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Whales in the desert: Fossil bonanza poses mystery

More than 2 million years ago, scores of whales congregating off the Pacific Coast of South America mysteriously met their end. 

A paleontologist from the museum prepares a whale fossil at the site where many prehistoric whale fossils were discovered in the Atacama desert near Copiapo, Chile. The fossil is enclosed in a plaster jacket to protect it during transport back to the museum. More than 2 million years ago, scores of whales congregating off the Pacific Coast of South America mysteriously met their end. Maybe they became disoriented and beached themselves. Maybe they were trapped in a lagoon by a landslide or a ferocious storm. Maybe they died there over a period of a few millennia. But somehow, they ended up right next to one another, many just several yards (meters) apart, entombed over the ages as the shallow sea floor was driven upward by geologic forces and transformed into the driest place on the planet. Today, the whales have emerged again atop a desert hill more than half a mile (a kilometer) from the surf, where researchers have begun to unearth one of the world's best-preserved graveyards of prehistoric whales [Credit: AP Photo/Museo Paleontologico de Caldera]
Maybe they became disoriented and beached themselves. Maybe they were trapped in a lagoon by a landslide or a storm. Maybe they died there over a period of a few millennia. But somehow, they ended up right next to one another, many just meters (yards) apart, entombed as the shallow sea floor was driven upward by geological forces and transformed into the driest place on the planet. 

Today, they have emerged again atop a desert hill more than a kilometer (half a mile) from the surf, where researchers have begun to unearth one of the world's best-preserved graveyards of prehistoric whales. 

Chilean scientists together with researchers from the Smithsonian Institution are studying how these whales, many of the them the size of buses, wound up in the same corner of the Atacama Desert. 

"That's the top question," said Mario Suarez, director of the Paleontological Museum in the nearby town of Caldera, about 700 kilometers (440 miles) north of Santiago, the Chilean capital. 

Experts say other groups of prehistoric whales have been found together in Peru and Egypt, but the Chilean fossils stand out for their staggering number and beautifully preserved bones. More than 75 whales have been discovered so far — including more than 20 perfectly intact skeletons. 

They provide a snapshot of sea life at the time, and even include what might have been a family group: two adult whales with a juvenile between them. 

"I think they died more or less at the same time," said Nicholas Pyenson, curator of fossil marine mammals at the Smithsonian's National Museum of Natural History. Pyenson and Suarez are jointly leading the research. 

As for why such a great number perished in the same place, Pyenson said: "There are many ways that whales could die, and we're still testing all those different hypotheses." 

A prehistoric whale fossil lies in the Atacama desert near Copiapo, Chile. More than 2 million years ago, scores of whales congregating off the Pacific Coast of South America mysteriously met their end. Maybe they became disoriented and beached themselves. Maybe they were trapped in a lagoon by a landslide or a ferocious storm. Maybe they died there over a period of a few millennia. But somehow, they ended up right next to one another, many just several yards (meters) apart, entombed over the ages as the shallow sea floor was driven upward by geologic forces and transformed into the driest place on the planet. Today, the whales have emerged again atop a desert hill more than half a mile (a kilometer) from the surf, where researchers have begun to unearth one of the world's best-preserved graveyards of prehistoric whales [Credit: AP Photo/Museo Paleontologico de Caldera]
The scientists have yet to publish their findings about the fossil bed and the extensive remains, which began to emerge in June last year during a highway-widening project that is now on hold. 

So far, the fossils have been found in a roadside strip the length of two football fields — about 240 meters (260 yards) long and 20 meters (yards) wide. 

Pyenson said the spot was once a "lagoon-like environment" and that the whales probably died between 2 million and 7 million years ago. 

Most of the fossils are baleen whales that measured about 8 meters (25 feet) long, Pyenson said. 

The researchers also discovered a sperm whale skeleton and remains of a now-extinct dolphin that had two walrus-like tusks and previously had only turned up in Peru, he said. 

"We're very excited about that," Pyenson said in a telephone interview. "It is a very bizarre animal." 

Other unusual creatures found elsewhere in the fossil-rich Atacama Desert include an extinct aquatic sloth and a seabird with a 5-meter (17-foot) wingspan, bigger than a condor's. 

Erich Fitzgerald, a vertebrate paleontologist at Museum Victoria in Melbourne, Australia, emailed that the latest find is very significant. 

