Showing posts with label palaeontology. Show all posts
Showing posts with label palaeontology. Show all posts

Sunday, January 22, 2012

Sth America's oldest predator fossil found

Palaeontologists say they have found the fossil of a carnivorous predator that lived more than 260 million years ago and is the oldest unearthed in South America.
"This predator lived nearly 40 million years before the dinosaur and is a precursor to mammifers," said Juan Carlos Cisneros, of the Federal University of Piaui.
The fossil, a complete 35-centimetre skull found in 2008 in the southern Brazilian state of Rio Grande do Sul, was restored and analysed by South African and Turkish experts who validated the discovery and published it inProceedings of the National Academy of Sciences.
"We are talking about the oldest fossil ever found in South America of a species of the last period of the Palaeozoic era - before the separation of the continents, with characteristics of species only known in South Africa and Russia," says Cisneros.
The remains found are those of a species of dinocephalus, a remote relative of mammifers.
The discovery made it possible to reconstruct the body of the predator believed to have been three meters long and to have weighed 300 kilograms.
It had four big hook-shaped canine teeth (two upper and two lowers) to catch its prey as well as other saw-shaped teeth, says Cisneros.
The species may have walked from South Africa to South America but the long distance to Russia, where similar species have also been found, raises questions as to the shape of the single continent which then made up the world to allow the movement these animals, he added.
The dinocephalus became extinct 250 million years ago along with 90 per cent of species on the planet as a result of volcanic explosions.

Wednesday, November 16, 2011

Dinosaur that acted like a Vegas showgirl!

Palaeontologists have claimed that a species of bird-like dinosaur acted like Las Vegas showgirls by wiggling tail feathers to attract mates.

A new research, by the University of Alberta, has found that Oviraptor dinosaurs had a fan of feathers, similar to the fan of a flamenco dancer, attached to a flexible tail, the 'Daily Mail' reported.

They may have flashed these feathers to attract attention in a similar way to the modern-day peacock -- or a Las Vegas showgirl, say the palaeontologists who found that Oviraptors, which lived 75 million years ago, had tails with a peculiarly dense arrangement of bones.

"The tail of an Oviraptor by comparison to the tail of most other dinosaurs is pretty darn short," Scott Persons, who led the research team, said.

He added: "But it's not short in that it's missing a whole bunch of vertebrae, it's short in that the individual vertebra within the tail themselves are sort of squashed together. So they're densely packed.

"This dense arrangement of bones would have made the tails flexible."

Read more ...

Thursday, August 11, 2011

Giant fossil shows huge birds lived among dinosaurs

Giant fossil shows huge birds lived among dinosaurs

Lower jaw of S. nessovi (Naish/Dyke/Cau/Escuillié/Godefroit) The fossilised jawbone is nearly twice the length of that of an ostrich, the largest bird found on Earth today


An enormous jawbone found in Kazakhstan is further evidence that giant birds roamed - or flew above - the Earth at the same time as the dinosaurs.

Writing in Biology Letters, researchers say the new species, Samrukia nessovi, had a skull some 30cm long.

If flightless, the bird would have been 2-3m tall; if it flew, it may have had a wingspan of 4m.

The find is only the second bird of such a size in the Cretaceous geologic period, and the first in Asia.

The only other evidence of a bird of such a size during the period was a fossilised spinal bone found in France and reported in a 1995 paper in Nature.

Sharing space

An overwhelming majority of the birds known from the period would have been about crow-sized, but Dr Darren Naish of the University of Portsmouth said that a second find of an evidently different species suggests that large birds were common at the time.

"This fossil is only known from its lower jaw, so unfortunately we can't say anything at all with certainty about the shape and form of the whole animal.

"If it was flightless and sort of ostrich-shaped, it would have been maybe 2-3m tall and somewhere over 50kg," he explained to BBC News. "If it was a flying animal, then maybe it was shaped like a big albatross or a condor."

Dr Naish also wondered about the dinosaurs with which the enormous birds shared their space.

"I think the really interesting thing is that they're living alongside the big dinosaurs we know were around at the time: big tyrannosaurs, long-necked sauropods, duck-billed dinosaurs," he said. "That opens up loads of questions about ecological interactions that we can only speculate about.

"People have said there weren't big birds when there were big pterosaurs, but now we know there were."

http://www.bbc.co.uk/news/science-environment-14466814



Thursday, May 26, 2011

Bones of elephant ancestors discovered in Oman

Fossil discovered in Dhofar region in south of Oman.
Omani Barytherium was found in Dhofar by a joint team from the Ministry of Heritage and Culture, Stony Brook University, US, and Sultan Qaboos University

Staff Report
Published: 17:13 May 21, 2011

Muscat: A team of geologists from the Sultan Qaboos University (SQU) have confirmed discovery of remains of the oldest ancestors of elephant (Barhtyerium), according to a press release from the university Saturday.

The Omani Barytherium, the first one to be found in Oman, was discovered in Aidum area in Dhofar by a joint team of archaeologists from the Ministry of Heritage and Culture and Stony Brook University, US, and geologists from SQU.

The archaeological team was led by Dr Erick Seifert from the Stony Brook University.

The SQU team of geologists, including Prof Dr Sobhi Nasir and Dr Abdulrahman Al Harthy joined the Heritage Ministry consultant at the site in south of the country and assisted in establishing the discovery.

The joint team found a huge area of elephant bones, known as elephant grabs, and collected large quantities of bones to be identified in a laboratory at the SQU.

The group of researchers from SQU, SBU and the Ministry of Heritage are still working on these bones and are expecting new discoveries in the area.

The team has said that this finding is extremely important as it gives the first evidence of the oldest ancestor of elephant found in the world.

The scientists named the new finding as Barytherium Omansi.

Barytherium (meaning heavy beast) is a genus of an extinct family (Barytheriidae) of primitive proboscidean that lived during the late Eocene and early Oligocene in North Africa. The Barytheriidae were the first large size proboscideans to appear in the fossil records and were characterised by a strong sexual dimorphism.

The only known species within this family is Barytherium grave, found at the beginning of the 20th century in the Fayum, Egypt.

