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Taxonomic rank

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Taxonomic rank

In biological taxonomy, a taxonomic rank shows the level a group of living things holds. It helps us organize living things based on how they are related.

The highest ranks include big groups like the Eukarya and Animalia. The lowest ranks are for specific types of organisms, such as Homo sapiens, Bufo bufo, Tyrannosaurus rex, and Vulpes vulpes.

Ranks can be described in two ways. One way uses set terms like species, genus, tribe, family, order, class, phylum, kingdom, and domain. Another way shows the rank by how far a group is indented in a list. This article focuses on the first method.

When we look at the red fox, Vulpes vulpes, we can see how these ranks work. The name vulpes tells us the specific type of fox. It belongs to the genus Vulpes. This genus is part of the family Canidae, which includes dogs and wolves. The family is in the order Carnivora, which also has bears and weasels. All these animals are part of the class Mammalia, which includes all warm-blooded animals that nurse their young. They are in the phylum Chordata, animals with a backbone, and finally, in the kingdom Animalia. At the very top, they belong to the domain taxon Eukarya.

This naming system helps scientists talk about and study living things clearly, even when different groups have similar names. It makes it easier to understand how all living things are connected.

History

In the second half of the 20th century, two new ways of grouping living things changed how scientists classify them. The first is called cladistics, started by German entomologist Willi Hennig. Cladistics groups organisms based on shared traits, showing how recently they had a common ancestor. The second method is molecular systematics, which uses genetic analysis to learn more about relationships between different kinds of life. This helps with groups like viruses, bacteria, and archaea, or when many species evolved quickly from one ancestor.

Main ranks

In his important books, like the Systema Naturae, Carl Linnaeus made a system to group living things into levels. These levels are kingdom, class, order, genus, and species. Today, there are seven main levels: kingdom, phylum or division, class, order, family, genus, and species. There is also a level called domain. This idea was suggested by Carl Woese and is used a lot now.

When a living thing gets its official name, it is placed into one of these levels. The smallest levels are species and genus. For example, the name for humans is Homo sapiens. The first part, Homo, is the genus name. The second part, sapiens, tells us the species. Sometimes, there is an extra name to show more detail, like Homo sapiens sapiens for modern humans.

Main taxonomic ranks
LatinEnglish
dominiumdomain
regnumkingdom
phylumphylum / division (in botany)
classisclass
ordoorder
familiafamily
genusgenus
speciesspecies

Ranks in zoology

There are special rules for naming groups of animals, as set out in the International Code of Zoological Nomenclature. These rules cover ranks like superfamily, family, subfamily, tribe, subtribe, genus, subgenus, species, and subspecies.

The Code groups names into three categories: family-group names, genus-group names, and species-group names. It lists specific ranks for each group, such as Family, Subfamily, Tribe, Genus, Species, and Subspecies. Sometimes scientists add extra unofficial ranks, like "species group" or "species complex", to help organize groups with many species, such as in the genus Drosophila.

For higher ranks like family and above, scientists can show a lower level by adding "infra" to the rank name, such as "infraorder" or "infrafamily".

Names for animal groups follow these patterns:

  • Groups above the species level have one-part names.
  • A species usually has a two-part name, like Canis lupus.
  • A subspecies has a three-part name, like Canis lupus italicus.

Ranks in botany

Botanical ranks help us group plants based on what they have in common. These ranks start with Kingdom and go down to Division (or Phylum), Class, Order, Family, Genus, and finally Species. Each group at a certain rank usually shares special features and a common past.

Some rules decide how plant names are given, especially for groups below the family rank. Names for groups at the genus level or higher have one part, while groups at the species level have two parts. Groups below species have three-part names and need a special word to show their rank. For example, Poa secunda subsp. juncifolia shows the rank of subspecies.

