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Species

life science Maturity 9-11 Vital Level 3

Living things belong to groups.

Eurasian blue tit Lancashire.jpg
Eurasian blue tit Lancashire.jpg
These groups are called species. They help us study life. You can see many kinds of life. Each kind is special. Do you know your favorite animal?

33 words

Living things belong to groups.

Eurasian blue tit Lancashire.jpg
Eurasian blue tit Lancashire.jpg
These groups are called species. They help us study life.
Cladistic species.svg
Cladistic species.svg
A species is a big group of living things. Most species can have babies together. These babies can also have babies.
Tree Of Life (with horizontal gene transfer).svg
Tree Of Life (with horizontal gene transfer).svg
Scientists give each species a special name. One name is for the group. The other name is just for that one kind. This helps us know every living thing. It is a great way to learn about our world.

85 words

Scientists group living things into units called species.

Eurasian blue tit Lancashire.jpg
Eurasian blue tit Lancashire.jpg
One way to define a species is by how they make babies. Most species can mate and have offspring that can also have babies. This is called sexual reproduction.
Ernst Mayr PLoS.jpg
Ernst Mayr PLoS.jpg

Other scientists look at different traits. They might look at morphology, which means the shape or form of a living thing. They may also study DNA. DNA is a code inside a living thing. Scientists can use DNA barcoding to tell species apart. This is like using a special code to identify them.

Cytochrome C Oxidase 1OCC in Membrane 2.png
Cytochrome C Oxidase 1OCC in Membrane 2.png

Every species gets a two-part name. This is called a binomen. The first part is the genus name. The second part is the specific name. For example, the snake *Boa constrictor* belongs to the genus *Boa*.

Mountain-lion-01623.jpg
Mountain-lion-01623.jpg

Species can change over a long time. This is called evolution. Charles Darwin wrote about how natural selection helps species change. Some species even become extinct. This means they are gone forever. Scientists use these groups to study all life on Earth.

180 words

A species is a way scientists group living things together. It is the basic unit used to study the many different kinds of life on Earth. One common way to define a species is by how they make babies. If two individuals can mate and have offspring that can also have babies, they are often part of the same species. This is usually done through sexual reproduction. Scientists also look at other things to define a group. They might look at a creature's shape, its behavior, or its DNA sequence.

Eurasian blue tit Lancashire.jpg
Eurasian blue tit Lancashire.jpg

There are many ways to tell if living things belong together. Some scientists use morphology, which means looking at the physical form or shape of an organism. Others use DNA barcoding to find a special code in their genes. This is like using a unique barcode to identify a product. For bacteria, scientists often look at a specific gene called 16S ribosomal RNA. If these sequences are very similar, the bacteria might be the same species. Other scientists look at the ecological niche, which is the specific place or role a living thing has in nature.

Cytochrome C Oxidase 1OCC in Membrane 2.png
Cytochrome C Oxidase 1OCC in Membrane 2.png

People have thought about these groups for a very long time. From the time of Aristotle until the 1700s, people saw species as parts of a giant hierarchy. This was called the great chain of being. In the 1800s, biologists began to understand that species can change over time. Charles Darwin wrote a famous book in 1859 called On the Origin of Species. He explained how natural selection helps species arise. Later, in the 1900s, scientists learned even more through the study of genetics.

Carl von Linné.jpg
Carl von Linné.jpg

There are many different species on our planet. A recent estimate says there are between 8 and 8.7 million species of eukaryotes. Eukaryotes are a large group of living things. By the year 2011, scientists had only described about 14% of them. Every species (except for viruses) gets a two-part name called a binomen. The first part is the genus name. The second part is the specific name. For example, the snake *Boa constrictor* belongs to the genus *Boa*.

Mountain-lion-01623.jpg
Mountain-lion-01623.jpg

Understanding species helps us see how life is connected. Even though species change through evolution, these groups are useful tools. Scientists use them to study biodiversity, which is the variety of life. Some species change so much that they become new ones. Others might become extinct and disappear forever. Even when it is hard to draw a perfect line between groups, the concept of a species helps us protect the world. It allows us to track how living things move and change through time.

Cladistic species.svg
Cladistic species.svg

447 words

A species is the fundamental unit of biological classification and biodiversity. It serves as a taxonomic rank used to organize the vast variety of life on Earth. One common definition describes a species as the largest group of organisms where individuals can produce fertile offspring. This usually occurs through sexual reproduction. However, scientists use many different methods to define these groups. They may look at an organism's morphology, which is its physical form. They might also examine DNA sequences, specific behaviors, or an ecological niche.

