Search results for "systematic"

showing 10 items of 7608 documents

Phylogeny, biogeography and systematics of Dysphanieae (Amaranthaceae)

2021

After a rather turbulent taxonomic history, Dysphanieae (Chenopodioideae, Amaranthaceae) were established to contain five genera, four of which are monospecific (Cycloloma, Neomonolepis, Suckleya, Teloxys) and geographically restricted, and the fifth genus, Dysphania, having a nearly worldwide distribution and comprising ca. 50 species. This study investigates the phylogeny, biogeography and taxonomy of Dysphanieae. We studied specimens from 32 herbaria to infer morphological differences and distribution areas of the species and sampled 121 accessions representing 39 accepted species of the tribe for molecular phylogenetic analyses. The molecular phylogeny tested generic relationships of th…

0106 biological sciencesSystematicsBiogeographySuckleyaTeloxysPlant ScienceбиогеографияNeomonolepis010603 evolutionary biology01 natural sciences03 medical and health sciencestaxonomyCyclolomaPhylogeneticsдисфанияMolecular clockinfrageneric classificationEcology Evolution Behavior and Systematicsmolecular phylogeny030304 developmental biology0303 health scienceslong&#8208biologydistance dispersalDysphaniamolecular clockAmaranthaceae15. Life on landbiology.organism_classificationамарантовыеDysphaniaEvolutionary biologyфилогенияMolecular phylogenetics1181 Ecology evolutionary biologyTaxonomy (biology)
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Which changes are needed to render all genera of the German lora monophyletic?

2016

53 p., gráf.

0106 biological sciencesSystematicsFloraPhylogenetic treeZoologyPlant ScienceBiologyClassification010603 evolutionary biology01 natural scienceslanguage.human_languageGermanGeneric circumscriptionMonophylyTaxonGerman floraPhylogeneticslanguageMonophylyEcology Evolution Behavior and SystematicsPhylogeny010606 plant biology & botany
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Molecular systematics in the acanthocephalan genus Echinorhynchus (sensu lato) in northern Europe

1994

SUMMARYNew biological species and high levels of inter- and intraspecific genetic divergence were discovered in an allozyme study of some North European members of the acanthocephalan genus Echinorhynchus (sensu lato), parasites of fish and malacostracan crustaceans. (i) A strong differentiation between the marine E. gadi and the fresh- and brackish-water E. salmonis (genetic identity I ≃ 0) supports a generic distinction between these taxa; however, the subdivision would not entirely concur with the concepts of Echinorhynchus (sensu stricto) and Metechinorhynchus suggested earlier. (ii) Samples of E. gadi from the Baltic, Norwegian and North Seas included three distinct, partially sympatri…

0106 biological sciencesSystematicsGenotypePopulationHelminthiasisZoologyFresh WaterBiology010603 evolutionary biology01 natural sciencesAcanthocephala030308 mycology & parasitologyFish Diseases03 medical and health sciencesGene FrequencySensuCrustaceaAnimalsSeawater14. Life underwatereducationAlleles0303 health scienceseducation.field_of_studyPolymorphism GeneticEcologyFishesGenetic Variationbiology.organism_classificationEuropeIsoenzymesGenetic divergencePhenotypeInfectious DiseasesMysisZoogeographySympatric speciationAnimal Science and ZoologyParasitologyTaxonomy (biology)Helminthiasis AnimalParasitology
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Why all vole molars (Arvicolinae, Rodentia) are informative to be considered as proxy for Quaternary paleoenvironmental reconstructions.