More complete specimens have been found since then, at Dor el Talha Libya. In some respects, these animals would have looked similar to a modern Asian Elephant, but with a more slender build.

Eight tusks

The most visible difference, however, would have been the tusks Barytherium had eight very short tusks, four each in the upper and lower jaws, which resembled those of a modern hippopotamus more than those of an elephant. The upper pairs were vertical, while the lower pairs projected forwards from the mouth horizontally. Together, these would have created a shearing action for cropping plants.

Palaeontologists know a lot more about Barytherium's tusks, which tend to preserve better in the fossil record than soft tissue, than they do about its trunk.

This prehistoric elephant had eight short, stubby tusks, four in its upper jaw and four in its lower jaw, but to date no one has unearthed any evidence for its proboscis (which may or may not have looked like that of a modern elephant).

http://gulfnews.com/news/gulf/oman/bones-of-elephant-ancestors-discovered-in-oman-1.810855

Thursday, February 10, 2011

On their own 2 feet: 3.2 million-year-old fossil foot bone supports humanlike bipedalism in Lucy's species

February 10, 2011

A fossilized foot bone recovered from Hadar, Ethiopia, shows that by 3.2 million years ago human ancestors walked bipedally with a modern human-like foot, a report that appears Feb. 11 in the journal Science, concludes. The fossil, a fourth metatarsal, or midfoot bone, indicates that a permanently arched foot was present in the species Australopithecus afarensis, according to the report authors, Carol Ward of the University of Missouri, together with William Kimbel and Donald Johanson, of Arizona State University's Institute of Human Origins.

The research helps resolve a long-standing debate between paleoanthropologists who think A. afarensis walked essentially as modern humans do and those who think this species practiced a form of locomotion intermediate between the quadrupedal tree-climbing of chimpanzees and human terrestrial . The question of whether A. afarensis had fully developed pedal, or foot, arches has been part of this debate. The fourth metatarsal described in the Science report provides strong evidence for the arches and, the authors argue, support a modern-human style of locomotion for this species. The specimen was recovered from the Hadar locality 333, popularly known as the "First Family Site," the richest source of A. afarensis fossils in eastern Africa, with more than 250 specimens, representing at least 17 individuals, so far known.

"This fourth metatarsal is the only one known of A. afarensis and is a key piece of evidence for the early evolution of the uniquely human way of walking," says Kimbel. "The ongoing work at Hadar is producing rare parts of the skeleton that are absolutely critical for understanding how our species evolved."

Humans, uniquely among primates, have two arches in their feet, longitudinal and transverse, which are composed of the midfoot bones and supported by muscles in the sole of the foot. During bipedal locomotion, these arches perform two critical functions: leverage when the foot pushes off the ground and shock absorption when the sole of the foot meets the ground at the completion of the stride. Ape feet lack permanent arches, are more flexible than human feet and have a highly mobile large toe, important attributes for climbing and grasping in the trees. None of these apelike features are present in the foot of A. afarensis.

"Understanding that the foot arches appeared very early in our evolution shows that the unique structure of our feet is fundamental to human locomotion," observes Ward. "If we can understand what we were designed to do and how natural selection shaped the human skeleton, we can gain insight into how our skeletons work today. Arches in our feet were just as important for our ancestors as they are for us."

This species, whose best-known specimen is "Lucy," lived in eastern Africa 3.0𔃁.8 million years ago. Prior to A. afarensis, the species A. anamensis was present in Kenya and Ethiopia from 4.2 to 4.0 million years ago, but its skeleton is not well known. At 4.4 million years ago, Ethiopia's Ardipithecus ramidus is the earliest human ancestor well represented by skeletal remains. Although Ardipithecus appears to have been a part-time terrestrial biped, its foot retains many features of tree-dwelling primates, including a divergent, mobile first toe. The foot of A. afarensis, as with other parts of its skeleton, is much more like that of living humans, implying that by the time of Lucy, our ancestors no longer depended on the trees for refuge or resources.

The Hadar project is the longest running paleoanthropology field program in the Ethiopian rift valley, now spanning more than 38 years. Since 1973, the fieldwork at Hadar has produced more than 370 fossil specimens of Australopithecus afarensis between 3.4 and 3.0 million years ago – one of the largest collections of a single fossil hominin species in Africa – as well as one of the earliest known fossils of Homo and abundant Oldowan stone tools (ca. 2.3 million).

Through ASU's Institute of Human Origins, the Hadar project plays an important role in training Ethiopian scholars by offering graduate degree and postdoctoral opportunities in the U.S. Promotion of local awareness of the global scientific importance and Ethiopian cultural heritage value of the Hadar site is also a project priority. Additionally, the fundraising phase of a planned "Hadar Interpretive Center" at Eloaha town, 30 kilometers from the site, was successfully completed in January 2011.

Provided by Arizona State University (news : web)

http://www.physorg.com/news/2011-02-feet-million-year-old-fossil-foot-bone.html

Tuesday, February 8, 2011

Dinosaur species named for Boise State postdoctoral student and her twin sister

Idaho Statesman
Published: 02/08/11

Boisean Celina Suarez and her twin sister, Marina, had always hoped they'd find dinosaur bones in the backyard of their childhood home in San Antonio, Texas.

The pair never found any dinosaur bones behind their home. But they have found dinosaur bones -- more than once. It was their find in Utah in 2004 that led to the naming of a new species of dinosaur after the sisters, both now 29-year-old geochemists doing post-doctoral research.

"We're very honored," said Celina Suarez, who is doing research at Boise State University. Her sister, Marina, is a researcher at Johns Hopkins University. The sisters are identical, mirror-image twins ("She's a leftie, and I'm a rightie," Celina said.)

At the time of their big find, they were both Temple University master's students working on a summer excavation project near Green River, Utah, with the Utah Geological Survey. While investigating the sediment near the site, they came across a gulley with rocks that had bones sticking out.

"There were toe bones and limb bones. We collected a few that were in danger of getting washed away. The next morning, we scoured the hillside for more limb bones," Celina Suarez said.

