The peppered moth is a small bug. 

The peppered moth is a small bug. 


Baby moths look like small twigs. They can even change color to match the tree. This helps them hide from birds.
Long ago, trees were light. The white moths could hide well. Then, smoke made trees dark. The black moths could hide better.
Now, the trees are light again. The white moths are common once more. It is amazing how they change to stay safe.
The peppered moth is a small insect that flies at night. 

Caterpillars are very good at hiding. They look like small twigs. They can even change color to match their home. This helps them stay safe from birds. The adult moths also use color to hide. Most moths have white wings with black spots. This is called the typica form. 
These colors help the moths survive. Long ago, trees were light in color. The white moths could hide easily. Then, smoke from factories made trees dark. The black moths could hide better on dark bark. This is called industrial melanism. Now, the air is cleaner. The trees are light again. The white moths are common once more. 
The peppered moth is a small insect that flies at night. 
The life of a moth has four main stages. It starts as a tiny egg called an ova. Next, it becomes a caterpillar, which is also called a larva. These caterpillars are amazing because they mimic twigs. They can even sense the color of a twig with their skin. Then, the caterpillar becomes a pupa and stays in the soil for winter. Finally, the adult moth, or imagine, emerges from the pupa.
History shows us how these moths adapt to their world. In 1887, Edward Bagnall Poulton wrote about how they use color to hide. This is called countershading, which helps them look flat instead of solid. Later, a researcher named Bernard Kettlewell showed that birds were the main reason for color changes. Birds eat the moths that are easy to see. This means the moths that match their trees stay alive to have babies. 
Many different colors, or morphs, can exist in one group. The most common is the white morph named typica. 

You can think of these moths like a changing camouflage suit. When the trees were light, the white moths wore the best suit. When the trees turned dark from pollution, the black moths had the better suit. Now that the air is cleaner, the light moths are coming back. This process is called industrial melanism. It shows how a small change in the world can change a whole group of living things. 
The peppered moth, known scientifically as Biston betularia, is a nocturnal insect from the family Geometridae. These moths are found across many temperate regions in the northern hemisphere. They live in diverse locations, including North America, Europe, and much of Asia. This includes countries like China, Russia, Japan, and South Korea. The peppered moth is a famous subject in biology. It serves as a primary example of population genetics and natural selection. Scientists use this species to study how groups of living things change over time.
The life cycle of the peppered moth consists of four distinct stages. It begins as an ova, which is a small egg. The next stage is the larval instar, commonly called a caterpillar. These caterpillars are masters of mimicry. They can match the form and color of a twig to stay hidden. Recent research shows caterpillars can actually sense a twig's color through their skin. This allows them to adjust their body color to match their background. This ability helps them avoid being eaten by predators. After the larval stage, the insect becomes a pupa. The pupae stay in the soil to survive the winter. Finally, the adult moth, or imagine, emerges from the pupa. 
Adult moths have very specific physical traits and behaviors. Their wingspan varies, but they generally have a stout body. The forewings are relatively narrow and elongated. Most moths have white wings peppered with black spots, known as maculation. These black spots can sometimes be gray or brown. In some rare cases, the pattern is a mix of brown and black. The amount of black speckling changes between individuals. Some moths have almost no black, while others appear almost entirely black. 
There are several different color forms, or morphs, within this single species. These morphs are controlled by genetics. In continental Europe, there are three main types. The first is the white morph, called typica. The second is the dark melanic morph, called carbonaria. The third is an intermediate form called medionigra. In Britain, the intermediate form is called insularia. North America has its own black morph named swettaria. It is important to note that these are not different species. All these morphs can interbreed and produce fertile offspring. The dark color in many areas is caused by a dominant allele. This means the trait for being dark is passed down easily. 
The history of the peppered moth provides a clear look at evolution. In 1887, Edward Bagnall Poulton wrote about how the moths use countershading. Countershading is a type of camouflage that makes an object look flat. Before the Industrial Revolution, most moths were the light-colored typica form. They were well-camouflaged against light-colored trees and lichens. However, heavy pollution in England changed the environment. Soot from factories turned tree trunks black and killed many lichens. This made the light moths easy for birds to see. Consequently, the dark carbonaria morph began to flourish. The first carbonaria moth was recorded by Edleston in Manchester in 1848. 
Researchers have worked hard to prove why these changes happened. Bernard Kettlewell conducted predation experiments to study this process. He established that birds were the main force of selection. Birds would eat the moths that did not match their background. This process of genetic darkening due to pollution is called industrial melanism. Modern studies have even looked at how moths see the world. Using ultraviolet cameras, researcher Michael Majerus showed that typica moths reflect ultraviolet light. This helps them blend in with crustose lichens. This camouflage works in both human-visible light and ultraviolet light. 
The peppered moth remains a vital link in understanding biological systems. Its evolution is tied to human activity and environmental health. As air quality has improved, light-colored moths have become common again. This shows how quickly populations can respond to new conditions. The genetic basis for this change is also well-understood. The mutation for melanism is caused by a transposable element. This element moves into a specific part of the cortex gene. This change increases the amount of cortex transcript in the developing wings. By studying these tiny insects, we learn how the entire natural world adapts to change.
🖼️ Images & Media (3)
More to explore
✨ What else?
Related topics you might enjoy
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.