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The emergence of retinal pigment epithelial cell heterogeneity in the larval zebrafish retina

Abstract: Vision depends on the function of retinal circuits, supported by the retinal pigment epithelium (RPE) that lines the back of the eye. This single-cell layer thick epithelium provides growth factors and nutrients for the underlying photoreceptors, phagocytoses sh

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CreatorStorey, Samuel Stearman
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Published2026-09-10
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DOI10.5281/zenodo.22683098
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Downloads8
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Licensecc-by-4.0
File Size104.1 MB
Data TypeDataset
Published2026
Licensecc-by-4.0
Total Views62
Total Downloads8

Abstract:

Vision depends on the function of retinal circuits, supported by the retinal pigment epithelium (RPE) that lines the back of the eye. This single-cell layer thick epithelium provides growth factors and nutrients for the underlying photoreceptors, phagocytoses shed photoreceptor outer segment debris, and contributes to the blood-retinal barrier. Whether the cells of the RPE represent a single homogeneous population or represent distinct functional entities is poorly understood. Here, we use single cell RNA sequencing (scRNAseq) data from our mature 5-day post-fertilization zebrafish retina dataset and a publicly available adult zebrafish eye dataset, alongside in situ hybridization, to explore the transcriptomic diversity of RPE cells, its emergence over development, and its persistence into the adult. We identify 6 transcriptomically distinct RPE subtypes in the 5 day larval eye that exhibit different localization within the eye. Specifically, we find potential progenitor, iris-associated, dorso-ventral differentiating, and mature RPE subpopulations. These populations appear to emerge via separate developmental trajectories and are largely distinct from the transcriptomic RPE subpopulations of the adult eye.

Notes:

The dataset source from the original authors for farre_2023_adult_rpe.h5ad can be found at:

[Farre AA, Sun C, Starostik MR, Hunter SS et al. Long wavelength-sensing cones of zebrafish retina exhibit multiple layers of transcriptional heterogeneity. Front Cell Neurosci 2023;17:1214084. PMID: 37519633. NCBI GEO GSE234661]

 

The dataset source from the original authors for hehr_2026_5dpf_rpe.h5ad can be found at:

1) Preprint: https://doi.org/10.64898/2026.03.22.713558, 2) Zenodo:  https://doi.org/10.5281/zenodo.18677159, 3) NCBI GEO: GSE319514.

[Storey, S. S., Hehr, C. L., Standing, S., & McFarlane, S. (2026). Müller glia subtypes define neuro-glial associations and spatial morphogen axes in the zebrafish retina. bioRxiv, 2026-03.]

[Storey, S. S. (2026). Müller glia subtypes define neuro-glial associations and spatial morphogen axes in the zebrafish retina [Dataset]. Zenodo. https://doi.org/10.5281/zenodo.18677159]

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The emergence of retinal pigment epithelial cell heterogeneity… (Full Dataset)104.1 MB
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Files are hosted on the source repository. Click download to access the full dataset.

Storey, Samuel Stearman (2026). The emergence of retinal pigment epithelial cell heterogeneity in the larval zebrafish retina. https://doi.org/10.5281/zenodo.22683098