Later, after more excavation and study of the bones from the site, researchers determined that the bones came from at least three different dinosaur species, including skull bones from a raptor-like species considered to be the oldest known member of the family Troodontidae and the only one from the Early Cretaceous period ever found in North America (98 to 145 million years ago).

"When we first found the Utah site we knew it was significant, but we had no idea we would become part of history," Celina Suarez said.

That newly discovered dinosaur needed a name, so the team of researchers who published the first paper describing it named it after the Suarez sisters: Geminiraptor suarezarum (Gemini is Latin for twins). It is one of about 700 named species of dinosaur.

Celina Suarez said she found out the dinosaur species would be named for her and her sister in November, after reading a draft paper by Jim Kirkland, John Bird, Phil Senter and Jeff Bartlett (later published in Public Library Science Journal).

Suarez said Geminiraptor suarezarum was close to the size of an ostrich. She estimates it at about 125 million years old.

"It wasn't super-big," she said. "Unfortunately, not a whole lot of the animal had been found - just the skull."

Celina Suarez now specializes in geochemical paleontology. She analyzes the chemical makeup of ancient bones as it relates to the original biology of an animal and the geology of the environment that became its tomb.

Her work is being funded by a two-year, $170,000 National Science Foundation fellowship. Using bone specimens from Hagerman and the Idaho Museum of Natural History, she will examine the chemical and physical processes of fossilization.

Suarez is preparing for a summer trip to China, where she will examine dig sites with scientists from the Chinese Geological Academy of Sciences and the University of Pennsylvania.

http://www.idahostatesman.com/2011/02/07/1518461/dinosaur-species-named-for-boise.html

Wednesday, January 26, 2011

Two-clawed and parrot-sized: new T.rex cousin unveiled

25 January 2011
By Neil Bowdler
Science reporter, BBC News

A tiny distant cousin of Tyrannosaurus rex has been discovered in China with only a single claw on each forelimb.

Linhenykus monodactylus weighed no more than a large parrot and was found in sediments between 84 and 75 million years old.

The dinosaur belongs to a sub-branch of the theropods, the dinosaur group which includes T.rex and Velociraptor, and which gave rise to modern birds.

Details are published in Proceedings of the National Academy of Sciences.

The new species was named after the Chinese city of Linhe, Inner Mongolia, near where its fossilised remains was uncovered in what is called the Upper Cretaceous Wulansuhai Formation.

The international team found a partial skeleton, including bones of the vertebrae, forelimb, hind limbs, and a partial pelvis

It is part of the Alvarezsauroidea family of theropods, a group of small, long-legged dinosaurs, known for their strange and tiny arms.

Michael Pittman of University College London, who was part of the team, says the animal would hardly have been intimidating.

"You'd see a very small animal, probably below your hip height, with a very small skull. It's not very threatening because its teeth are very small compared to other carnivorous dinosaurs and there's some evidence it may have been an insectivore," he told the BBC.

What is striking is the animal's unusual claws.

"Non-avian theropods start with five fingers but evolved to have only three fingers in later forms," he says. "Tyrannosaurs were unusual in having just two fingers but the one-fingered Linhenykus shows how extensive and complex theropod hand modifications really were."
 
Disappearing fingers

The suggestion is that this mono-digit theropod may represent the end of one evolutionary pathway, in which unused digits disappear as part of a process of natural selection.

"Vestigial structures, like legs in whales and snakes, may appear and disappear seemingly randomly in the course of evolution," says Jonah Choiniere of the American Museum of Natural History, who also worked on the find.

"Linhenykus highlights complexity in evolution of these vestigial fingers."

Dr Paul Barrett of London's Natural History Museum said the discovery was a "nice specimen" to add to a sub-group already known for its weirdness.

"Alvarezsauroids are already known to be an unusual group of theropods with very bizarre hands used primarily for digging, and this new find confirms there was some variation in how weird these hands were."

http://www.bbc.co.uk/news/science-environment-12262349
(Submitted by Dawn Holloway)

Two-clawed and parrot-sized: new T.rex cousin unveiled

25 January 2011
By Neil Bowdler
Science reporter, BBC News

A tiny distant cousin of Tyrannosaurus rex has been discovered in China with only a single claw on each forelimb.

Linhenykus monodactylus weighed no more than a large parrot and was found in sediments between 84 and 75 million years old.

The dinosaur belongs to a sub-branch of the theropods, the dinosaur group which includes T.rex and Velociraptor, and which gave rise to modern birds.

Details are published in Proceedings of the National Academy of Sciences.

The new species was named after the Chinese city of Linhe, Inner Mongolia, near where its fossilised remains was uncovered in what is called the Upper Cretaceous Wulansuhai Formation.

The international team found a partial skeleton, including bones of the vertebrae, forelimb, hind limbs, and a partial pelvis

It is part of the Alvarezsauroidea family of theropods, a group of small, long-legged dinosaurs, known for their strange and tiny arms.

Michael Pittman of University College London, who was part of the team, says the animal would hardly have been intimidating.

"You'd see a very small animal, probably below your hip height, with a very small skull. It's not very threatening because its teeth are very small compared to other carnivorous dinosaurs and there's some evidence it may have been an insectivore," he told the BBC.

What is striking is the animal's unusual claws.

"Non-avian theropods start with five fingers but evolved to have only three fingers in later forms," he says. "Tyrannosaurs were unusual in having just two fingers but the one-fingered Linhenykus shows how extensive and complex theropod hand modifications really were."
 
Disappearing fingers

The suggestion is that this mono-digit theropod may represent the end of one evolutionary pathway, in which unused digits disappear as part of a process of natural selection.

"Vestigial structures, like legs in whales and snakes, may appear and disappear seemingly randomly in the course of evolution," says Jonah Choiniere of the American Museum of Natural History, who also worked on the find.

"Linhenykus highlights complexity in evolution of these vestigial fingers."

Dr Paul Barrett of London's Natural History Museum said the discovery was a "nice specimen" to add to a sub-group already known for its weirdness.

"Alvarezsauroids are already known to be an unusual group of theropods with very bizarre hands used primarily for digging, and this new find confirms there was some variation in how weird these hands were."

http://www.bbc.co.uk/news/science-environment-12262349
(Submitted by Dawn Holloway)

Monday, January 24, 2011

Fossil female pterosaur found with preserved egg

21 January 2011
By Jonathan Amos
Science correspondent, BBC News

For fossil hunters, it represents one of those breakthrough moments.

