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Beta Gruis ( β Gruis , abbreviated Beta Gru , β Gru ), formally named Tiaki / t i ˈ ɑː k i / , is the second brightest star in the southern constellation of Grus . It was once considered the rear star in the tail of the constellation of the (Southern) Fish, Piscis Austrinus : it, with Alpha , Delta , Theta , Iota , and Lambda Gruis , belonged to Piscis Austrinus in medieval Arabic astronomy .

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51-650: β Gruis ( Latinised to Beta Gruis ) is the star's Bayer designation . It bore the traditional Tuamotuan name of Tiaki . In 2016, the IAU organized a Working Group on Star Names (WGSN) to catalog and standardize proper names for stars. The WGSN approved the name Tiaki for this star on 5 September 2017 and it is now so included in the List of IAU-approved Star Names. In Chinese , 鶴 ( Hè ), meaning Crane , refers to an asterism consisting of Beta Gruis, Alpha Gruis , Epsilon Gruis , Eta Gruis , Delta Tucanae , Zeta Gruis , Iota Gruis , Theta Gruis , Delta² Gruis and Mu¹ Gruis . Consequently, Beta Gruis itself

102-440: A proper noun such as the name of a person or place. Similarly, both parts are italicized in normal text (or underlined in handwriting). Thus the binomial name of the annual phlox (named after botanist Thomas Drummond ) is now written as Phlox drummondii . Often, after a species name is introduced in a text, the generic name is abbreviated to the first letter in subsequent mentions (e.g., P. drummondii ). In scientific works,

153-417: A cylindric spike and a terete scape "), which we know today as Plantago media . Such "polynomial names" may sometimes look like binomials, but are significantly different. For example, Gerard's herbal (as amended by Johnson) describes various kinds of spiderwort: "The first is called Phalangium ramosum , Branched Spiderwort; the second, Phalangium non ramosum , Unbranched Spiderwort. The other ...

204-401: A nomenclature code, it is possible for homonyms (two or more species sharing the same genus name) to happen, and even the same binomial if they occur in different kingdoms. At least 1,258 instances of genus name duplication occur (mainly between zoology and botany). Nomenclature (including binomial nomenclature) is not the same as classification, although the two are related. Classification is

255-477: A number of sources, of which Latin is only one. These include: The first part of the name, which identifies the genus, must be a word that can be treated as a Latin singular noun in the nominative case . It must be unique within the purview of each nomenclatural code , but can be repeated between them. Thus Huia recurvata is an extinct species of plant, found as fossils in Yunnan , China, whereas Huia masonii

306-423: A paper describing the phylogeny of small benthic freshwater fish called darters, five undescribed putative species (Ozark, Sheltowee, Wildcat, Ihiyo, and Mamequit darters), notable for brightly colored nuptial males with distinctive color patterns, were referred to as " Etheostoma cf. spectabile " because they had been viewed as related to, but distinct from, Etheostoma spectabile (orangethroat darter). This view

357-410: A personal name is to be converted to a specific epithet. In particular, names ending in a consonant (but not "er") are treated as first being converted into Latin by adding "-ius" (for a man) or "-ia" (for a woman), and then being made genitive (i.e. meaning "of that person or persons"). This produces specific epithets like lecardii for Lecard (male), wilsoniae for Wilson (female), and brauniarum for

408-741: A playful element of punning. Such names could be a cover for humble social origins. The title of the " Wilhelmus ", national anthem of the Netherlands , preserves a Latinised form of the name of William the Silent . In English, place names often appear in Latinised form. This is a result of many early text books mentioning the places being written in Latin. Because of this, the English language often uses Latinised forms of foreign place names instead of anglicised forms or

459-543: A single genus. The full binomial name must be unique within each code. From the early 19th century onwards it became ever more apparent that a body of rules was necessary to govern scientific names. In the course of time these became nomenclature codes . The International Code of Zoological Nomenclature ( ICZN ) governs the naming of animals, the International Code of Nomenclature for algae, fungi, and plants ( ICNafp ) that of plants (including cyanobacteria ), and

510-593: A species retains its binomial name if it is moved from one family to another or from one order to another, unless it better fits a different genus in the same or different family, or it is split from its old genus and placed in a newly created genus. The independence is only partial since the names of families and other higher taxa are usually based on genera. Taxonomy includes both nomenclature and classification. Its first stages (sometimes called " alpha taxonomy ") are concerned with finding, describing and naming species of living or fossil organisms. Binomial nomenclature

561-403: Is Anthus hodgsoni berezowskii . Informally, in some circumstances, a form may be appended. For example Harmonia axyridis f. spectabilis is the harlequin ladybird in its black or melanic forms having four large orange or red spots. In botany, there are many ranks below species and although the name itself is written in three parts, a "connecting term" (not part of the name) is needed to show

