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Thrips

life science Maturity 5-7

Thrips are very tiny bugs.

Thrips physapus.jpg
Thrips physapus.jpg
They have thin bodies. Their wings look like tiny feathers. Some thrips eat plants. Others help flowers grow. They are small but busy!
Thrips.webm
Thrips.webm
Can you find one in a garden?

38 words

Thrips are very tiny bugs.

Thrips physapus.jpg
Thrips physapus.jpg
They have long, thin bodies. Their wings look like tiny feathers.
Thrips.webm
Thrips.webm
These bugs fly in a special way. They clap their wings to move.

Some thrips eat plants. They use their mouths to poke holes. This can leave silver marks on leaves.

Leaf curling in coffee caused by hoplandothrips.JPG
Leaf curling in coffee caused by hoplandothrips.JPG
Other thrips eat tiny mites.

Many thrips live in flowers. They help plants grow by moving pollen. This is called pollination. Some thrips are even helpful to farmers.

Thrips can also be pests. They can spread sickness to crops. This can hurt the food we eat.

There are many kinds of thrips. They are small but very busy!

115 words

Thrips are very small, slender insects. Most are only 1 mm long. They have long, thin bodies.

Thrips physapus.jpg
Thrips physapus.jpg
Their wings have a fringe of tiny bristles. This makes them look like feathers.

Thrips fly in a special way. Their wings are not for normal flight. They use a way called clap and fling. They clap their wings together to move.

Thrips.webm
Thrips.webm

These bugs have unique mouthparts. Their mouthparts are not the same on both sides. They use one part to cut into a plant. Then they use a tube to suck up food. This can leave silver scars on leaves.

Heliothrips asymmetric mouthparts.jpg
Heliothrips asymmetric mouthparts.jpg

Some thrips are helpful. Many live in flowers. They act as pollinators. This means they help plants make seeds.

Myrsine howittiana.jpg
Myrsine howittiana.jpg
Other thrips eat tiny mites. This helps farmers by eating pests.

Other thrips can be pests. They eat important crops like onions and cotton. They can also carry viruses. These viruses make plants sick.

Tomato with Tomato Spotted Wilt Virus.jpg
Tomato with Tomato Spotted Wilt Virus.jpg
In greenhouses, they can grow into large swarms.

173 words

Thrips are tiny, slender insects that play many roles in nature. Most of these insects are only about 1 mm long.

Thrips physapus.jpg
Thrips physapus.jpg
They have long bodies and unique, feathery wings. These wings have a fringe of tiny bristles. Scientists have described about 7,700 different species of thrips. Some thrips are helpful, like those that pollinate flowers. Other thrips are pests that can damage important crops.
Leaf curling in coffee caused by hoplandothrips.JPG
Leaf curling in coffee caused by hoplandothrips.JPG

Flying is a very special task for a thrips. Their fringed wings are not built for normal flight. Instead, they use a method called clap and fling.

Thrips.webm
Thrips.webm
They clap their wings together to create lift. This creates a pattern of air movement near the wings. This allows them to move even though they fly weakly. Their mouthparts are also very unusual and asymmetrical. This means the parts are not the same on both sides.
Heliothrips asymmetric mouthparts.jpg
Heliothrips asymmetric mouthparts.jpg
They use one part to cut into a plant. Then, they use a tube to suck up the food. This feeding often leaves silvery or bronze scars on leaves.

People have known about thrips for a long time. The first recorded mention of them was in the 17th century. A priest named Philippo Bonanni made a sketch of them in 1691.

Parallelothrips separatus.jpg
Parallelothrips separatus.jpg
Later, a scientist named Linnaeus named the group Thrips in 1746. In 1836, Alexander Henry Haliday suggested the order name Thysanoptera. This name comes from Greek words meaning "tassel wing." Heinrich Uzel published the first big book on them in 1895. He is often called the father of thrips studies.

Thrips can be found in many different environments. Some species live in the rainforests of eastern Australia.

Myrsine howittiana.jpg
Myrsine howittiana.jpg
One specific thrips is the only pollinator for certain trees there. Other thrips are famous for being pests in greenhouses. They can grow into huge swarms very quickly. This happens because they can reproduce asexually. They can also carry over 20 different plant viruses.
Tomato with Tomato Spotted Wilt Virus.jpg
Tomato with Tomato Spotted Wilt Virus.jpg
This can cause serious diseases in crops like tomatoes.

It is amazing how much thrips do for our world. Many species are pollinators that help plants make seeds. They carry pollen grains on their backs as they fly. Some thrips are even predators that eat tiny mites. This can actually help farmers manage other pests. They are a vital part of many ecosystems. Whether they are eating fungi or helping flowers, they are always busy. Even though they are small, their impact is quite large.

423 words

Thrips are a diverse group of minute, slender insects belonging to the order Thysanoptera. Most species are extremely small, typically measuring only about 1 mm in length.

