Showing posts with label France. Show all posts
Showing posts with label France. Show all posts

Tuesday, June 24, 2014

Grès à Voltzia: Mid-Triassic French Lagerstätten

In our last post*, we got our first glimpse of some of the flora and fauna that inhabited the earth 240 MYA, in the Mid Triassic Period.  In that post, we mostly looked at the aquatic environments, fossils found at a fascinating place in Italy called Monte san Giorgio.  In good time, we will learn more about the terrestrial ecosystems and what lived on land.  But first, let us look between the aquatic and the terrestrial.  Let's look at the seashores of this ancient Earth.

To gain a better understanding of what lived on the margins of the oceans, we can look at Grès à Voltzia in France.  The importance of this site lies not just in the preservation of a large number of different organisms, but in the exceptional quality of said preservation.  Grès à Voltzia is considered a Lagerstätte, a German word referring to fossil sites that feature remarkable detail in the preservation of fossils, with famous examples including the Solnhofen Limestone in Germany and the Green River Formation in Wyoming.  The depositional environment that would one day become Grès à Voltzia featured deltas very close to the shore, and were home to many animals.  This prime habitat resulted in the burial of both terrestrial and marine animals, painting an even more complete picture of this ecosystem.
Here we have a picture lifted from my Instagram that shows three very different animals from the aforementioned Lagerstätten. What ties these three animals is their common ability to fly.  On the right, we have pictures of two fossil casts from the Solnhofen Limestone in Germany, deposited about 150 MYA.  Archaeopteryx, the primitive bird/dinosaur link, is on top, and Pterodactylus, a type of pterosaur, is on the bottom.  The picture on the right is of a bat from the Eocene of Wyoming, found in the Green River Formation, deposited approximately 50 MYA.  Despite its age, Icaronycteris was fairly similar to modern bats.  All three of these animals convergently evolved flight, and were not derived from a common ancestor.
Along the shores of these 240 MY old rivers, horsetails and and ferns grew in abundance, as well as several different types of gymnosperms.  Large amphibians such as Eocyclotosaurus made their home in these waterways, as they were tied to moist environments just like modern amphibians are today.

Horseshoe crabs like Limulitella, very similar to modern horseshoe crabs, are commonly found, as are many types of crustaceans, such as Antrimpos, a type of shrimp.

Insect larvae includes dipteran (true flies), odonatopteran (dragonflies and damselflies) and ephemeropteran (mayflies).  Annelids (segmented worms like the modern earthworm) have also been discovered here, as well as fish and a jellyfish.

The horsetails, such as Equisetites, grew along the edges of the water, while the gymnosperms grew further inland, probably reaching at least several meters in height.

A large number of insects, including the dipterans and ephemeropterans that we already mentioned, lived here.  Proto-cockroaches (blattopterans), beetles (coleopterans), and hemipteroids were all present, as well as myriapods (centipedes and millipedes), and spiders.  A strange mixture of modern and exotic looking animals to be certain!

Next time, we will be continuing our investigation regarding the flora and fauna of the Mid Triassic by learning about two North American geologic formations that might reveal a bit more about the terrestrial ecosystems.  Join us!

*As those of you who are familiar with myself and this blog, you are likely familiar with the fact that once I start talking, it takes a good deal to make me shut up.  The same is true for writing this blog.  When I originally came up with the idea to do a post about the flora and fauna that inhabited the Earth 240 MYA, flora and fauna that many people, myself included, are relatively unfamiliar with, it was supposed to be a relatively short post, maybe four or five paragraphs in length.  Instead, I ended up just writing and writing and writing.  I realized, as I often do, that A) so few people would be reading these posts to begin with, and B) those people who do wind up reading these posts would likely not have stuck around for an immense post that talks about everything from the ichthyosaurs of Italy, the stromatolites of Colorado, the insects of France, the communal latrines of Tasmanian devils, the lack of communal latrines of Maiasaura, the communal latrines of dicynodonts (yes, poop is cool), the heterodont condition of primitive whales, and everything in between, that it made more sense to split the post up.  This is the second installment of five (so far, at least) regarding the flora and fauna of the Mid Triassic Period, approximately 240 MYA.  It now occurs to me that I probably lost most of you in this long-winded exposition.  I don't want to just delete all this though, as future generations will find this fascinating glimpse into my thought processes an untapped reservoir of knowledge that is absolutely vital to an understanding of the ultimate being I shall become.  I think I will just make this whole thing an endnote.

Works Cited:

Friday, May 24, 2013

Lions and Tigers: Less Than Meets The Eye

If you are in a zoo or out in the wild, differentiating between a lion and a tiger is much less impressive than many other feats, such as walking and chewing gum or recognizing that yellow snow is not for consumption.  However, when all you have is their bones, differentiating between the two becomes much more of a challenge.

According to the authors of the excellent book "The Big Cats and Their Fossil Relatives," around the turn of the century (meaning the 1800s to the 1900s), French paleontologist Marcelin Boule devised a number of criteria to differentiate the skeletons of these two animals from each other.  However, these criteria aren't just "the lion has an extra vertebra," or "the tiger has a striped femur."  Nothing that simple.  It's more like "the tiger has a slightly more pointy fronto-nasal suture as it reaches towards the posterior end of the skull."  Yeah.  For the most part, not all that explicit.  In the picture below (scanned from the Big Cat book mentioned above, all photo credit goes to them), you can see how subtle these differences can be.

