Search results for "molecular phylogenetics"

showing 10 items of 100 documents

The origin of Lecithodesmus (Digenea: Campulidae) based on ND3 gene comparison

2000

Species of Lecithodesmus (Campulidae) occur almost exclusively in baleen whales throughout a wide geographical distribution. Other campulids occur only in odontocetes and, secondarily, in pinnipeds and the sea otter. Therefore, the ancestor of Lecithodesmus might have either cospeciated with mysticetes during the early divergence of mysticete and odontocete cetaceans or originated later via host switching. We evaluate both possibilities based on a phylogenetic analysis. The ND3 mitochondrial gene sequence of a species of Lecithodesmus was included in a previous partial molecular phylogeny of the Campulidae. Fasciola hepatica and Dicrocoelium dendriticum were used as outgroups. Maximum parsi…

Molecular Sequence DataZoologyBiologyDNA MitochondrialDigeneaHost-Parasite InteractionsPhylogeneticsAdenine nucleotideAnimalsEcology Evolution Behavior and SystematicsPhylogenyLikelihood FunctionsPhylogenetic treeBase SequenceWhalesNADH DehydrogenaseSequence Analysis DNADNA Helminthbiology.organism_classificationMaximum parsimonyBaleenB vitaminsMolecular phylogeneticsParasitologyTrematodaSequence Alignment
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A molecular phylogeny of the genus Ichthyocotylurus (Digenea, Strigeidae).

2001

Three nucleotide data sets, two nuclear (ribosomal internal transcribed spacer regions 1 and 2, ITS1 and ITS2) and one mitochondrial (cytochrome c oxidase subunit 1, CO1), were analysed using distance matrix and maximum likelihood methods to determine the inter-relationships amongst the four species attributed to the genus Ichthyocotylurus Odening, 1969. Sequence data obtained from all gene loci investigated supported the position of Ichthyocotylurus variegatus as a species discrete from Ichthyocotylurus platycephalus. Phylogenetic analyses yielded congruent trees, with I. variegatus isolates comprising a common clade to which I. platycephalus constitutes a sister taxon. Ichthyocotylurus er…

Molecular Sequence DataZoologyTrematode InfectionsDNA RibosomalPolymerase Chain ReactionFish DiseasesPhylogeneticsAnimalsInternal transcribed spacerPhylogenyGeneticsbiologyPhylogenetic treeBase SequenceFishesPlatycephalusSpacer DNARibosomal RNADNA Helminthbiology.organism_classificationInfectious DiseasesSister groupMolecular phylogeneticsParasitologyTrematodaSequence AlignmentInternational journal for parasitology
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Morphological evolution and ecological diversification of the forest-dwelling poppies (Papaveraceae: Chelidonioideae) as deduced from a molecular phy…

1999

Sequences of the ITS region of nrDNA were analyzed for the seven genera of Papaveraceae subf. Chelidonioideae s.str. Three major clades can be recognized. These are 1.Chelidonium/Hylomecon/Stylophorum, 2.Eomecon/Sanguinaria, and 3.Bocconia/Macleaya. The monophyly of genera in the first of these three clades is doubtful, and clades two and three are sister to each other. Use of the ITS phylogeny of the subfamily to trace its morphological and ecological evolution shows that morphological change is concentrated in theBocconia/Macleaya clade, and probably related to the evolution of wind-pollination from insect-pollination in these two genera after habitat shift.