2013

13 pages; International audience; Rodents are considered as a good model and as a good proxy to characterise Quaternary environments. Molars and incisors are the best-preserved remains and are found in abundance in the fossil record. Since several decades, the lower molars are mostly used for specific determinations. Instead of using qualitative and descriptive characters, morphometric methods provide now a general quantitative description of shape. Applying these new morphometric methods (outline analysis), we demonstrate that lower as well as upper molars are useful and efficient for palaeontological analyses within voles (Arvicolinae). Herein it is made evident that except the first lowe…

0106 biological sciencesSystematicsMolar[ SDV.BID ] Life Sciences [q-bio]/Biodiversity010506 paleontologyArcheologyFossil RecordbiologyOutline analysis[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and PrehistoryVolesPalaeoenvironment[SDV.BID]Life Sciences [q-bio]/Biodiversitybiology.organism_classification010603 evolutionary biology01 natural sciencesProxy (climate)PaleontologyArvicolinae[ SHS.ARCHEO ] Humanities and Social Sciences/Archaeology and PrehistorySystematicsVoleQuaternary0105 earth and related environmental sciences
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Phylogeny and systematics of African Melastomateae (Melastomataceae)

2017

Melastomateae are the most species-rich (185 spp./13 gen.) and morphologically diverse tribe within the African Melastomataceae. In this study we present the first in-depth phylogenetic analysis of African Melastomateae using sequences generated from one nuclear (nrITS) and two plastid spacers (accD-psaI, psbK-psbL) sampling 183 accessions representing 75 African, 10 Madagascan and 7 Asian species and a broad outgroup sampling. We infer phylogenetic relationships using maximum likelihood, maximum parsimony and Bayesian approaches and propose a revised generic classification of African Melastomateae based on our molecular trees in combination with a careful reassessment of morphological vari…

0106 biological sciencesSystematicsMolecular phylogeneticsPlant ScienceBiology[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomybiology.organism_classification010603 evolutionary biology01 natural sciencesMaximum parsimonyMonophylyEvolutionary biologySystematicsPolyphylyAfricaMelastomataceaeOsbeckiaMolecular phylogeneticsSubgenusCladeEcology Evolution Behavior and SystematicsTaxonomy010606 plant biology & botanyTAXON
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Resolving the systematics of Richtersiidae by multilocus phylogeny and an integrative redescription of the nominal species for the genus Crenubiotus …

2020

AbstractThe family Richtersiidae, although established recently with the use of phylogenetic methods, was considered potentially paraphyletic at the time of its erection. Until now, the family comprised four genera, Richtersius, Diaforobiotus, Adorybiotus and a newly erected genus Crenubiotus. However, the genetic characterisation for the latter two genera was very limited or absent. To address concerns about the phylogenetic affinity of these two genera, we present a multilocus phylogeny of the families Richtersiidae and Murrayidae based on four molecular markers (18S rRNA, 28S rRNA, ITS-2 and COI). Our results show a distinct evolutionary lineage composed of Adorybiotus and Crenubiotus, w…

0106 biological sciencesSystematicsParaphylykarhukaisetEvolutionPopulation010607 zoologylcsh:MedicineBiology010603 evolutionary biology01 natural sciencesArticleGenusPhylogeneticsRNA Ribosomal 28SRNA Ribosomal 18STardigradaAnimalseducationlcsh:SciencePhylogenyeducation.field_of_studyMultidisciplinarysystematiikka (biologia)fylogenetiikkalcsh:RType speciesTaxonEvolutionary biologyTaxonomy (biology)lcsh:QZoologyScientific Reports
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Integrative taxonomy demonstrates the unexpected synonymy between two predatory mite species: Cydnodromus idaeus and C. picanus (Acari: Phytoseiidae)

2011

Contact: tixier@supagro.inra.fr; Species of the mite family Phytoseiidae are well known as predators of mite pests all over the world. Their identification is thus of great interest for biological control. The specimens examined in this study belong to the species Cydnodromus idaeus (described from Brazil) and C. picanus (described from Chile). They were collected together on the same plant in Argentina. These species are mainly differentiated by the presence/absence of the dorsal solenostomes (gland openings) gd2. Some morphometric differences were observed between the Argentinian specimens and the type material of C. idaeus and C. picanus; however, they were not sufficient to support a sp…

