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Stinger

life science Maturity 9-11

Some bugs have a sharp part.

Waspstinger1658-2.jpg
Waspstinger1658-2.jpg
It is called a stinger. It can give a bug a way to hurt. This can make your skin red. It might feel itchy. We must be careful.
ScorpionBarb.jpg
ScorpionBarb.jpg
Have you ever seen a bee?

42 words

Some bugs have a sharp part.

Waspstinger1658-2.jpg
Waspstinger1658-2.jpg
It is called a stinger. It can poke skin to give a bug a way to hurt. This can make your skin red or itchy.
ScorpionBarb.jpg
ScorpionBarb.jpg
Many bees and wasps use a stinger. A scorpion also has one. Most bugs can pull their stinger out. But a honeybee has a tiny hook. The hook stays in the skin. This can kill the honeybee. This helps protect the whole hive. It is good to be careful around them.

84 words

Many animals have a sharp part called a stinger.

Waspstinger1658-2.jpg
Waspstinger1658-2.jpg
It helps them poke through skin. This lets them give venom to another animal. Venom is a special liquid that can cause pain.
Vespula germanica SEM Sting 01.jpg
Vespula germanica SEM Sting 01.jpg
Some bees and wasps have two poison glands. One gland makes acid. The other makes a neurotoxin, which is a poison that affects the body. Together, they are very strong.
ScorpionBarb.jpg
ScorpionBarb.jpg
Most stinging bugs can pull their stinger out. But honeybees are different. Their stinger has tiny hooks called barbs. When a honeybee stings a mammal, the barbs get stuck. The bee cannot pull it out. This tears the bee apart and kills it. This happens to protect the hive. A honeybee can sting other bugs many times without dying. This is because their skin is not like ours. Other animals like scorpions also sting. Some beetles can even sting with their antennae. Even stingrays and jellyfish have parts that act like stingers.

161 words

A stinger is a sharp organ used by many animals.

Waspstinger1658-2.jpg
Waspstinger1658-2.jpg
It works by piercing the skin of another animal. This allows the creature to inject venom into the target. Most stingers are found at the rear of the animal. Some animals like scorpions also use a stinger. Even a beetle called Onychocerus albitarsis can sting. This beetle uses its antennae to deliver its venom.
Vespula germanica SEM Sting 01.jpg
Vespula germanica SEM Sting 01.jpg
Most insects can pull their stinger out after use. However, a few species might leave them behind.

How a sting works can be quite complex. Many bees and wasps have two different poison glands. One gland makes a toxin that contains formic acid. The other gland makes an alkaline neurotoxin. These two liquids are mild when they act alone. They become very strong when they combine during a sting. This combination causes a lot of irritation.

ScorpionBarb.jpg
ScorpionBarb.jpg
Some wasps like Polistes versicolor use a chemical called 5-HT. This chemical helps cause pain. It also helps spread paralyzing venom to the body. This makes the target stop moving very quickly.

Scientists have studied how these stingers work for a long time. Researchers like John H. Welsh and Carolyn S. Batty studied venom. They looked at how chemicals like 5-HT work in arthropods. This research was shared in a 1963 study. They found how different parts of the body hold venom. These studies help us understand the science of stings. Knowing about these chemicals helps us understand how animals defend themselves.

There are many different types of stingers in nature. There are about 20,000 species of bees in the world. Only about six species of honeybees have barbed stingers. These barbs make it hard to pull the stinger out. Most wasps have smooth stingers instead. Two wasp species, Polybia rejecta and Synoeca surinama, have barbs. Most other stinging insects can sting many times. Honeybees are different because their barbs can kill them.

ScorpionBarb.jpg
ScorpionBarb.jpg
This happens when they sting mammals or birds.

Stingers are not just found on insects. Other animals have parts that work in a similar way. A stingray uses a part called a dermal denticle. A male platypus has venomous spurs on its back legs. Jellyfish use special tentacles called cnidocytes to sting.

Vespula germanica SEM Sting 01.jpg
Vespula germanica SEM Sting 01.jpg
It is easy to confuse stings with bites. Bites often introduce saliva or germs into the body. A sting is mainly about the venom being injected. Both can cause skin to swell or itch. Understanding these differences helps us know how animals interact.