"The fossils are exceptionally well preserved and quite complete — a rare combination in paleontology and one that will likely shed light on many facets of the ... ecology and evolution of these extinct species," Fitzgerald said. 

He said it's possible "these fossilized remains may have accumulated over a relatively long period of time." 

Hans Thewissen, an expert on early whales, agreed. Another scenario, he said, is that the whales might have gathered in a lagoon and then an earthquake or storm could have closed off the outlet to the ocean. 

Researchers from the museum work at the site where prehistoric whale fossils were discovered in the Atacama desert near Copiapo, Chile. More than 2 million years ago, scores of whales congregating off the Pacific Coast of South America mysteriously met their end. Maybe they became disoriented and beached themselves. Maybe they were trapped in a lagoon by a landslide or a ferocious storm. Maybe they died there over a period of a few millennia. But somehow, they ended up right next to one another, many just several yards (meters) apart, entombed over the ages as the shallow sea floor was driven upward by geologic forces and transformed into the driest place on the planet. Today, the whales have emerged again atop a desert hill more than half a mile (a kilometer) from the surf, where researchers have begun to unearth one of the world's best-preserved graveyards of prehistoric whales [Credit: AP Photo/Museo Paleontologico de Caldera]
"Subsequently the lagoon dries up and the whales die," said Thewissen, a professor of anatomy at Northeast Ohio Medical University. He said the accumulation of so many complete skeletons is "a very unusual situation." 

"If this were a lagoon that dried up, you might see signs that ocean water evaporated," such as crystallized salt and gypsum in the rock, said Thewissen, who is not involved in the research. "On the other hand, if a giant wave or storm flung the whales onto shore, it would also have pushed the ocean floor around, and you would see scour marks in the rocks." 

Dating fossils is complicated, experts said, and it will be very hard to distinguish dates precisely enough to determine whether the whales all died simultaneously. 

The researchers have been told to finish their onsite studies so that fossils can be moved out of the path of the widened Pan American Highway, or Route 5, which is Chile's main north-south road. 

Many of the fossils have been transported in plaster coverings to the museum in Caldera. Researchers from Chile's National Museum of Natural History are also studying the fossils. 

Pyenson and his team are working quickly under tents to document the intact skeletons. With funding from the National Geographic Society, the Smithsonian team is using sophisticated photography and laser scanners to capture 3D images of the whales that can later be used to make life-sized models of them. 

Suarez, the paleontologist, had long known about the whale bones just north of Caldera — they could be seen jutting out of the sandstone ridge alongside the highway at the spot known as Cerro Ballena, or Whale Hill. When the road work began last year, the construction company asked him to monitor the job to avoid destroying fossils. 

"In the first week, about six or seven whales appeared," Suarez said. "We realized that it was a truly extraordinary site." 

The Chilean government has declared the site a protected zone, and Pyenson said he hopes a museum will be built to showcase the intact skeletons where they lie, in the same way fossils are displayed at Dinosaur National Monument in Utah and Colorado. 

Suarez thinks there are probably fossils of hundreds of whales waiting to be uncovered — enough to keep him working at this one spot for the rest of his life. 

"We have a unique opportunity to develop a great scientific project and make a great contribution to science," he said. 

Author: Eva Vergara | Source: Associated Press [November 19, 2011]

More on Prehistoric whales exposed in Chilean fossil bed

Scientists from Chile and the Smithsonian Institution have been working to protect a huge collection of whale fossils found in the Atacama desert. 

A prehistoric whale fossil lays in the Atacama desert near Copiapo, Chile. More than 2 million years ago, scores of whales congregating off the Pacific Coast of South America mysteriously met their end. Maybe they became disoriented and beached themselves. Maybe they were trapped in a lagoon by a landslide or a ferocious storm. Maybe they died there over a period of a few millennia. But somehow, they ended up right next to one another, many just several yards (meters) apart, entombed over the ages as the shallow sea floor was driven upward by geologic forces and transformed into the driest place on the planet. Today, the whales have emerged again atop a desert hill more than half a mile (a kilometer) from the surf, where researchers have begun to unearth one of the world's best-preserved graveyards of prehistoric whales [Credit: AP/Museo Paleontologico de Caldera]
Those involved in the project say about 80 whales have been preserved in sedimentary rock, and that many of the fossils are completely preserved, including a family group that appears to be a mother, father and baby whale. 

