Dissociation of Circadian and Circatidal Timekeeping in the Marine Crustacean Eurydice pulchra
Periodicity
571
Molecular Sequence Data
CLOCK Proteins
Article
Cell Line
03 medical and health sciences
Circadian Clocks
Animals
14. Life underwater
RNA, Small Interfering
Swimming
0303 health sciences
Agricultural and Biological Sciences(all)
Behavior, Animal
Biochemistry, Genetics and Molecular Biology(all)
Casein Kinase I
ARNTL Transcription Factors
Tidal Waves
Circadian Rhythm
Cryptochromes
Pyrimidines
Pyrazoles
Drosophila
RNA Interference
Isopoda
DOI:
10.1016/j.cub.2013.08.038
Publication Date:
2013-09-26T12:02:21Z
AUTHORS (8)
ABSTRACT
Tidal (12.4 hr) cycles of behavior and physiology adapt intertidal organisms to temporally complex coastal environments, yet their underlying mechanism is unknown. However, the very existence of an independent "circatidal" clock has been disputed, and it has been argued that tidal rhythms arise as a submultiple of a circadian clock, operating in dual oscillators whose outputs are held in antiphase i.e., ~12.4 hr apart.We demonstrate that the intertidal crustacean Eurydice pulchra (Leach) exhibits robust tidal cycles of swimming in parallel to circadian (24 hr) rhythms in behavioral, physiological and molecular phenotypes. Importantly, ~12.4 hr cycles of swimming are sustained in constant conditions, they can be entrained by suitable stimuli, and they are temperature compensated, thereby meeting the three criteria that define a biological clock. Unexpectedly, tidal rhythms (like circadian rhythms) are sensitive to pharmacological inhibition of Casein kinase 1, suggesting the possibility of shared clock substrates. However, cloning the canonical circadian genes of E. pulchra to provide molecular markers of circadian timing and also reagents to disrupt it by RNAi revealed that environmental and molecular manipulations that confound circadian timing do not affect tidal timing. Thus, competent circadian timing is neither an inevitable nor necessary element of tidal timekeeping.We demonstrate that tidal rhythms are driven by a dedicated circatidal pacemaker that is distinct from the circadian system of E. pulchra, thereby resolving a long-standing debate regarding the nature of the circatidal mechanism.
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