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Updated: Jul 17, 2026

The Three-Chamber Choice Behavioral Task using Zebrafish as a Model System
Published on: April 14, 2021
One-trial odour recognition learning and its underlying brain areas in the zebrafish
Tyrone Lucon-Xiccato1, Gaia De Russi1, Elena Frigato1
1Department of Life Sciences and Biotechnology, University of Ferrara, Ferrara, Italy.
Abstract:
Distinguishing familiar from novel stimuli is critical in many animals' activities, and procedures based on this ability are among the most exploited in translational research in rodents. However, recognition learning and the underlying brain substrates remain unclear outside a few mammalian species. Here, we investigated one-trial recognition learning for olfactory stimuli in a teleost fish using a behavioural and molecular approach. With our behavioural analysis, we found that zebrafish can learn to recognise a novel odour after a single encounter and then, discriminate between this odour and a different one provided that the molecular structure of the cues is relatively differentiated. Subsequently, by expression analysis of immediate early genes in the main brain areas, we found that the telencephalon was activated when zebrafish encountered a familiar odour, whereas the hypothalamus and the optic tectum were activated in response to the novel odour. Overall, this study provided evidence of single-trial spontaneous learning of novel odours in a teleost fish and the presence of multiple neural substrates involved in the process. These findings are promising for the development of zebrafish models to investigate cognitive functions.

