Long ago, fish lived in the water. 

Long ago, fish lived in the water. 


About 400 million years ago, a big change began. 

Some fish lived in shallow, muddy water. They needed new ways to live. They grew lungs to breathe air. Lungs are gas-filled bags that help an animal get oxygen. 
Over time, these fish became tetrapods. Tetrapods are animals with four limbs. This group includes all birds, reptiles, and mammals. 
The history of life on Earth includes a huge change. 

How did this change happen? It began with lobe-finned fishes. These fish had fins with strong bones inside. 

Scientists have found many fossils to help tell this story. 

Much of what we know comes from special fossil finds. In the late 20th century, new fossils helped experts understand the change. A fish called Kenichthys was found in China. It is about 395 million years old. This fish shows a middle step in how nostrils moved. Its jaw bones were separated to let a new nostril form. This fossil is a key piece of the puzzle for paleontologists.
We can see these old changes in animals today. 
The transition from water to land is one of the most profound evolutionary changes in history. This process led to the rise of tetrapods. Tetrapods are a biological superclass that includes all living and extinct amphibians, reptiles, birds, and mammals. 
The story begins about 400 million years ago during the Devonian Period. This era is often called the "Age of Fish" due to the massive diversification of fish groups. 
A key part of this evolution was the development of lungs. Lungs likely originated as a gas-filled bladder, or swim bladder, growing from the gut. 
Breathing in tetrapods relies on several conserved biological mechanisms. First, they use a CO2/H+ detection system to trigger a breath. This system detects a buildup of carbon dioxide in the blood rather than a lack of oxygen. Second, they use a surfactant system in the lungs to help with gas exchange. 
As these animals moved into shallower waters, their facial anatomy changed too. Most bony fish have four nares, or nasal openings, to let water flow through the nose. Tetrapods, however, developed internal nares called choanae. These allow animals to draw air through the nose and into the mouth. The fossil Kenichthys, found in China, provides a glimpse into this change. It is roughly 395 million years old. This fish shows a stage where the maxilla and premaxilla bones in the jaw were separated. This separation created an opening that acted as an early version of the choana.
We can trace the physical shift through a sequence of transitional fossils. 

The evolution of the tetrapod body plan is a massive biological achievement. It required changing how an animal breathes, moves, and senses its world. 
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