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1.
Sci Rep ; 10(1): 9741, 2020 06 25.
Artigo em Inglês | MEDLINE | ID: mdl-32587406

RESUMO

We describe the partial cranium and skeleton of a new diprotodontian marsupial from the late Oligocene (~26-25 Ma) Namba Formation of South Australia. This is one of the oldest Australian marsupial fossils known from an associated skeleton and it reveals previously unsuspected morphological diversity within Vombatiformes, the clade that includes wombats (Vombatidae), koalas (Phascolarctidae) and several extinct families. Several aspects of the skull and teeth of the new taxon, which we refer to a new family, are intermediate between members of the fossil family Wynyardiidae and wombats. Its postcranial skeleton exhibits features associated with scratch-digging, but it is unlikely to have been a true burrower. Body mass estimates based on postcranial dimensions range between 143 and 171 kg, suggesting that it was ~5 times larger than living wombats. Phylogenetic analysis based on 79 craniodental and 20 postcranial characters places the new taxon as sister to vombatids, with which it forms the superfamily Vombatoidea as defined here. It suggests that the highly derived vombatids evolved from wynyardiid-like ancestors, and that scratch-digging adaptations evolved in vombatoids prior to the appearance of the ever-growing (hypselodont) molars that are a characteristic feature of all post-Miocene vombatids. Ancestral state reconstructions on our preferred phylogeny suggest that bunolophodont molars are plesiomorphic for vombatiforms, with full lophodonty (characteristic of diprotodontoids) evolving from a selenodont morphology that was retained by phascolarctids and ilariids, and wynyardiids and vombatoids retaining an intermediate selenolophodont condition. There appear to have been at least six independent acquisitions of very large (>100 kg) body size within Vombatiformes, several having already occurred by the late Oligocene.


Assuntos
Evolução Biológica , Tamanho Corporal , Osso e Ossos/anatomia & histologia , Fósseis , Marsupiais/anatomia & histologia , Marsupiais/classificação , Crânio/anatomia & histologia , Animais , Filogenia , Especificidade da Espécie
2.
Sci Rep ; 7(1): 17722, 2017 12 18.
Artigo em Inglês | MEDLINE | ID: mdl-29255278

RESUMO

The skeletal remains of a small bear (Protarctos abstrusus) were collected at the Beaver Pond fossil site in the High Arctic (Ellesmere I., Nunavut). This mid-Pliocene deposit has also yielded 12 other mammals and the remains of a boreal-forest community. Phylogenetic analysis reveals this bear to be basal to modern bears. It appears to represent an immigration event from Asia, leaving no living North American descendants. The dentition shows only modest specialization for herbivory, consistent with its basal position within Ursinae. However, the appearance of dental caries suggest a diet high in fermentable-carbohydrates. Fossil plants remains, including diverse berries, suggests that, like modern northern black bears, P. abstrusus may have exploited a high-sugar diet in the fall to promote fat accumulation and facilitate hibernation. A tendency toward a sugar-rich diet appears to have arisen early in Ursinae, and may have played a role in allowing ursine lineages to occupy cold habitats.


Assuntos
Ursidae/classificação , Ursidae/fisiologia , Animais , Regiões Árticas , Cárie Dentária/patologia , Dentição , Dieta , Ecossistema , Extinção Biológica , Fósseis/anatomia & histologia , Geografia , Mamíferos , Filogenia , Especificidade da Espécie , Ursidae/metabolismo
3.
Nature ; 458(7241): 1021-4, 2009 Apr 23.
Artigo em Inglês | MEDLINE | ID: mdl-19396145