The area outside the town of Bahia Inglesa has long been called "Whale Hill" by locals, and was about to be paved over in a coastal highway expansion until paleontologist Mario Suarez persuaded his government to recover the bones first. 

The government now plans to build a new museum to house what appears to be an amazing collection.

Source: Associated Press [November 17, 2011]

New fossils of oldest American primate found

Johns Hopkins researchers have identified the first ankle and toe bone fossils from the earliest North American true primate, which they say suggests that our earliest forerunners may have dwelled or moved primarily in trees, like modern day lemurs and similar mammals. 

Magnified images reveal the fine tooth structure of Teilhardina magnoliana, a newly discovered species believed to be the oldest known primate in North America. The tiny, 55-million-year-old creature raises the controversial possibility that primates arrived in the Americas thousands of years before they reached Europe, according to the fossils' discoverer [Credit: PNAS/National Academy of Sciences (copyright 2008)]
Previous excavations have yielded pieces of the jaw and teeth of Teilhardina, primates that first appeared just after the beginning of the Eocene Epoch about 55.5 million years ago. In a report on their analysis of the fossils, published in the October issue of the American Journal of Physical Anthropology, the Johns Hopkins team said they identified the latest bones when they went prospecting for evidence of the earliest Eocene mammals in the badlands of the Bighorn Basin, Wyoming, an area rich in fossils. The primate fossils were discovered in strata—bands of stratified earth —dating to the beginning of the Eocene Epoch. 

“Living primates have nails on all or most of their toes and fingers, and they don’t occur in any other animal in exactly the same way,” says Ken Rose, Ph.D., professor of anatomy in the Center for Functional Anatomy and Evolution at the Johns Hopkins University School of Medicine.  “The fossil toes we found have morphology [shape and form] indicating the presence of nails rather than claws, making our discovery the oldest evidence of nails found in primitive primates so far. “ 

The researchers noticed the ankle bone fossils were elongated, which is a characteristic of present-day prosimian (non-monkey or ape) primates that do a lot of jumping. The neck of the talus — one of the ankle bones — is relatively longer in Teilhardina than it is in present day lemurs, which move about by leaping from tree to tree, says Rose. Unfortunately the talus specimen was damaged and a total measurement can’t be taken for exact comparisons. However, another ankle bone, the navicular, is also elongated and the researchers were able to quantify its measurements. 

Prior excavations in the same region revealed fossils of early relatives of horses, carnivores and rodents, as well as Teilhardina. The researchers screened through hundreds of pounds of sedimentary rock, reducing it to fine-grained concentrate, which was transported back to the lab for examination under the microscope. Some early primate teeth specimens are known to be many times smaller than a grain of rice and only appear as specks to the human eye. Under the microscope, the researchers discovered not only teeth and jawbones from Teilhardina as before, but also three fossilized toe bones and three ankle bones, which Rose says are the first found in North America. The bones were relatively free of attached sediment and appeared smooth and dark — due to the type of minerals accumulated during fossilization — against the gray, fine-grained sediment. Although toe bones are quite variable among species, Rose says, these particular primate specimens are highly distinctive to a trained anatomist.   

Close examination of the tips of the toe bones revealed a widened, expanded arrow-shaped region characteristic of flat finger or toe nails, rather than claws. One of the toe bones was larger than the other two proportionally, and the research team proposed that this one was from the big toe or thumb. 

Ancestors of Teilhardina originally had claws—hooked, narrow nail beds found on many land animals like cats or birds. One of the distinguishing factors of primates was that they evolved finger and toe nails, with wide nail beds, like those found in humans and apes. 

Analysis of the intact navicular ankle bone involved a calculation known as the navicular index that takes into account the proportion of the length to the width of the bone. Teilhardina has a relatively elongated navicular bone with an index of 165 units, similar to those of lemurs which are less than 162 units. But the Teilhardina navicular bone is significantly shorter than those found in bush babies (between 300 to 500 units) and tarsiers (between 400 to 600 units). The modern lemurs are known leapers, while the bush babies and tarsiers are exceptional leapers that can jump up to six and a half feet. The numbers suggest that Teilhardina moved actively through the trees and was capable of some leaping, says Rose. 

