Search results for "Drosophila Melanogaster"

showing 10 items of 426 documents

Topical bioassay of Oberon® on Drosophila melanogaster pupae: delayed effects on ovarian proteins, cuticular hydrocarbons and sexual behaviour

2021

International audience; Spiromesifen (Oberon? 240 SC; concentrated solution; Bayer CropScience, Germany) a pesticide derived from spirocyclic tetronic acids, acts mainly though blocking lipid biosynthesis via acetyl-CoA carboxylase. However, its mode of action requires further analyses. This study aims to evaluate the sublethal effects of spiromesifen on the fruit fly Drosophila melanogaster. The treatment was carried out by topical application on newly moulted pupae using two concentrations (LD10 = 21.45 and LD25 = 39.53 ?g a.i./pupa). Our results showed that the developmental duration of larvae and pupae were not significantly affected by treatment. However, spiromesifen caused delayed ef…

0106 biological sciencesanimal structuresprogeny010603 evolutionary biology01 natural sciencesOberonLipid biosynthesisBioassaycomputer.programming_languagebiology010604 marine biology & hydrobiologycuticular hydrocarbonsfungisexual behaviour[SDV.BDLR]Life Sciences [q-bio]/Reproductive BiologyPesticidebiology.organism_classificationspiromesifenproteinsPupaBiochemistryAnimal Science and ZoologyhexapodaDrosophila melanogasterdelayed effectscomputerDevelopmental Biology
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Drosophila Evolution over Space and Time (DEST) : A New Population Genomics Resource

2021

Drosophila melanogaster is a leading model in population genetics and genomics, and a growing number of whole-genome datasets from natural populations of this species have been published over the last years. A major challenge is the integration of disparate datasets, often generated using different sequencing technologies and bioinformatic pipelines, which hampers our ability to address questions about the evolution of this species. Here we address these issues by developing a bioinformatics pipeline that maps pooled sequencing (Pool-Seq) reads from D. melanogaster to a hologenome consisting of fly and symbiont genomes and estimates allele frequencies using either a heuristic (PoolSNP) or a…

0106 biological sciencesdrosophilia melanogasterdemographyQH301 BiologyadaptationAcademicSubjects/SCI0118001 natural sciencesGene Frequencymedia_common0303 health sciencesEuropean researchbioinformatiikkaGenomics3rd-DASgenomiikkaNew populationResourcesDrosophila melanogaster; SNPs; adaptation; demography; evolution; population genomicsDrosophila melanogasterpopulaatiogenetiikkaChristian ministryCorrigendumSNPsResource (biology)population genomicsEvolutionevoluutioLibrary scienceQH426 GeneticsBiology010603 evolutionary biology03 medical and health sciencesQH301evolutionGeneticsmedia_common.cataloged_instanceAnimalsEuropean unionAdaptationMolecular BiologyQH426Ecology Evolution Behavior and Systematics030304 developmental biologyDemographyAcademicSubjects/SCI01130banaanikärpänenNISGenetics PopulationComputingMethodologies_PATTERNRECOGNITIONResearch councilMCPperimäMetagenomicsPopulation genomics
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Heat hardening capacity in Drosophila melanogaster is life stage-specific and juveniles show the highest plasticity

2019

Variations in stress resistance and adaptive plastic responses during ontogeny have rarely been addressed, despite the possibility that differences between life stages can affect species' range margins and thermal tolerance. Here, we assessed the thermal sensitivity and hardening capacity of Drosophila melanogaster across developmental stages from larval to the adult stage. We observed strong differences between life stages in heat resistance, with adults being most heat resistant followed by puparia , pupae and larvae . The impact of heat hardening (1 h at 35°C) on heat resistance changed during ontogeny, with the highest positive effect of hardening observed in puparia and pupae and the …

0106 biological scienceslife stage-specific plasticityHot TemperaturelämmönsietoOntogenyZoologyLife stage-specific plasticitythermal sensitivityBiologyPlasticity010603 evolutionary biology01 natural sciences03 medical and health sciencesThermal sensitivityJuvenileClimate changeHeat resistanceAnimalsAdult stageHeat shock030304 developmental biology0303 health sciencesLarvaEvolutionary Biologyhardeningheat resistancefungiPupabanaanikärpänenilmastonmuutoksetAgricultural and Biological Sciences (miscellaneous)Pupaclimate changeDrosophila melanogasterEctothermLarvaHardeningta1181General Agricultural and Biological SciencesHeat-Shock Response
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Is mate choice in Drosophila males guided by olfactory or gustatory pheromones ?

