Search results for "wasp"

showing 10 items of 102 documents

The role of contact chemoreception in the host location process of an egg parasitoid

2016

Taste allows insects to detect palatable or toxic foods, identify a mate, and select appropriate oviposition sites. The gustatory system strongly contributes to the survival and reproductive success of many species, yet it is rarely studied in insect parasitoids. In order to locate and assess a host in which they will lay their eggs, female wasps actively search for chemical cues using their sensory organs present mainly on the antennae. In this paper, we studied the role of antennal taste sensilla chaetica in the perception of contact semiochemicals in Trissolcus brochymenae (Hymenoptera: Platygastridae), an egg parasitoid of the brassicaceae pest Murgantia histrionica (Heteroptera: Pentat…

Arthropod AntennaeMale0106 biological sciencesTastePhysiologyOvipositionmedia_common.quotation_subject[SDV]Life Sciences [q-bio]WaspsZoologySensilla chaeticaHymenopteraInsect010603 evolutionary biology01 natural sciencesGas Chromatography-Mass SpectrometryHost-Parasite InteractionsParasitoidHeteroptera016-3962PlatygastridaeAnimalsBehaviourLaboratory of Entomologymedia_commonAppetitive BehaviorReproductive successbiologyAnimalEcologyHost (biology)Behaviour Electrophysiology Gustation Kairomone Platygastridae Sensilla chaeticafungiHost-Parasite InteractionTaste PerceptionWaspPentatomidaebiology.organism_classificationLaboratorium voor EntomologieElectrophysiological PhenomenaElectrophysiology010602 entomologySettore AGR/11 - Entomologia Generale E ApplicataInsect ScienceKairomoneKairomoneFemaleGustation
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Incipient genome erosion and metabolic streamlining for antibiotic production in a defensive symbiont

2021

Significance Genome reduction is commonly observed in bacteria of several phyla engaging in obligate nutritional symbioses with insects. In Actinobacteria, however, little is known about the process of genome evolution, despite their importance as prolific producers of antibiotics and their increasingly recognized role as defensive partners of insects and other organisms. Here, we show that “Streptomyces philanthi,” a defensive symbiont of digger wasps, has a G+C-enriched genome in the early stages of erosion, with inactivating mutations in a large proportion of genes, causing dependency on its hosts for certain nutrients, which was validated in axenic symbiont cultures. Additionally, overe…

Arthropod Antennaeprotective mutualismEvolutionWaspsBeewolfGenomicsProteomicsGenomeStreptomyces03 medical and health sciencesdefensive symbiosis418AnimalsSymbiosisGene030304 developmental biologyGenetics0303 health sciencesMultidisciplinarybiologyObligate030306 microbiologyHost (biology)fungiBiological Sciencesbiology.organism_classificationStreptomycesAnti-Bacterial Agentsgenome erosionAphidsCommentarybacteriaFemalepseudogenizationGenome BacterialPseudogenesMolecular Chaperones
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Olfactory attraction of the hornet Vespa velutina to honeybee colony odors and pheromones.

2014

19 pages; International audience; Since the beginning of the last century, the number of biological invasions has continuously increased worldwide. Due to their environmental and economical consequences, invasive species are now a major concern. Social wasps are particularly efficient invaders because of their distinctive biology and behavior. Among them, the yellow-legged hornet, Vespa velutina, is a keen hunter of domestic honeybees. Its recent introduction to Europe may induce important beekeeping, pollination, and biodiversity problems. Hornets use olfactory cues for the long-range detection of food sources, in this case the location of honeybee colonies, but the exact nature of these c…

Arthropodacondition contrôléeScienceWaspsInvasive SpeciesPlant Sciencelutte par piégeageBiochemistryPheromonesGeographical LocationsLarvaeSpecies Colonization[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsvespa velutinaPollinationperception olfactivephéromoneabeille domestique[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyMetamorphosisEcologyPlant AnatomyQEcology and Environmental SciencesROrganismsBiology and Life SciencesBiodiversityBeesInvertebratesHymenopteraprédateurInsectsEuropeSmellPlant PhysiologyPredatory BehaviorPeople and PlacesOdorantsMedicinePolleninvasion biologique[SDE.BE]Environmental Sciences/Biodiversity and EcologyHoney BeesResearch ArticleDevelopmental Biology[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Reperti su Imenotteri parassitoidi di fillominatori infestanti specie botaniche spontanee ed ornamentali. II Nota

2003

Braconid and Eulophid wasps new hosts.
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Regulatory activity of human CD4 CD25 T cells depends on allergen concentration, type of allergen and atopy status of the donor.

