Search results for "flies"

showing 10 items of 85 documents

Systematic Position of Gastropini (Diptera: Ephydridae), and a Review of Two Included Genera:GastropsWilliston andNotacanthinaMacquart

2017

The placement of the tribe Gastropini within the subfamily Gymnomyzinae, with the tribe Gymnomyzini as a sister-group, is supported. Validity for two genera Gastrops Williston and Notacanthina Macquart (senior synonym of Beckeriella Williston) is maintained. Particular characters of their proboscis, ventral receptacle and the male terminalia are presented. A key to species and habitus photographs of selected species of Gastrops and Notacanthina are provided. The following new combinations are proposed: Notacanthina clypeata (Lizarralde de Grosso, 1986), comb. nov., N. fasciata (Mathis & Grimaldi, 2000), comb. nov., N. filipina (Lizarralde de Grosso, 1994), comb. nov., N. gigas (Lizarralde d…

0106 biological sciences010607 zoologynew combinationsEphydridaeBeckeriellaBiologyphylogenybiology.organism_classificationGymnomyzinae010603 evolutionary biology01 natural sciencesshore fliestaxonomyGymnomyzinaeBotanyTaxonomy (biology)Ecology Evolution Behavior and SystematicsAnnales Zoologici
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Effect of antibiotic treatment and gamma-irradiation on cuticular hydrocarbon profiles and mate choice in tsetse flies (Glossina m. morsitans).

2018

Background Symbiotic microbes represent a driving force of evolutionary innovation by conferring novel ecological traits to their hosts. Many insects are associated with microbial symbionts that contribute to their host’s nutrition, digestion, detoxification, reproduction, immune homeostasis, and defense. In addition, recent studies suggest a microbial involvement in chemical communication and mating behavior, which can ultimately impact reproductive isolation and, hence, speciation. Here we investigated whether a disruption of the microbiota through antibiotic treatment or irradiation affects cuticular hydrocarbon profiles, and possibly mate choice behavior in the tsetse fly, Glossina mors…

0106 biological sciences0301 basic medicineMicrobiology (medical)MaleMate choiceTsetse Flieslcsh:QR1-502ZoologyGlossina morsitans01 natural sciencesMicrobiologylcsh:Microbiology03 medical and health sciencesSexual Behavior AnimalAnimalsMatingTsetseSymbiosisWigglesworthiaEndosymbiontbiologyObligateHost (biology)MicrobiotaResearchfungiTsetse flyReproductive isolationTetracyclinebiology.organism_classificationHydrocarbonsAnti-Bacterial Agents010602 entomology030104 developmental biologyMate choiceWigglesworthiaSex pheromoneInsect ProteinsAmpicillinFemaleCuticular hydrocarbonsBMC microbiology
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How many scales on the wings? A case study based on Colias crocea (Geoffroy, 1785) (Hexapoda: Lepidoptera, Pieridae)

2019

Abstract The covering by scales of the wings of Lepidoptera contributes to multiple functions that are critical for their survival and reproduction. In order to gain a better understanding about their distribution, we have exhaustively studied 4 specimens of Colias crocea (Geoffroy, 1785). We have quantified the sources of variability affecting scale density. The results indicate that the scale covering of butterfly wings may be remarkably heterogeneous, and that the importance of the sources of variability differs between forewings and hindwings. Thus, in forewing the greatest variability occurs between sectors, while in the hindwings it occurs between sides, with a higher density of scale…

0106 biological sciences0301 basic medicineScale (anatomy)Adaptive valueAnimal ScalesZoology010603 evolutionary biology01 natural sciencesPredationHexapodaLepidoptera genitalia03 medical and health sciencesAnimalsWings AnimalColias croceaEcology Evolution Behavior and SystematicsbiologyGeneral Medicinebiology.organism_classification030104 developmental biologyInsect ScienceButterflyFemaleButterfliesDevelopmental BiologyPieridaeArthropod Structure & Development
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Re-examining the rare and the lost : a review of fossil Tortricidae (Lepidoptera)

2018

We re-evaluate eleven fossils that have previously been assigned to the family Tortricidae, describe one additional fossil, and assess whether observable morphological features warrant confident assignment of these specimens to this family. We provide an overview of the age and origin of the fossils and comment on their contribution towards understanding the phylogeny of the Lepidoptera. Our results show that only one specimen, Antiquatortia histuroides Brown & Baixeras gen. and sp. nov., shows a character considered synapomorphic for the family. Six other fossils ( Electresia zalesskii Kusnezov, 1941; Tortricidrosis inclusa Skalski, 1973; Tortricites skalskii Kozlov, 1988; Tortricibaltia d…

