4.2 Article

Microanatomy and histology of frontal bones in two species of Albanerpeton sensu lato (Lissamphibia: Albanerpetontidae) from the Upper Cretaceous Oldman Formation in southeastern Alberta, Canada

Journal

HISTORICAL BIOLOGY
Volume 33, Issue 12, Pages 3604-3616

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/08912963.2021.1881084

Keywords

Bone histology; Albanerpetontidae; Albanerpeton; Late Cretaceous

Funding

  1. Russian Foundation for Basic Research (RFBR) [19-04-00060]

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Histological analysis of two Late Cretaceous Albanerpeton species reveals differences in frontal bone structures related to body size and growth development, suggesting reliance on cutaneous respiration for this extinct clade of amphibians.
Albanerpetontids are an extinct clade of salamander-like lissamphibians characterised by features such as fused frontals and sculptured skull roof bones. Here we provide a histological analysis of the fused and sculptured frontals in two Late Cretaceous species of the type genus Albanerpeton sensu lato that differ in body size: moderate-sized 'Al.' gracile and larger-sized 'Al.' nexuosum. Despite general similarities in microanatomy/histology (no sutural trace remains between left and right frontals; sculpture formed by appositional growth of bone; predominance of parallel-fibred bone; and lack of growth marks, secondary osteons, and Sharpey's fibres) and the presence of sub-ventrolateral crest canals (possible albanerpetontid synapomorphy), 'Al.' nexuosum differs from 'Al.' gracile in exhibiting: a distinct three-layered diploe structure; bone remodelling; a higher degree of vascularisation; and more numerous osteocytic lacunae. We suggest that (1) histological differences between 'Al.' gracile and 'Al.' nexuosum are related to differences in absolute body sizes and relative development of sculpture and robustness of frontals and (2) the sub-ventrolateral crest canals in albanerpetontids are homologous to the canalis arteriae orbitonasalis in modern anurans. Two features (internal vascularisation and lack of Sharpey's fibres) support a recent suggestion that albanerpetontids may have relied entirely on cutaneous respiration.

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