A pterosaur has been found in China beautifully preserved with an egg.

The egg indicates this ancient flying reptile was a female, and that realisation has allowed researchers to sex these creatures for the first time.

Writing in Science magazine, the palaeontologists make some broad statements about differences in pterosaurs, including the observation that only males sported a head-crest.

David Unwin, a palaeobiologist in the Department of Museum Studies at the University of Leicester, was part of the research team.

He told the BBC the discovery was astonishing: "If somebody had said to me a few years back that we would find this kind of association, I would just have laughed and said, 'yeah, maybe in a million years', because these sorts of things are incredibly rare."

Pterosaurs, also sometimes referred to as pterodactyls, dominated the skies in the Mesozoic Era, 220-65 million years ago. Although reptiles like the dinosaurs were plodding on the ground below them, they were not actually dinosaurs themselves - a common misconception.

This particular specimen has been dated to about 160 million years ago.

It was found by Junchang Lü and colleagues and excavated from sedimentary rocks in the famous fossil-hunting grounds of Liaoning Province in China. Liaoning has yielded many of the great finds in recent years, including a series of feathered dinos that have transformed thinking on bird evolution.

The new creature is from the Darwinopterus genus, or grouping, but has been dubbed simply as "Mrs T" (a contraction of "Mrs Pterodactyl") by the research team.

The state of the egg's shell suggests it was well developed and that Mrs T must have been very close to laying it when she died.

She appears to have had some sort of accident as her left forearm is broken. The researchers speculate she may have fallen from the sky during a storm or perhaps a volcanic eruption, sunk to the bottom of a lake and then been preserved in the sediments.

"The most important thing about this particular individual is that she has a relatively large pelvis compared to other individuals of the same pterosaur, Darwinopterus," explained Dr Unwin.

"This seems quite reasonable - females lay eggs, they probably need a slightly wider pelvis. And then the really exciting thing is that she has a skull which lacks any kind of adornment or decoration whatsoever. When we look at other individuals of Darwinopterus, we find quite a few individuals with a large crest on the skull.

"We're very confident now that we're dealing with two genders here - males with big crests and small hips, and females with no crest on the skull and large hips."

More at: http://www.bbc.co.uk/news/science-environment-12242596
(Submitted by Dawn Holloway)

Fossil female pterosaur found with preserved egg

21 January 2011
By Jonathan Amos
Science correspondent, BBC News

For fossil hunters, it represents one of those breakthrough moments.

A pterosaur has been found in China beautifully preserved with an egg.

The egg indicates this ancient flying reptile was a female, and that realisation has allowed researchers to sex these creatures for the first time.

Writing in Science magazine, the palaeontologists make some broad statements about differences in pterosaurs, including the observation that only males sported a head-crest.

David Unwin, a palaeobiologist in the Department of Museum Studies at the University of Leicester, was part of the research team.

He told the BBC the discovery was astonishing: "If somebody had said to me a few years back that we would find this kind of association, I would just have laughed and said, 'yeah, maybe in a million years', because these sorts of things are incredibly rare."

Pterosaurs, also sometimes referred to as pterodactyls, dominated the skies in the Mesozoic Era, 220-65 million years ago. Although reptiles like the dinosaurs were plodding on the ground below them, they were not actually dinosaurs themselves - a common misconception.

This particular specimen has been dated to about 160 million years ago.

It was found by Junchang Lü and colleagues and excavated from sedimentary rocks in the famous fossil-hunting grounds of Liaoning Province in China. Liaoning has yielded many of the great finds in recent years, including a series of feathered dinos that have transformed thinking on bird evolution.

The new creature is from the Darwinopterus genus, or grouping, but has been dubbed simply as "Mrs T" (a contraction of "Mrs Pterodactyl") by the research team.

The state of the egg's shell suggests it was well developed and that Mrs T must have been very close to laying it when she died.

She appears to have had some sort of accident as her left forearm is broken. The researchers speculate she may have fallen from the sky during a storm or perhaps a volcanic eruption, sunk to the bottom of a lake and then been preserved in the sediments.

"The most important thing about this particular individual is that she has a relatively large pelvis compared to other individuals of the same pterosaur, Darwinopterus," explained Dr Unwin.

"This seems quite reasonable - females lay eggs, they probably need a slightly wider pelvis. And then the really exciting thing is that she has a skull which lacks any kind of adornment or decoration whatsoever. When we look at other individuals of Darwinopterus, we find quite a few individuals with a large crest on the skull.

"We're very confident now that we're dealing with two genders here - males with big crests and small hips, and females with no crest on the skull and large hips."

More at: http://www.bbc.co.uk/news/science-environment-12242596
(Submitted by Dawn Holloway)

Friday, January 7, 2011

Sabretooth cats threatened most ancient human ancestor

3 January 2011
By Paul Rincon Science reporter, BBC News

Humankind's oldest known ancestor probably lived in fear of several large sabretooth cats that roamed the same ancient lakeside habitat in Africa.

Palaeontologists have identified two new sabretooth species among fossils unearthed at Toros Menalla in Chad.

In 2001, a team unearthed remains of a seven million-year-old human-like creature - or hominid - known as "Toumai" at the central African site.

Its discoverers argue that Toumai is the oldest hominid known to science.

The fossilised skull of Toumai (which means "hope of life" in the local Dazaga language of Chad) was found in the Djurab desert by a team led by Michael Brunet of the University of Poitiers, France.

The position of a hole at the bottom of the skull called the foramen magnum suggests that Toumai (Sahelanthropus tchadensis) walked upright - an important signature of the human lineage.

The brainstem enters and exits the skull through this hole; in great apes, it is positioned more towards the back of the skull. But in hominids - including Toumai - it is placed more towards the front of the skull.

The ancient fossil caused a worldwide sensation when it was unveiled in the pages of Nature journal in 2002.

