Palaeo cast
Castle Bank: A New Ordovician Lagerstätte
updated
The fossil record of caecilians is incredibly poor, with only 10 specimens available for researchers to piece together their evolutionary history with. This is further problematic because without a firm understanding of caecilian evolution, we can’t understand the origins of lissamphibians, which includes the ecologically significant groups of frogs and salamanders.
Published in Nature today, a new study led by Ben Kligman, Petrified Forest National Park and Virginia Tech, details numerous specimens of a new fossil caecilian. Discovered within a Triassic deposit, Funcusvermis gilmorei is not only the oldest known caecilian, but it also displays a unique combination of anatomical characteristics that helps illuminate the evolutionary origins of caecilians and all lissamphibians.
Whilst this discovery goes some way to answer some of the bigger questions, other problems that are raised, most notably why there is such an over-representation of Funcusvermis‘s lower right jaw.
Website: palaeocast.com/lissamphibian-origins
Patreon: patreon.com/palaeocast
The fossil record of caecilians is incredibly poor, with only 10 specimens available for researchers to piece together their evolutionary history with. This is further problematic because without a firm understanding of caecilian evolution, we can’t understand the origins of lissamphibians, which includes the ecologically significant groups of frogs and salamanders.
Published in Nature today, a new study led by Ben Kligman, Petrified Forest National Park and Virginia Tech, details numerous specimens of a new fossil caecilian. Discovered within a Triassic deposit, Funcusvermis gilmorei is not only the oldest known caecilian, but it also displays a unique combination of anatomical characteristics that helps illuminate the evolutionary origins of caecilians and all lissamphibians.
Whilst this discovery goes some way to answer some of the bigger questions, other problems that are raised, most notably why there is such an over-representation of Funcusvermis‘s lower right jaw.
Website: palaeocast.com/lissamphibian-origins
Patreon: patreon.com/palaeocast
In this third and final part examines the need for modern films and documentaries to be able to substantiate their claims. How do we know whether or not the scenes they depict are based on palaeontological facts? Then the series ends by stepping back and considering what the point of all this science communication is anyway.
Website: palaeocast.com/palaeoart-in-pop-culture
Patreon: patreon.com/palaeocast
In this second part of a special three-part episode, Vicky Coules talks all about dinosaurs in films and animation, but examining titles from within their original historical scientific and social contexts. How have such titles been influenced by the world around them? But equally, how were these titles able to influence science?
Website: palaeocast.com/palaeoart-in-pop-culture
Patreon: patreon.com/palaeocast
In this special three-part episode of Palaeocast, guest host Dr Suresh Singh interviews Vicky Coules about the history of palaeontology in pop culture. Vicky is a PhD student at the University of Bristol, but has a background in art, engineering and documentary production. Her current research focuses on the interrelationship between palaeontology as a science and as an art, with a focus on late 19th and early 20th century America.
Website: palaeocast.com/palaeoart-in-pop-culture
Joining us for the second part of this interview are Thomas Clements and Jake Atterby, lead authors on a paper in which they address this issue as communicators of science. We discuss what some of the most common negative tropes within these games are, whether or not games should be used to teach palaeo, and why any of us should care anyway.
If you like this content and wish to see full reviews of many of these games (and lots more), please check out the Palaeocast Gaming Network channel on YouTube.
Link: palaeocast.com/palaeo-gaming
Joining us for this episode are Thomas Clements and Jake Atterby, lead authors on a paper in which they address this issue as communicators of science. We discuss what some of the most common negative tropes within these games are, whether or not games should be used to teach palaeo, and why any of us should care anyway.
Link: palaeocast.com/palaeo-gaming
In this episode we discuss these new discoveries with the lead author of the study Dr Davide Foffa who is currently a postdoctoral fellow at Virginia Tech, though this work was part of his previous position at the National Museum of Scotland (NMS). This is part of a larger project looking at the Late Triassic 'Elgin Fauna' along with collaborators Richard Butler (University of Birmingham), Stig Walsh and Nick Fraser (NMS), Steve Brusatte (University of Edinburgh) and Paul Barrett (Natural History Museum, London).
Dr Dale Russell of the Canadian Museum of Nature decided to explore this question further than most. He, along with model-maker Ron Séguin, produced a speculative model of what the Late Cretaceous dinosaur, Stenonychosaurus, might have evolved into had the extinction event not happened. This ‘dinosauroid’ has proven to be very controversial to say the very least.
In this episode, we’re joined by Dr Will Tattersdill, a literary critic and expert in science fiction from the University of Birmingham, UK. He gives us unique insights into the dinosauroid, as we explore its concept, reception and legacy. We weigh up the value of the model as piece of palaeoart, as an academic statement, and as a conversation starter.