MonophylybiologyEcologyHylomeconMolecular phylogeneticsMacleayaStylophorumTaxonomy (biology)Plant Sciencebiology.organism_classificationEomeconCladeEcology Evolution Behavior and SystematicsPlant Systematics and Evolution
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Molecular Phylogeny of Eumetazoa: Genes in Sponges (Porifera) Give Evidence for Monophyly of Animals

1998

At present, the universal phylogenetic tree exhibits a tripartite division of the living world and includes Bacteria (“eubacterial”), Archaea (“archebacterial”), and Eucarya (“eukaryotic”) branches (Woese et al. 1991) with the Progenote as the common ancestor (Woese 1987). It is difficult to assess the timely appearance of the first living organism. Some first decipherable evidence of early life has apparently been identified in Swaziland (South Africa) and Pilbara Supergroup (Western Australia) sediments, and dates back 3550 to 3000 Ma (million years) ago; these are stromatolites (see Walter 1996), microfossils, and particulate organic matter (reviewed in Schopf 1994). Eucarya are roughly …

MonophylybiologyPhylogenetic treePhylogeneticsLast universal ancestorMolecular phylogeneticsZoologybiology.organism_classificationOrganismArchaeaEumetazoa
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An ITS phylogeny of tribe Senecioneae (Asteraceae) and a new delimitation of Senecio L.

2007

Senecioneae is the largest tribe ofAsteraceae, comprised ofca. 150 genera and 3,000 species. Approximately one-third of its species are placed in Senecio, making it one of the largest genera of flowering plants. Despite considerable efforts to classify and understand the striking morphological diversity in Senecioneae, little is known about its intergeneric relationships. This lack ofphylogenetic understanding is predominantly caused by conflicting clues from morphological characters, the large size ofthe tribe, and the absence of a good delimitation of Senecio. Phylogenetic analyses of nrITS and plastid DNA sequence data were used to produce a hypothesis of evolutionary relationships in Se…

MonophylybiologyPhylogenetic treePhylogeneticsMolecular phylogeneticsZoologyTaxonomy (biology)Plant ScienceSenecioneaeSeneciobiology.organism_classificationCladeEcology Evolution Behavior and SystematicsTAXON
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Hidden Mediterranean diversity: Assessing species taxa by molecular phylogeny within the opilionid family Trogulidae (Arachnida, Opiliones)

2009

This is the first comprehensive study to evaluate the relationships between the western palearctic harvestman families Dicranolasmatidae, Trogulidae and Nemastomatidae with focus on the phylogeny and systematics of Trogulidae, using combined sequence data of the nuclear 28S rRNA and the mitochondrial cytochrome b gene. Bayesian analysis and Maximum parsimony do not reliably resolve Dicranolasma as distinct family but place it on a similar phylogenetic level as several lineages of Trogulidae. Nemastomatidae and Trogulidae turned out to be monophyletic, as did genera Anelasmocephalus and Trogulus within the Trogulidae. The genera Calathocratus, Platybessobius and Trogulocratus each appeared p…

NemastomatidaeSystematicsbiologyPhylogenetic treeGenetic SpeciationZoologyBayes TheoremSequence Analysis DNAbiology.organism_classificationDNA MitochondrialMaximum parsimonyEvolution MolecularMonophylyGenusPolyphylyArachnidaRNA Ribosomal 28SMolecular phylogeneticsGeneticsAnimalsSequence AlignmentMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsMolecular Phylogenetics and Evolution
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Paraphyly of the Blue Tit (Parus caeruleus) suggested from cytochrome b sequences

2002

The phylogenetic relationships of the Blue Tit-Azure Tit assemblage (genus Parus; Aves: Passeriformes) were studied using mitochondrial DNA sequences of 24 specimens representing seven subspecies from Eurasia and North Africa. Previous work based on comparative morphological and acoustic data suggested a division of the Blue Tit (Parus caeruleus) into two species. Our analyses clearly indicate that the Blue Tit represents a paraphyletic assemblage, including a European/Middle Asian clade that is the sister group to the Azure Tit (Parus cyanus) and a North African clade. The North African clade (teneriffae subspecies group) is a sister group to the European Blue Tit/Azure Tit clade. We sugge…

ParaphylyAsiaZoologySubspeciesBiologyDNA MitochondrialBirdsAfrica NorthernGeneticsAnimalsCladeMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsParusLikelihood FunctionsPhylogenetic treeCytochrome bEcologyGenetic VariationCytochrome b Groupbiology.organism_classificationEuropeHaplotypesSister groupMutationMolecular phylogeneticsMolecular Phylogenetics and Evolution
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Molecular phylogeny of Old World swifts (Aves: Apodiformes, Apodidae, Apus and Tachymarptis) based on mitochondrial and nuclear markers.