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612-409: Is a formal system of naming species of living things by giving each a name composed of two parts, both of which use Latin grammatical forms , although they can be based on words from other languages. Such a name is called a binomial name (which may be shortened to just "binomial"), a binomen , binominal name , or a scientific name ; more informally it is also historically called a Latin name . In

663-514: Is a species of frog found in Java , Indonesia. The second part of the name, which identifies the species within the genus, is also treated grammatically as a Latin word. It can have one of a number of forms: Whereas the first part of a binomial name must be unique within the purview of each nomenclatural code, the second part is quite commonly used in two or more genera (as is shown by examples of hodgsonii above), but cannot be used more than once within

714-686: Is about 3,200 times that of the Sun , and it has 150 times the Sun's radius . It is one of the brightest stars at infrared and near-infrared wavelenghts. At the K band , it is the fifth-brightest star in the night sky. Beta Gruis is a semiregular variable (SRb) star that varies in magnitude by about 0.4. It varies between intervals when it displays regular changes with a 37-day periodicity and times when it undergoes slow irregular variability. Latinisation of names Latinisation (or Latinization ) of names , also known as onomastic Latinisation ,

765-414: Is aptly termed Phalangium Ephemerum Virginianum , Soon-Fading Spiderwort of Virginia". The Latin phrases are short descriptions, rather than identifying labels. The Bauhins , in particular Caspar Bauhin (1560–1624), took some important steps towards the binomial system by pruning the Latin descriptions, in many cases to two words. The adoption by biologists of a system of strictly binomial nomenclature

816-456: Is due to Swedish botanist and physician Carl Linnaeus (1707–1778). It was in Linnaeus's 1753 Species Plantarum that he began consistently using a one-word trivial name ( nomen triviale ) after a generic name (genus name) in a system of binomial nomenclature. Trivial names had already appeared in his Critica Botanica (1737) and Philosophia Botanica (1751). This trivial name is what

867-507: Is known as 鶴二 ( Hè èr , English: Second Star of the Crane ). The Chinese name gave rise to another English name, Ke . Beta Gruis is a red giant star on the asymptotic giant branch with an estimated mass of about 2.4 times that of the Sun and a surface temperature of approximately 3,500  K , just over half the surface temperature of the Sun. This low temperature accounts for the dull red color of an M-type star. The total luminosity

918-606: Is not in sight. (There is also a published code for a different system of biotic nomenclature, which does not use ranks above species, but instead names clades . This is called PhyloCode .) As noted above, there are some differences between the codes in how binomials can be formed; for example the ICZN allows both parts to be the same, while the ICNafp does not. Another difference is in how personal names are used in forming specific names or epithets. The ICNafp sets out precise rules by which

969-433: Is now known as a specific epithet ( ICNafp ) or specific name ( ICZN ). The Bauhins' genus names were retained in many of these, but the descriptive part was reduced to a single word. Linnaeus's trivial names introduced the important new idea that the function of a name could simply be to give a species a unique label, meaning that the name no longer needed to be descriptive. Both parts could, for example, be derived from

1020-476: Is the practice of rendering a non - Latin name in a modern Latin style. It is commonly found with historical proper names , including personal names and toponyms , and in the standard binomial nomenclature of the life sciences. It goes further than romanisation , which is the transliteration of a word to the Latin alphabet from another script (e.g. Cyrillic ). For authors writing in Latin, this change allows

1071-426: Is thus an important part of taxonomy as it is the system by which species are named. Taxonomists are also concerned with classification, including its principles, procedures and rules. A complete binomial name is always treated grammatically as if it were a phrase in the Latin language (hence the common use of the term "Latin name" for a binomial name). However, the two parts of a binomial name can each be derived from

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1122-436: Is usually followed by the "authority" – a way of designating the scientist(s) who first published the name. The authority is written in slightly different ways in zoology and botany. For names governed by the ICZN the surname is usually written in full together with the date (normally only the year) of publication. One example of author citation of scientific name is: " Amabela Möschler, 1880 ." The ICZN recommends that

1173-481: Is when several species from the same genus are being listed or discussed in the same paper or report, or the same species is mentioned repeatedly; in which case the genus is written in full when it is first used, but may then be abbreviated to an initial (and a period/full stop). For example, a list of members of the genus Canis might be written as " Canis lupus , C. aureus , C. simensis ". In rare cases, this abbreviated form has spread to more general use; for example,

1224-427: The International Code of Nomenclature for algae, fungi, and plants ( ICNafp or ICN ). Although the general principles underlying binomial nomenclature are common to these two codes, there are some differences in the terminology they use and their particular rules. In modern usage, the first letter of the generic name is always capitalized in writing, while that of the specific epithet is not, even when derived from