So what are the implications for paleontologists?  Ultimately, it shows us all how very little we can actually figure out about animal behavior from their bones, as well as how very similar such different creatures can be.  Sure, looking at the skull of a lion or a tiger, most people would have little difficulty figuring out that they ate meat.  But would looking at that slightly pointier fronto-nasal suture in the tiger really show us how much less social it is compared to the lion?  Would the minute differences in the fronto-parietal suture reveal that the male lion sports a mane?  Would any sort of suture be able to tell us that the lion is one of very few cats to sport a solid colored coat (like the mountain lion and the jaguarundi), while the tiger sports orange and black stripes?  In the end, these minute differences in the bones remind us that we will probably never be able to learn everything there is to know about ancient and extinct species, and that there are probably many more extinct animals out there that are waiting to be discovered.  It's more than likely that we already have the bones: we just need to tools to differentiate between them.

This was the birthday post of Tom Bonan! Happy birthday, Tom! If you have a birthday coming up, just email me the date at cuyvaldar123946@gmail.com with the date and your favorite animals, and I will do my best to get a post in! And if you like what you are reading, please feel free to follow us here or via Facebook!

Tuesday, May 7, 2013

The Stegosaur Song (Stegosaurus Week)

The second of a pair of songs that I made especially for Stegosaurus Week!  "The Stegosaur Song" to the tune of "The Mexican Hat Dance."  Below is the link to the song:


Here are the lyrics to the song:


Full Lyrics:

Primitive stegosaurs they are all found in China, England, France, and Tibet
Lexovisaurus and Regnosaurus and a stegosaur not named quite yet
Chialingosaurus and Craterosaurus and Jiangjunosaurus too
Next we have the huayangosaurs from China and so far they number but two

[Chorus:]
Oh, the plates and the spikes like the head of a trike with them you definitely don't want to mess
The stegosaurs lived in the Jurassic but some lived to the dawn of the Cretaceous

Chungkingosaurus and Huayangosaurus and now we move on to the set
Gigantspinosaurus and then Kentrosaurus and Loricatosaurus you bet
Those last three were all primitive stegosaurids but still thought to be more advanced
There are two more still Paranthodon and Tuojiangosaurus I bet you're entranced

[Chorus]

The dacentrurines are the second to last of all the groups of stegosaurus
Dacentrurus who gives name to the group Miragaia and then there are no more
The stegosaurines are the last of the bunch Stegosaurus most notorious
Hesperosaurus and Wuerhosaurus and last of all Hypsirophus

[Chorus]







Are you diggin' the songs?  Well, then check out our playlist below!

CLICK HERE TO BE DIRECTED TO A FUN-FILLED PLAYLIST OF AMAZING SONGS.


Want to learn more about Stegosaurus and it's relatives?  Well, check out the Homebase for Stegosaurus Week HERE to partake in more of the festivities! 

Wednesday, August 8, 2012

Top Ten: Extinct Sea Monsters (Part 4 of 5)

7.  Archelon - Archelon is the largest sea turtle that has been discovered to date, the closest living relative that Archelon has is the "Critically Endangered" leatherback sea turtle, the largest sea turtle alive today.  Living in the Late Cretaceous Western Interior Seaway between 75-65 MYA, Archelon has been discovered in the states of South Dakota, Wyoming and Kansas. 

8.  Leedsichthys - Often cited as the largest fish known to humankind, the largest Leedsichthys had an estimated length of 72 feet, but some researchers believe that it could have grown to sizes that would rival those seen in the blue whale, the largest known animal ever to live on planet Earth.   Although Leedsichthys swam the seas only during the Jurassic Period, the group that it belonged to survived until the end of the Cretaceous Period.  Remains of this filter feeder have been uncovered in England, France, Germany, and Chile.  


COMING UP NEXT WE HAVE:

9.  Tanystropheus
10. Tylosaurus

This post is part of the "Top Ten: Extinct Sea Monsters" series.  For the rest of the posts in this series, click HERE.  

Top Ten: Extinct Sea Monsters (Part 2 of 5)

So why did I split this post up into five parts?  Well, originally it was all just one big post, but it was simply too big, like so often happens.  So I will just post the rest of the parts throughout the next few days.  So here is part number two!
3.  Liopleurodon - A member of the short-necked Plesiosaurs, or Pliosaurs, Liopleurodon was the top predator of the Middle and Late Jurassic shallow seas that covered Europe at that time.  Fossils of Liopleurodon have been found in England, France, Germany, and Russia. 


4.  Shonisaurus - Shonisaurus is a fascinating example of convergent evolution.  When similar environmental and ecological pressures went to work on the ancestors of Shonisaurus, and the rest of the ichthyosaurs, as well as the ancestors of the dolphins and porpoises, they produced very similar results in very different kind of animals.  Shonisaurus and the rest of the ichthyosaurs are marine reptiles, while the dolphins and porpoises are both mammals.  Shonisaurus lived during the Late Triassic Period, right around when the dinosaurs were first making their debut.  At least thirty-seven skeletons of this giant have been discovered in Nevada. In fact, Nevada is still a fantastic place to see some of these creatures, especially Berlin Ichthyosaur State Park in Berlin, a few hours outside of Reno (pictured below)!  This is where the first bones belonging to Shonisaurus were actually discovered!  Definitely high on the list of places that I want to go!



Coming Up:
5.  Elasmosaurus
6.  Dunkleosteus
7.  Archelon
8.  Leedsichthys
9.  Tanystropheus
10. Tylosaurus

This post is part of the "Top Ten: Extinct Sea Monsters" series.  For the rest of the posts in this series, click HERE.  
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