2011

We provide a molecular phylogeny for Old World swifts of genera Apus and Tachymarptis (tribe Apodini) based on a taxon-complete sampling at the species level. Phylogenetic reconstructions were based on two mitochondrial (cytochrome b, 12S rRNA) and three nuclear markers (introns of fibrinogen and glyceraldehyde 3-phosphate dehydrogenase plus anonymous marker 12884) while the myoglobin intron 2 did not show any intergeneric variation or phylogenetic signal among the target taxa at all. In contrast to previous hypotheses, the two genera Apus and Tachymarptis were shown as reciprocally monophyletic in all reconstructions. Apus was consistently divided into three major clades: (1) East Asian cl…

ParaphylyGenetic Markersfood.ingredientApodiformesLineage (evolution)ZoologyAvian ProteinsBirdsMonophylyfoodApusGeneticsAnimalsTachymarptisCladeMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenyCell NucleusLikelihood FunctionsbiologyModels GeneticBayes TheoremCytochromes bbiology.organism_classificationMitochondriaRNA RibosomalMolecular phylogeneticsMultilocus Sequence TypingMolecular phylogenetics and evolution
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Independent host switching events by digenean parasites of cetaceans inferred from ribosomal DNA

2015

Cetaceans harbour a unique fauna of digeneans whose origin and relationships have sparked considerable debate during recent decades. Disparity in the species reported indicates that they do not share close affinities, but their unusual morphology has made their taxonomic identities and phylogenetic positions uncertain. Here we use sequence data to investigate the phylogenetic relationships of the main species of flukes infecting cetaceans. We sequenced the 18S, 28S and internal transcribed spacer 2 rDNA of digenean species representing all known families reported from cetaceans: Braunina cordiformis (Brauninidae), Ogmogaster antarcticus (Notocotylidae), Pholeter gastrophilus (Heterophyidae)…

ParaphylyMolecular Sequence DataZoologyHeterophyidaeDNA RibosomalDigeneaDNA Ribosomal SpacerRNA Ribosomal 28SRNA Ribosomal 18SAnimalsCluster AnalysisCladePhylogenybiologyPhylogenetic treeBiodiversitySequence Analysis DNADNA Helminthbiology.organism_classificationOpisthorchiidaeInfectious DiseasesMolecular phylogeneticsParasitologyTaxonomy (biology)CetaceaTrematodaInternational Journal for Parasitology
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Molecular phylogeny of hyperoliid treefrogs: biogeographic origin of Malagasy and Seychellean taxa and re-analysis of familial paraphyly

2003

Treefrogs of the family Hyperoliidae are distributed in Africa, Madagascar and the Seychelles. In this study, their phylogeny was studied using sequences of fragments of the mitochondrial 16Sand 12SrRNA and cytochrome b genes. The molecular data strongly confirmed monophyly of the subfamily Hyperoliinae but indicated that the genus Leptopelis (subfamily Leptopelinae) is more closely related to species of the African family Astylosternidae. The Seychellean genus Tachycnemis was the sister group of the Malagasy Heterixalus in all molecular analyses; this clade was deeply nested within the Hyperoliinae. A re-evaluation of the morphological data did not contradict the sister group relationships…

ParaphylySubfamilybiologyHyperoliidaeZoologyHeterixalusbiology.organism_classificationMonophylySister groupMolecular phylogeneticsGeneticsAnimal Science and ZoologyLeptopelisMolecular BiologyEcology Evolution Behavior and SystematicsJournal of Zoological Systematics and Evolutionary Research
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