Evidence for a novel cranial thermoregulatory pathway in thalattosuchian crocodylomorphs

Author:

Young Mark T.12ORCID,Bowman Charlotte I. W.1ORCID,Erb Arthur1,Schwab Julia A.13,Witmer Lawrence M.4ORCID,Herrera Yanina5,Brusatte Stephen L.1ORCID

Affiliation:

1. School of GeoSciences, University of Edinburgh, Edinburgh, United Kingdom

2. LWL-Museum für Naturkunde, Münster, Germany

3. Department of Earth and Environmental Sciences, University of Manchester, Manchester, United Kingdom

4. Department of Biomedical Sciences, Ohio University, Athens, Ohio, United States

5. Museo de La Plata, Facultad de Ciencias Naturales y Museo, Universidad Nacional de La Plata, La Plata, Argentina

Abstract

Thalattosuchian crocodylomorphs were a diverse clade that lived from the Early Jurassic to the Early Cretaceous. The subclade Metriorhynchoidea underwent a remarkable transition, evolving from semi-aquatic ambush predators into fully aquatic forms living in the open oceans. Thalattosuchians share a peculiar palatal morphology with semi-aquatic and aquatic fossil cetaceans: paired anteroposteriorly aligned grooves along the palatal surface of the bony secondary palate. In extant cetaceans, these grooves are continuous with the greater palatine artery foramina, arteries that supply their oral thermoregulatory structures. Herein, we investigate the origins of thalattosuchian palatal grooves by examining CT scans of six thalattosuchian species (one teleosauroid, two early-diverging metriorhynchoids and three metriorhynchids), and CT scans of eleven extant crocodylian species. All thalattosuchians had paired osseous canals, enclosed by the palatines, that connect the nasal cavity to the oral cavity. These osseous canals open into the oral cavityviaforamina at the posterior terminus of the palatal grooves. Extant crocodylians lack both the external grooves and the internal canals. We posit that in thalattosuchians these novel palatal canals transmitted hypertrophied medial nasal vessels (artery and vein), creating a novel heat exchange pathway connecting the palatal vascular plexus to the endocranial region. Given the general hypertrophy of thalattosuchian cephalic vasculature, and their increased blood flow and volume, thalattosuchians would have required a more extensive suite of thermoregulatory pathways to maintain stable temperatures for their neurosensory tissues.

Funder

Leverhulme Trust Research Project

European Community Research Infrastructure Action

United States National Science Foundation

Swedish Research Council

ANPCyT

CONICET

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference86 articles.

1. The first metriorhynchoid crocodyliform from the Aalenian (Middle Jurassic) of Germany, with implications for the evolution of Metriorhynchoidea;Aiglstorfer;Zoological Journal of the Linnean Society,2020

2. Morphological and anatomical observations about Mariliasuchus amarali and Notosuchus terrestris (Mesoeucrocodylia) and their relationships with other South American notosuchians;Andrade;Arquivos do Museu Nacional,2008a

3. A new Sphagesaurus (Mesoeucrocodylia: Notosuchia) from the Upper Cretaceous of Monte Alto City (Bauru Group, Brazil), and a revision of the Sphagesauridae;Andrade;Historical Biology,2008b

4. Observations on the palate and choanae structures in Mesoeucrocodylia (Archosauria, Crocodylomorpha): phylogenetic implications;Andrade;Revista Brasileira de Paleontologia,2006

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