2010

International audience; Drosophila melanogaster flies use both olfactory and taste systems to detect sex pheromones and select the most suitable mate for reproduction. In nature, flies often face multiple potential partners and should have an acute sensory ability to discriminate between different pheromonal bouquets. We investigated both the pheromones and the chemosensory neurons influencing Drosophila mate choice. We measured various courtship traits in single tester males simultaneously presented with two target male and/or female flies carrying different pheromonal bouquets (pairs of control flies of the same or different sex, same-sex target pairs of pheromonal variant strains). The c…

0106 biological sciencesmelanogasteranimal structuresmedia_common.quotation_subject[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritioneducationSensory systemOlfactionsex pheromone010603 evolutionary biology01 natural sciencesCourtshiptaste03 medical and health sciencesDrosophilidaemate choice10. No inequalityDrosophilaEcology Evolution Behavior and Systematicsreproductive and urinary physiology030304 developmental biologymedia_common0303 health sciencesCommunicationbiologyCourtship displaybusiness.industryfungibiology.organism_classificationDrosophila melanogasterMate choiceEvolutionary biologySex pheromonebehavior and behavior mechanismscourtshipcuticular hydrocarbonAnimal Science and ZoologyDrosophilabusiness[SDV.AEN]Life Sciences [q-bio]/Food and Nutritiondiscriminationolfaction
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Eco-genetics of desiccation resistance in Drosophila.

2021

International audience; Climate change globally perturbs water circulation thereby influencing ecosystems including cultivated land. Both harmful and beneficial species of insects are likely to be vulnerable to such changes in climate. As small animals with a disadvantageous surface area to body mass ratio, they face a risk of desiccation. A number of behavioural, physiological and genetic strategies are deployed to solve these problems during adaptation in various Drosophila species. Over 100 desiccation-related genes have been identified in laboratory and wild populations of the cosmopolitan fruit fly Drosophila melanogaster and its sister species in large-scale and single-gene approaches…

0106 biological sciencesved/biology.organism_classification_rank.speciesPopulationGenome Insectadaptation010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyDesiccation tolerance03 medical and health sciencesGenetic variationevolutionAnimalsDesiccationModel organismeducationDrosophilagenomeclimateEcosystem030304 developmental biology0303 health scienceseducation.field_of_studybiologyved/biology[SDV.BA]Life Sciences [q-bio]/Animal biology[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]15. Life on landbiology.organism_classificationAdaptation PhysiologicalDrosophila melanogaster13. Climate actionEvolutionary biologyinsectDrosophilaDrosophila melanogasterAdaptation[SDV.EE.BIO]Life Sciences [q-bio]/Ecology environment/BioclimatologyGeneral Agricultural and Biological SciencesDesiccationBiological reviews of the Cambridge Philosophical SocietyREFERENCES
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Localization microscopy of DNA in situ using Vybrant(®) DyeCycle™ Violet fluorescent probe: A new approach to study nuclear nanostructure at single m…

2016

Higher order chromatin structure is not only required to compact and spatially arrange long chromatids within a nucleus, but have also important functional roles, including control of gene expression and DNA processing. However, studies of chromatin nanostructures cannot be performed using conventional widefield and confocal microscopy because of the limited optical resolution. Various methods of superresolution microscopy have been described to overcome this difficulty, like structured illumination and single molecule localization microscopy. We report here that the standard DNA dye Vybrant(®) DyeCycle™ Violet can be used to provide single molecule localization microscopy (SMLM) images of …

