Pterosaur melanosomes support signalling functions for early feathers

Remarkably well-preserved soft tissues in Mesozoic fossils have yielded substantial insights into the evolution of feathers1. New evidence of branched feathers in pterosaurs suggests that feathers originated in the avemetatarsalian ancestor of pterosaurs and dinosaurs in the Early Triassic2, but the...

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Bibliographic Details
Authors: CINCOTTA, Aude, NICOLAI, Michael, CAMPOS, Herbert Bruno Nascimento, McNAMARA, Maria, D´ALBA, Liliana, SHAWKEY, Mathew D., KISCHLAT, Edio-Ernst, YANS, Johan, CARLEER, Robert, ESCUILLIÉ, François, GODEFROIT, Pascal
Format: article
Status:Published version
Publication Date:2022
Country:Brasil
Institution:Companhia de Pesquisa de Recursos Minerais (CPRM)
Repository:Repositório Institucional de Geociências - RIGEO
Language:English
OAI Identifier:oai:rigeo.sgb.gov.br:doc/22738
Online Access:https://rigeo.sgb.gov.br/handle/doc/22738
https://doi.org/10.1038/s41586-022-04622-3
Access Level:Open access
Keyword:PALEONTOLOGIA
PELEONTOLOGY
PTEROSAUR MELASONES
Description
Summary:Remarkably well-preserved soft tissues in Mesozoic fossils have yielded substantial insights into the evolution of feathers1. New evidence of branched feathers in pterosaurs suggests that feathers originated in the avemetatarsalian ancestor of pterosaurs and dinosaurs in the Early Triassic2, but the homology of these pterosaur structures with feathers is controversial3,4. Reports of pterosaur feathers with homogeneous ovoid melanosome geometries2,5 suggest that they exhibited limited variation in colour, supporting hypotheses that early feathers functioned primarily in thermoregulation6. Here we report the presence of diverse melanosome geometries in the skin and simple and branched feathers of a tapejarid pterosaur from the Early Cretaceous found in Brazil. The melanosomes form distinct populations in different feather types and the skin, a feature previously known only in theropod dinosaurs, including birds. These tissue-specific melanosome geometries in pterosaurs indicate that manipulation of feather colour—and thus functions of feathers in visual communication—has deep evolutionary origins. These features show that genetic regulation of melanosome chemistry and shape7–9 was active early in feather evolution.