Main article: International Code of Nomenclature for Cultivated Plants

Ranks in ICN: CHAPTER III 
Rank (English)Rank (Latin)TypeSuffix
kingdomregnumprimary—N/a
subkingdomsubregnumfurther—N/a
division
phylum
divisioprimary‑phyta
-mycota (fungi)
subdivision
subphylum
subdivisiofurther‑phytina
-mycotina (fungi)
classclassisprimary‑opsida (plant)
‑phyceae (algae)
-mycetes (fungi)
subclasssubclassisfurther‑idae (plant)
‑phycidae (algae)
-mycetidae (fungi)
orderordoprimary-ales
subordersubordofurther-ineae
familyfamiliaprimary-aceae
subfamilysubfamiliafurther‑oideae
tribetribussecondary-eae
subtribesubtribusfurther‑inae
genusprimary—N/a
subgenusfurther—N/a
sectionsectiosecondary—N/a
subsectionsubsectiofurther—N/a
seriessecondary—N/a
subseriesfurther—N/a
speciesprimary—N/a
subspeciesfurther—N/a
varietyvarietassecondary—N/a
subvarietysubvarietasfurther—N/a
formformasecondary—N/a
subformsubformafurther—N/a

Examples

Here are classifications for five different species: the fruit fly called Drosophila melanogaster, humans (Homo sapiens), the peas used by Gregor Mendel to study genetics (Pisum sativum), the "fly agaric" mushroom (Amanita muscaria), and a bacterium called Escherichia coli. The eight main levels of classification are shown in bold, and some smaller levels are also included.

Table notes

  • To keep the table simple, some middle levels are left out. For example, the mammals of Europe, Africa, and upper North America (except the Virginia opossum) belong to class Mammalia, but many smaller groups exist between this class and the order of mammals.
  • The levels for bigger groups can change when scientists learn more about how living things are related. For example, the flowering plants used to be in a group called a division but are now in a smaller group. The way we classify mammals has also changed over time.
  • Inside a species, there can be smaller groups. Animals can be split into subspecies (like modern humans, Homo sapiens sapiens). Plants can be split into subspecies, varieties, or special types. Bacteria can be split into strains.

Terminations of names

Taxa above the group level often have names based on a type genus, with a special ending. The endings depend on the kingdom (and sometimes the group or class), as shown in the table below.

Pronunciations given are the most Anglicized. More Latin-like ways of saying the words are also used.

Table notes

  • In plants and fungi, names at the family level and below are based on the name of a genus, sometimes called the type genus of that group, with a standard ending. For example, the rose family, Rosaceae, is named after the genus Rosa, with the ending "-aceae" for a family. Names above the family level are also formed from a generic name, or are descriptive (like Gymnospermae or Fungi).
  • For animals, there are standard endings for groups only up to the level of superfamily. A uniform ending has been suggested (but not recommended) in AAAS as -ida /ɪdə/ for orders, for example; some scientists who study tiny animals seem to use this system. Many higher animal orders also have such endings, e.g. Hyolithida and Nectaspida (Naraoiida).
  • Creating a name based on a generic name can be tricky. For example, homo has the form hominis, so the genus Homo (human) is in the Hominidae, not "Homidae".
  • The levels of epifamily, infrafamily and infratribe (in animals) are used when the branching of family trees needs more detailed distinctions. Although they fall below the level of superfamily, they are not regulated under the International Code of Zoological Nomenclature and so do not have formal standard endings. The endings listed here are regular, but informal.
  • In virus studies, the formal endings for groups of viroids, of satellite nucleic acids, and of viriforms are similar to viruses, only -vir- is replaced by -viroid-, -satellit- and -viriform-. The extra levels of realm and subrealm end with -viria and -vira respectively.
RankVirusesBacteria and ArchaeaEmbryophytes (Plants)AlgaeFungiAnimals
Realm-viria
Subrealm-vira
Kingdom-virae-ati
Subkingdom-viretes
Division/phylum-viricota /vɪrəˈkoʊtə/-ota-ophyta /ˈɒfətə, ə(ˈ)faɪtə/-mycota /maɪˈkoʊtə/
Subdivision/subphylum-viricotina /vɪrəkəˈtaɪnə/-phytina /fəˈtaɪnə/-mycotina /maɪkəˈtaɪnə/
Class-viricetes /vɪrəˈsiːtiːz/-ia /iə/-opsida /ˈɒpsədə/-phyceae /ˈfaɪʃiː/-mycetes /maɪˈsiːtiːz/
Subclass-viricetidae /vɪrəˈsɛtədiː/-idae /ədiː/-phycidae /ˈfɪsədiː/-mycetidae /maɪˈsɛtədiː/
Superorder-anae /ˈeɪniː/
Order-virales /vaɪˈreɪliːz/-ales /ˈeɪliːz/-ida /ədə/ or -iformes /ə(ˈ)fɔːrmiːz/
Suborder-virineae /vəˈrɪniːiː/-ineae /ˈɪniːiː/
Infraorder-aria /ˈɛəriə/
Superfamily-acea /ˈeɪʃə/-oidea /ˈɔɪdiːə/
Epifamily-oidae /ˈɔɪdiː/
Family-viridae /ˈvɪrədiː/-aceae /ˈeɪʃiː/-idae /ədiː/
Subfamily-virineae /vɪˈrɪniːiː/-oideae /ˈɔɪdiːiː/-inae /ˈaɪniː/
Infrafamily-odd /ɒd/
Tribe-eae /iːiː/-ini /ˈaɪnaɪ/
Subtribe-inae /ˈaɪniː/-ina /ˈaɪnə/
Infratribe-ad /æd/ or -iti /ˈaɪti/
Genus-virus
Subgenus

