Showing posts with label dinosaur. Show all posts
Showing posts with label dinosaur. Show all posts

Thursday, August 23, 2018

Turtle fossil with no shell sheds light on a reptile’s murky origins

reposted from
https://www.theglobeandmail.com/canada/article-turtle-fossil-with-no-shell-sheds-light-on-a-reptiles-murky-origins/

An artist's impression of what Eorhynchochelys might have looked like as it foraged for food in shallow water during the later Triassic period.
YU CHEN/CANADIAN MUSEUM OF NATURE
By any measure, the turtle ranks among evolution’s most unusual experiments. Its signature adaptation, a hard shell made of fused and highly modified rib bones, sets it apart from all other vertebrates and has long challenged scientists’ efforts to understand how turtles first came about and where, precisely, they belong on the reptile family tree.
Now, a fossil uncovered in China has revealed a key step in the turtle saga.
Saddled with the rather unwieldy scientific name of Eorhynchochelys sinensis(which combines the Greek words for “dawn,” “beak” and “turtle”), the 2.5-metre-long creature is the earliest known to bear many of the features of that distinguish turtles today, even though it lacks a shell.
Based on several clues, the creature likely spent much of its time in water, perhaps in a coastal environment where it could have used its strong forelimbs and beak-like jaws to dig in the mud for food.
“It probably ate whatever it could get,” said Xiao-chun Wu, a paleontologist with the Canadian Museum of Nature who was part of the international team that examined the fossil. The team’s findings were published Wednesday in the journal Nature.
The specimen was initially discovered by farmers working at a rich fossil site in Guizhou Province, and was marked for further investigation by Dr. Wu’s co-author, Chun Li, of the Institute of Vertebrate Paleontology and Paleoanthropology in Beijing.
The complete skeleton of Eorhynchochelys​ was discovered in Guizhou Province, China.
XIAO-CHUN WU/CANADIAN MUSEUM OF NATURE
Dr. Wu’s first glimpse of the fossil came last year during a trip to China, when much of it was still encased in rock. Yet its potential significance was already clear, he said.
Despite lacking a shell, the creature’s wide, flat ribs are a giveaway that it is somehow part of the line of reptiles that later evolved into turtles. Once the head was revealed, the creature was discovered to possess features that place it within a broad group of reptiles that includes dinosaurs, lizards, crocodiles and the ancestors of modern birds. However, Dr. Wu and his colleague place it on an evolutionary line that branched away from the rest at an early stage, leading to progressively more turtle-like forms.
The specimen was found in a layer of rock that dates back to about 228 million years ago, corresponding to the late Triassic period, a time when the supercontinent known as Pangea was beginning to break up and dinosaurs were not yet the towering giants they were later to become.
Eorhynchochelys is sandwiched between two previous discoveries from earlier and later time geological periods. The older one, from 240 million years ago, is a squat lizard-like animal. The one that came later, which Dr. Wu helped to discover, lived about 220 million years ago and sported the bottom half of a turtle shell, or plastron, but no top. Eorhynchochelys, which has fused hip bones and wide ribs but no shell at all, seems to provide a link between them.
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Yet there are wrinkles. The mouth of Eorhynchochelys, with its prominent beak and shortened trunk, looks more turtle-like in some ways than the specimen that came later.
Dr. Wu argues that this shows that turtle evolution was not a straight road but a meandering path during which various traits were acquired, lost and acquired again until the defining features common to all modern turtles were locked in about 210 million years ago.
Robert Reisz, a paleontologist at the University of Toronto who was not involved in the find, doesn’t dispute this idea but said that the specific way in which the new turtle ancestor relates to previous finds is open to debate.
“The evolution of turtles remains a complex issue,” Dr. Reisz said. “They really went off the normal path in terms of their anatomy and did a number of things that are really strange.”
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Tuesday, November 15, 2016

Image of the Day: Death of a Dinosaur

reposted from

Image of the Day: Death of a Dinosaur

An artist's rendering of a bird-like dinosaur (Tongtianlong limosus) in its last moments before drowning in a swamp.
By  | November 15, 2016