Link: palaeocast.com/russells-dinosauroid
palaeocast.com/palsoc
In the first part of this two-part episode, we speak to Dr Victor Monin a historian of science who specialises in the history of palaeontology, especially palaeoart. How did PalSoc influence how fossils were visually represented in scientific literature?
Website: palaeocast.com/palsoc
Exploring the taphonomy (the processes that occur to a body between death and discovery) and palaeoecology (how fossil organisms lived and interacted with other organisms and their surroundings) of some of the fish from Bolca is Dr Valentina Rossi from University College Cork, Ireland. In this episode, we look at how colour patterns are preserved in a fossil moonfish and look at what that can tell us about how the species lived.
Website: palaeocast.com/bolca-fish
Website: palaeocast.com/aquatic-spinosaurids
Since they have a soft exoskeleton, marellomorphs have a very poor fossil record and so the discovery of any new specimens outside of the Burgess Shale can be incredibly significant. In this interview, we speak to Joe Moysiuk of the University of Toronto and Royal Ontario Museum about his newly described species Tomlinsonus dimitrii.
Website: palaeocast.com/marrellomorphs
In this episode, we speak to Dr Robert McAfee (Philadelphia College of Osteopathic Medicine - Georgia) about his research looking into the fossil record of sloths in all of its “beautiful absurdity”. His work has been focussed on the island of Hispaniola (Haiti and the Dominican Republic) and the remarkably rich cave deposits found there.
palaeocast.com/hispaniolan-sloths
Website: palaeocast.com/tanis
The end-Cretaceous mass extinction was a cataclysmic asteroid impact that ushered in the end of the non-avian dinosaurs and forever changed the course of evolution on Earth. But what can we say about the timing of the event, other than it happened 66 million years ago?
Well, it turns out that Tanis, a relatively-recently discovered fossil site in North Dakota, is full of lines of evidence that are allowing earth scientists to piece together when the impact occurred.
In this episode, we’re joined by Melanie During, Uppsala University, who has been examining the details of the bones of fish to say more about the world either side of the event.
In the first part of this episode, we examined the political context, work around Myanmar’s fossil exportation laws and follow the money back through the trade routes. Now, in the second part, we discuss why it’s currently unethical to study Burmese amber, what palaeontologists can do about that, and whether the situation might change in the future.
Joining us to guide us through this process are Nussaïbah Raja (Friedrich-Alexander University Erlangen-Nürnberg) and Dr Emma Dunne (University of Birmingham).
palaeocast.com/burmese-amber-pt2
In the first part of this episode, we examine the political context, work around Myanmar’s fossil exportation laws and follow the money back through the trade routes. In the second part (released in two weeks), we’ll be discussing why it’s currently unethical to study Burmese amber, what palaeontologists can do about that, and whether the situation might change in the future.
Joining us to guide us through this process are Nussaïbah Raja (Friedrich-Alexander University Erlangen-Nürnberg) and Dr Emma Dunne (University of Birmingham), authors of a soon-to-be-released study looking at exactly these issues.
Website: palaeocast.com/burmese-amber-pt2
Christine has had a long and distinguished career, and is currently a researcher at the University of Bristol in the UK. Her work is particularly focused on mammal locomotion and ecology. We’ll be talking about some of the research Christine has led, including on hoofed mammals, sabre-toothed South American ‘marsupials’, and Australia’s extinct giant kangaroos. We’ll talk about the use and limits of comparative anatomy, the importance of direct observation of specimens in the discipline of palaeontology, and how things have changed for researchers during her lifetime.
Link: palaeocast.com/mammal-locomotion-and-ecology
In this episode, we speak to behavioural geneticist and palaeoartist and Dr Emily Willoughby, University of Minnesota. We take a look at what palaeoart is, how to go about making your own artwork and the release of her new book ‘Drawing and Painting Dinosaurs‘.
palaeocast.com/drawing-and-painting-dinosaurs
Fossils preserved in this amber include representatives from numerous different groups including arachnids, insects, vertebrates, and plants. Whilst the amber itself (as fossilised tree sap/resin) is produced in a terrestrial environment, some marine species have been caught up in amber. This includes such animals as ostracods, snails and surprisingly even an ammonite!
In the first part of this series, we speak to Dr Javier Luque, Harvard University, about the discovery of a crab in amber. We put this discovery in context by first examining what crabs are, before turning our attention to their fossil record. In the next episode, we'll take a look at the details of the discovery.