0301 basic medicine02 engineering and technologyBiologyChromosomeslaw.inventionVybrant DyeCycle Violet03 medical and health sciencesDNA dyesHigher Order Chromatin StructureConfocal microscopylawphotoconversionMicroscopyChlorocebus aethiopsAnimalsdSTORMSMLMVero CellsFluorescent Dyeschromatin structureCell NucleusResolution (electron density)DNA replicationCell BiologyDNA021001 nanoscience & nanotechnologySingle Molecule ImagingFluorescenceSingle Molecule ImagingChromatinCell biologyNanostructures030104 developmental biologyDrosophila melanogasterMicroscopy FluorescenceBiophysics0210 nano-technologyExperimental cell research
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Drosophila Full-Length Amyloid Precursor Protein is Required for Visual Working Memory and Prevents Age-Related Memory Impairment

2018

Summary The β-amyloid precursor protein (APP) plays a central role in the etiology of Alzheimer's disease (AD). However, its normal physiological functions are still unclear. APP is cleaved by various secretases whereby sequential processing by the β- and γ-secretases produces the β-amyloid peptide that is accumulating in plaques that typify AD. In addition, this produces secreted N-terminal sAPPβ fragments and the APP intracellular domain (AICD). Alternative cleavage by α-secretase results in slightly longer secreted sAPPα fragments and the identical AICD. Whereas the AICD has been connected with transcriptional regulation, sAPPα fragments have been suggested to have a neurotrophic and neu…

0301 basic medicineAgingFasciclin 2Nerve Tissue ProteinsGeneral Biochemistry Genetics and Molecular BiologyArticle03 medical and health sciences0302 clinical medicineAmyloid precursor proteinMemory impairmentAnimalsDrosophila ProteinsOlfactory memorybiologyWorking memoryfungiMembrane ProteinsLong-term potentiationCell biology030104 developmental biologyDrosophila melanogasterMemory Short-Termbiology.proteinVisual PerceptionAmyloid Precursor Protein SecretasesGeneral Agricultural and Biological SciencesAmyloid precursor protein secretase030217 neurology & neurosurgeryNeurotrophin
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Autophagy during ageing – from Dr Jekyll to Mr Hyde

2017

Autophagy is a ubiquitous catabolic process, which causes cellular bulk degradation through vesicular engulfment of obsolete, damaged or harmful cytoplasmic components. While autophagy regulates cellular homeostasis during development and in youth, there is mounting evidence that autophagy becomes increasingly dysfunctional with age. Recent work in Caenorhabditis elegans even suggests that late-life dysfunctional autophagy exhibits detrimental effects that drive the ageing process. Other studies link elevated autophagy closely to increased health and longevity. This review aims to put these apparently opposing views into perspective and define our current understanding of the role of autoph…

0301 basic medicineAgingmedia_common.quotation_subjectLongevityCellular homeostasisSaccharomyces cerevisiaeBiochemistry03 medical and health sciencesAutophagyAnimalsHumansCaenorhabditis elegansMolecular BiologyCaenorhabditis elegansmedia_commonbiologyAutophagyLongevityCell BiologyCatabolic Processbiology.organism_classificationCell biologyDrosophila melanogaster030104 developmental biologyAgeingSignal TransductionThe FEBS Journal
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Direct Sensing of Nutrients via a LAT1-like Transporter in Drosophila Insulin-Producing Cells

2016

Summary Dietary leucine has been suspected to play an important role in insulin release, a hormone that controls satiety and metabolism. The mechanism by which insulin-producing cells (IPCs) sense leucine and regulate insulin secretion is still poorly understood. In Drosophila, insulin-like peptides (DILP2 and DILP5) are produced by brain IPCs and are released in the hemolymph after leucine ingestion. Using Ca2+-imaging and ex vivo cultured larval brains, we demonstrate that IPCs can directly sense extracellular leucine levels via minidiscs (MND), a leucine transporter. MND knockdown in IPCs abolished leucine-dependent changes, including loss of DILP2 and DILP5 in IPC bodies, consistent wit…

