‏إظهار الرسائل ذات التسميات Palaeontology. إظهار كافة الرسائل
‏إظهار الرسائل ذات التسميات Palaeontology. 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]

Chengjiang biota: Bringing fossils into focus

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Researchers from Ludwig-Maximilians-Universitaet (LMU) in Munich have used computed microtomography (micro-CT) to identify to the species level an exceptionally wellpreserved fossil arthropod from the famous Chengjiang Lagerstatte in China.

Chengjiang biota: Bringing fossils into focus
Chengjiang biota: Bringing fossils into focus
The figure above shows a light micrograph of the fossil, while the microtomographic 
image below reveals fine details of structures hitherto concealed
 within the slab [Credit: LMU]
Modern imaging methods make it possible to perform detailed, non-invasive studies on the internal structures of irreplaceable fossil specimens. Researchers led by Dr. Yu Liu of LMU's Department of Biology II now demonstrate the power of this approach by using computed microtomography (micro-CT) to investigate a specimen recovered from the famous fossil beds of Chengjiang in southwestern China. The results of the study, which appear in the online Open Access journal Scientific Reports, demonstrate the ability of micro-CT to reveal anatomical details preserved inside fossil slabs.

The fossil Lagerstatte Chengjiang in China is a UNESCO World Heritage Site, which harbors a rich fossil assemblage dating from 520 million years ago. The rocks preserved here are among the oldest that document the so-called Cambrian explosion -- the relatively abrupt appearance of a highly diverse, species-rich multicellular fauna in the fossil record. And many of the specimens discovered in these beds are extremely well preserved. In particular, their soft parts have left clear impressions in the sediments that accumulated here.

Imprints of organisms with mineralized skeletons often extend for several millimeters below the surface of the slabs of sediment in which they are embedded. In order to study their structure, such specimens must first be removed from the surrounding rock matrix. "Because this inevitably involves the destruction of at least some of their fine structure, most of the published work on Chengjiang's fossils is based on careful examination of surface structures with the help of optical and fluorescence microscopy," as Yu Liu explains.

The LMU team now reports the first in-depth microtomographic study of a three-dimensionally preserved fossil from Chengjiang. The term micro-CT refers to a method in which multiple X-radiographs of a specimen are taken from different angles, and then assembled with the help of mathematical procedures to yield a three-dimensional model of the original. It is now a well-established analytical tool in palaeontology, but has not yet been widely applied to fossils from Chengjiang.

Yu Liu's study uncovers internal structures in a specimen recovered from the site, which allow the fossil to be identified as Xandarella spectaculum, a rare species of arthropod that shows similarities to the iconic (but now extinct) trilobites, and is known only from Chengjiang. The three-dimensional reconstruction reveals informative details of the fossil's morphology, which had hitherto remained hidden in the rock matrix. On the basis of the new results, Yu Liu confidently asserts that "microtomography is a powerful technique for the analysis of the three-dimensionally preserved specimens recovered at Chengjiang."

Source: Ludwig-Maximilians-Universitaet Muenchen [August 18, 2015]

Fossil study reveals dogs evolved with climate change

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Old dogs can teach humans new things about evolution. In Nature Communications a new study of North American dog fossils as old as 40 million years suggests that the evolutionary path of whole groups of predators can be a direct consequence of climate change.

Fossil study reveals dogs evolved with climate change
Two early dogs, Hesperocyon, left and the later Sunkahetanka, were both 
ambush-style predators. As climate changes transformed their habitat, 
dogs evolved pursuit hunting styles and forelimb anatomy to match 
[Credit: Mauricio Anton]
"It's reinforcing the idea that predators may be as directly sensitive to climate and habitat as herbivores," said Christine Janis, professor of ecology and evolutionary biology at Brown University, who worked with lead author Borja Figueirido, a former Brown Fulbright postdoctoral researcher who is now a professor at the Universidad de Malaga in Spain. "Although this seems logical, it hadn't been demonstrated before."

The climate in North America's heartland back around 40 million years ago was warm and wooded. Dogs are native to North America. The species of the time, fossils show, were small animals that would have looked more like mongooses than any dogs alive today and were well-adapted to that habitat. Their forelimbs were not specialized for running, retaining the flexibility to grapple with whatever meal unwittingly walked by.

But beginning just a few million years later, the global climate began cooling considerably and in North America the Rocky Mountains had reached a threshold of growth that made the continental interior much drier. The forests slowly gave way to open grasslands.

Pups of the plains

Did this transition affect the evolution of carnivores? To find out, Figueirido and the research team, including Jack Tseng of the American Museum of Natural History in New York, examined the elbows and teeth of 32 species of dogs spanning the period from ca. 40 million years ago to 2 million years ago. They saw clear patterns in those bones at the museum: At the same time that climate change was opening up the vegetation, dogs were evolving from ambushers to pursuit-pounce predators like modern coyotes or foxes -- and ultimately to those dogged, follow-a-caribou-for-a-whole-day pursuers like wolves in the high latitudes.

"The elbow is a really good proxy for what carnivores are doing with their forelimbs, which tells their entire locomotion repertoire," Janis said.