2005

Regulatory CD4+ CD25+ FoxP3-positive T cells (Treg) are functional in most atopic patients with allergic rhinitis and are able to inhibit T helper type 1 (Th1) and Th2 cytokine production of CD4+ CD25- T cells. This study was designed to analyse the following additional aspects: influence of allergen concentration, influence of the type of allergen, and influence of the atopy status of the donor on the strength of the regulatory activity. CD4+ CD25- T cells from healthy non-atopic controls or from grass-pollen-allergic or wasp-venom-allergic donors were stimulated alone or in the presence of Treg with autologous mature monocyte-derived dendritic cells which were pulsed with different concen…

CD4-Positive T-LymphocytesHypersensitivity ImmediateAllergymedicine.medical_treatmentImmunologyDose-Response Relationship Immunologicchemical and pharmacologic phenomenaWasp VenomsReceptors Nerve Growth FactorBiologymedicine.disease_causePoaceaeReceptors Tumor Necrosis FactorAtopyInterleukin 21AllergenTh2 CellsAntigenT-Lymphocyte SubsetsGlucocorticoid-Induced TNFR-Related ProteinmedicineImmunology and AllergyHumansIL-2 receptorReceptorCells CulturedCell Proliferationhemic and immune systemsForkhead Transcription FactorsReceptors Interleukin-2Original ArticlesAllergensTh1 Cellsmedicine.diseaseCoculture TechniquesCytokineImmunologyCytokinesPollenImmunology
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Comparative morphology of the postpharyngeal gland in the Philanthinae (Hymenoptera, Crabronidae) and the evolution of an antimicrobial brood protect…

2015

Background Hymenoptera that mass-provision their offspring have evolved elaborate antimicrobial strategies to ward off fungal infestation of the highly nutritive larval food. Females of the Afro-European Philanthus triangulum and the South American Trachypus elongatus (Crabronidae, Philanthinae) embalm their prey, paralyzed bees, with a secretion from a complex postpharyngeal gland (PPG). This coating consists of mainly unsaturated hydrocarbons and reduces water accumulation on the prey’s surface, thus rendering it unfavorable for fungal growth. Here we (1) investigated whether a North American Philanthus species also employs prey embalming and (2) assessed the occurrence and morphology of …

CrabronidaeWaspsMolecular ConformationBeewolvesBeesAntifungalBiological Evolution590 Tiere (Zoologie)HydrocarbonsPrey preservationExocrine GlandsLarvaPredatory BehaviorPhilanthinaeddc:590AnimalsPostpharyngeal glandComparative morphologyAntimicrobialFemale3D reconstructionPostpharyngeal gland; 3D reconstruction; Comparative morphology; Prey preservation; Antimicrobial; Antifungal; Crabronidae; Philanthinae; BeewolvesPhylogenyEcology Evolution Behavior and SystematicsResearch ArticleBMC Evolutionary Biology
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Fitness costs of intrinsic competition in two egg parasitoids of a true bug

2015

Intrinsic competition in insect parasitoids occurs when supernumerary larvae develop in the same host as consequence of multiple ovipositions by females of the same species (intra-specific competition) or by females of different species (inter-specific competition). Studies on intrinsic competition have mainly focused on understanding the factors that play a role in the outcome of competition, while fitness-related effects for the parasitoid surviving the competition have been poorly investigated, especially in egg parasitoids. Interestingly, even the winning parasitoid can experience fitness costs due to larval development in a host in which multiple factors have been injected by the ovipo…

Developmental timeMaleOocyteCompetitive BehaviorGreen stink bugPhysiologymedia_common.quotation_subjectOvipositionWaspsZoologyIntraspecific competitionCompetition (biology)Host-Parasite InteractionsParasitoidHeteropteraSizeAnimalsBody SizeHost qualitymedia_commonOvumLarvabiologyHost (biology)EcologyAnimalfungiNezara viridulaHost-Parasite InteractionInterspecific competitionTrissolcus basaliWaspbiology.organism_classificationSettore AGR/11 - Entomologia Generale E ApplicataOoencyrtus telenomicidaItalyNezara viridulaInsect ScienceFemale
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The Ecology of Hyperparasitoids.