However, the interpretation of Toumai as a human relative is controversial. The skull was distorted and, if any other parts of the skeleton happen to exist, none has yet been published in the scientific literature. It is also older than the date when genetics says that the human and chimp lineages diverged.

Predator's playground

Nevertheless, palaeontologists have been busy studying the abundant fossil material unearthed at the site, steadily building a picture of the environment in which Sahelanthropus eked out its existence.

In Late Miocene times, this area of Chad must have had a lake, because palaeontologists have found the fossilised remains of fish, amphibians and crocodiles.

But they have also found evidence of grasslands, gallery forest and a desert.

Researchers have discovered the fossilised remains of a wide variety of carnivorous mammals at Toros Menalla. Ending up in the sharp jaws of a predator must have been an ever-present threat for primates like Toumai.

Palaentologists had already reported finding remains of a large sabretooth cat from Toros Menalla known as Machairodus kabir which weighed in at 350-490kg.

Writing in the journal Comptes Rendus Palevol, Louis de Bonis from Poitiers University and colleagues add two new sabretooth species to the growing list of carnivores that stalked this region of central Africa in late Miocene times.

The big cat remains were unearthed during recent field expeditions and have been identified as new species belonging to the genus Lokotunjailurus and the genus Megantereon.

Forest refuge

Patrick Vignaud, director of Poitier University's Institute of Palaeo-primatology and Human Palaeontology, told BBC News the cats were about the same size as modern lions.

"With our present data, we don't know what precisely the interactions were between a primate and a big carnivore. But probably these interactions were not so friendly," said Professor Vignaud.

He told BBC News: "Sabretooths hunted all mammals; bovids, equids... and primates. The interactions were also more 'psychological', exercising a stress on potential prey. We can't prove it but it's probably important because in that case, primates had to live near closed environments like gallery forest."

While ancient primates like Sahelanthropus tchadensis gave sabretooth cats a wide berth, they may also have depended on these big carnivores - and others - for their survival.

Sabretooths would have hunted large herbivorous mammals, and probably left enough meat on their kills for scavengers like the jackal-sized Hyaenictherium and perhaps even primates like Sahelanthropus.

Some researchers have proposed that Toumai is more closely related to chimpanzees or gorillas. Even if this were the case, the discovery would be of great significance, as virtually no fossil ancestors of these great apes are known from Africa.

http://www.bbc.co.uk/news/science-environment-11979934

Sabretooth cats threatened most ancient human ancestor

3 January 2011
By Paul Rincon Science reporter, BBC News

Humankind's oldest known ancestor probably lived in fear of several large sabretooth cats that roamed the same ancient lakeside habitat in Africa.

Palaeontologists have identified two new sabretooth species among fossils unearthed at Toros Menalla in Chad.

In 2001, a team unearthed remains of a seven million-year-old human-like creature - or hominid - known as "Toumai" at the central African site.

Its discoverers argue that Toumai is the oldest hominid known to science.

The fossilised skull of Toumai (which means "hope of life" in the local Dazaga language of Chad) was found in the Djurab desert by a team led by Michael Brunet of the University of Poitiers, France.

The position of a hole at the bottom of the skull called the foramen magnum suggests that Toumai (Sahelanthropus tchadensis) walked upright - an important signature of the human lineage.

The brainstem enters and exits the skull through this hole; in great apes, it is positioned more towards the back of the skull. But in hominids - including Toumai - it is placed more towards the front of the skull.

The ancient fossil caused a worldwide sensation when it was unveiled in the pages of Nature journal in 2002.

However, the interpretation of Toumai as a human relative is controversial. The skull was distorted and, if any other parts of the skeleton happen to exist, none has yet been published in the scientific literature. It is also older than the date when genetics says that the human and chimp lineages diverged.

Predator's playground

Nevertheless, palaeontologists have been busy studying the abundant fossil material unearthed at the site, steadily building a picture of the environment in which Sahelanthropus eked out its existence.

In Late Miocene times, this area of Chad must have had a lake, because palaeontologists have found the fossilised remains of fish, amphibians and crocodiles.

But they have also found evidence of grasslands, gallery forest and a desert.

Researchers have discovered the fossilised remains of a wide variety of carnivorous mammals at Toros Menalla. Ending up in the sharp jaws of a predator must have been an ever-present threat for primates like Toumai.

Palaentologists had already reported finding remains of a large sabretooth cat from Toros Menalla known as Machairodus kabir which weighed in at 350-490kg.

Writing in the journal Comptes Rendus Palevol, Louis de Bonis from Poitiers University and colleagues add two new sabretooth species to the growing list of carnivores that stalked this region of central Africa in late Miocene times.

The big cat remains were unearthed during recent field expeditions and have been identified as new species belonging to the genus Lokotunjailurus and the genus Megantereon.

Forest refuge

Patrick Vignaud, director of Poitier University's Institute of Palaeo-primatology and Human Palaeontology, told BBC News the cats were about the same size as modern lions.

"With our present data, we don't know what precisely the interactions were between a primate and a big carnivore. But probably these interactions were not so friendly," said Professor Vignaud.

He told BBC News: "Sabretooths hunted all mammals; bovids, equids... and primates. The interactions were also more 'psychological', exercising a stress on potential prey. We can't prove it but it's probably important because in that case, primates had to live near closed environments like gallery forest."

While ancient primates like Sahelanthropus tchadensis gave sabretooth cats a wide berth, they may also have depended on these big carnivores - and others - for their survival.

Sabretooths would have hunted large herbivorous mammals, and probably left enough meat on their kills for scavengers like the jackal-sized Hyaenictherium and perhaps even primates like Sahelanthropus.

Some researchers have proposed that Toumai is more closely related to chimpanzees or gorillas. Even if this were the case, the discovery would be of great significance, as virtually no fossil ancestors of these great apes are known from Africa.

http://www.bbc.co.uk/news/science-environment-11979934

Friday, September 3, 2010

Rockies fossils yield 8 new species

This is the claw of Stanleycaris, a predatory species newly discovered at the Stanley Glacier fossil field. It was a primitive arthropod, the group of jointed-legged animals that includes insects, spiders and crabs. The claw is about 3 centimetres long and the entire animal was probably less than 20 centimetres in size. (Jean-Bernard Caron/Royal Ontario Museum)
A surprise fossil field at a glacier in B.C.'s Kootenay National Park contains at least eight new species that lived 505 million years ago.

