A cross-species atlas platform for comparative neuroscience in teleost fish

Abstract Uncovering general principles connecting neural circuits to behaviour requires comparative brain analyses across species. To advance these efforts, we developed a standardised workflow and a unified brain atlas platform for the quantitative comparison of neural structures between two teleost larvae, medaka ( Oryzias latipes ) and zebrafish ( Danio rerio ). Crucially, the platform seamlessly integrates user-generated image volumes, facilitating quantitative comparisons of anatomical, transcriptional, and functional data across species and laboratories. Utilising these integrated tools, we identified regional anatomical differences and differentially expressed genes between the species. We further demonstrated functionally distinct telencephalic regions in both species that exhibit divergent responses to social stimuli, suggesting an evolutionary divergence in social processing mechanisms. This web-based, interactive atlas platform promotes data exchange and knowledge sharing within the teleost community. Its scalable design permits effortless multi-group contributions, enabling expansion into a continuously growing, globally accessible database.

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Publication Details

Journal
Nature Communications
Published
2026-09-25
DOI
https://doi.org/10.1038/s41467-026-77879-1
Primary Topic
Zebrafish Biomedical Research Applications
Type
article
Field-Weighted Citation Impact
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article

A cross-species atlas platform for comparative neuroscience in teleost fish

Sydney Chambule, Daniel R. Baum, Owen Randlett, Tinatini Tavhelidse et al.
Nature Communications
Zebrafish Biomedical Research Applications
article

A cross-species atlas platform for comparative neuroscience in teleost fish

Sydney Chambule, Daniel R. Baum, Owen Randlett, Tinatini Tavhelidse, Jeff William Lichtman, Yasuko Isoe, Ali Seleit, Mark C. Fishman, Sumit Kumar Vohra, Cristina Santoriello, Joachim Wittbrodt, Florian Engert, Hans‐Christian Hege, Simon Knoblich, Ariel Aspiras, Jonathan Boulanger-Weill
article en

Abstract

Abstract Uncovering general principles connecting neural circuits to behaviour requires comparative brain analyses across species. To advance these efforts, we developed a standardised workflow and a unified brain atlas platform for the quantitative comparison of neural structures between two teleost larvae, medaka ( Oryzias latipes ) and zebrafish ( Danio rerio ). Crucially, the platform seamlessly integrates user-generated image volumes, facilitating quantitative comparisons of anatomical, transcriptional, and functional data across species and laboratories. Utilising these integrated tools, we identified regional anatomical differences and differentially expressed genes between the species. We further demonstrated functionally distinct telencephalic regions in both species that exhibit divergent responses to social stimuli, suggesting an evolutionary divergence in social processing mechanisms. This web-based, interactive atlas platform promotes data exchange and knowledge sharing within the teleost community. Its scalable design permits effortless multi-group contributions, enabling expansion into a continuously growing, globally accessible database.

Nature Communications
Université Claude Bernard Lyon 1 (FR), Centre National de la Recherche Scientifique (FR), European Molecular Biology Organization (DE), Institut de la Vision (FR), Harvard University (US), Inserm (FR), Zuse Institute Berlin (DE), Heidelberg University (DE), Sorbonne Université (FR), Institut NeuroMyoGène (FR), European Molecular Biology Laboratory (DE), European Molecular Biology Laboratory (DE), Harvard Stem Cell Institute (US), Leibniz Institute for Neurobiology (DE)
Openalex Percentile: Top 15%
Zebrafish Biomedical Research Applications
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