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Ecologically Distinct Dinosaurian Sister Group Shows Early Diversification of Ornithodira

Overview
Journal Nature
Specialty Science
Date 2010 Mar 6
PMID 20203608
Citations 53
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Abstract

The early evolutionary history of Ornithodira (avian-line archosaurs) has hitherto been documented by incomplete (Lagerpeton) or unusually specialized forms (pterosaurs and Silesaurus). Recently, a variety of Silesaurus-like taxa have been reported from the Triassic period of both Gondwana and Laurasia, but their relationships to each other and to dinosaurs remain a subject of debate. Here we report on a new avian-line archosaur from the early Middle Triassic (Anisian) of Tanzania. Phylogenetic analysis places Asilisaurus kongwe gen. et sp. nov. as an avian-line archosaur and a member of the Silesauridae, which is here considered the sister taxon to Dinosauria. Silesaurids were diverse and had a wide distribution by the Late Triassic, with a novel ornithodiran bauplan including leaf-shaped teeth, a beak-like lower jaw, long, gracile limbs, and a quadrupedal stance. Our analysis suggests that the dentition and diet of silesaurids, ornithischians and sauropodomorphs evolved independently from a plesiomorphic carnivorous form. As the oldest avian-line archosaur, Asilisaurus demonstrates the antiquity of both Ornithodira and the dinosaurian lineage. The initial diversification of Archosauria, previously documented by crocodilian-line archosaurs in the Anisian, can now be shown to include a contemporaneous avian-line radiation. The unparalleled taxonomic diversity of the Manda archosaur assemblage indicates that archosaur diversification was well underway by the Middle Triassic or earlier.

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References
1.
Irmis R, Nesbitt S, Padian K, Smith N, Turner A, Woody D . A Late Triassic dinosauromorph assemblage from New Mexico and the rise of dinosaurs. Science. 2007; 317(5836):358-61. DOI: 10.1126/science.1143325. View

2.
Nesbitt S . Arizonasaurus and its implications for archosaur divergence. Proc Biol Sci. 2003; 270 Suppl 2:S234-7. PMC: 1809943. DOI: 10.1098/rsbl.2003.0066. View

3.
Zanno L, Gillette D, Albright L, Titus A . A new North American therizinosaurid and the role of herbivory in 'predatory' dinosaur evolution. Proc Biol Sci. 2009; 276(1672):3505-11. PMC: 2817200. DOI: 10.1098/rspb.2009.1029. View

4.
Brusatte S, Benton M, Ruta M, Lloyd G . Superiority, competition, and opportunism in the evolutionary radiation of dinosaurs. Science. 2008; 321(5895):1485-8. DOI: 10.1126/science.1161833. View

5.
Martinez R, Alcober O . A basal sauropodomorph (Dinosauria: Saurischia) from the Ischigualasto Formation (Triassic, Carnian) and the early evolution of Sauropodomorpha. PLoS One. 2009; 4(2):e4397. PMC: 2635939. DOI: 10.1371/journal.pone.0004397. View