TL;DR: Anabisetia strengths the hypothesis that basal iguanodontian ornithopods were present in South America before its with North America in the Late Cretaceous.
Abstract: The discovery of a new iguanodontian ornithopod in the lower units of the Neuquen Group (Rio Limay Formation, early Upper Cretaceous) increases the South American record of this kind of dinosaurs started few years ago with the report of Gasparinisaura cincosaltensis. Anabisetia saldiviai, gen. et sp. nov. is distinguished from all other ornithopods by several features, as a flattened fifth metacarpal, a scapula with a very strong acromial process, and an ilium with preacetabular process longer than 50% of the total ilium length. Anabisetia is more derived than Tenontosaurus and shares with Euiguanodontia (Gasparinisaura + Dryomorpha) the presence of one primary lateral ridge on each maxillary tooth, a broad brevis-shelf and a reduced first metatarsal. Derived features such as the transversely flattened prepubic process and an anteroventrally oriented ischiadic foot link Anabisetia with Dryomorpha (i.e., Dryosaurus, Camptosaurus and Iguanodon). Anabisetia strengths the hypothesis that basal iguano...
TL;DR: Qualitative assessment of shared anatomical features suggest that the Eumeralla Formation ornithopods, South American Anabisetia saldiviai and Gasparinisaura cincosaltensis, Afro-Laurasian dryosaurids and possibly Antarctic Morrosaurus antarcticus share a close phylogenetic progenitor.
Abstract: A new small-bodied ornithopod dinosaur, Diluvicursor pickeringi, gen. et sp. nov., is named from the lower Albian of the Eumeralla Formation in southeastern Australia and helps shed new light on the anatomy and diversity of Gondwanan ornithopods. Comprising an almost complete tail and partial lower right hindlimb, the holotype (NMV P221080) was deposited as a carcass or body-part in a log-filled scour near the base of a deep, high-energy river that incised a faunally rich, substantially forested riverine floodplain within the Australian-Antarctic rift graben. The deposit is termed the 'Eric the Red West Sandstone.' The holotype, interpreted as an older juvenile ∼1.2 m in total length, appears to have endured antemortem trauma to the pes. A referred, isolated posterior caudal vertebra (NMV P229456) from the holotype locality, suggests D. pickeringi grew to at least 2.3 m in length. D. pickeringi is characterised by 10 potential autapomorphies, among which dorsoventrally low neural arches and transversely broad caudal ribs on the anterior-most caudal vertebrae are a visually defining combination of features. These features suggest D. pickeringi had robust anterior caudal musculature and strong locomotor abilities. Another isolated anterior caudal vertebra (NMV P228342) from the same deposit, suggests that the fossil assemblage hosts at least two ornithopod taxa. D. pickeringi and two stratigraphically younger, indeterminate Eumeralla Formation ornithopods from Dinosaur Cove, NMV P185992/P185993 and NMV P186047, are closely related. However, the tail of D. pickeringi is far shorter than that of NMV P185992/P185993 and its pes more robust than that of NMV P186047. Preliminary cladistic analysis, utilising three existing datasets, failed to resolve D. pickeringi beyond a large polytomy of Ornithopoda. However, qualitative assessment of shared anatomical features suggest that the Eumeralla Formation ornithopods, South American Anabisetia saldiviai and Gasparinisaura cincosaltensis, Afro-Laurasian dryosaurids and possibly Antarctic Morrosaurus antarcticus share a close phylogenetic progenitor. Future phylogenetic analysis with improved data on Australian ornithopods will help to test these suggested affinities.
TL;DR: In this article, the authors provide a sedimentological and taphonomic reassessment of the Leaellynasaurus amicagraphica holotype locality at Dinosaur Cove in the Eumeralla Formation (Otway Group).
Abstract: Early Cretaceous (late Aptian–early Albian) fossil localities in the south coastal region of Victoria, southeastern Australia, provide a snapshot of the rich terrestrial biota that lived on the floodplain within the extensional rift system that existed between the eastern Gondwanan landmasses of Australia and Antarctica. Amongst the terrestrial vertebrate assemblage, agile, bipedal, small-bodied (‘turkey’- to ‘ostrich’-sized) ornithopod dinosaurs have been considered abundant and arguably diverse. Although the Victorian ornithopods potentially hold significant information on Gondwanan dinosaur phylogeography, their taxonomy and phylogenetic systematics have been poorly understood.This research provides a sedimentological and taphonomic reassessment of the Leaellynasaura amicagraphica holotype locality at Dinosaur Cove in the Eumeralla Formation (Otway Group). The osteology and systematics of the three previously named Victorian ornithopods (Atlascopcosaurus loadsi, Leaellynasaura amicagraphica and Qantassaurus intrepidus) are revised, and potential new taxa recognised. The postulated diversity of the Victorian ornithopods is reassessed and their phylogenetic and phylogeographic relationships are investigated.Contrary to the original interpretation of a quiet-water depositional setting (such as a billabong), the holotype locality of L. amicagraphica is reinterpreted to be a point-bar deposit. Fossil accumulation in the heterolithic cross-strata of the point-bar is considered to be allochthonous. As a result, the referral of additional specimens to L. amicagraphica, other than materials directly attributable to the holotype, cannot be adequately supported. In addition, newly identified material of the L. amicagraphica holotypic cranial fragment (MV P185991) provides