Sea slugs live in the ocean. 

Sea slugs live in the ocean. 

Sea slugs live in the ocean. Most are gastropods. This means they are sea snails. Over time, they lost their shells. Some have a tiny shell inside. 



Sea slugs are many different kinds of marine animals. Most are gastropods, which means they are a type of sea snail. Over a long time, these snails changed their bodies. Some lost their shells completely. Others have a very small shell hidden inside. 
Many sea slugs have special ways to stay safe. Some have very bright colors to warn others. These colors might mean the slug tastes bad. Others might have stinging cells called nematocysts. The slug Glaucus atlanticus can even store these stinging cells from its prey. This slug eats things like the Portuguese man o' war. Some slugs, like the Pyjama slug, use color to show they are toxic. Other slugs, like the lettuce sea slug, have ruffles to help them. 
Sea slugs have many interesting body parts to help them live. Most have rhinophores on their heads. These are tentacles used for smelling. A small eye sits at the base of each one. 
Scientists have studied these animals for a long time. Thompson wrote about the biology of these molluscs in 1976. Later, Thompson and Brown wrote more in 1984. We know a lot about their different groups now. There are groups called sacoglossans and cephalaspideans. There are even tiny ones called sea butterflies and sea angels. 
Sea slugs are part of a huge world of life. You can find them in the ocean or even in freshwater. Some have even moved to living on land. 
The term "sea slug" is a common name used for many marine invertebrates. Most of these animals are gastropods, which are a group of mollusks that includes sea snails. Over evolutionary time, these gastropods have changed their bodies in many ways. Some have lost their shells entirely to become soft-bodied. Others have developed a very small or internal shell. This loss of a shell happens independently across many different lineages. Because of this, the name "sea slug" describes a group of animals that are not all closely related. 
Sea slugs show an enormous variation in their body shapes and sizes. They also display a wide range of colors and patterns. Many species are partially translucent, meaning light passes through them. For many reef-dwelling species, bright colors serve as a warning to predators. These colors can signal that the slug has a foul taste. They can also warn that the slug contains toxic stinging cells called nematocysts. 
These animals possess several specialized body parts to help them survive. Most sea slugs have a pair of sensory tentacles on their heads called rhinophores. These organs are used primarily for the sense of smell. A small eye is often located at the base of each rhinophore. Many species also have feathery structures on their backs called cerata. These cerata function as gills to help the animal breathe. 
There are many distinct groups of gastropods that fall under the sea slug label. Nudibranchs are a large group of marine gastropods with no shells at all. Sacoglossans are another group, often called "sap-sucking" or "solar-powered" sea slugs because they are frequently green. Cephalaspideans include headshield slugs and bubble snails. Some sea slugs are even tiny, swimming creatures known as sea butterflies or sea angels. 
Different species have developed unique biological mechanisms to thrive. The lettuce sea slug, or Elysia crispata, uses a process called kleptoplasty. It absorbs chloroplasts from the algae it eats. The slug then uses these stolen cells to perform photosynthesis and create sugars. Its body has lettuce-like ruffles to increase surface area for light absorption. 

Sea slugs can vary greatly in physical scale and complexity. The California black sea hare, Aplysia vaccaria, is a massive example. It can reach a length of 75 centimeters and weigh 14 kilograms. Even smaller slugs possess complex nervous systems. For instance, the species Aplysia californica has a brain containing about 20,000 nerve cells. These animals use various defenses, such as ejecting foul ink or secreting viscous slime. 
Researchers have documented these diverse creatures through detailed biological studies. T.E. Thompson published work on the biology of opisthobranch molluscs in 1976. Later, Thompson and G.H. Brown expanded this knowledge in 1984. These studies help us understand how sea slugs relate to other systems. Some acochlidian sea slugs have even transitioned to living in freshwater streams. At least one group has even made the evolutionary transition to living on land. 
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