Eurasian blue tit Lancashire.jpg
Eurasian blue tit Lancashire.jpg

Defining species involves several distinct scientific concepts. The morphological species concept, or morphospecies, relies on physical traits. Early taxonomists like Carl Linnaeus used this method to describe what they saw. Modern field guides still use this to identify animals by their appearance. Another approach is the recognition species concept. This focuses on organisms that recognize each other as potential mates. There is also the cohesion species concept. This describes a population that maintains its unique identity through internal mechanisms. Even if groups can hybridize, they remain distinct if they do not mix their entire gene pools.

Carl von Linné.jpg
Carl von Linné.jpg

Genetic tools have revolutionized how we identify species. One method is DNA barcoding. This involves using a single, easy-to-use gene sequence to distinguish different taxa. For eukaryotes, scientists often use a region of mitochondrial DNA within the cytochrome c oxidase gene.

Cytochrome C Oxidase 1OCC in Membrane 2.png
Cytochrome C Oxidase 1OCC in Membrane 2.png
In microbiology, scientists often look at the 16S ribosomal RNA gene. They have found that bacteria with 16S sequences more similar than 98.7% are likely the same species. For even greater precision, researchers use multilocus comparison. This examines several genes to capture more mutations and provide better resolution. The most thorough method is whole genome comparison. This uses the average nucleotide identity (ANI) to quantify the genetic distance between entire genomes.
Tree Of Life (with horizontal gene transfer).svg
Tree Of Life (with horizontal gene transfer).svg

History shows how our understanding of species has shifted over time. From the era of Aristotle until the 18th century, species were viewed as fixed categories in a hierarchy called the great chain of being. This changed in the 19th century when biologists realized species could evolve. In 1859, Charles Darwin published *On the Origin of Species*. He explained that species arise through the process of natural selection. In the 20th century, the study of genetics and population ecology expanded this view. We now understand that genetic variability comes from mutations and recombination.

Ernst Mayr PLoS.jpg
Ernst Mayr PLoS.jpg

Evolutionary processes create complexity that makes simple definitions difficult. Species are not fixed; they change over time due to evolutionary pressures. This creates challenges for taxonomists. They must decide when a lineage has changed enough to be split into multiple chronospecies.

Chronospecies.svg
Chronospecies.svg
This is especially important in palaeontology. Since fossils cannot reproduce, scientists use the phylogenetic or cladistic species concept. This defines a species as the smallest lineage distinguished by a unique set of genetic or morphological traits. This method allows scientists to study life even when only fossil evidence is available.
Inoceramus cripsii Creta sup Bergamo.JPG
Inoceramus cripsii Creta sup Bergamo.JPG

There is an incredible amount of life to categorize. Recent rigorous estimates suggest there are between 8 and 8.7 million species of eukaryotes. However, our knowledge is still growing. By 2011, only about 14% of these species had been described. To keep things organized, almost all species receive a two-part name called a binomen. The first part is the genus name. The second part is the specific epithet. For example, the snake *Boa constrictor* belongs to the genus *Boa*.

Mountain-lion-01623.jpg
Mountain-lion-01623.jpg

Understanding species is vital for studying the connections within our world. It helps scientists track biodiversity and manage conservation efforts. Even though concepts like hybridization or asexual reproduction can blur the lines, the species model remains a useful tool. It allows us to study how populations diverge through geographical isolation or genetic drift. It also helps us understand how new species might arise rapidly through polyploidy. By studying species, we gain a clearer picture of the complex systems that sustain life on Earth.

Cladistic species.svg
Cladistic species.svg

669 words
🖼️ Images & Media (11)
File:Eurasian_blue_tit_Lancashire.jpg
Eurasian_blue_tit_Lancashire.jpg
File:Cytochrome C Oxidase 1OCC in Membrane 2.png
Cytochrome C Oxidase 1OCC in Membrane 2.png
File:Cladistic species.svg
Cladistic species.svg
File:Chronospecies.svg
Chronospecies.svg
File:Ernst Mayr PLoS.jpg
Ernst Mayr PLoS.jpg
File:Inoceramus cripsii Creta sup Bergamo.JPG
Inoceramus cripsii Creta sup Bergamo.JPG
File:Mountain-lion-01623.jpg
Mountain-lion-01623.jpg
File:Lacerta plica holotype - ZooKeys-355-049-g005.jpg
Lacerta plica holotype - ZooKeys-355-049-g005.jpg
File:Tree Of Life (with horizontal gene transfer).svg
Tree Of Life (with horizontal gene transfer).svg
File:John Ray from NPG.jpg
John Ray from NPG.jpg
File:Carl von Linné.jpg
Carl von Linné.jpg
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