0106 biological sciences0301 basic medicineTortricidaeInsectaArthropodaMOTHSPHYLOGENYZoologyPaleolepidopteritesRetinia resinellaTrace fossil010603 evolutionary biology01 natural sciencesTortricitesLepidoptera genitaliaAntiquatortia03 medical and health sciencesTortricibaltiaTortricidrosisPhylogeneticsTortricidaeSpatalistiformaBUTTERFLIESAnimaliaAnimalsPolyvenaOlethreutinaeEcology Evolution Behavior and SystematicsTaxonomyElectresiaSynapomorphybiologyFossilsBiodiversityRetiniabiology.organism_classificationfossil recordAmberLepidoptera030104 developmental biology1181 Ecology evolutionary biologyta1181Animal Science and ZoologyRetinia
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Symbiotic polydnavirus and venom reveal parasitoid to its hyperparasitoids

2018

Symbiotic relationships benefit organisms in utilization of new niches. In parasitoid wasps, symbiotic viruses and venom that are injected together with wasp eggs into the host caterpillar suppress immune responses of the host and enhance parasitoid survival. We found that the virus also has negative effects on offspring survival when placing these interactions in a community context. The virus and venom drive a chain of interactions that includes the herbivore and its food plant and attracts the hyperparasitoid enemies of the parasitoid. Our results shed new light on the importance of symbionts associated with their host in driving ecological interactions and highlight the intricacy of how…

0106 biological sciences0301 basic medicineWasps01 natural sciencesMultitrophic interactionParasitoidHerbivore-induced plant volatilesGene Expression Regulation PlantLaboratory of EntomologyTrophic levelPlant-mediatedLarvaMultidisciplinarybiologyPolydnavirusHerbivore-induced plant volatilePlantsBiological SciencesWaspPE&RCOrganische ChemieBiosystematiekInteraction networkinternationalLarvaSymbiosiButterfliesZoology010603 evolutionary biologyHost-Parasite Interactions03 medical and health sciencesMultitrophic interactionsSymbiosisButterflieAnimalsSymbiosisCaterpillarSalivaEcosystemHerbivoreParasitic waspVenomsHost (biology)AnimalOrganic ChemistryfungiPlantLaboratorium voor Entomologiebiology.organism_classificationVenom030104 developmental biologySettore AGR/11 - Entomologia Generale E ApplicataPolydnaviridaeHerbivoreBiosystematicsEPS
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Stream restorations with meanders increase dragonfly and damselfly diversity and abundance, including an endangered species.

2021

10 pages; International audience; This study presents examples of successful restoration projects for biodiversity conservation. In West France, the Pinail National Nature Reserve is a protected wetland interspersed with more than 6000 ponds. This wetland is inhabited by 50 species of Odonata and thus is a key biodiversity area for damselflies and dragonflies conservation. In the past, when the limestone was exploited, the streams of the plateau were artificially channeled rectilinearly, running to the Vienne River. Eventually streams were blocked by biomass and sediments resulting in water flowing mainly underground. In 2011, two restoration projects dug and recreated lost habitats such as…

0106 biological sciencesBiodiversityEndangered speciesOdonata010603 evolutionary biology01 natural sciencesFreshwaterAbundance (ecology)MeanderCoenagrion mercurialeZygopteraNature and Landscape ConservationDragonfliesEcologybiologyEcology010604 marine biology & hydrobiologyInsect conservationSpecies diversityEpiprocta15. Life on landbiology.organism_classificationDragonflyGeographyCoenagrion mercurialeThreatened speciesWetlandLotic waterDamselflies[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Differential performance of a specialist and two generalist herbivores and their parasitoids on Plantago lanceolata

2011

The ability to cope with plant defense chemicals differs between specialist and generalist species. In this study, we examined the effects of the concentration of the two main iridoid glycosides (IGs) in Plantago lanceolata, aucubin and catalpol, on the performance of a specialist and two generalist herbivores and their respective endoparasitoids. Development of the specialist herbivore Melitaea cinxia was unaffected by the total leaf IG concentration in its host plant. By contrast, the generalist herbivores Spodoptera exigua and Chrysodeixis chalcites showed delayed larval and pupal development on plant genotypes with high leaf IG concentrations, respectively. This result is in line with t…

0106 biological sciencesChrysodeixis chalcitesHyposoter didymatorIridoid GlucosidesSpodopteraGeneralist and specialist species010603 evolutionary biology01 natural sciencesMelitaea cinxiaBiochemistryArticlePheromonesParasitoidHost-Parasite InteractionsMultitrophic interactionsSpodoptera exiguaBotanyPlant defense against herbivoryCotesia marginiventrisAnimalsCotesia melitaearumPlantagoEcology Evolution Behavior and Systematics2. Zero hungerImmunocompromised hostHerbivorePlantagobiologyHost (biology)fungiIridoid glycosidesfood and beveragesGeneral MedicineFeeding Behaviorbiology.organism_classificationAdaptation PhysiologicalHymenopteraChrysodeixis chalcitesPlant Leaves010602 entomologyMelitaeaLarvaChemical defensePlants EdibleButterflies
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Predators' consumption of unpalatable prey does not vary as a function of bitter taste perception

