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Updated: Sep 22, 2026

A Novel Light Damage Paradigm for Use in Retinal Regeneration Studies in Adult Zebrafish
Published on: October 24, 2013
Correlating relative light sensitivity to retinal visual gene expression patterns in three African cichlid fish
Gerrit Potkamp1, Elena Zhemchuzhnikova1, Felicity van Geresteijn1
1Rijksuniversiteit Groningen, the Netherlands.
Abstract:
Visually guided behaviour requires adequate visual sensitivity. Hypotheses on the evolution of vertebrate visual systems largely rely on the assumption that the retinal expression pattern of visual genes is a major determinant of visual sensitivity. However, data on how visual gene expression relates to visual sensitivity and, ultimately, behaviour, are equivocal. Here we correlate relative visual sensitivity to light of different wavelengths with visual gene expression patterns, quantified at various times after the behavioural trials, for three species of African cichlids, raised in different light treatments. To estimate visual sensitivity to different wavelengths, we use the dorsal light response, where fish orient their dorsoventral axis towards the direction of the greatest perceived intensity of incoming light. We found light-treatment-dependent and interspecific variation in relative visual sensitivity. However, at the species and treatment level, visual gene expression patterns were not indicative of relative visual sensitivity, whereas we did find such correlations at the individual level. Our results indicate that differences in visual sensitivity of cichlid fish cannot be explained by visual gene expression patterns alone, as it may not reflect actual retinal pigment composition and density. In addition, post retinal (neural) processes might play an important, but as yet unknown, role.