The leaping capabilities make Teilhardina most likely a tree-dweller too, says Rose, which is an incredibly different habitat than the badlands of Wyoming today, which are dry and rocky with little vegetation. These creatures lived during a period of global warming, when subtropical climates and vegetation stretched all the way to the Arctic Circle, explains Rose. 

Rose says Teilhardina was most likely similar in appearance to modern-day bush babies — small primates with big eyes, strong back legs and long tails. But he estimates that the Teilhardina were smaller, only weighing about three or four ounces — about the size of the smallest living primates, mouse lemurs. 

“Research on early primates gives us more evidence of our origins and our place in nature, with this particular study highlighting the oldest known member of our group from North America,” says Rose. 

Source: Johns Hopkins University [November 16, 2011]

Study determines diet of giant extinct hominoid

The extinct giant ape, Gigantopithecus blacki, is a species of large hominoids that dominated the Pleistocene of South China. Its massive mandible, large postcanine teeth and extremely thick enamel always spark people's curiosity about what a diet for this giant ape was. The precise diet and habitat of Gigantopithecus remains unknown so far. 

Gigantopithecus is an extinct genus of ape, known to lived in what is now China and Southeast Asia [Credit: Craig Newsom/Flickr]
Drs. Zhao LingXia, Zhang LiZhao and Wu XinZhi, Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, and Zhang Fusong from Institute of Geology and Geophysics, Chinese Academy of Sciences, analyze enamel stable carbon isotope values of G. blacki and the associated mammalian megafauna from two sites in South China, and find that this giant ape and other large mammals solely fed on C3 biomass, and lived in forest habitats, as reported in the journal of Chinese Science Bulletin, 2011(56), No.33:3590-3595. 

Zhao and her collaborators prepared and analyzed a total of 32 tooth samples for their study. Four teeth of G. blacki and 24 teeth of associated large mammals were from Longgudong Cave, Jianshi, Hubei province, and the other 4 teeth of G. blacki were taken from Juyuandong Cave of Liucheng, Guangxi province. 

The most enriched δ13C value was -14.1‰, and the most depleted was -18.8‰. Concerning an enrichment of about 14‰ for δ13C between food and enamel, the δ13C values of food sources would be from -32.8‰ to -28.1‰, which is within the δ13C range of C3 biomass and far too negative for that of C4 biomass. 

The mandibles of Gigantopithecus blacki from Juyuandong Cave of Liucheng, Guangxi Province, China [Credit: CAS]
It is clear that Gigantopithecus and the affiliated megafauna, such as browsers (Cervus sp. and Tapirus sinensis), grazers (Equus sp. and Leptobos sp.) and carnivores (Pachycrocuta licenti and Ursus sp.), all derived their carbon from solely C3 biomass sources. Zhao and her collaborators suggested that Gigantopithecus should live in closed forest habitat and not an open habitat, which is consistent with the associated faunal and floral analyses. 

"Analysis of stable carbon isotopes is a powerful method for exploring the diet and habitat use of extinct herbivorous mammals, and it has been used in paleoanthropology in analysis on early hominins fossils. This method is based on the fact that the carbon isotope composition is significantly different between plants that use different photosynthetic pathways, such as C3 plants (δ13C from -22‰ to -35‰) and C4 plants (δ13C from -8‰ to -16‰), and the stable carbon isotope composition of enamel is dependent on the diet components throughout the food chain”, said Dr. ZHAO LingXia, the lead author and research designer.

“The diet and habitat of Gigantopithecus blacki was significantly different from that of early hominins in Africa, such as Australopithecus and Paranthropus, which could consume both C3 and C4 resources and live in open habitats, although they all somehow show similar powerful mastication morphology. Dependence on forest habitat might be an important factor that made Gigantopithecus extinct when the climate and environment changed dramatically during the Pleistocene.” 

Source: Chinese Academy of Sciences [November 10, 2011]

Prehistoric whales exposed in Chilean fossil bed

Scientists from Chile and the Smithsonian Institution have been working to protect a huge collection of whale fossils found in the Atacama desert. 

The whales are ancient relatives of the whales of today [Credit: Reuters]
Those involved in the project say about 80 whales have been preserved in sedimentary rock, and that many of the fossils are completely preserved, including a family group that appears to be a mother, father and baby whale. 

The area outside the town of Bahia Inglesa has long been called "Whale Hill" by locals, and was about to be paved over in a coastal highway expansion until paleontologist Mario Suarez persuaded his government to recover the bones first. 