Following on from this, we will discuss the political situation in Myanmar and question whether or not working with Burmese amber is currently ethical.
Links:
palaeocast.com/burmese-amber-crab
science.org/doi/10.1126/sciadv.abj5689
Fossils preserved in this amber include representatives from numerous different groups including arachnids, insects, vertebrates, and plants. Whilst the amber itself (as fossilised tree sap/resin) is produced in a terrestrial environment, some marine species have been caught up in amber. This includes such animals as ostracods, snails and surprisingly even an ammonite!
In the first part of this series, we speak to Dr Javier Luque, Harvard University, about the discovery of a crab in amber. We put this discovery in context by first examining what crabs are, before turning our attention to their fossil record. In the next episode, we'll take a look at the details of the discovery.
Following on from this, we will discuss the political situation in Myanmar and question whether or not working with Burmese amber is currently ethical.
Link: palaeocast.com/burmese-amber-crab
Image: Reconstruction of Cretapsara athanata by Franz Anthony
But when did bats evolve and who are their closest relatives? Do they have a good fossil record? Is vampirism an effective feeding strategy?
In this episode, we're joined by Dr Nancy Simmons, Curator-In-Charge of Mammalogy at the American Museum of Natural History, who introduces us to the wonderful world of bats and their fossil record.
Link: palaeocast.com/bats
Joining us for this interview are Simone Giovanardi and Daniel Thomas who have just described a new species of giant penguin from New Zealand. Together, we explore penguin evolution and how their new species Kairuku waewaeroa fits into this story.
palaeocast.com/penguins
Joining us for this interview are Drs Martin Qvarnström and Martin Fikáček of Uppsala University and National Sun Yat-sen University, respectively. Both were part of a team that identified and described a new species of beetle preserved within a dinosaur coprolite!
In this second part of this interview, we take a look at both the coprolite and the beetle in closer detail and ask what is the significance of this association for the study of both? We also consider the potential for coprolites to be micro-lagerstätten.
Link: palaeocast.com/coprolite-inclusions
Image: Małgorzata Czaja
Joining us for this interview are Drs Martin Qvarnström and Martin Fikáček of Uppsala University and National Sun Yat-sen University, respectively. Both were part of a team that identified and described a new species of beetle preserved within a dinosaur coprolite!
In this first part of the interview, we provide the context for the discovery, discussing the study of coprolites and of beetles. Part 2 of the interview will be released soon.
Link: palaeocast.com/coprolite-inclusions
Podcast link: palaeocast.com/beasts-before-us
In this episode, we talk to our very own Dr Elsa Panciroli about her new book Beasts Before Us. In it, she tells the untold story of mammalian evolution, tracing the origin of synapsids back to the Carboniferous. You’ll be taken to fossil sites around the world to meet some of these pioneering animals and some of the palaeontologists that discovered them.
For this interview, we’ll give you an overview of the early evolution of synapsids and dispel many of the misconceptions about what our ancestors were really like.
Beasts Before Us is available to buy online and in all good book shops.
COMPETITION: To be in with a chance of winning a copy of the book, simply comment below which your favourite synapsid is and why.
Synapsida is a huge group that contains all mammals and more. It stretches back to the Carboniferous, so there are so many different species to choose. Anything from the very first synapsid, through to Dimetrodon, Lystrosaurus, Morganucodon or even your pet cat today!
At the end of June, Elsa will pick two winners from all entries across our social media accounts. Good luck!
Crocodiles are often referred to as “living fossils”, but if we compare modern and ancient species, does that label hold up? What different kind of morphologies (shapes) did past crocs have and how did they live? How quickly did this past diversity arise and why are we left with so few species today? What’s to stop them from diversifying again?
In this episode, we speak to Dr Tom Stubbs, University of Bristol, about his recent work analysing changes in crocodylomorph disparity through time. We look at some of the weird and wonderful crocs of the past and work through his methods for calculating their rates of evolutionary innovation. Part 2 of 2
Crocodiles are often referred to as “living fossils”, but if we compare modern and ancient species, does that label hold up? What different kind of morphologies (shapes) did past crocs have and how did they live? How quickly did this past diversity arise and why are we left with so few species today? What’s to stop them from diversifying again?
In this episode, we speak to Dr Tom Stubbs, University of Bristol, about his recent work analysing changes in crocodylomorph disparity through time. We look at some of the weird and wonderful crocs of the past and work through his methods for calculating their rates of evolutionary innovation. Part 1 of 2
This kind of soil hasn’t always existed, so in order to understand early conditions on land, we first need to understand what can be constituted as a soil and when these first exited. Is there soil on the Moon? Can soil fossilise?