2021

Hyperparasitoids are some of the most diverse members of insect food webs. True hyperparasitoids parasitize the larvae of other parasitoids, reaching these larvae with their ovipositor through the herbivore that hosts the parasitoid larva. During pupation, primary parasitoids also may be attacked by pseudohyperparasitoids that lay their eggs on the parasitoid (pre)pupae. By attacking primary parasitoids, hyperparasitoids may affect herbivore population dynamics, and they have been identified as a major challenge in biological control. Over the past decades, research, especially on aphid- and caterpillar-associated hyperparasitoids, has revealed that hyperparasitoids challenge rules on nutri…

EntomologyFood ChainPopulationWaspsDuurzame gewasbeschermingBiologyInsect food webParasitoidHost-Parasite InteractionsMultitrophic interactionsAnimalsLaboratory of EntomologyeducationEcology Evolution Behavior and SystematicsTrophic leveleducation.field_of_studyHerbivoreAphidParasietenEcologyEcologyHost searching Hyperparasitoid Indirect interactions Insect food web Multitrophic interactions ParasitismIndirect interactionsHyperparasitoidbiology.organism_classificationPE&RCLaboratorium voor EntomologiePupaParasitismInsect ScienceLarvaHost searchingOvipositorEPSAnnual review of entomology
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Risk assessment of non-target effects of Closterocerus chamaeleon (Girault) parasitoid of the eucalypt gall maker Ophelimus maskelli (Ashmead) (Hymen…

2015

The pre-release risk assessment, a recommended practice in biological control programmes, was carried out before introducing Closterocerus chamaeleon (Girault), a eulophid parasitoid of the eucalypt gall maker Ophelimus maskelli (Ashmead) (Hymenoptera, Eulophidae), in Sicily, Italy. We evaluated its host specificity in laboratory small arena no-choice tests on six non-target hosts, using O. maskelli as a control species. The non-target species fit with at least one of the following criteria: a) common geographical origin; b) ecological or behavioural affinities with the target host; c) concealed habit of the preimaginal stages; d) taxonomic affinity; e) taxonomic affinity with hosts of cong…

EulophidaeHost (biology)Biological pest controlZoologyrisk assessmentHymenopteraclassical biological controleucalypt gall waspPlant ScienceBiologybiology.organism_classificationClosterocerus chamaeleonParasitoidSettore AGR/11 - Entomologia Generale E ApplicataInsect ScienceBotanyOvipositorGallLeptocybe invasaexotic parasitoidfixed action pattern
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Dispersal rate and parasitism by Closterocerus chamaeleon (Girault) after its release in Sicily to control Ophelimus maskelli (Ashmead) (Hymenoptera,…

2011

Abstract Spread of the exotic parasitoid Closterocerus chamaeleon (Girault) and its parasitism on the Eucalyptus gall wasp Ophelimus maskelli (Ashmead) (Hymenoptera, Eulophidae) were studied in Sicily after C. chamaeleon introduction in May 2006. Parasitoid spread was evaluated by sampling sites at increasing distances from the five release sites. C. chamaeleon quickly established and spread; within 5 months, it caused 62% parasitism at release sites and 38% parasitism at sites 2 km from release sites. One year after its introduction (spring 2007), C. chamaeleon was detected more than 50 km distant from release sites. By winter 2007–08, the parasitoid was recovered throughout Sicily and in …

EulophidaebiologyEcologyfungiBiological pest controlGall waspParasitismHymenopterabiology.organism_classificationParasitoidSettore AGR/11 - Entomologia Generale E ApplicataInsect ScienceBiological dispersalChamaeleonClosterocerus chamaeleon Ophelimus maskelli Eucalyptus gall wasp Parasitoid introduction Dispersal strategy Parasitism levelAgronomy and Crop Science
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