Jean-Bernard Caron, curator of invertebrate paleontology at Toronto's Royal Ontario Museum, said the new arthropods (the group to which crabs and insects belong) and worms were found in an environment where paleontologists previously believed fossils could not be preserved or found.

The discovery means paleontologists might be able to find new fossils in similar environments that they had previously ignored.

"It opens up, I guess, a new terrain to explore," said Caron, who returned Thursday from a followup expedition to similar sites. "I think the chance to find new fossils in the future … will expand dramatically."

Descriptions of the new fossil field and the new species collected two years ago were published in the September issue of the journal Geology.

Fossils were first collected by a hiker walking on a trail near the Stanley Glacier in the park in the 1990s. The hiker contacted the Royal Ontario Museum, which sent researchers to collect fallen rock debris in the park in 1996.

Caron examined the rocks when he began working at the museum in 2006 and noticed that the fossils seemed to appear in a type of Rocky Mountain shale rock that hadn't been known for fossils before.

The rock dates back 505 million years ago, to the Middle Cambrian period — the same one represented by the Burgess Shale, which is located in the Rockies of Yoho National Park and considered one of the most important fossil fields in the world.

The Burgess Shale, located 40 kilometres northwest of the new fossil field, was once at the foot of an undersea cliff in tropical waters. Researchers believed the cliff provided an ideal environment for a diverse community of animals, and its harder rock prevented the fossil in the softer mud of the sea floor from being crushed by geological forces in hundreds of millions of years that followed.

The Stanley Glacier site represents a similar undersea environment, but with no evidence of any cliff nearby. It seems to have been above the Burgess Shale cliff.

Caron led a two-week expedition to the site in 2008, where researchers collected 2,000 specimens. Many of the species were previously known from other sites like the Burgess Shale, although some specimens were better preserved than any known before. However, eight were new, including a primitive arthropod predator that would have grabbed prey with its claws. It was named Stanleycaris after the glacier.

Caron said that's a lot of new species, considering that just 200 species have been discovered among more than 200,000 specimens collected from the Burgess Shale. He suggested the newly discovered animals may have been specifically adapted to that environment.

This August, Caron and his team went to look for similar sites along the same geological formation in the Rockies that yielded the Stanley Glacier site. They didn't find any new fossils this time, but plan to go back in the future.

Read more: http://www.cbc.ca/technology/story/2010/09/03/bc-kootenay-fossil-stanley-glacier.html#ixzz0yU4HvkOL

Rockies fossils yield 8 new species

This is the claw of Stanleycaris, a predatory species newly discovered at the Stanley Glacier fossil field. It was a primitive arthropod, the group of jointed-legged animals that includes insects, spiders and crabs. The claw is about 3 centimetres long and the entire animal was probably less than 20 centimetres in size. (Jean-Bernard Caron/Royal Ontario Museum)
A surprise fossil field at a glacier in B.C.'s Kootenay National Park contains at least eight new species that lived 505 million years ago.

Jean-Bernard Caron, curator of invertebrate paleontology at Toronto's Royal Ontario Museum, said the new arthropods (the group to which crabs and insects belong) and worms were found in an environment where paleontologists previously believed fossils could not be preserved or found.

The discovery means paleontologists might be able to find new fossils in similar environments that they had previously ignored.

"It opens up, I guess, a new terrain to explore," said Caron, who returned Thursday from a followup expedition to similar sites. "I think the chance to find new fossils in the future … will expand dramatically."

Descriptions of the new fossil field and the new species collected two years ago were published in the September issue of the journal Geology.

Fossils were first collected by a hiker walking on a trail near the Stanley Glacier in the park in the 1990s. The hiker contacted the Royal Ontario Museum, which sent researchers to collect fallen rock debris in the park in 1996.

Caron examined the rocks when he began working at the museum in 2006 and noticed that the fossils seemed to appear in a type of Rocky Mountain shale rock that hadn't been known for fossils before.

The rock dates back 505 million years ago, to the Middle Cambrian period — the same one represented by the Burgess Shale, which is located in the Rockies of Yoho National Park and considered one of the most important fossil fields in the world.

The Burgess Shale, located 40 kilometres northwest of the new fossil field, was once at the foot of an undersea cliff in tropical waters. Researchers believed the cliff provided an ideal environment for a diverse community of animals, and its harder rock prevented the fossil in the softer mud of the sea floor from being crushed by geological forces in hundreds of millions of years that followed.

The Stanley Glacier site represents a similar undersea environment, but with no evidence of any cliff nearby. It seems to have been above the Burgess Shale cliff.

Caron led a two-week expedition to the site in 2008, where researchers collected 2,000 specimens. Many of the species were previously known from other sites like the Burgess Shale, although some specimens were better preserved than any known before. However, eight were new, including a primitive arthropod predator that would have grabbed prey with its claws. It was named Stanleycaris after the glacier.

Caron said that's a lot of new species, considering that just 200 species have been discovered among more than 200,000 specimens collected from the Burgess Shale. He suggested the newly discovered animals may have been specifically adapted to that environment.

This August, Caron and his team went to look for similar sites along the same geological formation in the Rockies that yielded the Stanley Glacier site. They didn't find any new fossils this time, but plan to go back in the future.

Read more: http://www.cbc.ca/technology/story/2010/09/03/bc-kootenay-fossil-stanley-glacier.html#ixzz0yU4HvkOL

Tuesday, August 3, 2010

Scientists find 'oldest' dog remains

Published: 2 Aug 10 17:44 CET

German scientists have found that fragments of a dog's skull and teeth discovered in a cave in Switzerland date back more than 14,000 years in what could be the oldest known remains of man's best friend.

The fossils were among a haul of archaeological finds uncovered in 1873 in the Kesslerloch cave in northern Switzerland, Swiss news agency ATS said Monday. But it was only last year that researchers at Germany's Tübingen University took a closer look at them, it said.

