Search results for "Annelida"

showing 6 items of 16 documents

Data from: Phylogenomics of Lophotrochozoa with consideration of systematic error

2016

Phylogenomic studies have improved understanding of deep metazoan phylogeny and show promise for resolving incongruences among analyses based on limited numbers of loci. One region of the animal tree that has been especially difficult to resolve, even with phylogenomic approaches, is relationships within Lophotrochozoa (the animal clade that includes molluscs, annelids, and flatworms among others). Lack of resolution in phylogenomic analyses could be due to insufficient phylogenetic signal, limitations in taxon and/or gene sampling, or systematic error. Here, we investigated why lophotrochozoan phylogeny has been such a difficult question to answer by identifying and reducing sources of sys…

Helobdella robustaGlycera dibranchiataMytilus edulisAnnelidaEntalina tetragonaLeptochiton asellusCerebratulus marginatusLoxosomella cf. viviparaGraptacme eboreaLineus longissimusmedicine and health careClymenella torquataRuditapes philippinarumNucella lapillusHaliotis rufescenslong branch attractionPlatyzoaBarentsia gracilisPriapulus caudatusLineus ruberAlitta virenssaturationProchaetoderma californicumPinctada fucataSchistosoma mansoniLife sciencesPolyzoaCephalothrix hongkongensisRhyssoplax olivaceusLoxosoma pectinaricolaPhascolosoma agassiziiAdineta vagaDrosophila melanogasterEntoproctaBugula neritinaPhoronis vancouverensisMedicineNovocrania anomalaVillosa lienosaDaphnia pulexSagitta sp.Pectinaria gouldiiSymbion americanusNuculana pernulaSepia esculentaEnucula tenuisSolemya velumLineus lacteusTubulanus polymorphus-StruckGnathostomula paradoxaBoccardia proboscideaMacellomenia schanderiLaevipilina hyalinaTubulanus polymorphus-HalanychBryozoaPomatoceros lamarckiiSepioteuthis lessonianaParanemertes peregrinaMalacobdella grossaHemithiris psittaceaLeptochiton rugatusTrochozoaBrachionus plicatilisSpathoderma clenchiLaqueus californicusPatella vulgataLottia giganteaCrepidula fornicataPhoronidaAplysia californicaGlottidia pyramidataPhoronis psammophilaSchmidtea mediterraneaAlexandromenia crassaBrachiopodaMegadasys sp.Octopus vulgarisCapitella teletaNeomenia carinatacompositional heterogeneityNemerteaPhenacolepas pulchellaGadila tolmieiMolluscaMacrodasys sp.Crassostrea gigasPedicellina cernuaTaenia pisiformisDosidicus gigasCephalothrix linearisSpiralia
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New distributional data for the Mediterranean medicinal leech Hirudo verbana Carena, 1820 (Hirudinea, Hirudinidae) in Italy, with a note on its feedi…

2021

Author(s): Marrone, Federico; Alfonso, Giuseppe; Barbagallo, Rosario; Brandmayr, Pietro; Bruni, Giacomo; Costa, Simone; Farina, Giovanni; Gerecke, Reinhard; Iannarelli, Angelina; Mazza, Giuseppe; Mazzei, Antonio; Menchetti, Mattia; Moretti, Valerio; Mori, Emiliano; Novaga, Riccardo; Pecoraro, Marco; Schifani, Enrico; Stoch, Fabio; Vecchioni, Luca | Abstract: Scarce data are currently available about the distribution of the Mediterranean medicinal leech Hirudo verbana in Italy, and most of the known occurrence localities are based on records collected in the nineteenth and the first half of the twentieth century, which were not confirmed in the last decades, mostly due to a lack of surveys. …

Mediterranean climateScarce dataGlobal and Planetary ChangeEcologybiologyMonitoringbusiness.industryAnnelidaHabitats directiveSettore BIO/05 - ZoologiaDistribution (economics)LeechHirudoBaseline databiology.organism_classificationHabitats DirectiveGeographyFeeding behaviourEthnologyHabitats DirectivebusinessHirudo verbanaEcology Evolution Behavior and Systematics
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Mitochondrial genome sequence and gene order of Sipunculus nudus give additional support for an inclusion of Sipuncula into Annelida.

