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Circadian clocks: lessons from fish

Authors :
M Laura, Idda
Cristiano, Bertolucci
Daniela, Vallone
Yoav, Gothilf
Francisco Javier, Sánchez-Vázquez
Nicholas S, Foulkes
Source :
Progress in brain research. 199
Publication Year :
2012

Abstract

Our understanding of the molecular and cellular organization of the circadian timing system in vertebrates has increased enormously over the past decade. In large part, progress has been based on genetic studies in the mouse as well as on fundamental similarities between vertebrate and Drosophila clocks. The zebrafish was initially considered as a potentially attractive genetic model for identifying vertebrate clock genes. However, instead, fish have ultimately proven to be valuable complementary models for studying various aspects of clock biology. For example, many fish can shift from diurnal to nocturnal activity implying specific flexibility in their clock function. We have learned much about the function of light input pathways, and the ontogeny and function of the pineal organ, the fish central pacemaker. Finally, blind cavefish have also provided new insight into the evolution of the circadian clock under extreme environmental conditions.

Details

ISSN :
18757855
Volume :
199
Database :
OpenAIRE
Journal :
Progress in brain research
Accession number :
edsair.pmid..........c8c0358cbaf5b7ccbc1acb1969690df4