Search results for "Invertebrate"

showing 10 items of 482 documents

External Influences on Invertebrate Brain Histamine and Related Compounds via an Automated Derivatization Method for Capillary Electrophoresis.

2017

8 pages; International audience; Histamine has been shown to modulate visual system and photic behavior in arthropods. However, few methods are available for the direct quantification of histamine and its precursor and metabolites in arthropod brain. In this work, a method for the separation of histamine, its precursor histidine, and its metabolite N-methyl-histamine from brain extracts of a freshwater crustacean has been developed using capillary electrophoresis with laser-induced fluorescence detection. Molecules were tagged on their primary amine function with naphthalene-2,3-dicarboxaldehyde, but derivatized histamine and N-methyl-histamine exhibited poor stability in contrast to deriva…

0301 basic medicinePhysiologyCognitive NeuroscienceMetabolitelaser-induced fluorescence detectioninvertebratecapillary electrophoresisBiochemistry[ SDV.EE ] Life Sciences [q-bio]/Ecology environment03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCapillary electrophoresisRiversin vial automated derivatizationAnimalsAmphipodaHistidineDerivatizationHistidine[SDV.EE]Life Sciences [q-bio]/Ecology environmentDetection limitAutomation LaboratoryChromatographyMethylhistaminesBrainElectrophoresis CapillaryReproducibility of ResultsCell BiologyGeneral MedicinecrustaceaFluorescence030104 developmental biologychemistry[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Calibration[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Amine gas treatingSeasons030217 neurology & neurosurgeryHistamineHistamineACS chemical neuroscience
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Metal homeostasis regulators suppress FRDA phenotypes in a drosophila model of the disease

2016

Friedreich's ataxia (FRDA), the most commonly inherited ataxia in populations of European origin, is a neurodegenerative disorder caused by a decrease in frataxin levels. One of the hallmarks of the disease is the accumulation of iron in several tissues including the brain, and frataxin has been proposed to play a key role in iron homeostasis. We found that the levels of zinc, copper, manganese and aluminum were also increased in a Drosophila model of FRDA, and that copper and zinc chelation improve their impaired motor performance. By means of a candidate genetic screen, we identified that genes implicated in iron, zinc and copper transport and metal detoxification can restore frataxin def…

0301 basic medicinePhysiologyGene Expressionlcsh:MedicineMitochondrionmedicine.disease_causeAntioxidantsIron-Binding ProteinsMedicine and Health SciencesHomeostasislcsh:ScienceGeneticsMultidisciplinarybiologyDrosophila MelanogasterIron-binding proteinsAnimal ModelsPhenotypeMitochondria3. Good healthInsectsDNA-Binding ProteinsChemistryZincPhenotypesPhysical SciencesDrosophilaAnatomymedicine.symptomDrosophila melanogasterResearch ArticleChemical ElementsAtaxiaArthropodaIronResearch and Analysis Methods03 medical and health sciencesModel OrganismsOcular SystemmedicineGeneticsAnimalsHumansGenetikManganeselcsh:ROrganismsBiology and Life SciencesCell Biologybiology.organism_classificationInvertebratesOxidative StressDisease Models Animal030104 developmental biologyFriedreich AtaxiaFrataxinbiology.proteinEyeslcsh:QPhysiological ProcessesCarrier ProteinsHeadCopperOxidative stressAluminumTranscription FactorsGenetic screen
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Transcriptional Differences between Diapausing and Non-Diapausing D. montana Females Reared under the Same Photoperiod and Temperature

2016

Background A wide range of insects living at higher latitudes enter diapause at the end of the warm season, which increases their chances of survival through harsh winter conditions. In this study we used RNA sequencing to identify genes involved in adult reproductive diapause in a northern fly species, Drosophila montana. Both diapausing and non-diapausing flies were reared under a critical day length and temperature, where about half of the emerging females enter diapause enabling us to eliminate the effects of varying environmental conditions on gene expression patterns of the two types of female flies. Results RNA sequencing revealed large differences between gene expression patterns of…

