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Microorganism

life science Maturity 11-13

Tiny living things are all around us.

E coli at 10000x, original.jpg
E coli at 10000x, original.jpg
They are too small to see. They live in the dirt and the sea. Some live inside your body, too. They help us in many ways.
Staphylococcus aureus 01.jpg
Staphylococcus aureus 01.jpg
Can you find them?

45 words

Tiny living things are all around us.

E coli at 10000x, original.jpg
E coli at 10000x, original.jpg
They are too small to see. They live in the dirt and the sea. Some live inside your body, too.
Staphylococcus aureus 01.jpg
Staphylococcus aureus 01.jpg
They can live in very hot places. Some live in very cold places. A man named Antonie van Leeuwenhoek first saw them. He used a special tool to look at them.
Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg
Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg
These tiny things help make food. They also live in healthy soil. They are part of our world.

93 words

Microorganisms are tiny living things. We often call them microbes. They are so small you cannot see them without help.

E coli at 10000x, original.jpg
E coli at 10000x, original.jpg
Some microbes are made of just one cell. Others live in groups called colonies. They live almost everywhere on Earth. You can find them in deserts and the deep sea. Some live in very hot springs. Others live in very cold places.
Deinococcus radiodurans.jpg
Deinococcus radiodurans.jpg
Scientists first saw them using microscopes. Antonie van Leeuwenhoek was one of the first to study them.
Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg
Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg
Later, Louis Pasteur showed how microbes affect food. He proved they cause food to spoil. Robert Koch also found that microbes cause diseases. He showed that microbes can cause anthrax.
Robert Koch.jpg
Robert Koch.jpg
Microbes are very important to our world. They help make food through fermentation. They also help keep soil healthy. Many microbes live inside our bodies too. This group of microbes is called microbiota. They help us stay well.

165 words

Microorganisms, or microbes, are tiny living things. They can be a single cell or a group of cells called a colony.

E coli at 10000x, original.jpg
E coli at 10000x, original.jpg
These microbes are found almost everywhere on Earth. They live in deserts and deep in the sea. Some live in very hot geysers or very cold poles. Even some can live in places with high radiation.
Deinococcus radiodurans.jpg
Deinococcus radiodurans.jpg

Microbes work in many different ways to survive. Some use light to make food like green plants. Others use chemicals in the ground to live. This way of getting energy is called chemolithotrophy.

Euglena mutabilis - 400x - 1 (10388739803) (cropped).jpg
Euglena mutabilis - 400x - 1 (10388739803) (cropped).jpg
Many microbes can also change very quickly. They do this through a high rate of mutation. This helps them adapt to new or hard places. They can even swap genes with each other to survive.
Hyella caespitosa.jpg
Hyella caespitosa.jpg

People suspected tiny life existed a long time ago. In 6th-century BC India, Jain literature spoke of tiny organisms. In the 1st-century BC, a Roman named Varro called them animalia minuta.

Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg
Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg
Scientists finally saw them in the 1670s. Antonie van Leeuwenhoek used his own microscopes to study them. He is often called a father of microbiology. Robert Hooke also saw microbes and used the word cell.

Many famous scientists helped us understand microbes. In the 1850s, Louis Pasteur showed that microbes spoil food.

Albert Edelfelt - Louis Pasteur - 1885.jpg
Albert Edelfelt - Louis Pasteur - 1885.jpg
He proved that life does not just appear from nothing. In the 1880s, Robert Koch found microbes cause diseases.
Robert Koch.jpg
Robert Koch.jpg
He showed that a microbe called Bacillus anthracis causes anthrax. He used experiments to link specific microbes to specific sicknesses. Later, Martinus Beijerinck discovered viruses.

Microbes are part of our daily lives. They help make food through a process called fermentation.

Biofermentor.jpeg
Biofermentor.jpeg
They are also used to treat sewage and make fuel. In the soil, they help make the land fertile. Many microbes live inside our own bodies too. This group is called the microbiota.
Staphylococcus aureus 01.jpg
Staphylococcus aureus 01.jpg
They live in our gut and help us stay healthy.

350 words

A microorganism, often called a microbe, is a living thing of microscopic size. These organisms can exist as a single cell or as a large colony of cells.

E coli at 10000x, original.jpg
E coli at 10000x, original.jpg
Microbes are incredibly diverse and represent most unicellular organisms across the three domains of life. Two of these domains, Bacteria and Archaea, consist entirely of microorganisms. The third domain, Eukaryota, contains many microbes such as protists and protozoans. Some of these eukaryotes are even multicellular, like certain micro-animals, fungi, and algae. Understanding microbes is vital because they influence everything from global ecosystems to human health.

