Frogs have layers: a comparative histological study of colour polymorphism in Oophaga poison frogs

Background Colour polymorphism in aposematic species is often associated with ecological divergence and predator selection. In amphibians, colouration is achieved through the chromatophore unit, a layered structure of pigment-containing cells (xanthophores, melanophores) and structural cells (iridophores) that interact to produce the final skin colouration. In dendrobatid frogs of the genus Oophaga , striking red and green morphs coexist within and across species, yet the cellular mechanisms underlying this variation remain poorly understood. Methods We investigated the histological basis of colouration in three Oophaga species ( O. granulifera , O. pumilio , and O. vicentei ) by comparing chromatophore layer structure in red and green morphs and correlating these traits with spectrometric colour measurements. While all species have a chromatophore unit of xanthophores, iridophores, and melanophores, we observed interspecific and intraspecific variation in the organization, thickness, and relative area of these layers. Results In O. pumilio and O. vicentei , red morphs consistently exhibited greater xanthophore and iridophore coverage and more xanthophore contribution. In contrast, O. granulifera displayed minimal differences between morphs and a more disorganized chromatophore unit, however melanosome size was larger for green morphs. Spectral reflectance measurements correlated significantly with chromatophore traits, supporting a link between skin histology and colour phenotype. These findings suggest that colouration in Oophaga arises from less conserved chromatophore unit structure, reflecting diverse evolutionary routes to equivalent colouration.

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Journal
PeerJ
Published
2026-09-16
DOI
https://doi.org/10.7717/peerj.21696
Primary Topic
Amphibian and Reptile Biology
Type
article
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article

Frogs have layers: a comparative histological study of colour polymorphism in Oophaga poison frogs

Heike Pröhl, Ariel Rodríguez, Ibáñez Roberto, Vasiliki Mantzana Oikonomaki et al.
PeerJ
Amphibian and Reptile Biology
article

Frogs have layers: a comparative histological study of colour polymorphism in Oophaga poison frogs

Heike Pröhl, Ariel Rodríguez, Ibáñez Roberto, Vasiliki Mantzana Oikonomaki, Giselle Tamayo-Castillo, Mats Johannes Wiborg
article en

Abstract

Background Colour polymorphism in aposematic species is often associated with ecological divergence and predator selection. In amphibians, colouration is achieved through the chromatophore unit, a layered structure of pigment-containing cells (xanthophores, melanophores) and structural cells (iridophores) that interact to produce the final skin colouration. In dendrobatid frogs of the genus Oophaga , striking red and green morphs coexist within and across species, yet the cellular mechanisms underlying this variation remain poorly understood. Methods We investigated the histological basis of colouration in three Oophaga species ( O. granulifera , O. pumilio , and O. vicentei ) by comparing chromatophore layer structure in red and green morphs and correlating these traits with spectrometric colour measurements. While all species have a chromatophore unit of xanthophores, iridophores, and melanophores, we observed interspecific and intraspecific variation in the organization, thickness, and relative area of these layers. Results In O. pumilio and O. vicentei , red morphs consistently exhibited greater xanthophore and iridophore coverage and more xanthophore contribution. In contrast, O. granulifera displayed minimal differences between morphs and a more disorganized chromatophore unit, however melanosome size was larger for green morphs. Spectral reflectance measurements correlated significantly with chromatophore traits, supporting a link between skin histology and colour phenotype. These findings suggest that colouration in Oophaga arises from less conserved chromatophore unit structure, reflecting diverse evolutionary routes to equivalent colouration.

PeerJVol. 14
Smithsonian Tropical Research Institute (PA), University of Veterinary Medicine Hannover, Foundation (DE), Universidad de Costa Rica (CR)
Life in Land
Openalex Percentile: Top 14%
Amphibian and Reptile Biology
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