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Spirula

life science Maturity 5-7

This is a small sea animal.

Spirula spirula.jpg
Spirula spirula.jpg
It looks like a tiny squid. It has a shell shaped like a horn. The shell helps it float in the deep sea. It can even make a green light. Can you find a shell on the beach?
Spirula spirula3.jpg
Spirula spirula3.jpg

48 words

This animal looks like a tiny squid.

Spirula spirula.jpg
Spirula spirula.jpg
It has eight arms and two long tentacles. All of its arms have small suckers. It lives in the deep, dark ocean.
Spirula spirula illustration.jpg
Spirula spirula illustration.jpg
Inside its body, it has a small shell. The shell is shaped like a horn. This shell helps the animal float. The animal can also make a green light.
Spirula spirula3.jpg
Spirula spirula3.jpg
This light comes from its tail. You might find its shells on a beach.

79 words

The ram's horn squid is a small sea animal.

Spirula spirula.jpg
Spirula spirula.jpg
It looks like a tiny squid. Its body is about 35 to 45 mm long. It has eight arms and two long tentacles. All of these parts have suckers.
Spirula tentacle club.jpg
Spirula tentacle club.jpg

This animal lives in the deep ocean. During the day, it stays 1,000 m deep. At night, it swims up to 100–300 m. It likes water that is around 10 °C.

Spirula spirula illustration.jpg
Spirula spirula illustration.jpg

Inside its body, the squid has a special shell. This shell is shaped like a flat spiral. It is very light and strong. The shell helps the squid float. It does this by moving fluid in and out of the shell parts.

The squid also has a photophore. This is a light-emitting organ. It is at the tip of the mantle. The animal lets out a green light. This light helps it hide in the deep sea.

Spirula spirula3.jpg
Spirula spirula3.jpg
Many people find these shells on tropical beaches. The shells float to the shore on ocean currents.

173 words

The ram's horn squid is a small sea animal.

Spirula spirula.jpg
Spirula spirula.jpg
It is a type of cephalopod. This means it is related to squids and octopuses. This specific squid is very special. It is the only living member of its group. People call it the ram's horn squid because of its shell. Some also call it the tail-light squid. This is because it can make its own light.
Spirula spirula illustration.jpg
Spirula spirula illustration.jpg

This animal has a very clever way to stay afloat. Inside its body, it has a small, coiled shell. This shell is shaped like a flat spiral. The shell has many chambers inside. The squid can move fluid in and out of these chambers. This helps the squid control how much it floats. This shell is very light and strong. It is a buoyancy organ that helps the squid move through the water.

Spirula spirula.jpg
Spirula spirula.jpg

Scientists have studied this squid for a long time. A Swedish botanist named Carl Linnaeus first described it in 1758. He called it Nautilus spirula. Later, a French naturalist named Jean-Baptiste Lamarck changed its name. In 1799, he moved it to the genus Spirula. This is the name we still use today. A study in 2010 showed that shells can look different in different places.

Spirula tentacle club.jpg
Spirula tentacle club.jpg

Most of these squids live in the deep, dark ocean. During the day, they stay about 1,000 m deep. At night, they swim up to 100–300 m. They like water that is around 10 °C. They are often found near oceanic islands. You can find them near the Canary Islands or South Africa. In 2022, people found them in the Arabian Sea.

Spirula spirula3.jpg
Spirula spirula3.jpg

You might find their shells on a beach. The shells are very buoyant and float easily. They can travel long distances on ocean currents. They wash up on tropical and even temperate beaches. You might see them in New Zealand. Even though they live deep, they sometimes swim near the surface. This is how albatross birds sometimes find them.

Spirula spirula3.jpg
Spirula spirula3.jpg

339 words

The ram's horn squid, known scientifically as Spirula spirula, is a unique deep-water cephalopod.