1275-477: The International Code of Nomenclature of Bacteria ( ICNB ) that of bacteria (including Archaea ). Virus names are governed by the International Committee on Taxonomy of Viruses ( ICTV ), a taxonomic code, which determines taxa as well as names. These codes differ in certain ways, e.g.: Unifying the different codes into a single code, the " BioCode ", has been suggested , although implementation

1326-464: The ICZN is more protective of the form used by the original author. By tradition, the binomial names of species are usually typeset in italics; for example, Homo sapiens . Generally, the binomial should be printed in a font style different from that used in the normal text; for example, " Several more Homo sapiens fossils were discovered ." When handwritten, a binomial name should be underlined; for example, Homo sapiens . The first part of

1377-480: The International Code of Zoological Nomenclature (ICZN), the system is also called binominal nomenclature , with an "n" before the "al" in "binominal", which is not a typographic error, meaning "two-name naming system". The first part of the name – the generic name – identifies the genus to which the species belongs, whereas the second part – the specific name or specific epithet – distinguishes

1428-432: The authority for a binomial name is usually given, at least when it is first mentioned, and the year of publication may be specified. The word binomial is composed of two elements: bi- ( Latin prefix meaning 'two') and nomial (the adjective form of nomen , Latin for 'name'). In Medieval Latin, the related word binomium was used to signify one term in a binomial expression in mathematics. In fact,

1479-461: The "cf." qualifier vary. In paleontology, it is typically used when the identification is not confirmed. For example, " Corvus cf. nasicus " was used to indicate "a fossil bird similar to the Cuban crow but not certainly identified as this species". In molecular systematics papers, "cf." may be used to indicate one or more undescribed species assumed to be related to a described species. For example, in

1530-404: The "original author and date of a name should be cited at least once in each work dealing with the taxon denoted by that name." For names governed by the ICNafp the name is generally reduced to a standard abbreviation and the date omitted. The International Plant Names Index maintains an approved list of botanical author abbreviations. Historically, abbreviations were used in zoology too. When

1581-487: The Braun sisters. By contrast, the ICZN does not require the intermediate creation of a Latin form of a personal name, allowing the genitive ending to be added directly to the personal name. This explains the difference between the names of the plant Magnolia hodgsonii and the bird Anthus hodgsoni . Furthermore, the ICNafp requires names not published in the form required by the code to be corrected to conform to it, whereas

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1632-486: The Latin word binomium may validly refer to either of the epithets in the binomial name, which can equally be referred to as a binomen (pl. binomina ). Prior to the adoption of the modern binomial system of naming species, a scientific name consisted of a generic name combined with a specific name that was from one to several words long. Together they formed a system of polynomial nomenclature. These names had two separate functions. First, to designate or label

1683-547: The bacterium Escherichia coli is often referred to as just E. coli , and Tyrannosaurus rex is perhaps even better known simply as T. rex , these two both often appearing in this form in popular writing even where the full genus name has not already been given. The abbreviation "sp." is used when the actual specific name cannot or need not be specified. The abbreviation "spp." (plural) indicates "several species". These abbreviations are not italicised (or underlined). For example: " Canis sp." means "an unspecified species of

1734-414: The binomial, the genus name, is always written with an initial capital letter. Older sources, particularly botanical works published before the 1950s, used a different convention: if the second part of the name was derived from a proper noun, e.g., the name of a person or place, a capital letter was used. Thus, the modern form Berberis darwinii was written as Berberis Darwinii . A capital was also used when

1785-716: The early 19th century, Europe had largely abandoned Latin as a scholarly language (most scientific studies and scholarly publications are printed in English), but a variety of fields still use Latin terminology as the norm. By tradition, it is still common in some fields to name new discoveries in Latin. And because Western science became dominant during the 18th and 19th centuries, the use of Latin names in many scholarly fields has gained worldwide acceptance, at least when European languages are being used for communication. Scientific name In taxonomy , binomial nomenclature ("two-term naming system"), also called binary nomenclature ,

1836-407: The endings used differ between zoology and botany. Ranks below species receive three-part names, conventionally written in italics like the names of species. There are significant differences between the ICZN and the ICNafp . In zoology, the only formal rank below species is subspecies and the name is written simply as three parts (a trinomen). Thus, one of the subspecies of the olive-backed pipit

1887-453: The first part of the name of the species is a genus name. In a classification system based on ranks, there are also ways of naming ranks above the level of genus and below the level of species. Ranks above genus (e.g., family, order, class) receive one-part names, which are conventionally not written in italics. Thus, the house sparrow, Passer domesticus , belongs to the family Passeridae . Family names are normally based on genus names, although

1938-509: The genus Canis ", while " Canis spp." means "two or more species of the genus Canis ". (These abbreviations should not be confused with the abbreviations "ssp." (zoology) or "subsp." (botany), plurals "sspp." or "subspp.", referring to one or more subspecies . See trinomen (zoology) and infraspecific name .) The abbreviation " cf. " (i.e., confer in Latin) is used to compare individuals/taxa with known/described species. Conventions for use of

