Possible eucynodont (Synapsida: Cynodontia) tracks from a lacustrine facies in the Lower Jurassic Moenave Formation of southwestern Utah

Author:

Hurtado Holly12,Harris Jerald D.1,Milner Andrew R.C.2

Affiliation:

1. Earth and Environmental Sciences, Utah Tech University, St. George, UT, United States of America

2. St. George Dinosaur Discovery Site, St. George, UT, United States of America

Abstract

Eight fossil tetrapod footprints from lake-shore deposits in the Lower Jurassic Moenave Formation at the St. George Dinosaur Discovery Site (SGDS) in southwestern Utah cannot be assigned to the prevalent dinosaurian (Anomoepus, Eubrontes, Gigandipus, Grallator, Kayentapus) or crocodyliform (Batrachopus) ichnotaxa at the site. The tridactyl and tetradactyl footprints are incomplete, consisting of digit- and digit-tip-only imprints. Seven of the eight are likely pes prints; the remaining specimen is a possible manus print. The pes prints have digit imprint morphologies and similar anterior projections and divarication angles to those of Brasilichnium, an ichnotaxon found primarily in eolian paleoenvironments attributed to eucynodont synapsids. Although their incompleteness prevents clear referral to Brasilichnium, the SGDS tracks nevertheless suggest a eucynodont track maker and thus represent a rare, Early Mesozoic occurrence of such tracks outside of an eolian paleoenvironment.

Publisher

PeerJ

Reference167 articles.

1. A new stem turtle from the Middle Jurassic of Scotland: new insights into the evolution and palaeoecology of basal turtles;Anquetin;Proceedings of the Royal Society B: Biological Sciences,2008

2. Turtle tracks from the Late Jurassic of Asturias, Spain;Avanzini;Acta Palaeontologica Polonica,2005

3. First report of a Late Jurassic lizard-like footprint (Asturias, Spain);Avanzini;Journal of Iberian Geology,2010

4. The effect of temperature and slope on the morphology of experimental spider and scorpion trackways;Azain;Masters thesis,2006

5. A prosauropod dinosaur trackway from the Navajo Sandstone (Lower Jurassic) of Arizona;Baird,1980

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