Fossil study reveals dogs evolved with climate change
This is a skeleton of a 30-million-year-old fossil dog, Archaeocyon, in the 
American Museum of Natural History canid collection. The earliest dogs, 
going back 40 million years in North America, were animals no larger 
than a Chihuahua or a common house cat today 
[Credit: © AMNH/D. Finnin]
The telltale change in those elbows has to do with the structure of the base where the humerus articulates with the forearm, changing from one where the front paws could swivel (palms can be inward or down) for grabbing and wrestling prey to one with an always downward-facing structure specialized for endurance running. Modern cats still rely on ambush rather than the chase (cheetahs are the exception) and have the forelimbs to match, Janis said, but canines signed up for lengthier pursuits.

In addition, the dogs' teeth trended toward greater durability, Figueirido's team found, consistent perhaps with the need to chow down on prey that had been rolled around in the grit of the savannah, rather than a damp, leafy forest floor.

Not an 'arms race' of limbs

The study, with some of Janis' prior research, suggests that predators do not merely evolve as an "arms race" response to their prey. They don't develop forelimbs for speedy running just because the deer and the antelope run faster. While the herbivores of this time were evolving longer legs, the predator evolution evident in this study tracked in time directly with the climate-related changes to habitat rather than to the anatomy of their prey species.

After all, it wasn't advantageous to operate as a pursuit-and-pounce predator until there was room to run.

"There's no point in doing a dash and a pounce in a forest," Janis quipped. "They'll smack into a tree."

If predators evolved with climate change over the last 40 million years, the authors argue, then they likely will have to continue in response to the human-created climate change underway now. The new results could help predict the effects we are setting in motion.

"Now we're looking into the future at anthropogenic changes," Janis said.

Source: Brown University [August 18, 2015]

Discovery of a salamander in amber sheds light on evolution of Caribbean islands

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More than 20 million years ago, a short struggle took place in what is now the Dominican Republic, resulting in one animal getting its leg bitten off by a predator just before it escaped. But in the confusion, it fell into a gooey resin deposit, to be fossilized and entombed forever in amber.

Discovery of a salamander in amber sheds light on evolution of Caribbean islands
This is the first-ever discovery of a salamander preserved in amber, from an 
unlikely spot - the Dominican Republic, where all salamanders are now extinct 
[Credit: George Poinar, Jr./Oregon State University]
The fossil record of that event has revealed something not known before -- that salamanders once lived on an island in the Caribbean Sea. Today, they are nowhere to be found in the entire Caribbean area.

The never-before-seen and now extinct species of salamander, named Palaeoplethodon hispaniolae by the authors of the paper, adds more clues to the ecological and geological history of the islands of the Caribbean. Findings about its brief life and traumatic end -- it was just a baby -- have been published in the journal Palaeodiversity, by researchers from Oregon State University and the University of California at Berkeley.

"I was shocked when I first saw it in amber," said George Poinar, Jr., a professor emeritus in the OSU College of Science, and a world expert in the study of insects, plants and other life forms preserved in amber, all of which allow researchers to reconstruct the ecology of ancient ecosystems.

"There are very few salamander fossils of any type, and no one has ever found a salamander preserved in amber," Poinar said. "And finding it in Dominican amber was especially unexpected, because today no salamanders, even living ones, have ever been found in that region."

This fossil salamander belonged to the family Plethodontidae, a widespread family that today is still very common in North America, particularly the Appalachian Mountains. But it had back and front legs lacking distinct toes, just almost complete webbing with little bumps on them. As such, it might not have been as prolific a climber as some modern species, Poinar said, and it probably lived in small trees or tropical flowering plants.

Discovery of a salamander in amber sheds light on evolution of Caribbean islands
Artist's image shows what the only salamander ever preserved in amber 
might have looked like in real life [Credit: George Poinar, Jr./
Oregon State University]
This specimen, Poinar said, came from an amber mine in the northern mountain range of the Dominican Republic, between Puerto Plata and Santiago.

"The discovery of this fossil shows there once were salamanders in the Caribbean, but it's still a mystery why they all went extinct," Poinar said. "They may have been killed by some climatic event, or were vulnerable to some type of predator."

Also a mystery, he said, is how salamanders got there to begin with. The physical evidence suggests the fossil represents an early lineage of phethodon salamanders that evolved in tropical America.

This fossil is 20-30 million years old, and its lineage may go back 40-60 million years ago when the Proto-Greater Antilles, that now include islands such as Cuba, Jamaica, Puerto Rico and Hispaniola, were still joined to North and South America. Salamanders may have simply stayed on the islands as they began their tectonic drift across the Caribbean Sea. They also may have crossed a land bridge during periods of low sea level, or it's possible a few specimens could have floated in on debris, riding a log across the ocean.

Such findings, Poinar said, help both ecologists and geologists to reconstruct ancient events of Earth's history.

"There have been fossils of rhinoceroses found in Jamaica, jaguars in the Dominican Republic, and the tree that produced the Dominican amber fossils is most closely related to one that's native to East Africa," Poinar said. "All of these findings help us reconstruct biological and geological aspects of ancient ecosystems."

Source: Oregon State University [August 17, 2015]