2020

Many prey species contain defensive chemicals that are described as tasting bitter. Bitter taste perception is, therefore, assumed to be important when predators are learning about prey defenses. However, it is not known how individuals differ in their response to bitter taste, and how this influences their foraging decisions. We conducted taste perception assays in which wild-caught great tits (Parus major) were given water with increasing concentrations of bitter-tasting chloroquine diphosphate until they showed an aversive response to bitter taste. This response threshold was found to vary considerably among individuals, ranging from chloroquine concentrations of 0.01 mmol/L to 8 mmol/L.…

0106 biological sciencesEXPRESSIONDEFENSEmedia_common.quotation_subjectbitter tasteLibrary scienceConsumption (sociology)BiologySTRATEGIC DECISIONS010603 evolutionary biology01 natural sciencesBasic Behavioral and Social ScienceMONARCH BUTTERFLIES03 medical and health sciencesREPERTOIREBitter taste perceptionchemical defenseAvoidance learningExcellenceFOODBehavioral and Social ScienceaposematismDental/Oral and Craniofacial DiseaseEcology Evolution Behavior and SystematicsEDUCATED PREDATORS030304 developmental biologyIndependent researchmedia_commonNutrition0303 health sciencesBIRDSFOS: Clinical medicine3103 EcologyNeurosciencestoxinsBitter tastehumanitiesEVOLUTIONgreat titsRECEPTORS3109 ZoologyResearch councilavoidance learning1181 Ecology evolutionary biologybehavior and behavior mechanismsAnimal Science and Zoology31 Biological Sciences
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Hyperparasitoids exploit herbivore-induced plant volatiles during host location to assess host quality and non-host identity

2019

Although consumers often rely on chemical information to optimize their foraging strategies, it is poorly understood how top carnivores above the third trophic level find resources in heterogeneous environments. Hyperparasitoids are a common group of organisms in the fourth trophic level that lay their eggs in or on the body of other parasitoid hosts. Such top carnivores use herbivore-induced plant volatiles (HIPVs) to find caterpillars containing parasitoid host larvae. Hyperparasitoids forage in complex environments where hosts of different quality may be present alongside non-host parasitoid species, each of which can develop in multiple herbivore species. Because both the identity of th…

0106 biological sciencesFood ChainSDG 16 - PeaceForagingWaspsContext (language use)010603 evolutionary biology01 natural sciencesMultitrophic interactionParasitoidPlant-Microbe-Animal Interactions–Original ResearchHost-Parasite InteractionsHyperparasitoid foraging behaviorFourth trophic level organismsMultitrophic interactionsFourth trophic level organismButterflieAnimalsNon-host parasitoid specieHerbivoryLaboratory of EntomologyEcology Evolution Behavior and SystematicsTrophic levelPieris brassicaeHerbivorebiologyHost (biology)EcologyAnimal010604 marine biology & hydrobiologySDG 16 - Peace Justice and Strong InstitutionsnationalHost-Parasite Interactionbiology.organism_classificationCotesia glomerataPE&RCLaboratorium voor Entomologie/dk/atira/pure/sustainabledevelopmentgoals/peace_justice_and_strong_institutionsJustice and Strong InstitutionsPlant-based food webLarvaEPSButterfliesNon-host parasitoid speciesOecologia
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Oviposition Cues for a Specialist Butterfly–Plant Chemistry and Size

2008

The oviposition choice of an insect herbivore is based on a complex set of stimuli and responses. In this study, we examined the effect of plant secondary chemistry (the iridoid glycosides aucubin and catalpol) and aspects of size of the plant Plantago lanceolata, on the oviposition behavior of the specialist butterfly Melitaea cinxia. Iridoid glycosides are known to deter feeding or decrease the growth rate of generalist insect herbivores, but can act as oviposition cues and feeding stimulants for specialized herbivores. In a previous observational study of M. cinxia in the field, oviposition was associated with high levels of aucubin. However, this association could have been the cause (b…

0106 biological sciencesIridoid GlycosidesIridoidmedicine.drug_classOvipositionmedia_common.quotation_subjectPlant sizeInsectBiologyGeneralist and specialist speciesMelitaea cinxia010603 evolutionary biology01 natural sciencesBiochemistryArticleSexual Behavior Animalchemistry.chemical_compoundPlantago lanceolataBotanymedicineAnimalsIridoidsGlycosidesPlantagoEcology Evolution Behavior and SystematicsAucubinmedia_commonHerbivoreIridoid glycosidesFeeding BehaviorGeneral MedicineCatalpol010602 entomologychemistryHerbivoreButterflyFemaleButterfliesJournal of Chemical Ecology
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