2021•GeodiversitasOpen access

A nearly complete skeleton of the oldest definitive erycine boid (Messel, Germany)

Krister T. Smith, Agustín Scanferla

Open full text 32 citations

Abstract

A nearly complete skeleton of an erycine boid is described from the Ypresian-Lutetian (early-middle Eocene) site of Messel, Germany, for which we propose the name Rageryx schmidi n. gen., n. sp. The animal had a total length of c. 52 cm, with c. 258 vertebrae. In skull proportions it is similar to ungaliophiine boids, especially Ungaliophis, and to Tropidophis. The proportions and distinctive accessory processes of the distal caudal vertebrae that are common to all living erycine boids are present in the specimen, although the processes are not as elaborate as in many extant species. The premaxilla was not protruded to form a wedge-shaped snout, and the nasofrontal joint does not appear to show any special buttressing, unlike in many burrowing snake species. Furthermore, the inner ear lacks adaptations to an actively burrowing mode of life. We conclude that the animal, while it was probably secretive, was not fossorial. Phylogenetic analyses using maximum parsimony and Bayesian inference place Rageryx schmidi n. gen., n. sp. unambiguously on the stem of the North American clade (Lichanura + Charina). If this relationship is accurate, it provides further support for a common Euro-American squamate fauna in the early Eocene. The majority of known Messel snake taxa are small-bodied with a small gape, suggesting that such forms may have played a greater role in the early evolutionary radiation of Booidea than their present diversity would suggest.

About this research paper

What this paper is about

A nearly complete skeleton of an erycine boid is described from the Ypresian-Lutetian (early-middle Eocene) site of Messel, Germany, for which we propose the name Rageryx schmidi n. gen., n. sp. The animal had a total length of c. 52 cm, with c. 258 vertebrae. In skull proportions it is similar to ungaliophiine boids, especially Ungaliophis, and to Tropidophis. The proportions and distinctive accessory processes of the distal caudal vertebrae that are common to all living erycine boids are present in the specimen, although the processes are not as elaborate as in many extant species. The premaxilla was not protruded to form a wedge-shaped snout, and the nasofrontal joint does not appear to show any special buttressing, unlike in many burrowing snake species. Furthermore, the inner ear lacks adaptations to an actively burrowing mode of life. We conclude that the animal, while it was probably secretive, was not fossorial. Phylogenetic analyses using maximum parsimony and Bayesian inference place Rageryx schmidi n. gen., n. sp. unambiguously on the stem of the North American clade (Lichanura + Charina). If this relationship is accurate, it provides further support for a common Euro-American squamate fauna in the early Eocene. The majority of known Messel snake taxa are small-bodied with a small gape, suggesting that such forms may have played a greater role in the early evolutionary radiation of Booidea than their present diversity would suggest.

Why it matters

OpenAlex reports 32 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A nearly complete skeleton of an erycine boid is described from the Ypresian-Lutetian (early-middle Eocene) site of Messel, Germany, for which we propose the name Rageryx schmidi n. gen., n. sp. The animal had a total length of c. 52 cm, with c. 258 vertebrae. In skull proportions it is similar to ungaliophiine boids, especially Ungaliophis, and to Tropidophis. The proportions and distinctive accessory processes of the distal caudal vertebrae that are common to all living erycine boids are present in the specimen, although the processes are not as elaborate as in many extant species. The premaxilla was not protruded to form a wedge-shaped snout, and the nasofrontal joint does not appear to show any special buttressing, unlike in many burrowing snake species. Furthermore, the inner ear lacks adaptations to an actively burrowing mode of life. We conclude that the animal, while it was probably secretive, was not fossorial. Phylogenetic analyses using maximum parsimony and Bayesian inference place Rageryx schmidi n. gen., n. sp. unambiguously on the stem of the North American clade (Lichanura + Charina). If this relationship is accurate, it provides further support for a common Euro-American squamate fauna in the early Eocene. The majority of known Messel snake taxa are small-bodied with a small gape, suggesting that such forms may have played a greater role in the early evolutionary radiation of Booidea than their present diversity would suggest.

Key concepts: Biology, Fossorial, Skull, Clade, Evolutionary biology, Snout, Zoology, Anatomy

Related papers

Back to paper searchBrowse research topicsOriginal source
A nearly complete skeleton of the oldest definitive erycine boid (Messel, Germany) — Research Paper | ScholarLens