1989-500: The name is formed by two nouns in apposition, e.g., Panthera Leo or Centaurea Cyanus . In current usage, the second part is never written with an initial capital. When used with a common name, the scientific name often follows in parentheses, although this varies with publication. For example, "The house sparrow ( Passer domesticus ) is decreasing in Europe." The binomial name should generally be written in full. The exception to this

2040-501: The name to function grammatically in a sentence through declension . In a scientific context, the main purpose of Latinisation may be to produce a name which is internationally consistent. Latinisation may be carried out by: Humanist names, assumed by Renaissance humanists , were largely Latinised names, though in some cases (e.g. Melanchthon ) they invoked Ancient Greek . Latinisation in humanist names may consist of translation from vernacular European languages, sometimes involving

2091-543: The names of people. Thus Gerard's Phalangium ephemerum virginianum became Tradescantia virginiana , where the genus name honoured John Tradescant the Younger , an English botanist and gardener. A bird in the parrot family was named Psittacus alexandri , meaning "Alexander's parrot", after Alexander the Great , whose armies introduced eastern parakeets to Greece. Linnaeus's trivial names were much easier to remember and use than

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2142-495: The ordering of items into groups based on similarities or differences; in biological classification , species are one of the kinds of item to be classified. In principle, the names given to species could be completely independent of their classification. This is not the case for binomial names, since the first part of a binomial is the name of the genus into which the species is placed. Above the rank of genus, binomial nomenclature and classification are partly independent; for example,

2193-422: The original name is changed, e.g., the species is moved to a different genus, both codes use parentheses around the original authority; the ICNafp also requires the person who made the change to be given. In the ICNafp , the original name is then called the basionym . Some examples: Binomial nomenclature, as described here, is a system for naming species. Implicitly, it includes a system for naming genera, since

2244-677: The original names. Examples of Latinised names for countries or regions are: Latinisation is a common practice for scientific names . For example, Livistona , the name of a genus of palm trees, is a Latinisation of Livingstone . During the age of the Roman Empire , translation of names into Latin (in the West) or Greek (in the East) was common. Additionally, Latinised versions of Greek substantives , particularly proper nouns , could easily be declined by Latin speakers with minimal modification of

2295-627: The original word. During the medieval period , after the Empire collapsed in Western Europe , the main bastion of scholarship was the Roman Catholic Church , for which Latin was the primary written language. In the early medieval period, most European scholars were priests and most educated people spoke Latin, and as a result, Latin became firmly established as the scholarly language for the West. By

2346-466: The parallel polynomial names, and eventually replaced them. The value of the binomial nomenclature system derives primarily from its economy, its widespread use, and the uniqueness and stability of names that the Codes of Zoological and Botanical , Bacterial and Viral Nomenclature provide: Binomial nomenclature for species has the effect that when a species is moved from one genus to another, sometimes

2397-589: The species within the genus. For example, modern humans belong to the genus Homo and within this genus to the species Homo sapiens . Tyrannosaurus rex is likely the most widely known binomial. The formal introduction of this system of naming species is credited to Carl Linnaeus , effectively beginning with his work Species Plantarum in 1753. But as early as 1622, Gaspard Bauhin introduced in his book Pinax theatri botanici (English, Illustrated exposition of plants ) containing many names of genera that were later adopted by Linnaeus. Binomial nomenclature

2448-491: The species, and second, to be a diagnosis or description; however, these two goals were eventually found to be incompatible. In a simple genus, containing only two species, it was easy to tell them apart with a one-word genus and a one-word specific name; but as more species were discovered, the names necessarily became longer and unwieldy, for instance, Plantago foliis ovato-lanceolatus pubescentibus, spica cylindrica, scapo tereti ("plantain with pubescent ovate-lanceolate leaves,

2499-483: The specific name or epithet must be changed as well. This may happen because the specific name is already used in the new genus, or to agree in gender with the new genus if the specific epithet is an adjective modifying the genus name. Some biologists have argued for the combination of the genus name and specific epithet into a single unambiguous name, or for the use of uninomials (as used in nomenclature of ranks above species). Because genus names are unique only within

2550-428: Was introduced in order to provide succinct, relatively stable and verifiable names that could be used and understood internationally, unlike common names which are usually different in every language. The application of binomial nomenclature is now governed by various internationally agreed codes of rules, of which the two most important are the International Code of Zoological Nomenclature ( ICZN ) for animals and

2601-410: Was supported to varying degrees by DNA analysis. The somewhat informal use of taxa names with qualifying abbreviations is referred to as open nomenclature and it is not subject to strict usage codes. In some contexts, the dagger symbol ("†") may be used before or after the binomial name to indicate that the species is extinct. In scholarly texts, at least the first or main use of the binomial name

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