0301 basic medicinePhysiologyMolecular biologylcsh:MedicineDiapause InsectBiochemistryTranscriptomeSequencing techniquesCytochrome P-450 Enzyme SystemGlucose MetabolismLääketieteen bioteknologia - Medical biotechnologyGene expressionMedicine and Health SciencesDrosophila Proteinsgeeniekspressiolcsh:SciencegenesOverwinteringGeneticsMultidisciplinaryBiolääketieteet – BiomedicinebiologyReproductionDrosophila MelanogasterMetamorphosis BiologicalTemperatureInsect physiologyRNA sequencingAnimal ModelsGenomicsPhenotypeOvariesInsectsCarbohydrate MetabolismDrosophilaFemaleAnatomyDrosophila melanogasterTranscriptome AnalysisResearch ArticleArthropodaPhotoperiodMyosinsDiapause03 medical and health sciencesExtraction techniquesModel OrganismsDrosophila montanaGeneticsAnimalsGenegeenitta1184lcsh:RReproductive SystemOrganismsBiology and Life SciencesComputational BiologyGenome Analysisbiology.organism_classificationInvertebratesActinsRNA extractionResearch and analysis methodsdiapauseMolecular biology techniquesMetabolism030104 developmental biologygene expressionta1181lcsh:QPhysiological ProcessesDevelopmental BiologyPLoS ONE
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The ascidian Styela plicata hemocytes as a potential biomarker of marine pollution: In vitro effects of seawater and organic mercury.

2017

Toxic metals, such as mercury, contribute substantially to anthropogenic pollution in many estuarine environments. Animals living in those environments, particularly invertebrate filter feeders like tunicates, can be used as bioindicators. In an attempt to identify cellular markers for revealing pollution, this study examined in vitro the effects of different concentrations of methyl mercury on Styela plicata hemocytes. The harvested hemocytes from S. plicata that were exposed to the metal had a significant mortality, cellular count and morphometric alterations. These findings provided evidence of MeHg immunotoxic effects on S. plicata, resulting in hemocyte death and morphological changes …

0301 basic medicinePollutionHemocytesAscidianHealth Toxicology and Mutagenesismedia_common.quotation_subjectAscidian; Hemocytes; Mercury; Pollution; SEM; Seawater; Toxic metals; TunicateZoologychemistry.chemical_elementHemocyteToxic metal010501 environmental sciencesTunicate01 natural sciencesMarine pollution03 medical and health scienceschemistry.chemical_compoundAnimalsSeawaterUrochordataMethylmercury0105 earth and related environmental sciencesmedia_commonInvertebratebiologyEcologyImmunotoxinsPublic Health Environmental and Occupational HealthGeneral MedicineMercuryMethylmercury Compoundsbiology.organism_classificationPollutionTunicateMercury (element)030104 developmental biologyStyela plicatachemistrySEMMicroscopy Electron ScanningBioindicatorBiomarkersEcotoxicology and environmental safety
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Mitigating anticipated effects of systematic errors supports sister-group relationship between Xenacoelomorpha and Ambulacraria.

2019

International audience; Xenoturbella and the acoelomorph worms (Xenacoelomorpha) are simple marine animals with controversial affinities. They have been placed as the sister group of all other bilaterian animals (Nephrozoa hypothesis), implying their simplicity is an ancient characteristic ]; alternatively, they have been linked to the complex Ambulacraria (echinoderms and hemichordates) in a clade called the Xenambulacraria , suggesting their simplicity evolved by reduction from a complex ancestor. The difficulty resolving this problem implies the phylogenetic signal supporting the correct solution is weak and affected by inadequate modeling, creating a misleading non-phylogenetic signal. …

0301 basic medicineXenoturbellaAmbulacrariamedia_common.quotation_subjectAcoelomorpha ; Ambulacraria ; Metazoa ; Nephrozoa ; Phylogenomics ; Phylogeny ; Systematic Error ; XenoturbellaNephrozoaContext (language use)phylogeny[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomyGeneral Biochemistry Genetics and Molecular Biologysystematic error03 medical and health sciences0302 clinical medicineXenoturbellaAnimalsSimplicityAmbulacrariaChordatamedia_commonLong branch attractionbiologyMetazoa[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]Acoelomorphaphylogenomicsbiology.organism_classificationBiological EvolutionInvertebratesXenacoelomorpha[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoology030104 developmental biologySister groupEvolutionary biologyOutgroupGeneral Agricultural and Biological Sciences030217 neurology & neurosurgeryEchinodermata
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Bacterial community diversity harboured by interacting species

2016

International audience; All animals are infected by microbial partners that can be passengers or residents and influence many biological traits of their hosts. Even if important factors that structure the composition and abundance of microbial communities within and among host individuals have been recently described, such as diet, developmental stage or phylogeny, few studies have conducted cross-taxonomic comparisons, especially on host species related by trophic relationships. Here, we describe and compare the microbial communities associated with the cabbage root fly Delia radicum and its three major parasitoids: the two staphylinid beetles Aleochara bilineata and A. bipustulata and the…

