Episode 89 – The Burgess Shale

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More than 100 years ago, explorers in the Canadian Rocky Mountains came across some exceptional fossils. Nowadays, that locality is famous as one of the most important fossil sites in the world for understanding animal evolution, Earth history, and fossil preservation. This episode, we talk about the incredible Burgess Shale.

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The Burgess Shale

Located in the Canadian Rocky Mountains of British Columbia, the Burgess Shale is one of the most famous, well-studied, and scientifically influential fossil localities ever found. Over the past century, tens of thousands of fossils have been excavated from several different sites, including over 150 species new to science, from one of the most mysterious time periods in evolution. And as if that’s not enough, the unusual and exquisite preservation of these fossils provide incredible levels of detail, including the kinds of soft tissue information we hardly ever get from the fossil record. Stephen Jay Gould called these specimens “the world’s most important fossils.”

Excavation
Then and now. The Walcott Quarry of the Burgess Shale in 1915 (left) and in 2009 (right). Images in the Public Domain.

The site as it’s known today was discovered and named in the early 1900s by Charles D. Walcott, whose own excavations resulted in the Walcott Quarry, the most well-studied Burgess Shale site. In following decades, many excavation teams from several institutions would work on the site and open up a number of other dig areas. In 1981, the site was declared a UNESCO World Heritage Site, a locality of international importance.

Work on the site and its fossils is still ongoing, undertaken by the crew at the Royal Ontario Museum.

A Rarely-Seen Cambrian Ecosystem

The site’s eponymous shale was laid down as seafloor mud off the coast of Laurentia during the Middle Cambrian, 505-510 million years ago. Long before these rocks were thrust upward as part of the Rocky Mountains, this environment was an ocean basin at the foot a large submarine cliff called the Cathedral Escarpment.

Preservation
Waptia, a Burgess Shale arthropod known from over 1,000 specimens, seen here demonstrating the incredible whole-body preservation common to this fossil locality. Image by Verisimilus [CC BY-SA 3.0]
What makes the Burgess Shale truly remarkable is the preservation of its fossils. Whereas most fossil sites preserve mineralized hard tissues or occasional mineralized soft tissues, this site’s fossils typically come in the form of flattened carbonaceous films which preserve fine details of soft tissues. In fact, nearly all Burgess Shale fossils are entirely soft-bodied creatures, the kinds of animals that are rarely fossilized at all at other sites.

Exactly why these fossils are preserved in such a unique manner isn’t entirely clear, but geologists suspect a combination of factors that would rapidly preserve tissues while also slowing their decomposition. It might even be that the minerals in the local sediments were particularly suited to hinder bacterial action and/or quickly mineralize tissues.

Whatever the circumstances were, they weren’t unique to one site. The same sort of preservation is seen at a long list of Cambrian fossil sites, including the famous Chengjiang site in China. A paper in 2014 identified 50 of these “Burgess Shale-type localities,” and other possible candidates have been reported even more recently in places like Sweden and China. Maybe there was something special about Cambrian seas that produced so many amazing fossil localities for us to explore.

Endless forms…

The animal life of the Burgess Shale lived at the tail end of the Cambrian Explosion, so it’s an excellent place to study how the ecosystems and animal life of our modern world came to be. Many Burgess Shale animals are so strange that their exact habits and relationships to living species have been subject to long debates, and some of those debates are still ongoing!

FoodWeb
Signs of an early food web. Some Burgess Shale animals, like Wiwaxia (left), were covered in protective spines, a clue that they were in danger of becoming prey to predators like the enormous Anomalocaris (right). Top left: Wiwaxia reconstruction by Nobu Tamura [CC BY-SA 3.0]; Bottom left: Wiwaxia fossil image by Martin R. Smith [CC0]; Top right: Anomalocaris reconstruction by Junnn11 [CC BY-SA 4.0]; Bottom right: Anomalocaris fossil image by Keith Schengili-Roberts [CC BY-SA 3.0].
MoreAnimals
Many Burgess Shale animals are close relatives of modern groups. The utterly bizarre Hallucigenia (left) baffled scientists for a long time, but is now understood to be a cousin of velvet worms. And little eel-like Pikaia (right) shows signs of a dorsal nerve cord, a sign of its close relation to chordates like us! Top left: Hallucigenia reconstruction by Scorpion451 [CC BY-SA 4.0]; Bottom left: Hallucigenia fossil image by Jstuby [CC0]; Top right: Pikaia reconstruction by Apokryltaros [CC BY-SA 4.0]; Bottom right: Pikaia fossil image by Jstuby [CC0]
 

Opabinia_BW
And this is Opabinia, included here because it’s just the best. Image by Nobu Tamura [CC BY-SA 3.0]

Want More?

The Burgess Shale – the Royal Ontario Museum’s website is full of great info
Fossil Gallery – browse through a gallery of  Burgess Shale fossils
Gaines 2014 [technical] is a great overview of Burgess Shale-type fossil sites and preservation

There’s No Scientific Basis for Race – an article we mentioned while answering this episode’s Patron Question.

 

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