Log in Sign up
Back to Discover
🧬

Demosponge

life science Maturity 11-13

Sponges live in the sea.

Spongia officinalis.jpg
Spongia officinalis.jpg
They come in many shapes. Some are very big. Some are bright colors. They can live a long time.
Acarnus erithacus.jpg
Acarnus erithacus.jpg
We use some for baths. Do you like sponges?

37 words

Sponges are amazing sea animals.

Spongia officinalis.jpg
Spongia officinalis.jpg
Most sponges live in the ocean. Some even live in fresh water. They come in many bright colors. They also have many shapes.
Acarnus erithacus.jpg
Acarnus erithacus.jpg
Some sponges grow very large. They can live for a long time. Some live for 1,000 years! Their bodies have hard parts inside. These parts help them stay strong.
Geodia barretti.jpg
Geodia barretti.jpg
People even use soft sponges for baths. They are very useful to us.

76 words

Demosponges are a very large group of animals. They make up over 90% of all sponges in the world. There are nearly 8,800 different species.

Spongia officinalis.jpg
Spongia officinalis.jpg
Most of these sponges live in the salty ocean. However, one group lives in fresh water.
Spongilla lacustris.jpg
Spongilla lacustris.jpg
These sponges have hard parts inside their bodies. These parts are called spicules. They are made of a protein called spongin or a mineral called silica. Some sponges even get silica from eating tiny things called diatoms.
Geodia barretti.jpg
Geodia barretti.jpg
Some sponges grow in layers. These layers look like the skeletons of reef corals. Because of this, people call them coralline sponges. These animals can live for a very long time. Some can live for 500 to 1,000 years!
Acarnus erithacus.jpg
Acarnus erithacus.jpg
Scientists study their old skeletons to learn about the ocean. They can learn about past water temperatures and salt levels. Some sponges are also very soft. People use these soft bath sponges for cleaning. The spongin in their bodies makes them feel good on skin.

170 words

Demosponges are a huge and diverse group of animals. They make up more than 90% of all living sponges. There are nearly 8,800 different species found all over the world.

Spongia officinalis.jpg
Spongia officinalis.jpg
Most of these sponges live in the salty ocean. However, one group called Spongillida lives in fresh water. These sponges can be very bright or have many shapes. Some species grow to be over one meter wide. They are very important to our oceans and rivers.
Spongilla lacustris.jpg
Spongilla lacustris.jpg

These animals have a special way they build their bodies. They use an endoskeleton, which is a frame inside them. This frame is a meshwork of tiny parts called spicules. These spicules are made of protein called spongin or a mineral called silica.

Geodia barretti.jpg
Geodia barretti.jpg
Some sponges in the Antarctic even eat tiny things called diatoms to get silica. This helps them build their hard parts. Their skeletons often grow in organized, concentric layers or bands. These layers look very much like the skeletons of reef corals. Because of this, people call them coralline sponges.
Acarnus erithacus.jpg
Acarnus erithacus.jpg

Demosponges have been around for a very long time. The first ones may have appeared during the Precambrian period. This was at the end of the "Snowball Earth" time.

Chondrosia reniformis01.jpg
Chondrosia reniformis01.jpg
Scientists find clues about them in old chemical fossils. They look for special markers called steranes in the rocks. The earliest actual fossil was found in North Greenland. This specimen was from the lower Cambrian period, about 515 million years ago. Early sponges even helped build the first animal reefs. These reefs started about 530 million years ago in Siberia.

These sponges have many ways to make new life. They can reproduce sexually by making eggs and sperm. They can also reproduce asexually, which means making copies of themselves. In a process called budding, small sponges grow from the parent. Some freshwater sponges make tiny clumps called gemmules. These clumps have a hard layer to protect them. Gemmules can survive very harsh conditions until things get better. When they find a good spot, they release new cells. These cells then grow into brand new sponges.

Many things in our lives connect to these amazing animals. Some demosponges are very soft because of their spongin. Humans harvest these as bath sponges for cleaning.

Chondrocladia lampadiglobus.jpg
Chondrocladia lampadiglobus.jpg
Because some sponges live for 500 to 1,000 years, they are like living history books. Scientists study their old skeletons to learn about the past. They look at aragonite to check ocean temperature and salt levels. This helps us understand how the Earth has changed. Studying them is like reading a diary written by the ocean itself.