0106 biological sciencesSystematicsPhytoseiidaepredatorSystematic Entomologytaxonomie[SDV]Life Sciences [q-bio]Zoologysolenostome  lutte biologiquePhyloCode010603 evolutionary biology01 natural sciencesLepidoptera genitaliataxonomymorphologyAcariamérique du sudEcology Evolution Behavior and Systematicsbrésilbiologyargentinesolenostomes dorsalesGENETIQUEbiology.organism_classificationprédateurCladistics12S rRNA CytB mtDNA ITS morphology solenostome010602 entomologySettore AGR/11 - Entomologia Generale E Applicata12S rRNATaxonomy (biology)varroaITSCytB mtDNAacarien
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New Insights into the Systematics of the Schoenoxiphium Clade (Carex, Cyperaceae)

2017

The Spanish Ministry of Science and Technology supported this research through the project CGL2012-38744 and CGL2016- 77401-P to M. Luceño (Principal Investigator), E. Maguilla, M. Escudero, S. Martín-Bravo, and T. Villaverde and an FPU fellowship (AP2012-2189) from the Spanish Government (Ministry of Education, Culture, and Sport) and a Synthesys grant (GB-TAF-2523) by the European Community Research Infrastructure Program to E.Maguilla.

0106 biological sciencesSystematicsSpecies complexCarexPlant ScienceBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesExternal transcribed spacerMonophylySpecies complexPhylogeneticsBotanyInternal transcribed spacerITSCladeEcology Evolution Behavior and SystematicsPhylogeny010606 plant biology & botanyETSTaxonomy
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Multilocus phylogenetics of smooth clam shrimps (Branchiopoda, Laevicaudata)

2021

International audience; Laevicaudatan branchiopods, also called ‘smooth clam shrimps’ or ’pea shrimps’, are rare crustaceans found exclusively in temporary, small freshwater bodies, which stay dry most of the year. Only 42 laevicaudatan species have been described so far, 90% of which belong to the genus Lynceus. The first multilocus phylogeny of the group is provided here, based on 15 Lynceus species from North and South America, Europe, Africa, Asia, Australia and New Caledonia and using nine molecular markers (two mitochondrial and seven nuclear genes, including newly designed primers). Genetic data suggest populations of Lynceus brachyurus from Europe and North America to represent a co…

0106 biological sciencesSystematicsSpecies complexLaevicaudataZoologyBiology[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomy010603 evolutionary biology01 natural sciences03 medical and health sciencesGenusGeneticsVicariance14. Life underwaterCladeMolecular clockMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesGondwanahistorical biogeographymolecular clock[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate ZoologyTaxonSister groupBiogeografiaAnimal Science and ZoologySouthern Hemisphere
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Antarctic, Sub-Antarctic and cold temperate echinoid database

2012

6 pages; International audience; This database includes spatial data of Antarctic, Sub-Antarctic and cold temperate echinoid distribution (Echinodermata: Echinoidea) collected during many oceanographic campaigns led in the Southern Hemisphere from 1872 to 2010. The dataset lists occurrence data of echinoid distribution south of 35°S latitude, together with information on taxonomy (from species to genus level), sampling sources (cruise ID, sampling dates, ship names) and sampling sites (geographic coordinates and depth). Echinoid occurrence data were compiled from the Antarctic Echinoid Database (David et al. 2005a), which integrates records from oceanographic cruises led in the Southern Oce…

0106 biological sciencesSystematicsSub-Antarctic speciesOccurrence dataBiologycomputer.software_genre010603 evolutionary biology01 natural sciencesArticlecold temperate speciesLatitudeechinoidsAntarctic specieslcsh:ZoologyTemperate climatelcsh:QL1-99114. Life underwaterSouthern OceanSouthern HemisphereSpatial analysisEcology Evolution Behavior and Systematics[ SDV.BID ] Life Sciences [q-bio]/BiodiversityDatabase010604 marine biology & hydrobiologySub antarcticAnimal Science and ZoologyTaxonomy (biology)computerZooKeys
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