0301 basic medicineAmino Acid Transport Systemsheavy-chainmedicine.medical_treatmentInsulinsamino acid transporter0302 clinical medicinegenetics [Drosophila Proteins]cytology [Drosophila melanogaster]Glutamate DehydrogenaseHemolymphInsulin-Secreting Cellsmetabolism [Drosophila melanogaster]HemolymphDrosophila;Drosophila insulin-like peptides;amino acid transporter;food;glutamate dehydrogenase;glycemia;growth;insulin-producing cells;minidiscs;starvationDrosophila ProteinsProtein Isoformsmetabolism [Calcium]genetics [Insulins]genetics [Amino Acid Transport Systems]lcsh:QH301-705.5minidiscsGene knockdowncytology [Larva]pancreatic beta-cellglutamate dehydrogenaseBrainmetabolism [Hemolymph]secretionDrosophila melanogasterBiochemistryLarvaAlimentation et NutritionDrosophilaLeucineSignal Transductionglucose-transportgenetics [Glutamate Dehydrogenase]genetics [Protein Isoforms]growthamino-acidsmetabolism [Drosophila Proteins][SDV.BC]Life Sciences [q-bio]/Cellular BiologyNutrient sensingmetabolism [Larva]Biologyinsulin-producing cellsArticleGeneral Biochemistry Genetics and Molecular Biologymetabolism [Amino Acid Transport Systems]metabolism [Insulins]03 medical and health sciencesLeucineparasitic diseasesmedicineFood and NutritionAnimalsddc:610cytology [Insulin-Secreting Cells]cardiovascular diseasesAmino acid transporterMnd protein Drosophilaadministration & dosage [Leucine]metabolism [Protein Isoforms]Ilp5 protein Drosophilacytology [Brain]foodGlutamate dehydrogenaseInsulinNeurosciencesstarvationGlucose transportermetabolism [Insulin-Secreting Cells]glutamate-dehydrogenasel-leucineglycemia030104 developmental biologyGene Expression Regulationlcsh:Biology (General)metabolism [Brain]metabolism [Glutamate Dehydrogenase]Neurons and Cognitionmetabolism [Leucine]CalciumDrosophila insulin-like peptidesmetabolismfat-cells030217 neurology & neurosurgeryCell Reports
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Oxidative stress modulates rearrangement of endoplasmic reticulum-mitochondria contacts and calcium dysregulation in a Friedreich's ataxia model

2020

Friedreich ataxia (FRDA) is a neurodegenerative disorder characterized by neuromuscular and neurological manifestations. It is caused by mutations in the FXN gene, which results in loss of the mitochondrial protein frataxin. Endoplasmic Reticulum-mitochondria associated membranes (MAMs) are inter-organelle structures involved in the regulation of essential cellular processes, including lipid metabolism and calcium signaling. In the present study, we have analyzed in both, unicellular and multicellular models of FRDA, calcium management and integrity of MAMs. We observed that function of MAMs is compromised in our cellular model of FRDA, which was improved upon treatment with antioxidants. I…

0301 basic medicineAtaxiaClinical BiochemistryLipid peroxidationchemistry.chemical_elementMitochondrionCalciumEndoplasmic ReticulumBiochemistry03 medical and health sciences0302 clinical medicineMAMsmedicineAnimalsVitamin EMitochondrial calcium uptakelcsh:QH301-705.5Calcium signalinglcsh:R5-920biologyFrataxinEndoplasmic reticulumOrganic ChemistryN-acetylcysteineMitochondriaCell biologyOxidative StressDrosophila melanogaster030104 developmental biologychemistrylcsh:Biology (General)Friedreich AtaxiaFrataxinbiology.proteinCalciummedicine.symptomCellular modellcsh:Medicine (General)030217 neurology & neurosurgeryResearch PaperRedox Biology
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