421 words

A stinger is a specialized, sharp organ used by various animals to pierce the epidermis, which is the outer layer of skin.

Waspstinger1658-2.jpg
Waspstinger1658-2.jpg
This organ allows an animal to inject venom directly into another creature. While many people confuse stings with bites, they are actually different biological processes. A bite usually introduces saliva or pathogens, which are disease-causing germs, into a wound. In contrast, a sting is primarily defined by the delivery of venom through a piercing mechanism. This tool is a vital part of defense for many species in the animal kingdom.

The mechanism of a sting involves a complex chemical process. Many species of bees and wasps possess two distinct poison glands. One gland secretes a toxin containing formic acid. The other gland produces an alkaline neurotoxin, which is a substance that affects the nervous system. While each toxin is relatively mild when acting alone, they become much more potent when they combine during a sting. This chemical combination creates strong irritating properties in the target.

Vespula germanica SEM Sting 01.jpg
Vespula germanica SEM Sting 01.jpg
Some wasps, such as Polistes versicolor, also use a chemical called 5-hydroxytryptamine, or 5-HT. This substance serves two roles: it produces pain and helps distribute paralyzing components to vulnerable sites. This ensures the target is immobilized quickly.

Stingers vary greatly in their physical structure and how they are used. In the group of insects known as Hymenoptera, the stinger is actually a modified ovipositor, which is an organ used for laying eggs. Most stinging organisms have smooth stingers that allow them to sting repeatedly. However, some species have barbs, which are tiny, backward-facing hooks. For example, the Mexican honey wasp and yellowjacket wasps have small barbs.

ScorpionBarb.jpg
ScorpionBarb.jpg
While these barbs are small, they can sometimes make the apparatus difficult to withdraw from the skin.

One of the most notable examples of a specialized stinger is found in the honeybee (Apis). Among the 20,000 bee species worldwide, only about six species of honeybees have a strongly barbed stinger. When a honeybee worker stings a mammal or a bird, the barbs lodge deep in the elastic skin. As the bee tries to fly away, the stinger is torn free from its body, which kills the bee within minutes. Even after the bee is gone, the stinger has its own ganglion, a cluster of nerve cells, that keeps it working. It continues to saw into the flesh and release venom for several minutes. This process also leaves behind an alarm pheromone, which is a chemical signal that warns other bees of an attack.

Stinging is not limited to insects; many other arthropods use similar tools. Scorpions use a caudal sting located at the rear of their bodies.

ScorpionBarb.jpg
ScorpionBarb.jpg
A rare beetle named Onychocerus albitarsis has even evolved antennae that resemble a scorpion's tail to deliver venom. Other arthropods, like certain ants, also use stings for defense. It is important to note that some creatures, like centipedes, do not sting but instead use highly modified legs called forcipules to deliver a venomous bite. Spiders also do not sting; they rely on bites to deliver their venom.

Scientific research has helped us understand these complex biological tools. In 1963, researchers John H. Welsh and Carolyn S. Batty published a study regarding the content of arthropod venoms. They specifically looked at how chemicals like 5-HT function within different species. Their work helped clarify how venom components penetrate the bodies of other animals. Understanding these chemical interactions is essential for studying how animals defend themselves and how venom affects different biological systems.

Finally, the concept of a "sting" extends to several non-arthropod animals that use similar methods. Stingrays use a modified dermal denticle, which is a tiny, tooth-like structure, to deliver venom. Male platypuses possess venomous spurs on their hind legs.

Vespula germanica SEM Sting 01.jpg
Vespula germanica SEM Sting 01.jpg
Jellyfish use specialized tentacles called cnidocytes to inject venom into their prey or attackers. While these organs are biologically different from an insect's ovipositor, they serve the same functional purpose of delivering toxins through a sharp point.

669 words
🖼️ Images & Media (3)
File:Waspstinger1658-2.jpg
Waspstinger1658-2.jpg
File:Vespula germanica SEM Sting 01.jpg
Vespula germanica SEM Sting 01.jpg
File:ScorpionBarb.jpg
ScorpionBarb.jpg
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