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The Most Perfectly Preserved Feather From The Age Of Dinosaurs Has Been Discovered Inside Fossilized Tyrannosaur Poop Dating Back 66 Million Years

Coprolites could be an overlooked source for discovering delicate structures that don’t typically preserve in fossil sites like the Hell Creek Formation.

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Rachael Funnell

Rachael has a degree in Zoology from the University of Southampton, and specializes in animal behavior, evolution, palaeontology, and the environment.

Senior Science Writer

Rachael has a degree in Zoology from the University of Southampton, and specializes in animal behavior, evolution, palaeontology, and the environment.View full profile

Rachael has a degree in Zoology from the University of Southampton, and specializes in animal behavior, evolution, palaeontology, and the environment.

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EditedbyLaura Simmons
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Laura Simmons

Health & Medicine Editor

Laura holds a Master's in Experimental Neuroscience and a Bachelor's in Biology from Imperial College London. Her areas of expertise include health, medicine, psychology, and neuroscience.

David DeMar, Jr. holding the exposed fossil feather in the coprolite fragment on the day of its discovery in 2016.

To be eaten, fossilized, and dug up 66 million years later is quite the journey for a small feather, but one study author Jingmai O’Connor says isn’t all that surprising.

Image credit: David DeMar, Jr.


What you'll discover in this article

  • In 150 years of prospecting, nobody had ever found a fossil feather in Hell Creek formation in the Western United States.
  • A remarkably well preserved feather was found inside a rock that scans later revealed to be fossilized dinosaur poop.
  • According to study author Dr Jingmai O'Connor, it demonstrates that coprolites are an exciting new avenue to explore when searching for fossilized feathers in regions they're rarely found in.

Dinosaurs didn’t get to be choosy when it came to what parts of an animal they wanted to eat. It meant some of the harder to digest stuff survived the passage through their digestive systems and can be found, near-perfect, tucked inside fossilized poops.

This was the fate of a tiny feather that got chomped up by a dinosaur like T. rex or Nanotyrannus around 66 million years ago. That feather has now become one of the most perfectly preserved ever discovered from the Age of Dinosaurs, and from a most unexpected source.

What’s more, the feather could offer answers to one of the biggest mysteries surrounding the end of the age of dinosaurs: Why didn’t they all die?

As we know, birds are dinosaurs, which makes their success on Earth to this day something of a puzzle. After all, if all the other dinosaurs perished, why did birds survive?

the feather fossil shows a central spine with thinner tendrils coming off of it in remarkable detail
The fossil feather preserved in dinosaur poop.
Image credit: O’Connor et al

There were other birds alive during the Age of Dinosaurs that did go extinct, but one group – the Neornithes – survived. Every bird you meet today is a living descendent of Neornithes.

Trying to find out what enabled them to hang on during one of the most miserable eras of life on Earth means finding fossils. Any fossils.

We’ve found all sorts of things inside dinosaur droppings (known as coprolites), from bone fragments to teeth and fish scales. Still, it was quite the surprise when research scientist David DeMar, Jr. found a feather in Hell Creek in 2016 because, despite more than 150 years of prospecting here, nobody had ever found one.

Many modern mammalian carnivores poop out small feathers.

Dr Jingmai O’Connor

The feather’s preservation was better than that of feathers found locked in Burmese amber, and yet it seemed to just be an unremarkable lump of rock. It wasn’t until the fossil was put into a micro-CT scanner at the University of Southern California’s medical campus that it became clear what it really was.

“Every hour processing the data revealed another feather, another scale, another bone – in stunning 3D,” Nate Carroll, a co-author of the paper and palaeontologist at the Carter County Museum in Ekalaka, Montana, in a release

“As someone who had been relying on far-flung amber mines as my main source of 3D feather data, realizing that fossil poop from my home state could yield such exceptional specimens was a game changer.”

An illustration of a tyrannosaur preying on an ancient diving bird.
Sixty-six million years ago, a tyrannosaur scooped up an aquatic bird and started cooking up a fossil unlike anything we've ever seen in Hell Creek.
Image credit: Andrey Atuchin

An impressive journey for a small feather, but one study author Dr Jingmai O’Connor of the Field Museum in Chicago says isn’t all that surprising.

“Feathers are pretty tough,” she told IFLScience. “Many modern mammalian carnivores poop out small feathers (bird dinosaurs egest them though, more efficient!).”

The coprolite also contained the bones of a bird belonging to the Hesperornithes (a group of aquatic birds similar to loons), suggesting the feathers belonged to this animal. It marks the first time the feathers of this kind of bird have been found, and could reveal fresh clues as to why certain birds survived the end-Cretaceous mass extinction event.

It’s been suggested that Neornithes survived because they lived near water, but so did Hesperornithes and yet they went extinct along with the Enantiornithes. Getting a chance to look at their feathers for the first time could, therefore, provide clues as to differences between Neornithes and Hesperornithes that could explain why one survived while the other died.

The bird appears to have had a combination of modern-looking waterproof feathers along with more primitive feathers typically associated with dinosaurs and enantiornithines. So, it’s possible this combination wasn’t as efficient as the plumulaceous feathers seen in Neornithes.

Further research is needed to be sure, which means finding more fossils. Fortunately, we’ve got a whole new place to search for them.

“This is a potential window for studying soft tissues in geologic units that don't typically preserve such structures (like the Hell Creek),” said O’Connor to IFLScience.

“We'll do a follow up paper talking about the chemistry of the fossilization process and with hints as to what coprolites should be targeted for scanning. I hope it will become an exciting new area of research!”

The study is published in the journal Current Biology.


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