0301 basic medicine[SDV]Life Sciences [q-bio]lcsh:MedicinespeciesArtificial Gene Amplification and ExtensionPathogenesisPathology and Laboratory MedicinephylogenycabbagegenusPolymerase Chain ReactiongeographyParasitoidAbundance (ecology)[ SDV.MP ] Life Sciences [q-bio]/Microbiology and ParasitologyMedicine and Health SciencesRickettsialcsh:ScienceTrophic levelMultidisciplinarybiologyEcologyMicrobiotabeetleGenomicsBiodiversityBacterial PathogensInsectsColeopterasymbiont[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologypyrosequencingMedical MicrobiologyHost-Pathogen Interactions[SDE]Environmental SciencesWolbachiaFrancePathogensmicrobial communityWolbachiaResearch ArticleArthropodaSpiroplasmaMollicutesSpiroplasmaMicrobial GenomicsResearch and Analysis MethodsMicrobiology03 medical and health sciencesPhylogeneticsGeneticsAnimals[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyMolecular Biology TechniquesMolecular BiologyMicrobial PathogensparasitoidBacteriaHost (biology)Dipteralcsh:RfungiOrganismsBiology and Life Sciencesbiology.organism_classificationInvertebratesHymenoptera030104 developmental biologylcsh:QMicrobiomeDelia radicum
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Tracking zoonotic pathogens using blood-sucking flies as 'flying syringes'

2017

About 60% of emerging infectious diseases in humans are of zoonotic origin. Their increasing number requires the development of new methods for early detection and monitoring of infectious agents in wildlife. Here, we investigated whether blood meals from hematophagous flies could be used to identify the infectious agents circulating in wild vertebrates. To this aim, 1230 blood-engorged flies were caught in the forests of Gabon. Identified blood meals (30%) were from 20 vertebrate species including mammals, birds and reptiles. Among them, 9% were infected by different extant malaria parasites among which some belonged to known parasite species, others to new parasite species or to parasite …

0301 basic medicineglobal healthForests[SDV.MHEP.MI]Life Sciences [q-bio]/Human health and pathology/Infectious diseases[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisParasite hostingBiology (General)Pathogen2. Zero hungerEcologyGeneral NeuroscienceQRVertebrateGeneral Medicine3. Good healthTools and Resources[ SDV.MHEP.MI ] Life Sciences [q-bio]/Human health and pathology/Infectious diseasesBloodMedicineepidemiologyPlasmodium parasitesecologyQH301-705.5Science030106 microbiologyWildlifeEarly detectionZoologyBiologytsetse fliesGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesBlood suckingbiology.animalmedicineAnimalsParasitesGabonhematophagous flies[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyGeneral Immunology and MicrobiologyDipterafungimedicine.diseaseInsect Vectors[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoology030104 developmental biologyEpidemiology and Global HealthVector (epidemiology)[SDV.SPEE]Life Sciences [q-bio]/Santé publique et épidémiologieOtherMalaria[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosiseLife
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The shell of the invasive bivalve species Dreissena polymorpha: biochemical, elemental and textural Investigations.

2016

28 pages; International audience; The zebra mussel Dreissena polymorpha is a well-established invasive model organism. Although extensively used in environmental sciences, virtually nothing is known of the molecular process of its shell calcification. By describing the microstructure, geochemistry and biochemistry/proteomics of the shell, the present study aims at promoting this species as a model organism in biomineralization studies, in order to establish a bridge with ecotoxicology, while sketching evolutionary conclusions. The shell of D. polymorpha exhibits the classical crossed-lamellar/complex crossed lamellar combination found in several heterodont bivalves, in addition to an extern…

0301 basic medicinelcsh:MedicineInvasive Species010501 environmental sciencesProteomicsEcotoxicology01 natural sciencesBiochemistrychemistry.chemical_compoundDatabase and Informatics MethodsMaterials PhysicsLectinsMusselslcsh:ScienceMicrostructureGel ElectrophoresisStainingMineralsMultidisciplinarybiologyOrganic CompoundsPhysicsMonosaccharidesBiological EvolutionEuropeChemistry[ SDV.BBM.GTP ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Physical SciencesFranceSequence AnalysisResearch ArticleSilver StainingBivalvesMaterials ScienceShell (structure)CarbohydratesSequence DatabasesElectrophoretic StainingResearch and Analysis MethodsDreissenaDreissenaCoomassie Blue staining03 medical and health sciencesElectrophoretic TechniquesSpecies ColonizationAnimal Shells[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Botany[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyEcotoxicologyAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology14. Life underwaterShell calcificationMolecular Biology TechniquesSequencing Techniques[SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/BiomaterialsMolecular Biology[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular Biology0105 earth and related environmental scienceslcsh:ROrganic ChemistryEcology and Environmental SciencesOrganismsChemical CompoundsBiology and Life SciencesProteinsMolluscs[ SDV.IB.BIO ] Life Sciences [q-bio]/Bioengineering/Biomaterialsbiology.organism_classificationInvertebrates030104 developmental biologyCalcium carbonateBiological DatabaseschemistrySpecimen Preparation and TreatmentZebra mussellcsh:QIntroduced SpeciesBiomineralization
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Maristem stem cells of marine/aquatic invertebrates: from basic research to innovative applications