The government now plans to build a new museum to house what appears to be an amazing collection. 

Source: Associated Press [November 11, 2011]

Baby Mammoth innards revealed in X-Ray images

High-tech scans of two baby mammoths pulled from the Siberian permafrost reveal that one, originally identified as male, was in fact a female. 

Lyuba, a baby mammoth that suffocated in thick mud 42,000 years ago, gets the high-tech treatment with this computed tomography (CT) scan [Credit: International Mammoth Committee; CT scans by Ford Motor Company, USA, and Centre hospitalier Emile Roux, Le Puy-en-Velay, France]
In addition, the scans showed major skeletal differences between the two mammoths, perhaps representing evolutionary change in the mammoth lineage. 

"A lot of what we've done with mammoths in the past has been done based on dental anatomy, based on what we can see from teeth," study researcher Ethan Shirley of the University of Michigan Museum of Paleontology told LiveScience here in Las Vegas at the annual meeting of the Society of Vertebrate Paleontology. 

"Now, we have teeth … but we also have the whole rest of the baby mammoth: skin, fat, muscle, bone, everything in between," Shirley added. 

Even the contents of the animals' stomachs are preserved, Shirley said, a clue as to the diet of the Ice-Age beasts.

Two little mammoths 

The two mammoths, dubbed "Lyuba" and "Khroma" were found in 2007 and 2009, respectively. Lyuba is 42,000 years old, while Khroma was found in geologically older sediments. 

Lyuba is female and is believed to have suffocated in thick mud after getting stuck. Khroma was originally pegged as male. Khroma was originally thought to have died of an anthrax infection, prompting scientists to irradiate the mummy for fear of infection, but further research suggests the mammoth died of some other cause, said study researcher Daniel Fisher, also of the University of Michigan museum. 

The scans revealed not only bones, but muscle, organs and even stomach contents. Researchers hope to learn more about these animal's lives and adaptations to their frigid Siberian homes [Credit: International Mammoth Committee; CT scans by Ford Motor Company, USA, and Centre hospitalier Emile Roux, Le Puy-en-Velay, France]
The new computed tomography (CT) scans, however, allow an inside look at Khroma's reproductive tract, revealing he is a she. It turns out that the surface anatomy of baby mammoth genitals is not very different between males and females, Fisher said. 

"It's when you follow it inwards, which we were not able to do visually or tactilely, that the differences become manifest," Fisher told LiveScience, explaining that the tissue believed to be Khroma's penis was in fact a clitoris. 

The scans also exposed Lyuba and Khroma's skeletons for the first time. Although both are the same species, there were major differences in their bones, Shirley said. Lyuba's front legs are proportionally longer than Khroma's, and Khroma has bony ridges where her tusks would have erupted that Lyuba lacks, he said. 

"That was all really a surprise," Shirley said. 

Mammoths adapting 

It's too early to say what those anatomical differences mean, Fisher said. It could be that mammoth populations varied slightly over the vast geography of Siberia. Or perhaps evolution refined the mammoth line over the time between Khroma's death and Lyuba's life. 

A view of Khroma's skull, showing her teeth. The mammoth had unusual thick bony structures on her skull, which researchers compared to mustache-like structures [Credit: International Mammoth Committee; CT scans by Ford Motor Company, USA, and Centre hospitalier Emile Roux, Le Puy-en-Velay, France]
"In any case, it gives us a clearer picture of the sort of variation that exists within lineages of organisms like mammoths," Fisher said. "It is variation like this that natural selection operates on to produce evolutionary change." 

The scans are also turning up smaller revelations about mammoth life. For example, Fisher said, Lyuba has much larger kidneys than researchers would have expected. It's possible these massive organs allowed mammoths to process urine more effectively, excluding waste while holding on to water. 

"They're living in a cold, cold environment where essentially all available water is frozen, and having to pee a lot would get rid of a lot of body water that would have to be replaced by eating snow or ice, which is cold," Fisher said. "So it's much better just to recycle the urine. Nobody's ever had an idea that that aspect of physiology was part of mammoth adaptation to the cold." 

Author: Stephanie Pappas | Source: LiveScience [November 09, 2011]

Workers discover extinct pig during excavation

A ancient revelation surfaced in the morning light last week at the Pantex Plant. Construction workers were excavating the site of a new high explosive pressing facility and decided to call it a day. 