2010

Abstract Background Mitochondrial genomes are a valuable source of data for analysing phylogenetic relationships. Besides sequence information, mitochondrial gene order may add phylogenetically useful information, too. Sipuncula are unsegmented marine worms, traditionally placed in their own phylum. Recent molecular and morphological findings suggest a close affinity to the segmented Annelida. Results The first complete mitochondrial genome of a member of Sipuncula, Sipunculus nudus, is presented. All 37 genes characteristic for metazoan mtDNA were detected and are encoded on the same strand. The mitochondrial gene order (protein-coding and ribosomal RNA genes) resembles that of annelids, b…

Mitochondrial DNAlcsh:QH426-470Nematodalcsh:BiotechnologyAnnelidaBiologyGenomeDNA MitochondrialEvolution MolecularPhylogeneticslcsh:TP248.13-248.65ddc:570Sipunculus nudusGene OrderGeneticsAnimalsGeneInstitut für Biochemie und BiologiePhylogenyGeneticsSipunculaExpressed Sequence TagsAnnelidPhylogenetic treeSequence Analysis DNAbiology.organism_classificationlcsh:GeneticsGenes MitochondrialGenome MitochondrialBiotechnologyResearch ArticleBMC genomics
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Spiralian phylogenomics supports the resurrection of Bryozoa comprising Ectoprocta and Entoprocta.

2007

Phylogenetic analyses based on 79 ribosomal proteins of 38 metazoans, partly derived from 6 new expressed sequence tag projects for Ectoprocta, Entoprocta, Sipuncula, Annelida, and Acanthocephala, indicate the monophyly of Bryozoa comprising Ectoprocta and Entoprocta, 2 taxa that have been separated for more than a century based on seemingly profound morphological differences. Our results also show that bryozoans are more closely related to Neotrochozoa, including molluscs and annelids, than to Syndermata, the latter comprising Rotifera and Acanthocephala. Furthermore, we find evidence for the position of Sipuncula within Annelida. These findings suggest that classical developmental and mor…

SipunculabiologyEntoproctaModels GeneticAnnelidaAnatomyGenomicsbiology.organism_classificationBryozoaMonophylyEvolutionary biologyPhylogeneticsPlatyhelminthsPhylogenomicsGeneticsBryozoaAnimalsSpiraliaAcanthocephalaMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenyMolecular biology and evolution
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Okadaic Acid, an Apoptogenic Toxin for Symbiotic/Parasitic Annelids in the Demosponge Suberites domuncula

2006

ABSTRACT The role of okadaic acid (OA) in the defense system of the marine demosponge Suberites domuncula against symbiotic/parasitic annelids was examined. Bacteria within the mesohyl produced okadaic acid at concentrations between 32 ng/g and 58 ng/g of tissue (wet weight). By immunocytochemical methods and by use of antibodies against OA, we showed that the toxin was intracellularly stored in vesicles. Western blotting experiments demonstrated that OA also existed bound to a protein with a molecular weight of 35,000 which was tentatively identified as a galectin (by application of antigalectin antibodies). Annelids that are found in S. domuncula undergo apoptotic cell death. OA is one ca…

animal structuresAnnelidaMolecular Sequence DataApoptosismedicine.disease_causeApplied Microbiology and BiotechnologyMicrobiologychemistry.chemical_compoundOkadaic AcidInvertebrate MicrobiologymedicineAnimalsHumansMesohylAmino Acid SequenceSymbiosisGalectinAnnelidBacteriaEcologybiologyToxinOkadaic acidbiology.organism_classificationDNA-Binding ProteinsSuberites domunculachemistryBiochemistrySuberitesBacteriaTranscription FactorsFood ScienceBiotechnologySuberitesApplied and Environmental Microbiology
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Revision of Hermadion Kinberg, 1856, with a redescription of Hermadion magalhaensi Kinberg, 1856, Adyte hyalina (G.O. Sars, 1873) n. comb. and Neopol…

2010

Examination of all species previously referred to the genus Hermadion revealed that the type species, H. magalhaensi Kinberg, 1856, is the only valid species in the genus. H. magalhaensi is redescribed and its synonymy with Hermadion longicirratus Kinberg, 1856, Hermadion kerguelensis McIntosh, 1885, and Lagisca laevis Hartmann-Schroder, 1962, is discussed. The generic attribution of 12 species that had already been moved from Hermadion to other genera by earlier authors is confirmed. Following our re-examination four species are moved to other genera: Harmothoe ornatus (Hartman, 1967) n. comb., Harmothoe africanus (Hartman, 1974) n. comb., Adyte hyalina (G.O. Sars, 1873) n. comb., and Neop…

biologyAnnelidaZoologyIdentification keyPolychaetaBiodiversitybiology.organism_classificationNeopolynoeType speciesPhyllodocidaGenusAnimaliaAnimal Science and ZoologyTaxonomy (biology)HarmothoePolynoidaeNomen nudumPolynoidaeEcology Evolution Behavior and SystematicsTaxonomyZootaxa
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