Cavefishes in Chronobiological Research: A Narrative Review

Author:

Pavlova Vera V.1ORCID,Krylov Viacheslav V.12ORCID

Affiliation:

1. Papanin Institute for Biology of Inland Waters, Russian Academy of Sciences, 152742 Borok, Russia

2. Scientific and Technological Center of Unique Instrumentation, Russian Academy of Sciences, 117342 Moscow, Russia

Abstract

Cavefish are vertebrates living in extreme subterranean environments with no light, temperature changes, and limited food. Circadian rhythms in these fish are suppressed in natural habitats. However, they can be found in artificial light–dark cycles and other zeitgebers. The molecular circadian clock has its peculiarities in cavefish. In Astyanax mexicanus, the core clock mechanism is tonically repressed in the caves due to the overactivation of the light input pathway. A lack of functional light input pathway but rather the entrainment of circadian genes’ expression by scheduled feeding were revealed in more ancient Phreatichthys andruzzii. Different evolutionarily determined irregularities in the functioning of molecular circadian oscillators can be expected in other cavefish. The unique property of some species is the existence of surface and cave forms. Along with the ease of maintenance and breeding, it made cavefish a promising model for chronobiological studies. At the same time, a divergence of the circadian system between cavefish populations requires the strain of origin to be indicated in further research.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences,General Engineering,General Environmental Science

Reference56 articles.

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4. Riesch, R., Tobler, M., and Plath, M. (2015). Extremophile Fishes: Ecology, Evolution, and Physiology of Teleosts in Extreme Environments, Springer.

5. Studies on the behavioural ecology and physiology of a hypogean loach, Nemacheilus evezardi, from the Kotumsar Cave, India;Pati;Curr. Sci.,2002

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