0000000000342012

AUTHOR

Alexandra R. Wey-fabrizius

showing 4 related works from this author

Phylogenetic analyses of endoparasitic Acanthocephala based on mitochondrial genomes suggest secondary loss of sensory organs

2012

The metazoan taxon Syndermata (Monogononta, Bdelloidea, Seisonidea, Acanthocephala) comprises species with vastly different lifestyles. The focus of this study is on the phylogeny within the syndermatan subtaxon Acanthocephala (thorny-headed worms, obligate endoparasites). In order to investigate the controversially discussed phylogenetic relationships of acanthocephalan subtaxa we have sequenced the mitochondrial (mt) genomes of Echinorhynchus truttae (Palaeacanthocephala), Paratenuisentis ambiguus (Eoacanthocephala), Macracanthorhynchus hirudinaceus (Archiacanthocephala), and Philodina citrina (Bdelloidea). In doing so, we present the largest molecular phylogenetic dataset so far for this…

Likelihood FunctionsbiologySense OrgansPalaeacanthocephalaZoologyBayes TheoremSequence Analysis DNAArchiacanthocephalabiology.organism_classificationBiological EvolutionDNA MitochondrialAcanthocephalaMonophylySister groupPhylogeneticsGene OrderGenome MitochondrialGeneticsAnimalsBdelloideaEoacanthocephalaAcanthocephalaMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsMolecular Phylogenetics and Evolution
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Platyzoan mitochondrial genomes.

2012

Platyzoa is a putative lophotrochozoan (spiralian) subtaxon within the protostome clade of Metazoa, comprising a range of biologically diverse, mostly small worm-shaped animals. The monophyly of Platyzoa, the relationships between the putative subgroups Platyhelminthes, Gastrotricha and Gnathifera (the latter comprising at least Gnathostomulida, "Rotifera" and Acanthocephala) as well as some aspects of the internal phylogenies of these subgroups are highly debated. Here we review how complete mitochondrial (mt) genome data contribute to these debates. We highlight special features of the mt genomes and discuss problems in mtDNA phylogenies of the clade. Mitochondrial genome data seem to be …

Mitochondrial DNARotiferaZoologyGenomeDNA MitochondrialAcanthocephalaEvolution MolecularMonophylyGene OrderGeneticsAnimalsSpiraliaCladeMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenyPhylogenetic treebiologySequence Analysis DNAbiology.organism_classificationInvertebratesEvolutionary biologyGenetic CodePlatyhelminthsGenome MitochondrialProtostomePlatyzoaMolecular phylogenetics and evolution
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Platyzoan paraphyly based on phylogenomic data supports a noncoelomate ancestry of spiralia.

2014

Based on molecular data three major clades have been recognized within Bilateria: Deuterostomia, Ecdysozoa, and Spiralia. Within Spiralia, small-sized and simply organized animals such as flatworms, gastrotrichs, and gnathostomulids have recently been grouped together as Platyzoa. However, the representation of putative platyzoans was low in the respective molecular phylogenetic studies, in terms of both, taxon number and sequence data. Furthermore, increased substitution rates in platyzoan taxa raised the possibility that monophyletic Platyzoa represents an artifact due to long-branch attraction. In order to overcome such problems, we employed a phylogenomic approach, thereby substantially…

ParaphylyGenome HelminthPhylogenetic treebiologyGenomicsbiology.organism_classificationEvolution MolecularMonophylyEvolutionary biologyPlatyhelminthsHelminthsGeneticsAnimalsSpiraliaCladeMolecular BiologyBilateriaEcdysozoaEcology Evolution Behavior and SystematicsPhylogenyPlatyzoaMolecular biology and evolution
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Transcriptome data reveal syndermatan relationships and suggest the evolution of endoparasitism in acanthocephala via an epizoic stage

2014

The taxon Syndermata comprises the biologically interesting wheel animals ("Rotifera": Bdelloidea + Monogononta + Seisonidea) and thorny-headed worms (Acanthocephala), and is central for testing superordinate phylogenetic hypotheses (Platyzoa, Gnathifera) in the metazoan tree of life. Recent analyses of syndermatan phylogeny suggested paraphyly of Eurotatoria (free-living bdelloids and monogononts) with respect to endoparasitic acanthocephalans. Data of epizoic seisonids, however, were absent, which may have affected the branching order within the syndermatan clade. Moreover, the position of Seisonidea within Syndermata should help in understanding the evolution of acanthocephalan endoparas…

Animal EvolutionScienceMolecular Sequence DataRotiferaAnimal PhylogeneticsTranscriptomesAcanthocephala570 Life sciencesGenome Analysis Toolsddc:570GeneticsAnimalsEvolutionary SystematicsParasitesBiologyPhylogenyTaxonomyEvolutionary BiologyLife Cycle StagesQRComputational BiologyGenomicsBiological EvolutionOrganismal EvolutionPhylogeneticsAnimal TaxonomyMedicineTranscriptomeAnimal GeneticsZoologyResearch Article570 Biowissenschaften
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