‏إظهار الرسائل ذات التسميات South Africa. إظهار كافة الرسائل
‏إظهار الرسائل ذات التسميات South Africa. إظهار كافة الرسائل

Meet Pulanesaura eocollum, a new species of dinosaur

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Wits PhD student Blair McPhee has described a new species of dinosaur in a paper to be published in Scientific Reports on 19 September 2015. The new dinosaur, named Pulanesaura eocollum, means the "Rain lizard".

Meet Pulanesaura eocollum, a new species of dinosaur
Reconstruction of Pulanesaura 
[Credit: Wits University]
According to the authors of the paper, Pulanesaura was an early member of the long-necked sauropod lineage of dinosaurs, famously represented by Brontosaurus.

Eating habits

The researchers says that the specialised teeth, vertebrae, and forelimb of Pulanesaura was an indication that the new species would have spent all of its time on all fours, browsing lower vegetation. This novel feeding strategy would have resulted in a more energetically conservative feeding posture for Pulanesaura.

This is unlike more primitive prosauropod (scientifically referred to as "basal sauropodomorph") dinosaurs, which still relied on the forelimb to aid in gathering food from across a broad range of the forest canopy.

Early sauropods like Pulanesaura are incredibly rare in the fossil record, with only a handful of good sauropod specimens known from the Early Jurassic, a time period between 200 and 180 million years ago, when Pulanesaura would have lived.

Meet Pulanesaura eocollum, a new species of dinosaur
Illustration showing the locations where recovered bones would have
 been in a living Pulanesaura [Credit: Wits University]
Much more common at that time in South Africa were bipedal or semi-bipedal sauropodomorph dinosaurs like Massospondylus and Antetonitrus. This might have been because the unique feeding strategy of Pulanesaura restricted the number of lower-browsing dinosaurs that the early Jurassic landscape could have supported.

"This dinosaur showcases the unexpected diversity of locomotion and feeding strategies present in South Africa 200 million years ago. This has serious implications for how dinosaurs were carving up their ecosystems," says McPhee.

"We used to think that only two species of sauropodomorph dinosaur were present in South Africa. Now we know that the picture was much more complicated, with lots of species present. But Pulanesaura is still special because it was doing something that all these newly discovered species weren't," says Choiniere.

Pulanesaura description

  • Pulanesaura was relatively small (for a sauropod), at about eight metres in length, two metres at the hips, and 5 tonnes in body mass.
  • Unlike its bipedal ancestors, who used the forelimb as an additional means of gathering food, Pulanesaura would have had to rely on the flexibility of its long neck alone.
  • Flexibility in the neck meant that the forelimb of Pulanesaura was able to shift to a position entirely beneath the body, thus better supporting the weight of the animal.
  • Modifications of the neck may have also meant that it would not have needed to move its body about as much to feed – and less movement means less energy expended. This method of feeding was taken to extreme lengths by all gigantic sauropod species.

Bonnan adds, "The traditional picture of sauropod evolution is that when they came onto the scene, the other sauropodomorphs were pushed aside. Pulanesaura turns this notion on its head. Sauropod evolution was occurring alongside and influenced by competition with their sauropodomorph brethren."

History of the name

The fossils of Pulanesaura were found at Heelbo, a farm in the Eastern Free State where two other recently described South African dinosaur species also come from – Aardonyx and Arcusaurus, both more primitive members of the same lineage.

Meet Pulanesaura eocollum, a new species of dinosaur
Chart showing other animals from Pulanesaura's day, many of which relied
 on front legs to gather food rather than using a long, flexible neck 
[Credit: Wits University]
The late Naude Bremer, former owner of Heelbo, was a strong proponent of palaeontology on his farm. "Pulane" was the childhood Sesotho nickname of Bremer's daughter, Panie.

Roughly translated, "Pulane" means "comes with rain," and Pulanesaura was excavated during a particularly rainy period on the property.