441 words

Demosponges are a massive and incredibly diverse group of animals. They belong to the class Demospongiae within the phylum Porifera. This group represents more than 90% of all living sponges. Scientists have identified nearly 8,800 different species worldwide.

Spongia officinalis.jpg
Spongia officinalis.jpg
While most live in the salty ocean, one specific order called Spongillida lives in freshwater. These animals come in many shapes and bright colors. Some species can grow to be over one meter wide. They play a vital role in marine and freshwater ecosystems.

To maintain their shape, demosponges build an internal frame called an endoskeleton. This skeleton is a meshwork of tiny structural units known as spicules. These spicules are made of the protein spongin, the mineral silica, or a combination of both.

Geodia barretti.jpg
Geodia barretti.jpg
In certain Antarctic species, the sponges actually ingest diatoms to obtain the silica they need for building. Because their skeletons often grow in organized, concentric layers or bands, they are sometimes called coralline sponges. These layered structures look very similar to the skeletons of reef corals.

Demosponges use two main methods to create new life. They can reproduce sexually through the production of eggs and sperm. In these species, sperm cells develop from choanocytes, while egg cells arise from archeocytes. After fertilization, the zygote undergoes repeated cell division within the mesohyl. This process forms a swimming larva called a parenchymella. This larva eventually enters a canal and is expelled from the sponge by an exhalant current. This cycle ensures the next generation can find new places to grow.

These animals also utilize asexual reproduction to survive and spread. One method is called budding, where groups of cells differentiate into small sponges. These new sponges are either released from the surface or pushed out through the oscula.

Spongilla lacustris.jpg
Spongilla lacustris.jpg
Freshwater sponges also produce specialized clumps called gemmules. These gemmules consist of archeocytes surrounded by a hard, protective layer. Gemmules can survive very harsh conditions. When conditions improve, an opening called a micropyle appears, and the cells grow into new sponges.

The history of demosponges stretches back to the very beginning of animal life. They may have first appeared during the Precambrian period, following the Cryogenian "Snowball Earth" era. Since direct fossils are rare, scientists often find them through chemical fossils. They look for steranes, which are hydrocarbon markers from cell membranes.

Nevadacoelia wistae.jpg
Nevadacoelia wistae.jpg
The earliest known physical fossil was discovered in the lower Cambrian of North Greenland. This specimen was about 515 million years old. Early sponges even helped build the first animal reefs in Siberia about 530 million years ago.

Because many demosponges live for a very long time, they are scientifically invaluable. Some species have lifespans ranging from 500 to 1,000 years. Scientists study their aragonite skeletons to reconstruct ancient environments. By analyzing these layers, researchers can find data about past ocean temperatures and salinity.

Acarnus erithacus.jpg
Acarnus erithacus.jpg
This makes these long-lived animals like living archives of the Earth's history. They provide a continuous record of how our oceans have changed over many centuries.

Human interaction with demosponges is also quite significant. The most economically important species are the bath sponges. These are harvested by divers or grown in commercial settings.

Chondrosia reniformis01.jpg
Chondrosia reniformis01.jpg
Because of the protein spongin, these sponges are very soft and useful for cleaning. Beyond industry, the study of demosponges helps us understand the evolution of all animals. Because they are among the earliest diverging animals, they show us the basic genetic toolkit used by complex life.

578 words
🖼️ Images & Media (8)
File:Chondrocladia lampadiglobus.jpg
Chondrocladia lampadiglobus.jpg
File:Monanchora arbuscula (Red encrusting sponge).jpg
Monanchora arbuscula (Red encrusting sponge).jpg
File:Geodia barretti.jpg
Geodia barretti.jpg
File:Chondrosia reniformis01.jpg
Chondrosia reniformis01.jpg
File:Spongia officinalis.jpg
Spongia officinalis.jpg
File:Spongilla lacustris.jpg
Spongilla lacustris.jpg
File:Nevadacoelia wistae.jpg
Nevadacoelia wistae.jpg
File:Acarnus erithacus.jpg
Acarnus erithacus.jpg
Up Next
🧬
Calcareous sponge
Life Science
More to explore

🔬 Go deeper

More advanced topics to explore

🪜 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.