Spirula spirula.jpg
Spirula spirula.jpg
This mollusk is the only living member of its genus, family, and order. Because of its distinct internal shell, people often call it the ram's horn squid or the little post horn squid. It is also sometimes called the tail-light squid due to its ability to glow. While the live animal is rarely seen in its natural habitat, its shell is a common find for beachcombers.
Spirula tentacle club.jpg
Spirula tentacle club.jpg
These shells are extremely light and buoyant, allowing them to float to shores worldwide.

The body of the squid is relatively small, measuring between 35 mm and 45 mm in length. As a decapod, it possesses eight arms and two longer tentacles, all of which feature suckers. These appendages can be pulled completely inside the mantle. Interestingly, this species lacks a radula, which is a specialized feeding organ found in many other mollusks.

Spirula tentacle club.jpg
Spirula tentacle club.jpg
The squid's most remarkable feature is its internal buoyancy organ. This is a chambered, coiled shell that sits inside the animal.

This internal shell is shaped like an open planispiral, which is a flat spiral where the coils do not touch. The shell consists of two prismatic layers and is mineralized. Mineralization is a trait shared only with cuttlefish and the nautilus among living cephalopods. The shell works through an osmotic process to control buoyancy. Unlike a nautilus, which only exchanges gas and liquid in its three most adoral chambers, the Spirula can move cameral fluid into all of its chambers.

Spirula spirula.jpg
Spirula spirula.jpg
This allows the animal to manage its position in the water column very effectively.

To protect itself, the squid uses a method called counter-illumination. It has a light-emitting organ called a photophore located at the tip of its mantle. This photophore sits between the animal's ear-shaped fins and emits a green light.

Spirula spirula3.jpg
Spirula spirula3.jpg
Observations show the squid often holds a vertical stance with its head up and the photophore pointing downward. This light likely helps it blend into the light coming from above, hiding it from predators below.

The history of naming this species involves two famous naturalists. In 1758, the Swedish botanist Carl Linnaeus first described the animal as Nautilus spirula in his book Systema Naturae. Later, in 1799, the French naturalist Jean-Baptiste Lamarck established the genus Spirula. He transferred the species into this new genus, creating the name Spirula spirula used today. A morphometric study from 2010 noted that shell characteristics can vary based on geography, though no new species were identified.

Spirula spirula lives a life dictated by the depth of the ocean. During the day, it inhabits deep waters reaching 1,000 m. At night, it rises to depths between 100 m and 300 m. The squid prefers water temperatures around 10 °C and lives near oceanic islands and continental shelves. While many consider it a tropical species, its shells wash up on temperate beaches, such as those in New Zealand.

Spirula spirula illustration.jpg
Spirula spirula illustration.jpg
These shells likely travel great distances via ocean currents due to their high buoyancy.

Scientists have found this species in many locations, including the subtropical seas near the Canary Islands. Their shells are also frequently found along the western coasts of South Africa. In 2022, records confirmed their presence in the Arabian Sea. Although they live in the deep, they occasionally enter the upper 10 m of the sea. This is evidenced by the fact that they are sometimes found in the guts of albatross birds.

Spirula spirula3.jpg
Spirula spirula3.jpg
In 2020, an ROV from the Schmidt Ocean Institute recorded the squid in its natural habitat near the northern Great Barrier Reef.

Evolutionary studies link the Spirula to ancient groups of cephalopods. The order Spirulida includes two extinct suborders: Groenlandibelina and Belopterina. Spirula is believed to be the closest living relative to the extinct belemnites and aulacocerids. These groups are all closely related to modern cuttlefish and true squids. This connection helps scientists understand how these complex marine animals have changed over millions of years.

675 words
🖼️ Images & Media (4)
File:Spirula spirula.jpg
Spirula spirula.jpg
File:Spirula spirula3.jpg
Spirula spirula3.jpg
File:Spirula spirula illustration.jpg
Spirula spirula illustration.jpg
File:Spirula tentacle club.jpg
Spirula tentacle club.jpg
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