythms, 2001
- Additive effect of mPer1 and mPer2 antisense oligonucleotides on light-induced phase shiftNeuroReport, 2001
- Antiphase Oscillation of the Left and Right Suprachiasmatic NucleiScience, 2000
- Photic and circadian regulation of c-fos gene expression in the hamster suprachiasmatic nucleusNeuron, 1990
- Two coupled oscillators: Simulations of the circadian pacemaker in mammalian activity rhythmsJournal of Theoretical Biology, 1978