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Jaw

life science Maturity 11-13

Jaws help us eat.

Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
They are at the mouth. Most animals have them too. They help grab food. They can also help us breathe. Jaws are very useful! Do you use your jaws to chew?

38 words

Jaws are at the mouth.

Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
Most animals have them. They help grab food. They also help move food into the mouth.

Some bugs have jaws.

Bullant head detail.jpg
Bullant head detail.jpg
These jaws can be many parts. They help the bug eat.

Fish have jaws too.

Great white shark at his back11.jpg
Great white shark at his back11.jpg
A shark has big jaws. Some fish use jaws to suck in food.

Some eels have two sets. One set grabs the prey. The other set moves it down.

Sea urchins have special jaws. They look like a lantern. Each part has a tooth that grows.

98 words

Jaws are parts at the mouth.

Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
They help animals grab and move food. Most animals have them.

Insects like ants have jaws too.

Bullant head detail.jpg
Bullant head detail.jpg
These are made of chitin. Chitin is a tough material. These jaws help bugs catch and chew food.

Many animals are vertebrates. These include fish, birds, and humans. Most have an upper jaw and a lower jaw. They use these to bite.

Great white shark at his back11.jpg
Great white shark at his back11.jpg
In some fish, the jaws help them suck in food.

Some animals have extra sets. Moray eels have two sets of jaws.

Pharyngeal jaws of moray eels.svg
Pharyngeal jaws of moray eels.svg
One set grabs the prey. The other set moves the food down the throat.

Sea urchins are different. They have five-part jaws. People call these Aristotle's lantern. Each part has a tooth. These teeth grow all the time. The teeth are made of calcium carbonate. This is a hard material.

154 words

Jaws are special parts at the entrance of the mouth.

Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
They help many animals grab and move food. Most animals use them to bite or chew. This makes them very important for survival. In many creatures, jaws are part of the body plan. They help open and close the mouth.
Bullant head detail.jpg
Bullant head detail.jpg
Some insects, called arthropods, have jaws made of chitin. These jaws might be called mandibles or chelicerae. They help the insect catch and carry food to its mouth.

Vertebrates have jaws that work in a different way.

Great white shark at his back11.jpg
Great white shark at his back11.jpg
These animals usually have an upper jaw and a lower jaw. These parts are made of bone or cartilage. They often hold many teeth for biting. In some fish, the jaws are very complex. They can use them for suction feeding. This means they can pull food into their mouths. Some fish, like the moray eel, have two sets of jaws.
Pharyngeal jaws of moray eels.svg
Pharyngeal jaws of moray eels.svg
One set grabs the prey. The other set, called pharyngeal jaws, moves food toward the throat.

Scientists think jaws first appeared a long time ago. They likely evolved during the Silurian period. The Placoderm fish were among the first to have them. They became even more common in the Devonian period. Jaws might not have started just for eating. They may have helped animals breathe better. They could act like a pump. This pump moves water over gills in fish. It can also move air into lungs in amphibians. This was a very helpful change for early life.

Different animals have different jaw shapes today.

Great white shark at his back11.jpg
Great white shark at his back11.jpg
In reptiles and birds, many jaw bones fuse together. This makes the jaw a single unit. Snakes are special because their skull bones move a lot. This helps them swallow very large prey. In mammals, the jaw is made of the maxilla and mandible. The mandible is the lower jaw. In mammals, two old jaw bones moved to the ear. This change helped create the mammalian ear structure.

Even sea urchins have amazing jaws. They do not look like human jaws at all.

Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
Their jaws have a five-part shape. People call this shape Aristotle's lantern. Each part of the lantern has one tooth. These teeth are made of calcium carbonate. They never stop growing. This is a very different way to eat compared to us. It shows how many ways nature finds to work.

413 words

Jaws are articulated structures located at the entrance of the mouth.

Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
They are used to grasp and manipulate food for many different animals. In most species, the jaws are a key part of the body plan. They serve to open and close the mouth vault. This allows animals to acquire, carry, and process food through mastication, which is the process of chewing.
Bullant head detail.jpg
Bullant head detail.jpg
In arthropods, such as insects, the jaws are made of a material called chitin. These jaws often oppose each other laterally. They may be called mandibles or chelicerae. Some of these mouthparts are actually modified legs that help move food.

Vertebrates use a different system for their jaws.

Great white shark at his back11.jpg
Great white shark at his back11.jpg
These jaws are usually made of bone or cartilage. They typically consist of an upper jaw and a lower jaw that oppose each other vertically. Most vertebrate jaws also bear numerous teeth. In some specialized fish, the jaw structure is extremely complex. Teleost fish often have jaws modified for suction feeding or jaw protrusion. This involves dozens of different bones working together. Some fish, like the moray eel, even possess two distinct sets of jaws.
Pharyngeal jaws of moray eels.svg
Pharyngeal jaws of moray eels.svg
The oral jaws capture the prey first. Then, the pharyngeal jaws move the prey from the mouth toward the esophagus for swallowing.

Evolutionary history suggests that jaws appeared during the Silurian period. They were first seen in Placoderm fish. These fish then diversified during the Devonian period. Scientists believe jaws evolved from the most anterior two pharyngeal arches. These are the arches that originally supported the gills. One arch became the jaw itself. The other became the hyoid arch. The hyoid system suspends the jaw from the skull's braincase. This connection allows the jaws to have great mobility. While there is no direct fossil evidence, this theory explains the number of arches seen in living animals. Jawless vertebrates, known as Agnatha, have nine arches. Jawed vertebrates, called Gnathostomes, have seven arches.

Interestingly, the first advantage of jaws might not have been eating. Jaws may have originally helped with respiration, or breathing. They could have functioned as a buccal pump. This is a mechanism that pumps water across the gills of fish. In amphibians, this same pump moves air into the lungs. Over a long period of evolutionary time, the use of jaws for feeding became the primary function. This shift provided a major selective advantage for vertebrates. The ability to chew and grab food changed how animals interacted with their environments.

Tetrapods, which include amphibians, reptiles, and birds, have simplified jaw structures. Many of the upper jaw bones are fused to the braincase. These bones include the premaxilla, maxilla, jugal, quadratojugal, and quadrate. The lower jaw bones are also fused into a single unit called the mandible. This unit includes the dentary, splenial, angular, surangular, and articular bones. The jaw moves through a hinge joint between the quadrate and the articular. Some animals have very little movement between these bones. However, snakes show a high degree of cranial kinesis. This means their skull bones move significantly, allowing them to swallow very large prey.

Mammals have a unique jaw arrangement. The mammalian jaw consists of the maxilla (the upper jaw) and the mandible (the lower jaw). During mammalian evolution, two specific bones changed significantly. The articular bone of the lower jaw and the quadrate bone were reduced in size. These two bones were actually incorporated into the ear. Many other jaw bones fused together to create a strong unit. Because of this, mammals show little to no cranial kinesis. Instead, the mandible attaches to the temporal bone via the temporomandibular joints. Dysfunction in these joints can cause pain or clicking movements.

Some animals have developed entirely different jaw systems. Sea urchins possess unique jaws that show five-part symmetry. This structure is known as Aristotle's lantern. Each unit of this lantern holds a single tooth. These teeth are made of crystalline calcium carbonate. Unlike human teeth, these teeth grow perpetually. This specialized mechanism allows sea urchins to feed in their specific marine environments. From the complex suction jaws of fish to the specialized lanterns of sea urchins, the jaw is a versatile tool of survival.

705 words
🖼️ Images & Media (4)
File:Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
File:Bullant head detail.jpg
Bullant head detail.jpg
File:Great white shark at his back11.jpg
Great white shark at his back11.jpg
File:Pharyngeal jaws of moray eels.svg
Pharyngeal jaws of moray eels.svg
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