RESUMO

Modern pinnipeds (seals, sea lions and the walrus) are semi-aquatic, generally marine carnivores the limbs of which have been modified into flippers. Recent phylogenetic studies using morphological and molecular evidence support pinniped monophyly, and suggest a sister relationship with ursoids (for example bears) or musteloids (the clade that includes skunks, badgers, weasels and otters). Although the position of pinnipeds within modern carnivores appears moderately well resolved, fossil evidence of the morphological steps leading from a terrestrial ancestor to the modern marine forms has been weak or contentious. The earliest well-represented fossil pinniped is Enaliarctos, a marine form with flippers, which had appeared on the northwestern shores of North America by the early Miocene epoch. Here we report the discovery of a nearly complete skeleton of a new semi-aquatic carnivore from an early Miocene lake deposit in Nunavut, Canada, that represents a morphological link in early pinniped evolution. The new taxon retains a long tail and the proportions of its fore- and hindlimbs are more similar to those of modern terrestrial carnivores than to modern pinnipeds. Morphological traits indicative of semi-aquatic adaptation include a forelimb with a prominent deltopectoral ridge on the humerus, a posterodorsally expanded scapula, a pelvis with relatively short ilium, a shortened femur and flattened phalanges, suggestive of webbing. The new fossil shows evidence of pinniped affinities and similarities to the early Oligocene Amphicticeps from Asia and the late Oligocene and Miocene Potamotherium from Europe. The discovery suggests that the evolution of pinnipeds included a freshwater transitional phase, and may support the hypothesis that the Arctic was an early centre of pinniped evolution.


Assuntos
Caniformia/anatomia & histologia , Caniformia/fisiologia , Fósseis , Filogenia , Água do Mar , Animais , Regiões Árticas , Canadá , Biologia Marinha , Esqueleto , Crânio/anatomia & histologia , Natação
4.
Science ; 306(5701): 1561-5, 2004 Nov 26.
Artigo em Inglês | MEDLINE | ID: mdl-15567864

RESUMO

The widespread extinctions of large mammals at the end of the Pleistocene epoch have often been attributed to the depredations of humans; here we present genetic evidence that questions this assumption. We used ancient DNA and Bayesian techniques to reconstruct a detailed genetic history of bison throughout the late Pleistocene and Holocene epochs. Our analyses depict a large diverse population living throughout Beringia until around 37,000 years before the present, when the population's genetic diversity began to decline dramatically. The timing of this decline correlates with environmental changes associated with the onset of the last glacial cycle, whereas archaeological evidence does not support the presence of large populations of humans in Eastern Beringia until more than 15,000 years later.


Assuntos
Bison , Clima , Fósseis , Alaska , Animais , Teorema de Bayes , Bison/classificação , Bison/genética , Canadá , China , DNA Mitocondrial/genética , Meio Ambiente , Variação Genética , Genética Populacional , Atividades Humanas , Humanos , América do Norte , Filogenia , Dinâmica Populacional , Análise de Sequência de DNA , Tempo
5.
Nature ; 425(6956): 388-90, 2003 Sep 25.
Artigo em Inglês | MEDLINE | ID: mdl-14508486

RESUMO

A peat deposit on Ellesmere Island, Nunavut, Canada, allows a unique glimpse of the Early Pliocene terrestrial biota north of the Arctic Circle. The peat accumulated in a beaver pond surrounded by boreal larch forest near regional tree line in coastal hills close to the Arctic Ocean. The ecological affinities of the plant and beetle remains contained in the peat indicate that winter temperatures on Ellesmere Island were nearly 15 degrees C higher and summer temperatures 10 degrees C higher than they are today. Here we show that the mammalian remains buried in the peat represent mainly taxa of Eurasiatic zoogeographic and phyletic affinities, including the first North American occurrence of a meline badger (Arctomeles). This deposit contains direct evidence of the composition of an Early Pliocene (4-5 million years ago) arctic mammalian fauna during an active period of interchange between Asia and North America.


Assuntos
Carnívoros/anatomia & histologia , Carnívoros/classificação , Ecossistema , Fósseis , Animais , Regiões Árticas , Ásia , Canadá , Geografia , Arcada Osseodentária/anatomia & histologia , Filogenia , Solo/análise , Especificidade da Espécie , Temperatura
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