Microbes inhabit almost every environment on Earth. They live from the frozen poles to the hot equator. They can survive in deserts, rocks, and the deep sea. Some are extremophiles, meaning they are adapted to extreme conditions. These include very hot or very cold environments and high-pressure zones. A specific microbe called Deinococcus radiodurans can even survive in high radiation.

Deinococcus radiodurans.jpg
Deinococcus radiodurans.jpg
This ability to live in harsh places shows how adaptable microbial life can be.

Scientific understanding of these tiny organisms has evolved over many centuries. In the 6th century BC, Jain literature in India described tiny organisms called nigodas. These were thought to live in plants, animals, and people. Later, the Roman scholar Marcus Terentius Varro called unseen creatures animalia minuta. In 1546, Girolamo Fracastoro proposed that diseases were caused by transferable seedlike entities. However, the true scientific study of microbes began in the 1670s. Antonie van Leeuwenhoek used his own single-lensed microscopes to observe them for the first time.

Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg
Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg

Several key scientists helped define the field of microbiology. In the 1850s, Louis Pasteur conducted experiments to study food spoilage. He used boiled broth and filters to prove that microbes come from the environment. This debunked the theory of spontaneous generation and supported the germ theory of disease.

Albert Edelfelt - Louis Pasteur - 1885.jpg
Albert Edelfelt - Louis Pasteur - 1885.jpg
In the 1880s, Robert Koch established that specific microorganisms cause specific diseases. He used Bacillus anthracis to show how anthrax spreads in cattle.
Robert Koch.jpg
Robert Koch.jpg
Koch developed criteria known as Koch's postulates to link microbes to illnesses. Later, Martinus Beijerinck discovered viruses and developed enrichment culture techniques. These tools allowed scientists to grow microbes with many different physiologies.

Microbes are classified into distinct groups based on their biological structures. Archaea are prokaryotic, meaning they lack a cell nucleus or membrane-bound organelles. While they were once grouped with bacteria, they are genetically and biochemically different. For example, Archaean membranes are made of ether lipids, while bacterial membranes use phosphoglycerides.

Hyella caespitosa.jpg
Hyella caespitosa.jpg
The domain Eukaryota includes organisms like Euglena, which do not fit easily into plant or animal kingdoms. Euglena is photosynthetic like a plant but motile like an animal.
Euglena mutabilis - 400x - 1 (10388739803) (cropped).jpg
Euglena mutabilis - 400x - 1 (10388739803) (cropped).jpg
This complexity led to the naming of the Protista kingdom.

Microorganisms play massive roles in the Earth's biological and chemical systems. They are the oldest known life forms, with evidence found in 3.45-billion-year-old Australian rocks. Prokaryotes, which include bacteria and archaea, are estimated to number around five nonillion. This accounts for at least half of the total biomass on Earth. They are essential for making soil fertile and for geochemical processes. In human culture, they are used for fermentation, treating sewage, and producing fuel.

Biofermentor.jpeg
Biofermentor.jpeg
They even help create enzymes and other bioactive compounds.

Finally, microbes have a profound connection to human biology and medicine. They make up the human microbiota, which includes the essential gut flora.

Staphylococcus aureus 01.jpg
Staphylococcus aureus 01.jpg
While many microbes are helpful, others are pathogens that cause infectious diseases. These pathogens are the targets of modern hygiene measures. Because microbes evolve rapidly through mutations and horizontal gene transfer, they can become dangerous. This rapid evolution has led to the rise of multidrug-resistant bacteria, often called superbugs. Understanding these processes is critical for managing both health and biological risks.

651 words
🖼️ Images & Media (12)
File:E coli at 10000x, original.jpg
E coli at 10000x, original.jpg
File:Anthonie van Leeuwenhoek (1632-1723). Natuurkundige te Delft Rijksmuseum SK-A-957.jpeg
Anthonie van Leeuwenhoek (1632-1723)....
File:Spallanzani.jpg
Spallanzani.jpg
File:Albert Edelfelt - Louis Pasteur - 1885.jpg
Albert Edelfelt - Louis Pasteur - 1885.jpg
File:Robert Koch.jpg
Robert Koch.jpg
File:Staphylococcus aureus 01.jpg
Staphylococcus aureus 01.jpg
File:Euglena mutabilis - 400x - 1 (10388739803) (cropped).jpg
Euglena mutabilis - 400x - 1...
File:Deinococcus radiodurans.jpg
Deinococcus radiodurans.jpg
File:Hyella caespitosa.jpg
Hyella caespitosa.jpg
File:WWTP Antwerpen-Zuid.jpg
WWTP Antwerpen-Zuid.jpg
File:Biofermentor.jpeg
Biofermentor.jpeg
File:Plasmodium.jpg
Plasmodium.jpg
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