The game-changing amniotic egg - April Tucker

TED-Ed · Intermediate ·📰 AI News & Updates ·13y ago

Key Takeaways

The amniotic egg, a game-changing evolutionary breakthrough, allowed animals to live a fully terrestrial life, with its shelled, waterproof, and membranous structure, enabling the first animals to lay eggs on dry land, including the development of the chorion, allantois, and amnion membranes, which work together to provide a safe and watery environment for the embryo to grow and develop, ultimately leading to the evolution of synapsids and sauropsids, the groups that contain mammals, reptiles, b

Full Transcript

would you believe that walruses rattlesnakes and parakeets all once lived in the same house let's go back about 350 million years look around steamy swamps and rainforests of horsetails and ferns cover the region amphibians are the dominant land vertebrates they range in size from newts to crocodiles and all require water to do their egg-laying if they don't go to the water their shell lists jelly like eggs will dry out because of this hazard they spend most of their time living in or near fresh water that is until a breakthrough in evolution changes everything the amniotic egg the amniotic egg is shelled waterproof and can be laid on dry land it is produced by the amniotes a new group of animals named after their revolutionary egg the first amniote is a tetrapod a four-legged animal resembling a small lizard while some amphibians can walk around on land and bury their eggs in wet soil or highly humid areas nothing before the amniotes has the ability to lay its eggs on completely dry land because of this evolved egg the amniotes are the first animals with the ability to live a fully terrestrial life but despite their move inland the amniotes have not abandoned their pond dwelling upbringing in fact the amniotic egg brings the pond with them by enclosing the aquatic environment within its shell this is achieved by four main upgrades that are unique to amniotic eggs let's take a closer look the first development is the most obvious the eggs protective shell it's tough but flexible and has a leathery surface still seen in some reptile eggs today the shell protects the eggs from predators bacteria damage and drying out but unlike the walls of a fish tank the shell of the amniotic egg is porous allowing oxygen to pass through so that the growing amniote inside doesn't suffocate the next two developments are two separate membranes that work together like a pair of lungs they bring oxygen into the embryo while removing carbon dioxide the first is the chorion which is the protective layer that oxygen passes through after entering the shells tiny pores you may recognize the chorion as the thin skin you peel away on a hard-boiled egg think of this waterproof membrane as the in and out doors of the egg it's the entrance for oxygen and exit for carbon dioxide the membrane working with the chorion is the allantois if the chorion is the doors then the atlantis is essentially the lobby of the building it directs the oxygen and carbon dioxide while simultaneously storing unneeded waste from the embryo the chorion and the atlanta the embryo has everything it needs and gets rid of anything it doesn't the last and perhaps the most important development is the amnion the membrane for which the egg is named the amnion is also contained within the chorion and holds the fluid in which the embryo floats because it has left the watery world of the amphibians the amnion is necessary for preventing the embryo from drying out it is the transportable pond that allows the amniote to lay the egg on dry land it's fluid also protects the embryo from any collisions or rough landings like a shock absorber on your bike or car together the shell and these four membranes create a safe watery environment for the embryo to grow and develop the new amniote offspring will continue the process of vertebrate evolution as it explores new land away from the water they will spend the next million years splitting into two distinct groups the synapsids and sirop seeds synapse Ida is the group of animals that contain mammals while sauropsida is the group that contains reptiles birds and dinosaurs these two amniotic groups collectively contain the walruses rattlesnakes and parakeets we know today like a family reunion with relatives of every shape and size coming together from different corners of the earth these animals can all call one place home the amniotic egg you

Original Description

View full lesson: http://ed.ted.com/lessons/the-game-changing-amniotic-egg-april-tucker 350 million years ago, eggs could not survive far from water, therefore animals were water-bound. That is, until the amniotic egg, which allowed animals to live a fully terrestrial life. April Tucker peels back each layer of the amniotic egg, revealing how truly extraordinary this evolutionary marvel is. Lesson by April Tucker, animation by Pew36 Animation Studios.
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The amniotic egg was a game-changing evolutionary breakthrough that allowed animals to live a fully terrestrial life, with its shelled, waterproof, and membranous structure enabling the first animals to lay eggs on dry land, ultimately leading to the evolution of synapsids and sauropsids, the groups that contain mammals, reptiles, birds, and dinosaurs. This lesson explores the development and significance of the amniotic egg, including the chorion, allantois, and amnion membranes, and how they w

Key Takeaways
  1. Identify the key structures of the amniotic egg, including the chorion, allantois, and amnion membranes
  2. Describe the function of each membrane and how they work together to provide a safe and watery environment for the embryo to grow and develop
  3. Explain the significance of the amniotic egg in animal development and the evolution of terrestrial life
  4. Discuss the evolution of synapsids and sauropsids, the groups that contain mammals, reptiles, birds, and dinosaurs
  5. Analyze the importance of the amniotic egg in understanding the history of life on Earth and the diversity of species that exist today
💡 The amniotic egg was a critical evolutionary innovation that enabled animals to transition from aquatic to terrestrial environments, ultimately leading to the diversity of species that exist today.

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