"During a recent re-analysis of the faunal remains, we identified a cranial fragment and teeth of the domestic dog," the researchers said in an article in the International Journal of Osteoarchaeology.

"The large maxillar fragment was directly dated to ...14,100-14,600 BP (Before Present)," it said.

"We argue that the maxilla fragment must now be considered the earliest indisputable directly dated evidence of a domestic dog," they said.

Belgian archaeologists have claimed to have found the cranium of a dog dating back 30,000 years, but researcher Hannes Napierala told ATS: "We are sceptical because the teeth are very similar to those of a wolf."

The fragment found in the cave in Switzerland's Schaffhausen canton, however, was clearly distinct from remains of wolves, the scientists said.

http://www.thelocal.de/sci-tech/20100802-28901.html

Thursday, July 29, 2010

Divers find ancient monkey fossil

Scientists have examined fossilised remains of a tiny, extinct monkey that were retrieved from an underwater cave in the Dominican Republic.

The researchers believe the fossil to be around 3,000 years old, but say the species itself could be very ancient.

This reveals clues about the origin of primates in the region.

It also suggests that many ecologically valuable treasures could be discovered by the unusual field of "underwater palaeontology".

Dr Alfred Rosenberger from Brooklyn College in New York, US, led the examination of the creature's bones, the results of which were published in the Royal Society journal Proceedings B.

He explained that the bones, which included a skull that was almost complete, were found by a team of scuba divers who were exploring an underwater cave in the area.

"It's miraculous that they even saw it," he told BBC News.

"When they discovered it, they were fearful the bones were exposed, so they moved the material to a little nook to protect it."

Having sought official permission to remove the fossil from the cave, Dr Rosenberger returned to with the scuba divers to retrieve it in October of last year.

The divers packed the skeleton into tupperware boxes in order to bring it safely to the surface.

'Stout little monkey'

Dr Rosenberger said the monkey - only the second specimen of the species Antillothrix bernensis ever found - probably measured about 30cm (12in) from head to toe.


But the shape of the legs came as a surprise.

"Its femur or thigh bone was very thick. So it had sort of stout legs, which is something we didn't expect.

"We don't really have any living examples of New World monkeys that have stout legs like that."

Dr Rosenberger thinks the creature went extinct relatively recently.

He said that it may have behaved similarly to a koala - clinging to the trunks of trees, rather than leaping from branch to branch.

"That's a very rough analogy, he said.

"But there's something very interesting about the ecological niche it inhabited."

The fossil also adds to evidence that there were several lineages of primates in the Caribbean, instead of one ancestor that moved into the region millions of years ago from which all modern species evolved.

Dr Rosenberger said it was likely that several species travelled "over the water" to inhabit the island of Hispaniola.

"And even though these particular bones might be relatively young, we're pretty sure that the arrival of these animals occurred well over 10 million years ago.

"That's an exciting part of the story - if you compare the dental remains of our monkey to other fossils that we know of, we see strong similarities with Patagonian fossils that are around 15 million years old."

Dr Sam Turvey, a researcher from the Zoological Society of London in the UK, said the discovery emphasised how much we still had to learn about the "original mammal fauna" of the Caribbean.

"It's now possible to reconstruct what this mysterious animal looked like and how it evolved," he said.

"The Caribbean islands have experienced the world's highest level of mammalian extinction over the past 10,000 years.

"With this improved knowledge of a recently extinct species, it might be possible to understand what caused it to disappear from Hispaniola."

Wednesday, June 30, 2010

'Sea monster' whale fossil unearthed

RIGHT: Leviathan was an aggressive 17m-long predator which may have preyed on other whales
Wednesday, 30 June 2010 18:02 UK

Researchers have discovered the fossilised remains of an ancient whale with huge, fearsome teeth.

Writing in the journal Nature, the scientists have dubbed the 12 million-year-old creature "Leviathan".

It is thought to have been more than 17m long, and might have engaged in fierce battles with other giant sea creatures from the time.

Leviathan was much like the modern sperm whale in terms of size and appearance.

But that is where the similarity ends. While the sperm whale is a relatively passive animal, sucking in squid from the depths of the ocean, Leviathan was an aggressive predator.

According to Dr Christian de Muizon, director of the Natural History Museum in Paris, Leviathan could have hunted out and fed on large sea creatures such as dolphins, seals and even other whales.

"It was a kind of a sea monster," he said.

"And it's interesting to note that at the same time in the same waters was another monster, which was a giant shark about 15m long. It's possible that they might have fought each other".

The researchers speculate that Leviathan was able to feed on very large prey up to 8m long. It would catch the prey in its huge jaws and tear it apart quickly and effectively with its giant teeth.

A 3m-long fossilised skull of the creature was discovered by researchers in southern Peru in 2008. Dr de Muizon's student, Olivier Lambert was among them.

"It was the last day of our field trip when one of our colleagues came and told us that he thought he'd found something very interesting. So we joined him and he showed it to us," he said.

"We immediately saw that it was a very large whale and when we looked closer we saw it was a giant sperm whale with huge teeth."

The teeth were more than twice the length and diameter of those found in modern sperm whales and they were on the upper and lower jaws.

Sperm whales only have teeth on their lower jaw.

Dr Lambert and his colleagues had speculated that such a fierce creature might once have existed on the basis of discoveries of individual teeth.

Now, the discovery of the skull means that the Leviathan is not merely the stuff of myth and legend.

"Finally we found it," said Dr Lambert. " It was a very exciting moment".

The researchers do not know why this ancient whale died out. They speculate that the ecology and environment changed so that the creature had to change its feeding habits.

That may have led to the emergence of today's much gentler sperm whales, with the carnivorous niche filled by killer whales as conditions swung back again.

The authors of the report in Nature, who are all whale experts, are fans of the novel Moby Dick, which involves a ferocious white sperm whale.

So taken are they with the novel that they decided to dedicate their discovery to the author, Herman Melville, and give the creature its full scientific name of Leviathan melvillei.

http://news.bbc.co.uk/1/hi/science_and_environment/10461066.stm

Tuesday, May 4, 2010

New Species of Ancient Flying Reptile Discovered

A pterosaur that flew above what is now the Dallas-Fort Worth area (which was covered by a sea millions of years ago) was identified from its fossilized jaw. Credit: Southern Methodist University.
By Jeanna Bryner, LiveScience Managing Editor
posted: 29 April 2010 10:08 am ET

An ancient reptile with a 9-foot wingspan was soaring over the sea in what is now North Texas some 95 million years ago when – plop – it fell into the water and died.