Since most terrestrial ecosystems are rooted in soil, if we want to understand how life established itself on land, we first need to know how soils form, how they have changed over geological time and which kinds of plants and fungi can live without it.
Joining us in this episode is Dr Ria Mitchell, Experimental Officer in X-ray Computed Tomography at the University of Sheffield, UK.
Part two of our interview with Dr Larisa DeSantis of Vanderbilt University on the 'dietary ecology' of Smilodon.
Smilodon is probably one of the most iconic mammalian apex predators with its extended upper canines and robustly-built forearms. In fact, when we compare Smilodon to modern cats (felids), we don't see these same characteristics. So what were they used for? Was Smilodon specialised for any particular behaviour?
Owing to the unique preservation of the tar seeps at Rancho La Brea, Los Angeles, USA, we can find an overabundance of predators, including Smilodon fatalis, Canis dirus, Panthera atrox and Puma concolor. This allows researchers to reconstruct the predatory landscape of the area in the Pleistocene. Who was eating what? Was there any competition between predators?
Smilodon is probably one of the most iconic mammalian apex predators with its extended upper canines and robustly-built forearms. In fact, when we compare Smilodon to modern cats (felids), we don’t see these same characteristics. So what were they used for? Was Smilodon specialised for any particular behaviour?
Owing to the unique preservation of the tar seeps at Rancho La Brea, Los Angeles, USA, we can find an overabundance of predators, including Smilodon fatalis, Canis dirus, Panthera atrox and Puma concolor. This allows researchers to reconstruct the predatory landscape of the area in the Pleistocene. Who was eating what? Was there any competition between predators?
All of these questions feed in to the ‘dietary ecology’ of Smilodon and here to discuss that, and more, is Dr Larisa DeSantis of Vanderbilt University.
But how much do we actually know about the animal that produces the conch? We might be able to make superficial inferences based on comparisons with the modern Nautilus, but ammonites are actually closer related to squid and octopuses.
So could you recognise an ammonite without its shell?
Prof. Christian Klug of the University of Zurich has recently described just that: a naked ammonite. In this episode, we learn about ammonite soft body anatomy and sink our teeth into the mystery of how this ammonite lost its shell.
palaeocast.com/naked-ammonite
The Soom Shale is an Ordovician lagerstätte in the Western Cape of South Africa. Whilst it lacks the diversity of organisms seen in other lagerstätten, such as the Burgess Shale or Chengjiang, it more than makes up for it in the fidelity of preservation.
The taphonomic pathway to the fantastic preservation in the Soom Shale is long and complex, reliant not only on local conditions, but also ties into global climatic events. It’s vitally important when interpreting fossils to understand the taphonomy as it provides so much context as to what you can see in fossils and, as equally important, what you can’t.
Joining us for this episode is Prof. Sarah Gabbott, a taphonomist from the University of Leicester, UK.
Piecing together the early lives of dinosaurs is difficult due to a lack of fossils from juvenile and embryonic stages. In this episode, Elsa Panciroli talks to Dr Kimi Chappelle, a postdoctoral fellow at the Evolutionary Studies Institute, part of the University of Witwatersrand in Johannesburg, South Africa. Chappelle specialises in sauropodomorphs – the precursors of the giant sauropod dinosaurs like Diplodocus. Her recent work is helping build a picture of their growth and development.
Chappelle is a champion of South African palaeontology and nominated as one of the Mail and Guardian’s top 200 young South Africans in Science and Technology. With her colleagues she has published a stunning new study of sauropodomorph embryos from a fossil nest site in South Africa. This new paper visualises and describes their tiny skulls using synchrotron scan data. These fossils provide new information on dinosaur developmental processes, and places South African fossils at the heart of our understanding of their early evolution. Chappelle also talks about the latest work she’s involved with in Zimbabwe, and future research into the growth patterns of the largest dinosaurs to have ever lived.
Colonial attitudes towards people of non-European descent have meant that their natural heritage was often plundered and sent back to Europe and the United States to fill museum shelves. Researchers continue to benefit from these resources. How should we change our scientific practice to recognise this legacy and avoid making the same mistakes now and in the future?
In the first part of the episode, Elsa speaks to Christa Kuljian, a historian of science and author of Darwin’s Hunch, based at the University of the Witwatersrand in Johannesburg. She’ll examine the legacy of racism in science, focusing on palaeoanthropology in South Africa, including figures like Robert Broom and Raymond Dart. We’ll hear how attitudes toward different races shaped the research and conclusions of past generations of scientists.