important new information on this taxon, and facilitates anatomical and taxonomic differentiation of the cranial table (MV P185990), originally considered to be from the holotype individual.The validity of L. amicagraphica (Eumeralla Formation) and Q. intrepidus from the Wonthaggi Formation (Strzelecki Group) is upheld. However, Atlascopcosaurus (Eumeralla Formation) is considered to be a junior subjective synonym of Leaellynasaura (L. loadsi nov. comb. [Rich & Rich, 1989]). A third species of Leaellynasaura (Leaellynasaura sp. nov.) extends the range of this genus to the Wonthaggi Formation. Two premaxillary, one maxillary (Leaellynasaura sp. nov.) and two dentary morphotypes (including Q. intrepidus) are recognised from the Wonthaggi Formation, whilst four maxillary morphotypes (including two species of Leaellynasaura), two dentary and four postcranial morphotypes are recognised from the Eumeralla Formation. Although taxonomic differentiation of these morphotypes has not been ascertained, it is possible that some pertain to the same taxon. The five maxillary morphotypes, provide an overall measure of the diversity of theVictorian ornithopod assemblage.Of the postcranial morphotypes, three partial postcranial skeletons are recognised from the Eumeralla Formation: two from Dinosaur Cove (Victorian Ornithopod Postcranial morphotypes [VOPC] I and II), both previously attributed to L. amicagraphica, and the third (VOPC III) from the locality of Eric the Red West. VOPC I and II are differentiated from each other on the basis of their haemal arch morphology. VOPC I differs from all other ornithischians on account of its extreme taillength (~13 times femoral length), while the hind limb proportions of VOPC II suggest a highly cursorial ornithischian. VOPC III appears to be a more robust morphotype than both VOPC I and II. The femur of the fourth postcranial morphotype, Victorian ‘Hypsilophodontid’ Femur Type 2 of Rich & Vickers-Rich (1989), differs morphologically from the femora of VOPC I and II, and represents a larger more robust body-type. The morphological differences evident in both the maxillary and the postcranial morphotypes suggest differing habitat preferences among the ornithopods from the region.Cladistic analysis using implied weighting methodology suggests that Leaellynasaura and the postcranial morphotypes VOPC I and II are most closely related to Australia’s Muttaburrasaurus and Patagonia’s Anabisetia and Gasparinisaura. It is hypothesized that these taxa form a Gondwanan non-iguanodontian ornithopod clade that diverged from a Pangaean progenitor of Iguanodontia through vicariance during Pangaean fragmentation in the Late Jurassic. Interestingly, the Laurentian Parksosaurus and Thescelosaurus may be more closely related to Muttaburrasaurus and Patagonia’s Talenkauen than to basal ornithopod taxa from Asia. The hypothesised relationship between these non-iguanodontian ornithopods from Laurentia and Gondwana may stem from the opening of an Antillean dispersal route between North America and South America during the Late Cretaceous. Although Qantassaurus was not included in the cladistic analysis, its dental morphology resembles that of Kangnasaurus from the Late Cretaceous of South Africa. In addition, the proportions of metatarsal II of VOPC II and III more closely resemble those of dryosaurids (Dryosaurus, Dysalotosaurus and Kangnasaurus), Anabisetia and Gasparinisaura. These similarities either suggest convergence between these taxa, or a closer relationship between dryosaurids and Gondwanan non-iguanodontian ornithopods than suggested by the results of the cladistic analysis.The Victorian ornithopods currently represent the oldest body-fossils of non-iguanodontian ornithopods from Gondwana. It is speculated that the high diversity of this key ornithopod fauna from Victoria is linked to the geologically dynamic, high-latitude floodplain palaeoenvironment of the Australian-Antarctic Rift System, and, tantalizingly, the early radiation of angiosperms in eastern Gondwana.
TL;DR: In this paper, a joint team of the Universidad Nacional del Comahue, the Ente para el Desarrollo de la MargenSur-ENDEMAS" (Argentina) and the University of Zaragoza (Spain) has started paleontological field work in the previously unexplored area of Anfiteatro, 50 km southwest to the town of Cipolleti, in the Rio Negro Province, Argentina.
Abstract: A joint team of the Universidad Nacional del Comahue, the "Ente para el Desarrollo de la MargenSur-ENDEMAS" (Argentina) and the Universidad de Zaragoza (Spain) has started paleontological field work in the previously unexplored area of Anfiteatro, 50 km southwest to the town of Cipolleti, in the Rio Negro Province, Argentina. One of the new discovered localities has provided six dinosaur teeth, which are described in this paper. These teeth come from the Cerro Lisandro Formation, a formation of Upper Cenomanian-Lower Turonian age belonging to the Neuquen Group,Rio Limay Subgroup. The only dinosaur previously known in the Cerro Lisandro Formation was theornithopod Anabisetia, from the neighbouring province of Neuquen. The studied teeth belong to asauropod: Titanosauria indet, (a slender and cylindrical tooth fragment), and three theropods: Car-charodontosauridae indet, (a tooth with wrinkled enamel), Spinosauridae indet, (a tooth with fluted enamel), and Abelisauria? indet, (three unornamented teeth). These teeth represent the firstsaurischian dinosaurs in the Cerro Lisandro Formation. Titanosaurs, carcharodontosaurids and abe-lisaurs are well known in the lower most Upper Cretaceous of Argentina, but the Cerro Lisandrospinosaurid is the first representative of this family in the Upper Cretaceous of South America.