All ranks

Scientists sometimes need to make new groups to organize living things based on how they are related. Different areas of study, like the study of viruses, bacteria, plants, fungi, animals, fish, and butterflies, each have their own special names for these groups.

Upper Ranks
RankDomain
Empire
Realm
KingdomPhylum
Division
ClassDivision*Legion*
Subrank
Superdomain
Domain
Subdomain
Hyperkingdom
Superkingdom
Kingdom
Subkingdom
Infrakingdom
Parvkingdom
Superphylum
Phylum
Parvphylum/Microphylum
Superclass
Class
Subclass
Infraclass
Subterclass
Parvclass
Superdivision*
Division*
Subdivision*
Infradivision*
Superlegion*
Legion*
Sublegion*
Infralegion*
Central Ranks
RankCohort*OrderSection*FamilyTribeGenus
Subrank
Megacohort*
Supercohort*
Cohort*
Subcohort*
Infracohort*
Gigaorder✿
Magnorder/megaorder✿
Grandorder/capaxorder✿
Mirorder or hyperorder✿
Series◉
Subseries◉
Order
Parvorder/microorder✿
Nanorder✿
Hypoorder✿
Minorder✿
Section*
Subsection*
Gigafamily*
Megafamily*
Grandfamily*
Hyperfamily*
Superfamily
Epifamily*
Series⚘
Group⚘
Family
Infrafamily
Supertribe
Infratribe
"Supergenus"
Genus
Lower Ranks
RankSectionSeriesSpeciesVariety/Varietas✿
"Form"/"Morph"*
Aberration⚘
Form/Forma✿"Race"
Subrank
Section✿
Subsection✿
Series✿
Subseries✿
Variety✿
Form✿
Subform✿
"Race"
"Subrace"

Significance and problems

Taxonomic ranks are used to show how different living things are, but they don't perfectly match how nature changes. Some scientists, like Willi Hennig, think these ranks should not be used because they don't fit well with what we now know about how species change over time. These ranks were made before we learned about evolution, but they are still used because rules say we must.

Some scientists think the most important rank is "species," but others disagree. A group of organisms called a taxon should ideally show how they are related, but this is not always required. There are no strict rules for how many species make up a genus or family. Scientists try to make these groups natural and not mixed-up, using all the information they have. Different groups of organisms are not always the same age or look the same, even if they have the same rank.

Enigmatic taxa

Enigmatic taxa are groups of living things that we don't fully understand. We aren't sure exactly where they fit in the tree of life or how they connect to other groups. (See Incertae sedis.)

Mnemonic

There are fun ways to help remember the groups in biological classification. One example is the phrase "King Phillip Came Over For Great Spaghetti". This stands for the groups: Kingdom(s), Phylum/Phyla, Class(es), Order(s), Family/Families, Genus, Species.

(See taxonomy mnemonic.)

Related articles

This article is a child-friendly adaptation of the Wikipedia article on Taxonomic rank, available under CC BY-SA 4.0.