In the second part, Rob Theodore, Exhibitions and Displays Coodinator at the Sedgewick Museum in England, talks about the legacy of colonialism in museum collections. We’ll find out about the ways in which specimens were collected in the past, and how this was related to contemporary events and attitudes. We’ll also find out what moves being taken to decolonise museums and refocus public outreach to recognise the past and move positively into the future.
Details of the upcoming Virtual Natural History Museum project, aimed at academics and museum professionals.
We can also use the Pleistocene (which is relatively similar to the modern world in terms of continental layout, landscapes, and ecological niche availability) to explore questions of palaeoecology, biotic interactions and how changes in the environment can affect the local fauna. The relatively young age of the Pleistocene means that the available data is very different to palaeoecological studies of the Cretaceous or Eocene. This means that it is more appropriate for drawing comparisons to what's happening today or what might happen in the future with climate change.
Joining us in this interview is Dr Jacquelyn Gill, an Associate Professor at the University of Maine, who works in palaeoecology. We talk about the different data available, the importance of understanding palaeoecology, including a recent paper from her group on seabird ecology in the Falklands, and what this might mean for the future.
Diatoms are unicellular plants that produce their cell walls, termed frustules, out of silica. These intricate frustules are what we find preserved in the fossil record and they can contain an absolute wealth of information.
In this interview, Prof. Anson Mackay, University College London, joins to discuss his work on the diatoms from Lake Baikal, Siberia. We learn why lakes are such special ecosystems and what diatoms can tell us about the world through studies of their palaeoproductivity over thousands of years.
Diatoms are a major group of algae found in waters all around the world. As photosynthetic phytoplankton, they are hugely important ‘primary producers’, integral to nearly every aquatic food chain. They are responsible for a large proportion of the world’s oxygen production, with estimates ranging between 20 and 50%.
Diatoms are unicellular plants that produce their cell walls, termed frustules, out of silica. These intricate frustules are what we find preserved in the fossil record and they can contain an absolute wealth of information.
In this interview, Prof. Anson Mackay, University College London, joins to discuss his work on the diatoms from Lake Baikal, Siberia. We learn why lakes are such special ecosystems and what diatoms can tell us about the world through studies of their palaeoproductivity over thousands of years.
The horseshoe crabs (Xiphosura) are a group of large aquatic arthropods known from the East coast of the USA, and the Southern and Eastern coasts of Asia. Despite their name, they are not actually crabs at all, but are chelicerates (the group containing spiders and scorpions). As a group, the horseshoe crabs possess an extremely long fossil record, reaching as far back as the Ordovician Period, some 480 million years ago. Since that time, they would appear to have undergone very little change, leading the horseshoe crabs to become the archetypal ‘living fossils’.
Joining us for this two-part episode is Dr Russell Bicknell, University of New England, Australia. We discuss what makes a horseshoe crab, before taking questions from our listeners as to all aspects of horseshoe crab ecology and what we can infer from them about other extinct arthropods.
Amongst some notable exceptions to this issue is the YouTube channel PBS Eons, who have produced a hugely successful series that also stands up to scientific scrutiny. In this interview, we're joined by Eons host Kallie Moore who discusses everything to do with the show, from how it is researched and shot, to the benefits of using YouTube for outreach.
In this interview, we speak with Dr Alessandro Chiarenza, a research associate at University College London about his new paper published today in PNAS showing that it really was the asteroid impact that killed the dinosaurs. This new study, based on research he did during his PhD at Imperial College London, uses a large amount of data put into climatic models to analyse different scenarios caused by an asteroid impact, the Deccan Traps volcanism, and a combination of the two. This study showed that the asteroid caused a prolonged impact winter, causing the extinction of the dinosaurs.
Early tetrapod work was pioneered by Professor Jenny Clack. She did a lot of early field work and description, understanding this transition better than anyone. Sadly, Professor Clack passed away in March, but has left behind a legacy of other professors, post docs and students around the globe which she inspired. In this episode, we talk to Dr Laura Porro from University College London about her work on early tetrapod feeding and skull mechanics, and how the skull changed over the water-to-land transition, work which was done with and inspired by Jenny.
What we don’t imagine are plesiosaurs at the South Pole, nor would we ever picture them swimming amongst icebergs or poking their heads out of holes in the ice to breathe. We’d never think to find them in freshwater either. Even more surprising is that the evidence for this radical vision of polar plesiosaurs is found preserved in the precious mineral opal.
In this interview, we’re joined by Dr Benjamin Kear, Curator of Vertebrate Palaeontology at the Museum of Evolution, Uppsala University in Sweden. He paints for us a picture of life at the South Pole and the importance of polar habitats in driving the evolution of the plesiosaurs.


