Most animals have no backbone. 

Most animals do not have a backbone. 
Some have a hard shell on the outside. This shell protects their soft bodies. Others have bodies filled with water. This helps them keep their shape. 
Many of these animals live in the sea. Some live on land too. You might see them in your yard. 
Insects are a huge group of these animals. They are the most common kind. There are many different types of insects.
It is fun to look for them!
Most animals in our world are invertebrates. 

Invertebrates have many different ways to build their bodies. Some have a hard outer shell called an exoskeleton. Insects and crabs use these to stay safe. Others have a body filled with fluid. This helps them keep their shape, like a jellyfish. 
There are many groups of invertebrates. Insects are the largest group. There are about one million kinds of insects! Other groups include molluscs, like snails, and arachnids, like spiders. 
Invertebrates are animals that do not have a backbone. This backbone is also called a vertebral column. Most animals on Earth belong to this huge group. In fact, about 97% of all animal species are invertebrates. They can be very tiny or very large. Some are only 10 micrometers long. Others are huge, like the colossal squid which grows up to 10 meters.
These animals have many different ways to build their bodies. Some use a hard outer shell called an exoskeleton. This works like a suit of armor for insects and crabs. Other animals use a hydrostatic skeleton. This is a body filled with fluid to help them keep their shape. Jellyfish and worms use this method to move. 
Scientists use the word invertebrate to group these many different animals. The word comes from Latin and means "not" a joint. It is a term of convenience for people to use. It is not a single official group in science. Instead, it includes many different groups like arthropods and molluscs. This includes everything from sponges to spiders. 
There are many different types of invertebrates to find. Insects are the biggest group with about 1,000,000 known species. Arachnids, like spiders, have about 102,248 species. Gastropods, such as snails, have about 85,000 species. Crustaceans include crabs and have about 47,000 species. Even sea anemones and corals are part of this massive world. 
Invertebrates do many things that you might recognize. Most reproduce by using special cells to make new babies. Some can even make copies of themselves without a partner. Many also live in social groups like ants or bees. They use their senses to feel things like heat or touch. Some insects even use tiny tubes called tracheae to breathe.
Invertebrates are animals that lack a vertebral column, which is commonly known as a spine or backbone. This column originally evolved from a structure called a notochord. While we often use the term to describe a single group, it is actually a paraphyletic grouping. This means it includes all animals except for the chordate subphylum Vertebrata. Because it does not represent a single, distinct evolutionary branch, the term is used more as a matter of convenience than a formal scientific taxon. 
These animals possess incredibly diverse body plans and methods for maintaining their shapes. Many invertebrates use a hydrostatic skeleton, which is a structure supported by fluid pressure, such as in jellyfish or worms. Others possess a hard exoskeleton, an outer shell that provides protection and support, like those seen in insects and crustaceans. Some groups, such as the Porifera or sponges, lack complex tissue organization entirely. In contrast, Cnidarians, like corals and sea anemones, have distinct tissues but lack complex organs. 
Invertebrates are categorized into many different phyla based on their unique biological traits. Arthropods are a massive group that includes insects, arachnids, and crustaceans. Molluscs include diverse animals like gastropods, bivalves, and cephalopods. Echinoderms, such as starfish, are exclusively marine and exhibit radial symmetry. Annelids are segmented worms, while Cnidarians include jellyfish and corals. Each of these groups represents a different way of organizing life and interacting with the environment. 
Taxonomically, the term "invertebrate" is not used the same way as a formal group like Arthropoda. In professional biology, other attributes are often more important for classification. For example, scientists might look at embryological development or body symmetry to build a cladogram. Some animals, like the Tunicata and Cephalochordata, are actually more closely related to vertebrates than to other invertebrates. This relationship is why the term is considered a convenience rather than a strictly scientific category. 
The sheer scale of invertebrate diversity is staggering compared to vertebrates. One estimate suggests that 97% of all animal species are invertebrates. Of the species described by scientists, over 95% are invertebrates, while only about 66,178 vertebrate species have been described. Insects alone represent a massive portion of this diversity, with approximately 1,000,000 described species. Arachnids follow with 102,248 species, and gastropods include about 85,000 species. 
Invertebrates also exhibit a wide range of physical sizes and biological functions. They can range from tiny myxozoans measuring only 10 micrometers to the colossal squid, which can reach 9 or 10 meters in length. Their respiratory systems vary significantly; for instance, many terrestrial arthropods use an open respiratory system. This system uses spiracles, which are small openings, and tracheae, which are branching tubes, to transport gases. In some insects, like bees, air sacs can be actively pumped to control airflow.
Biological processes like reproduction and social behavior also show immense variety. Most invertebrates reproduce sexually through meiosis, but some, like certain orbatid mites, can reproduce asexually. Some species have maintained asexual reproduction for more than 400 million years. Many invertebrates also exhibit complex social behaviors, such as ants, bees, and termites. These animals can also process sensory information; for example, neurons in molluscs can detect changes in pressure or tissue trauma. 
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