A worker brushes away dirt to uncover bones embedded at the construction site of a high explosive pressing facility at the Pantex Plant [Credit:: Amarillo]
When the crew came back in the morning, they saw fragments of a prehistoric pig staring back at them. 

Don Lankford, a project contractor, said the bones were embedded about 8 feet down in the walls of the excavation. 

“If we’d have taken another bucket of dirt out of the wall of that pit, we’d have never known they (the bones) were there,” Lankford said. 

“The next morning, the light was hitting the bones just right, and one of the workers spotted them.” 

He said the massive excavator bucket would certainly have destroyed the bone fragments if it had taken another chunk out of the wall. 

Dr. Gerald Schultz, a geology professor at West Texas A&M University, identified the bones as belonging to a Platygonus, an extinct prehistoric pig related to a modern javelina. 

Platygonus became extinct at least 11,000 years ago, but the bones could be as old as 23 million years old, Schultz said. 

Monica Graham, the Pantex Plant’s historian, teamed with a wildlife biologist and a geologist to excavate the bones, said B&W Pantex spokesman Bill Cunningham. 

Author: Bobby Cervantes | Source: Amarillo [November 04, 2011]

New cervid species found in middle miocene of Nei Mongol, China

Wang Li-Hua, a graduate student paleontologist from Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, identified a new species of cervid, Euprox altus, from the Middle Miocene fossil locality of Damiao (N42°00’31.4’’, E111°34’50’’), Siziwangqi, Nei Mongol, as reported in the latest issue of Vertebrata PalAsiatic 2011 (4). Its tooth morphology and comparison with other species suggest that during the latest Middle Miocene the Damiao area was a warm and humid environment. 

Antlers of Euprox altus sp. nov. from the Middle Miocene fossil locality of Damiao, Siziwangqi, Nei Mongol [Credit: WANG Li-Hua]
Euprox was named by Stehlin in 1928 when he studied fossil cervids from Steinheim in Germany. This new speccies is a small Euprox species, having two-tined antlers with prominent burrs. The fork of the antler starts high above the true burr. The antler surface is ornamented unevenly with longitudinal grooves. The cheek teeth are brachyodont. The fold on the postprotocrista of P4 is developed. The precingulum, entocingulum and postcingulum are present and linked together on the upper molars. The palaeomeryx fold is present but weak on the lower molars. 

Tooth morphology and comparison with other species suggest that during the latest Middle Miocene the Damiao area was a warm and humid environment. The finding of Euprox altus indicats that during the latest Middle Miocene the monsoon, which produced a dry and strongly seasonal climate, had not yet formed or had not influenced the Damiao area at least. 

Cheek teeth of Euprox altus sp. nov. (in occlusal view) from the Middle Miocene fossil locality of Damiao, Siziwangqi, Nei Mongol [Credit: WANG Li-Hua]
“The American Museum of Natural History’s Central Asiatic Expeditions of the early 20th century, led by R. C. Andrews, discovered rich fossil mammals in Nei Mongol, including the Tunggur fauna, representative fauna of the Chinese Middle Miocene Tunggurian age. They found some Euprox antler material. During the field seasons from 2006 to 2009, we found a total of 34 mammalian fossil localities near Damiao village”, said Dr. ZHANG Zhao-Qun, co-author and the research designer, “Richest among these was a Middle Miocene locality, DM01, produced many antlers and teeth. These antlers differ from those of other known Euprox species, representing a new form of Euprox.” 

Source: Institute of Vertebrae Paleontology and Paleoanthropology [November 03, 2011]

First known mammalian skull from Late Cretaceous discovered in South America

Paleontologist Guillermo Rougier, Ph.D., professor of anatomical sciences and neurobiology at the University of Louisville, and his team have reported their discovery of two skulls from the first known mammal of the early Late Cretaceous period of South America. The fossils break a roughly 60 million-year gap in the currently known mammalian record of the continent and provide new clues on the early evolution of mammals. 

Paleontologist Guillermo Rougier, Ph.D., professor of anatomical sciences and neurobiology at the University of Louisville, and his team have reported their discovery of two skulls from the first known mammal of the early Late Cretaceous period of South America. The new critter, named Cronopio dentiacutus by the paleontologists, is a dryolestoid, an extinct group distantly related to today's marsupials and placentals [Credit: University of Louisville]
Details of their find will be published Nov. 3 in Nature. Co-authors are Sebastian Apesteguia of Argentina's Universidad Maimonides and doctoral student Leandro C. Gaetano. 