2018

The “stem cells” discipline represents one of the most dynamic areas in biomedicine. While adult marine/aquatic invertebrate stem cell (MISC) biology is of prime research and medical interest, studies on stem cells from organisms outside the classical vertebrate (e.g., human, mouse, and zebrafish) and invertebrate (e.g., Drosophila, Caenorhabditis) models have not been pursued vigorously. Marine/aquatic invertebrates constitute the largest biodiversity and the widest phylogenetic radiation on Earth, from morphologically simple organisms (e.g., sponges, cnidarians), to the more complex mollusks, crustaceans, echinoderms, and protochordates. These organisms contain a kaleidoscope of MISC-type…

0301 basic medicinemarine/aquatic invertebratesQH301 Biologymarine/aquatic invertebrateBioactive moleculesT-NDASGeography Planning and Developmentlcsh:TJ807-830BiodiversitySettore BIO/05 - ZoologiaStem cellsblue biotechnology0302 clinical medicineBioactive moleculeBasic researchaging ; bioactive molecules ; blue biotechnology ; cancer ; cell culture ; COST Action ; Europe ; marine/aquatic invertebrates ; regeneration ; stem cellsGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)lcsh:Environmental sciencesCancerlcsh:GE1-350quinonessea-urchin eggsStem cellGeographyPolicy and LawEcologylcsh:Environmental effects of industries and plantsManagementEuropeMarine/aquatic invertebrateStem cellCèl·lules mareEuropean communityMonitoringaging; bioactive molecules; blue biotechnology; cancer; cell culture; COST Action; Europe; marine/aquatic invertebrates; regeneration; stem cellslcsh:Renewable energy sourcesCOST ActionAging; Bioactive molecules; Blue biotechnology; Cancer; Cell culture; COST Action; Europe; Marine/aquatic invertebrates; Regeneration; Stem cells; Geography Planning and Development; Renewable Energy Sustainability and the Environment; Management Monitoring Policy and LawManagement Monitoring Policy and LawBiologyQH30103 medical and health sciencesSDG 3 - Good Health and Well-beingNear neighborunitsstem cellsbioactive moleculesevolutioncancerSDG 14 - Life Below WaterRenewable Energy14. Life underwaterSH Aquaculture. Fisheries. AnglingSHRegeneration (ecology)BiologyBiomedicineInvertebratePlanning and Developmentcell cultureScience & TechnologySustainability and the EnvironmentRenewable Energy Sustainability and the Environmentbusiness.industryMarine invertebratesagingInvertebrats marinsbioactive moleculecell_developmental_biology030104 developmental biologylcsh:TD194-19513. Climate actionregenerationproteinbusiness030217 neurology & neurosurgery
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Evolutionary conserved pathway of the innate immune response after a viral insult in Paracentrotus lividus sea urchin

2019

Despite the apparent simplicity of the body organization of echinoderms, their immune system is competent to perform a complex innate immune response, which is far from being well understood. The echinoderms represent the most advanced invertebrates that form a bridge with the primitive chordates. In fact, they possess numerous receptors and effectors that are used to obtain a fast immune response. After an infection, the humoral and cellular immune response determines a network in which the main protagonists are membrane and endosomal receptors. The recognition of nonself molecules by specific membrane receptors triggers the immune response, stimulating consecutive intracellular events. We…

0301 basic medicinemedicine.medical_treatmentImmunologySettore BIO/05 - ZoologiaParacentrotus lividusEvolution Molecular03 medical and health sciences0302 clinical medicineImmune systemDownregulation and upregulationbiology.animalGeneticsmedicineAnimalsReceptorMolecular BiologySea urchinGenetics (clinical)Innate immune systembiologyEffectorGeneral Medicinebiology.organism_classificationBiological EvolutionImmunity InnateCell biology030104 developmental biologyCytokineVirus DiseasesParacentrotusevolution innate immunity invertebrate animals model organism030215 immunology
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