Friday, November 22, 2013

New PREDATOR dinosaur discovered in Utah - Scientists have named the dinosaurSiats meekerorum

reported from here

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Contact: Nancy O'Shea
noshea@fieldmuseum.org
312-665-7103
Field Museum 

New dinosaur discovered in Utah

Top predator is first of its kind to be found in North America

Researchers at The Field Museum, the North Carolina Museum of Natural Sciences (NCMNS), and North Carolina State University (NCSU) have discovered a new, giant predatory dinosaur that walked the Earth approximately 100 million years ago, in the Cedar Mountain Formation in Utah. The new dinosaur is the first of its kind to be discovered in North America. The study appears in the Nov. 22, 2013 issue of Nature Communications.
The new predator, which was over 30 feet long and weighed more than four tons, was doubtless the top predator in its ecosystem.
"This dinosaur was a colossal predator second only to the great T. rex and perhaps Acrocanthosarus in the North American fossil record," says Lindsay Zanno, lead author on the paper and Director of Paleontology at NCMNS/NCSU.
Scientists have named the dinosaurSiats meekerorum, in reference to a cannibalistic monster from the mythology of the Ute Native American people, and in acknowledgement of the Meeker family for their support for early career paleontologists at The Field Museum.
Siats meekerorumwas discovered in 2008 by Zanno as part of a Field Museum expedition to 100-million-year-old rocks of the Cedar Mountain Formation in Utah. The scattered remains of this animal were retrieved from a giant excavation over two summers, and then painstakingly cleaned from rock by staff and volunteers at The Field Museum.
Despite its large size,Siats is not a close relative of T. rex and other tyrannosaurs that were the dominant predators in North America for the last 20 million years of the age of dinosaurs. Rather, it belongs to the carchardontosaurian group of theropods (predatory dinosaurs), whose more famous members include giants like the ArgentineanGiganotosaurusSiatsbelongs to a branch of the carcharodontosaurian family tree that was previously unknown in North America.
"We were thrilled to discover the first dinosaur of its kind in North America and add to mounting evidence that dinosaurs were widely dispersed across the globe 100 million years ago" says study co-author and Curator of Dinosaurs at the Field Museum, Peter Makovicky.
Siats comes from the middle of a 30-million-year gap in the fossil record of North American large predatory dinosaurs, during which the top predator role changed hands from carcharodontodsaurians in the Early Cretaceous to tyrannosaurs in the Late Cretaceous.
The lack of fossils left paleontologists unsure about when this change happened and if tyrannosaurus outcompeted carcharodontosaurs, or assumed that niche following carcharodontosaur extinction. The upper Cedar Mountain Formation is currently one of the only rock units known to produce fossils of both groups.
Teeth of tyrannosaurs from the Cedar Mountain Formation indicate that the tyrannosaurs living alongside Siats were much smaller in stature and did not compete for the apex predator role.
"The huge size difference certainly suggests that tyrannosaurs were held in check by carcharodontosaurs, and only evolved into enormous apex predators after the carcharodontosaurs disappeared," said Makovicky.
Zanno added, "Finding Siats in the 30-million-year predator gap tells us carcharodontosaurians reigned supreme in North America for much longer than anyone had expected."
Until recently, it was thought that continental rifting in the Cretaceous caused isolation between dinosaur faunas on different continents, and the early-to- middle Cretaceous faunas of North America were particularly isolated. That picture is rapidly changing through discoveries such asSiats.
"Siats is just the tip of the iceberg; our teams are unearthing a lost dinosaurian ecosystem right here in the badlands of western North America," Zanno said.
"Since Siats, we have made more exciting discoveries, including two new species of dinosaur, which will further illuminate how North American Cretaceous dinosaurs are related to those on other continents," said Makovicky.
###
Fieldwork was conducted under permits through the Bureau of Land Management and was funded by The Field Museum.
Image available upon request.


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