Thrips nymph.jpg
Thrips nymph.jpg
Despite their tiny size, they play massive roles in global ecosystems. Some species act as vital pollinators for specific plants. Others are predatory, helping to control populations of mites and small insects. However, certain species are also serious agricultural pests. They can damage commercial crops and spread more than 20 different plant viruses, such as Tospoviruses.
Tomato with Tomato Spotted Wilt Virus.jpg
Tomato with Tomato Spotted Wilt Virus.jpg

The way thrips move and eat is unlike most other insects. Their wings are strap-like and covered in a fringe of fine bristles. Because these feathery wings are unsuitable for conventional flight, thrips use a unique mechanism called "clap and fling."

Thrips.webm
Thrips.webm
To fly, they clap their wings together to create lift through unsteady circulation patterns and transient vortices near the wing edges. Their mouthparts are also highly specialized and asymmetrical. In most species, the right mandible is reduced or even completely absent. The left mandible is used to cut into plant tissue. Then, the insect inserts maxillary stylets, which act like a tube, to pump out semi-digested food.
Heliothrips asymmetric mouthparts.jpg
Heliothrips asymmetric mouthparts.jpg
This feeding method often leaves behind distinctive silvery or bronze scarring on leaves and stems.

Scientists divide the order Thysanoptera into two distinct suborders: Terebrantia and Tubulifera. These groups are distinguished by their physical structures and how they develop. Tubulifera includes the single family Phlaeothripidae. Members of this family are identified by a characteristic tube-shaped segment at the end of their abdomen. They lay their eggs on the surface of leaves and go through three pupal stages. In contrast, females in the Terebrantia suborder possess a saw-like organ called an ovipositor. They use this to lay eggs singly inside plant tissue. Most Terebrantia species also have only two pupal stages, and the males are often smaller than the females.

The history of studying thrips spans several centuries. The first recorded mention of these insects dates back to the 17th century. In 1691, a Catholic priest named Philippo Bonanni created an early sketch of them.

Parallelothrips separatus.jpg
Parallelothrips separatus.jpg
Later, the Swedish entomologist Linnaeus named the group "Thrips" in 1746. In 1836, the Irish entomologist Alexander Henry Haliday proposed the order name Thysanoptera. This name is derived from the Greek words "thysanos," meaning tassel or fringe, and "pteron," meaning wing. In 1895, Heinrich Uzel published the first monograph on the group. Because of his extensive work, Uzel is often called the father of Thysanoptera studies.

Thrips exhibit a wide range of biological behaviors and ecological roles. Many species are fungivorous, meaning they feed on fungi, and they help redistribute fungal spores in the environment. Some species are even predatory, such as those in the family Aeolothripidae, which hunt pests like codling moths. A few species show complex social behaviors. For example, some thrips in the subfamily Phlaeothripinae produce silk to glue leaves together. They create these "domiciles" to house semi-social colonies.

Australian insects (Plate XXXVII) (7268276524).jpg
Australian insects (Plate XXXVII) (7268276524).jpg
In controlled environments like greenhouses, invasive thrips can grow their populations exponentially. This happens because they can reproduce asexually and often lack natural predators.

Pollination is another critical function performed by many thrips species. While some feed on pollen, others are specialized pollinators that carry pollen grains on their backs.

Myrsine howittiana.jpg
Myrsine howittiana.jpg
Some plants rely on them almost entirely. In the rainforests of eastern Australia, the species Thrips setipennis is the sole pollinator for the tree Wilkiea huegeliana. The genus Cycadothrips also specializes in pollinating cycads. Even Charles Darwin noted the importance of these insects, observing that they could bypass standard netting used to exclude larger pollinators. This ability to move between flowers makes them essential for the reproduction of many plant families, including heathers and manzanitas.

Understanding thrips requires looking at their complex evolutionary history and taxonomy. Fossil evidence shows that true thrips were abundant by the Early Cretaceous period. Some fossils, like those found in Myanmar amber, show thrips interacting with ancient plants.

Parallelothrips separatus.jpg
Parallelothrips separatus.jpg
Today, entomologists have described approximately 7,700 species. Identifying them is often difficult because many species look very similar. Scientists now use molecular sequence approaches to help distinguish between them. By studying the relationships between different families, researchers continue to learn how these tiny insects fit into the broader web of life.

724 words
🖼️ Images & Media (12)
File:Thrips physapus.jpg
Thrips physapus.jpg
File:Heliothrips asymmetric mouthparts.jpg
Heliothrips asymmetric mouthparts.jpg
File:Parallelothrips separatus.jpg
Parallelothrips separatus.jpg
File:Frankadult.jpg
Frankadult.jpg
File:Myrsine howittiana.jpg
Myrsine howittiana.jpg
File:Leaf curling in coffee caused by hoplandothrips.JPG
Leaf curling in coffee caused by...
File:Australian insects (Plate XXXVII) (7268276524).jpg
Australian insects (Plate XXXVII) (7268276524).jpg
Thrips.webm
File:Thrips nymph.jpg
Thrips nymph.jpg
File:Tomato with Tomato Spotted Wilt Virus.jpg
Tomato with Tomato Spotted Wilt Virus.jpg
File:Ponticulothrips diospyrosi.jpg
Ponticulothrips diospyrosi.jpg
File:Asilidae_thrips.jpg
Asilidae_thrips.jpg
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