That paleo-death tale comes from a fossilized jaw that was discovered embedded in soft, powdery shale that had been exposed by excavation of a hillside next to a highway in the Dallas-Fort Worth area in 2006.

Analysis of the jaw now suggests it belongs to a new-to-science genus and species of flying reptile or pterosaur, now called Aetodactylus halli after its discoverer Lance Hall, a member of the Dallas Paleontological Society who hunts fossils for a hobby.

"I was scanning the exposure and noticed what at first I thought was a piece of oyster shell spanning across a small erosion valley," Hall said. "Only about an inch or two was exposed. I almost passed it up thinking it was oyster, but realized it was more tan-colored like bone. I started uncovering it and realized it was the jaw to something — but I had no idea what. It was upside down and when I turned over the snout portion it was nothing but a long row of teeth sockets, which was very exciting."

Paleontologists later told Hall it was a pterosaur (a group of flying reptiles commonly referred to as pterodactyls) and an important find. Such "winged lizards," as their name suggests, are thought to have dominated the skies from more than 200 million years ago until the mass extinction event 65 million years ago that wiped them out along with most dinosaurs and many other plants and animals.

A. halli
is also one of the youngest members of the pterosaur family Ornithocheiridae.

The mandible, which is about 15 inches (38 centimeters) long, originally contained 54 slender, pointed teeth, but only two remained in their sockets when discovered, according to paleontologist Timothy S. Myers of Southern Methodist University (SMU) in Dallas, who identified and named the animal.

From the way the teeth were spaced, the researchers suspect the upper and lower teeth interlaced when the jaws were closed. Just the fact that this pterosaur had teeth was somewhat surprising as all North American pterosaurs were toothless from that time period, except for Coloborhynchus.

When A. halli was alive, much of Texas was cloaked by the Western Interior Seaway – the massive sea that split North America from the Gulf of Mexico to the Arctic Ocean. On shore, the terrain was flat and dotted with flowering plants, according to paleobotanist Bonnie Jacobs, associate professor of Earth Sciences at SMU.

"There were still conifers and ferns as well, but mostly of the sort that had tiny needle leaves, like junipers," Jacobs said. "Sycamores and their relatives would have been among the flowering plants."

The team describes the flying reptile in the latest issue of the Journal of Vertebrate Paleontology.

http://www.livescience.com/animals/flying-reptile-pterosaur-100429.html

Wednesday, April 21, 2010

'Gigantic' scorpion fossil found in Fife

http://news.bbc.co.uk/1/hi/scotland/edinburgh_and_east/8632427.stm

'Gigantic' scorpion fossil found in Fife

A cast is being made of tracks left by a two-metre long ancient animal in north east Fife.

The tracks were made by a giant six-legged water scorpion called Hibbertopterus as it crawled over damp sand about 330 million years ago.

It is the largest known walking trackway of a eurypterid or any invertebrate animal.

The tracks were discovered by Dr Martin Whyte from the University of Sheffield while he was out walking.

Scottish Natural Heritage, which is funding the project, described the find as unique and internationally important because the creature was gigantic.

It said the fossil would be moulded in silicone so that more people could see and research it.

Richard Batchelor from Geoheritage Fife, said: "The trackway is in a precarious situation, having been exposed for years to weathering.

"The rock in which it occurs is in danger of falling off altogether.

"Removing it and housing it in a museum would be prohibitively costly but moulding it in silicone rubber and making copies for educational and research purposes means that we can still see and research this huge creature's tracks in years to come."

The animal, which is related to modern-day scorpions and horseshoe crabs, was about two metres long and about one metre wide.

'Geological treasures'

The trackway, which is preserved in sandstone, consists of three rows of crescent shaped footprints on each side of a central groove.

The groove was made by the tail of the animal as it dragged over the sand.

This contrasts previous fossil evidence which suggested that the creatures lived in the water for most, if not all of the time.

SNH geologist Colin MacFadyen said: "Helping to conserve this important find is vital for our understanding of this period in evolution.

"Such finds as this highlight that all over Scotland there are no doubt other geological treasures awaiting discovery."

__._,_.___

Sunday, April 11, 2010

Missing link between man and apes found in South Africa

In a find that could rewrite the history of human evolution, palaeontologists claim to have found the "missing link" between humans and their apelike ancestors.

An international team has found a two-million-year-old skeleton of a child, which it claims belongs to a new species of hominid that may have been an intermediate stage as apemen evolved into advanced humans known as Homo habilis.

According to the palaeontologists, the skeleton shares characteristics with Homo habilis, whose emergence 2.5 million years ago is seen as a key stage in the evolution of humans. The team, led by Lee Berger of the University of Witwatersrand, found the skeleton while exploring cave systems in the Sterkfontein region of South Africa, near Johannesburg, an area known as "the Cradle of Humanity".

Phillip Tobias, an eminent human anatomist and anthropologist at the university who was one of three experts to first identify Homo habilis as a new species of human in 1964, described the discovery as "wonderful" and "exciting".

"To find a skeleton as opposed to a couple of teeth or an arm bone is a rarity. It is one thing to find a lower jaw with a couple of teeth, but it is another thing to find the jaw joined onto the skull, and those in turn uniting further down with the spinal column, pelvis and the limb bones.

"It is not a single find, but several specimens representing several individuals. The remains now being brought to light by Dr Berger and his team are wonderful", the Daily Telegraph quoted him as saying.

The skeleton was found along with a number of other partially complete fossils, encased within breccia rock inside a limestone cave known as Malapa cave. Simon Underdown, an expert on human evolution, said the new finding could help scientists gain a better understanding of our evolutionary tree.

The discovery is the most important find from Sterkfontein since an almost-complete fossil of a 3.3-million- year-old Australopithecus, nicknamed Little Foot, was found in 1994.

PTI