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49 results for “scientific names”
Scientific names used for the South American sea lion in peer-review papers (2010-2020)
<p>The valid specific name of the South American sea lion was controversial for many years since <em>Otaria flavescens</em> (Shaw, 1800) and <em>Otaria byronia</em> (de Blainville, 1820) were the disputing designations. The present database summarizes the use of both names in peer-reviewed papers obtain in Google Scholar for the period 2010-2020.</p>
Text-fig. 1. The pioneers of scientific palaeobotany whose ideas laid the foundations of how we now name plant fossil-taxa. a: Ernst von Schlotheim (1764 – 1821); b: Kaspar Maria von Sternberg (1761 – 1837), reproduced by permission from J. Kvaček (National Museum, Prague); c: Adolphe Brongniart (1801 – 1876). Adapted from Cleal and Thomas (2019: fig. 2.1). in Naming Of Parts: The Use Of Fossil-Taxa In Palaeobotany
Text-fig. 1. The pioneers of scientific palaeobotany whose ideas laid the foundations of how we now name plant fossil-taxa. a: Ernst von Schlotheim (1764 – 1821); b: Kaspar Maria von Sternberg (1761 – 1837), reproduced by permission from J. Kvaček (National Museum, Prague); c: Adolphe Brongniart (1801 – 1876). Adapted from Cleal and Thomas (2019: fig. 2.1).
Figure 1 in The mysterious Widdringtonia wallichii (Cupressaceae) and the correct scientific name for the Clanwilliam cedar
Figure 1. Specimen of Widdringtonia nodiflora (K75280) sent by N. Wallich to J.D. Hooker, and the origin of the name W. wallichii.
Fig. 9 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 9. Web page of management of common names in Database of Korean National Species List. This web page displays the list of common names registered in the database.
Fig. 8 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 8. Web pages of management function of special list of species defined by law. (A) Presents the web interface of searching taxon with five functions. (B) shows the list of registered species defined by law with Korean name.
Fig. 10 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 10. Web pages of management of references in Database of Korean National Species List. (A) Shows the list of references with function to assign references to taxa. (B) Web interface of function assigning reference to taxa.
Fig. 7 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 7. Web page of list of special list of species defined by law. This web page provides management function of special list of species defined by law.
Fig. 5 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 5. Introduction page of Korean National Species List. Introduction page of National Species List of Korea in the platform for biodiversity in Korea (http://www.kbr.go.kr/content/view.do?menuKey = 446&contentKey = 14).
Fig. 4 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 4. Web interface of list of taxa with search options. (A) Displays complex interface for searching taxon. (B) is the list view of taxa searched. (C) shows the example of brief information of taxon which will be appeared by clicking KTSN number in the list view.
Fig. 2 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 2. Web interface of taxon in Database of Korean National Species List. (A) Provides hierarchical structure of taxon with the tree interface. (B) shows basic information of taxon including KTSN, species properties, representative common names, and status of KTSN. (C) displays ranks, names, common names, identifiers, origins and etc. (D) displays information higher taxa based on hierarchical systems. (E) shows the list of synonyms. (F) is the list of references related to this taxon. (G) is the list of all common names except representative name.
Fig. 12 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 12. System structure of Database of Korean National Species List. Grey rectangles represent systems related to the Database of National Species List of Korea and blue rectangles indicates systems using species information via Database of National Species List of Korea outside of NIBR. Black arrows indicate utilization of taxonomic information from the Database of National Species List of Korea and Grey arrows present communication with institutes outside of NIBR. Dotted grey arrow means commination channel will be established soon.
Fig. 1 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 1. Database structure of Database of Korean National Species List. (A) Presents relationship of major entities of the Database of Korean National Species List. Black thick lines are n:m relationship and blue arrows show detailed content types of each entity. (B) displays example of hierarchical relations of higher taxa originated from two different systems, KNSL and APG IV.
Fig. 6 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 6. Download page of Korean National Species List. This web page provides the download link of National Species List of Korea in the main page of the platform for biodiversity in Korea (http://www.kbr.go.kr/).
Fig. 3 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 3. Tree interface of taxon. (A) Shows interface to search by management groups, rank, and name. Yellow arrow indicates fold- er icon which open all higher nodes of the taxon up and grey arrow shows check icon which provides detailed information of the taxon. (B) displays tree interface for hierarchical structure of taxa. Plus icon indicated by blue arrow means open the lower taxa in the specific taxon, and each node (orange arrow) represents each taxon.
Fig. 11 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 11. Web interface of reporting tools in Database of Korean National Species List. (A) Presents the basket of report. Dotted box presents option of generating reports. (B) shows the list of tasks registered for generating report. (C) displays three different formats of report generated by the Database of National Species List of Korea.
Figure 3. A 1983 in A study on the etymology of the scientific names given to planarians (Platyhelminthes, Tricladida) by Ernest Marcus' school
Figure 3. A 1983 cat-themed Christmas card hand-made by Eveline du Bois-Reymond Marcus and addressed to Dr. LeighWinsor (University James Cook, Australia).
Figure 1 in A study on the etymology of the scientific names given to planarians (Platyhelminthes, Tricladida) by Ernest Marcus' school
Figure 1. Pictures of the extinct Quagga, Equus quagga quagga (https://commons.wikimedia.org/wiki/File:Quagga_photo.jpg) (left) and the 3-cm long land planarian Geoplana quagga Marcus, 1951 (right). Note the similar color pattern of the head.
Figure 2 in A study on the etymology of the scientific names given to planarians (Platyhelminthes, Tricladida) by Ernest Marcus' school
Figure 2. Hand drawings by Froehlich, E.M. of the live Geoplana yara. The green cephalic region motivated the author to use the specific epithet after Iara, the greenhaired Amazonian mermaid in the Brazilian folklore.
Can species naming drive scientific attention? A perspective from plant-feeding arthropods
<p>How do researchers choose their study species? Some choices are based on ecological or economic importance, some on ease of study, some on tradition – but could the name of a species influence researcher decisions? We asked whether phytophagous arthropod species named after their host plants were more likely to be assayed for host-associated genetic differentiation (or 'HAD'; the evolution of cryptic, genetically isolated host specialists within an apparently more generalist lineage). We chose 30 arthropod species (from a Google Scholar search) for which a HAD hypothesis has been tested. We traced the etymologies of species names in the 30 corresponding genera, and asked whether HAD tests were more frequent among species whose etymologies were based on host-plant names (e.g., <em>Eurosta</em> <em>solidaginis</em>, which attacks <em>Solidago</em>) vs. those with other etymologies (e.g., <em>Eurosta</em> <em>fenestrata</em>, from Latin fenestra, or window). Species with host-derived etymologies were more likely to feature in studies of HAD than those with other etymologies. We speculate that the etymology of a scientific name can draw a researcher's attention to aspects of life-history and thus influence the direction of our scientific gaze.</p>
Can species naming drive scientific attention? A perspective from plant-feeding arthropods
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