The new critter, named "Cronopio dentiacutus" by the paleontologists, is a dryolestoid, an extinct group distantly related to today's marsupials and placentals. 

"Dr. Rougier and his colleagues truly have made an outstanding discovery of the first really informative skull remains belonging to a key mammalian group," said Rich Cifelli, Ph.D., Presidential Professor of Zoology at the University of Oklahoma and a researcher who, like Rougier, has spent his career discovering and identifying mammal remains. 

"The discovery of 'Cronopio' is especially notable because it provides for the first time the whole cranial morphology (form and structure) of a dryolestoid," writes Christian de Muizon, director of the Museum National d'Histoire Naturelle in Paris in a "News and Views" article in the same issue of Nature. 

"Cronopio" was shrew-sized, about 4-6 inches in length, and was an insectivore with a diet of the insects, grubs and other bugs of the time. It lived when giant dinosaurs roamed the earth – more than 100 million years ago – and made its home in a vegetated river plain. 

The skulls reveal that "Cronopio" had extremely long canine teeth, a narrow muzzle and a short, rounded skull. "These first fossil remains of dryolestoids … give us a complete picture of the skull for the group," John R. Wible, Ph.D., curator of mammals at the Carnegie Museum of Natural History, said. "The new dryolestoid, 'Cronopio,' is without a doubt one of the most unusual mammals that I have seen, extinct or living, with its elongate, compressed snout and oversized canine teeth. What it did with that unusual morphology perhaps may come to light with additional discoveries… ." 

Rougier describes "Cronopio" in a manner that fans of a popular animated movie series can easily understand. "It looks somewhat like Scrat, the saber-toothed squirrel from 'Ice Age,' " he said. 

Artist's depiction of Cronopio dentiacutus [Credit: Illustration by Jorge Gonzalez]
Cartoon references aside, Rougier, Apesteguia and Gaetano realized almost immediately the importance of the discovery when they located the fossils in 2006 because mammalian skulls are very fragile, small and rarely found. 

The skulls were embedded in rock in a remote area of northern Patagonia, about 100 miles from the city of Allen in the Argentinian province of Rio Negro. Removal of the specimens from the rocks encasing them took several years of patient lab work, which eventually confirmed that the skulls were the first of their kind found. 

"We knew it was important, based on the age of the rocks and because we found skulls," Rougier said. "Usually we find teeth or bone fragments of this age. Most of what we know of early mammals has been determined through teeth because enamel is the hardest substance in our bodies and survives well the passage of time; it is usually what we have left to study. 

"The skull, however, provides us with features of the biology of the animal, making it possible for us to determine this is the first of its kind dating to the early Late Cretaceous period in South America," he said. "This time period in South America was somewhat of a blank slate to us. Now we have a mammal as a starting point for further study of the lineage of all mammals, humans included." 

The prospects for further investigation are exciting. "In recent years it has become clear that southern continents hosted their own endemic groups of mammals during the Age of Dinosaurs. But until now, all we have had are isolated teeth and a few jaw fragments … which don't really help much in deciphering broader relationships," Cifelli said. "For this reason, the new fossils provide a sort of Rosetta Stone for understanding the genealogy of early South American mammals, and how they fit in with those known from northern landmasses. Now the burden is on the rest of us to find similarly well preserved fossils from elsewhere, so that the broader significance of Rougier's finds can be fully placed in context." 

In addition to conducting research, Rougier teaches anatomy to UofL School of Medicine students and said the discovery extends the knowledge of our lineage. 

"This tells us a little more of the full history of our lineage, a very resilient lineage," he said. " 'Cronopio' lived in a completely different world than ours, dominated by dinosaurs and with a different geography; these new fossils give us information on how transient and ever-evolving our world is." 

Rougier, a native Argentinian, earned his doctorate at Universidad de Buenos Aires and joined the UofL faculty in 1998 following work at the American Museum of Natural History in New York and Museo Argentino de Ciencias Naturales in Buenos Aires. Funding to support his work came from the National Science Foundation, the Antorchas Foundation and the American Museum of Natural History. 

Source: University of Louisville [November 02, 2011]
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