The origin of an invasive air sac system in sauropodomorph dinosaurs

Author:

Aureliano Tito123ORCID,Ghilardi Aline M.2,Müller Rodrigo T.45ORCID,Kerber Leonardo45,Fernandes Marcelo A.3,Ricardi‐Branco Fresia1,Wedel Mathew J.6

Affiliation:

1. Institute of Geosciences University of Campinas (Unicamp) Campinas Brazil

2. Diversity, Ichnology and Osteohistology Laboratory (DINOlab), Department of Geology Federal University of Rio Grande do Norte (URFN) Natal Brazil

3. Laboratório de Paleoecologia e Paleoicnologia (LPP), Departamento de Ecologia e Biologia Evolutiva (DEBE) Federal University of São Carlos (UFSCar) São Carlos Brazil

4. Centro de Apoio à Pesquisa Paleontológica da Quarta Colônia (CAPPA) Federal University of Santa Maria (CAPPA/UFSM) São João do Polêsine Brazil

5. Programa de Pós‐Graduação em Biodiversidade Animal Federal University of Santa Maria (UFSM) Santa Maria Brazil

6. College of Osteopathic Medicine of the Pacific and College of Podiatric Medicine Western University of Health Sciences Pomona USA

Abstract

AbstractOne of the most remarkable features in sauropod dinosaurs relates to their pneumatized skeletons permeated by a bird‐like air sac system. Many studies described the late evolution and diversification of this trait in mid to late Mesozoic forms but few focused on the origin of the invasive respiratory diverticula in sauropodomorphs. Fortunately, it is possible to solve this thanks to the boom of new species described in the last decade as well as the broad accessibility of new technologies. Here we analyze the unaysaurid sauropodomorph Macrocollum itaquii from the Late Triassic (early Norian) of southern Brazil using micro‐computed tomography. We describe the chronologically oldest and phylogenetically earliest unambiguous evidence of an invasive air sac system in a dinosaur. Surprisingly, this species presented a unique pattern of pneumatization in non‐sauropod sauropodomorphs, with pneumatic foramina in posterior cervical and anterior dorsal vertebrae. This suggests that patterns of pneumatization were not cladistically consistent prior to the arrival of Jurassic eusauropods. Additionally, we describe the protocamerae tissue, a new type of pneumatic tissue with properties of both camellae and camerae. This reverts the previous hypothesis which stated that the skeletal pneumatization first evolved into camarae, and derived into delicate trabecular arrangements. This tissue is evidence of thin camellate‐like tissue developing into larger chambers. Finally, Macrocollum is an example of the gradual evolution of skeletal tissues responding to the fastly specializing Respiratory System of saurischian dinosaurs.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Fundação de Amparo à Pesquisa do Estado do Rio Grande do Sul

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Wiley

Subject

Ecology, Evolution, Behavior and Systematics,Histology,Biotechnology,Anatomy

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