These species, along with limb bones of a small predatory dinosaur, the teeth of a huge predatory dinosaur and other bones of as-yet-unknown dinosaurs make Heelbo one of the richest dinosaur localities in southern Africa.

Yates, who excavated the fossil, believes that Heelbo Farm was different from the rest of South Africa 200 million years ago when Pulanesaura was alive.

"The dinosaur fossils we see at Heelbo are different from the typical South African Early Jurassic species and they might have been living in a rare habitat different than the drier ones favoured by famous species like Massospondylus," he says.

Neveling says what makes Heelbo unique is the fact that unlike the majority of localities of this age which represent dry flood plains, its geology is characterised by a dense concentration of river channel deposits.

"Similar to modern arid environments, the river banks would have supported much denser vegetation that would have provided plenty of food to budding giants," Neveling adds.

Source: Wits University [August 20, 2015]

Earliest baboon found at Malapa

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A team from Wits University's Evolutionary Studies Institute has discovered a fossil monkey specimen representing the earliest baboon ever found.

Earliest baboon found at Malapa
Male P. angusticeps in lateral (top left), oblique (top right), dorsal (middle) 
and inferior (bottom) views [Credit: Wits University]
Dating back more than 2 million years ago (between 2.026-2.36 million years ago), the partial skull was found at Malapa, in the Cradle of Humankind World Heritage Site, the same site where the partial skeletons of the new early hominin species, Australopithecus sediba, were discovered in 2010.

"Baboons are known to have co-existed with hominins at several fossil localities in East Africa and South Africa and they are sometimes even used as comparative models in human evolution," says Dr Christopher Gilbert (Hunter College, CUNY), lead author of the study published in the journal PLOS ONE.

The skull, found during excavations for A. sediba, confirms earlier suggestions that the fossil baboon species to which it belongs, Papio angusticeps, was in fact closely related to modern baboons, and quite possibly the earliest known members of the modern baboon species Papio hamadryas.

Earliest baboon found at Malapa
CT scans show UW 88-866 in oblique (left) and lateral (right) views 
[Credit: Wits University]
Modern baboons (genus Papio) are typically divided into a number of populations recognised as either species or subspecies spread all throughout sub-Saharan Africa and into the Arabian Peninsula. Despite their evolutionary success, modern baboon origins in the fossil record have not well-understood or agreed upon.

"According to molecular clock studies, baboons are estimated to have diverged from their closest relatives by ~1.8 to 2.2 million years ago; however, until now, most fossil specimens known within this time range have been either too fragmentary to be definitive or too primitive to be confirmed as members of the living species Papio hamadryas," says Gilbert.

"The specimen from Malapa and our current analyses help to confirm the suggestion of previous researchers that P. angusticeps may, in fact, be an early population of P. hamadryas."

Earliest baboon found at Malapa
A comparison of morphology in UW 88-886 (left), P. angusticepts males (CO 100, center),
 and P. izodi males (TP 89-11-1, right) [Credit: Wits University]
Analyses of the specimen at Malapa, and the group of fossil specimens traditionally placed in the fossil species P. angusticeps, suggest that P. angusticeps displays anatomy that is consistent with modern baboon populations.

"If you placed a number of P. angusticeps specimens into a modern osteology collection, I don't think you'd be able pick them out as any different from those of modern baboons from East and South Africa," says Gilbert.

Furthermore, the estimated age of the specimen from Malapa, ~2.026-2.36 Ma, is in almost perfect agreement with molecular clock analyses for the initial appearance of modern baboons. Thus, the specimen at Malapa may help to solve the evolutionary origins of these highly successful animals and confirm the estimates of molecular studies.

In addition, because monkeys are widely recognised as key time-sensitive elements in the fossil record, the fact that the Malapa P. angusticeps specimen is well-dated allows future studies to better estimate the age of fossil sites where the species is found. South African early hominin sites, in particular, may be able to achieve more accurate age estimates on the basis of these new findings.

Source: University of the Witwatersrand [August 19, 2015]