Search results for "Parasitoids"

showing 10 items of 36 documents

The role of plant volatiles in prediction of floral resource suitability: chemical ecology to enhance conservation biological control.

2015

Plants emit substantial amounts of volatile organic compounds (VOCs) which represent a decisive communication channel, governing essential decisions insect have to make, such as choice of food. Understanding these interactions is critically important in Habitat Management and in a broader view in Conservation Biological Control. Suitable flower species must enhance the survival and fecundity of natural enemies but in addition they also need to be highly attractive and thus frequently visited. To date few examples exist that have considered both criteria. In this study we tested the effects of the flowering plants alyssum (Lobularia maritima), buckwheat (Fagopyrum esculentum), French marigol…

Buckwheat; Chemical ecology; Conservation Biological Control; Egg parasitoids; Volatile Organic Compounds.Settore AGR/11 - Entomologia Generale E ApplicataConservation Biological ControlChemical ecologyVolatile Organic Compounds.BuckwheatEgg parasitoid
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Conflict between parasites with different transmission strategies infecting an amphipod host

2005

Competition between parasites within a host can influence the evolution of parasite virulence and host resistance, but few studies examine the effects of unrelated parasites with conflicting transmission strategies infecting the same host. Vertically transmitted (VT) parasites, transmitted from mother to offspring, are in conflict with virulent, horizontally transmitted (HT) parasites, because healthy hosts are necessary to maximize VT parasite fitness. Resolution of the conflict between these parasites should lead to the evolution of one of two strategies: avoidance, or sabotage of HT parasite virulence by the VT parasite. We investigated two co-infecting parasites in the amphipod host, G…

Competitive BehaviorBehavior-altering parasites and parasitoidsVirulenceZoologyGeneral Biochemistry Genetics and Molecular BiologyAcanthocephalaHost-Parasite InteractionsGammarus roeseliAnimalsParasite hostingAmphipodaGeneral Environmental ScienceVirulenceGeneral Immunology and MicrobiologybiologyTransmission (medicine)Host (biology)ReproductionGeneral Medicinebiology.organism_classificationFertilityMicrosporidiaMicrosporidiaFemaleFranceGeneral Agricultural and Biological SciencesAcanthocephalaPolymorphism Restriction Fragment LengthResearch ArticleProceedings of the Royal Society B: Biological Sciences
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Biodiversity within the subfamily Alyssinae (Hymenoptera, Braconidae) in the Natural Park Peñas de Aya (Spain)

2011

Biodiversity within the subfamily Alyssinae (Hymenoptera, Braconidae) in the Natural Park Peñas de Aya (Spain). The study of parasitoid Hymenoptera is of significance for the assessment of diversity in a given area because of their role in the regulation of insects populations. The present work analyses diversity within Alysiinae (Hymenoptera, Braconidae) in the Forested Estate of Artikutza, located in the Natural Park Peñas de Aya, western Pyrenees, Spain. Collection of specimens was spread over two years and was carried out in two different habitats: mixed forest and beech forest. A total of 2,270 specimens, belonging to 22 separate genera, were captured. Subsequently, alpha, beta and gam…

DiversitybiologyPhenologyEcologyPyreneesGeneral EngineeringBiodiversityparasitóidesHymenopterabiology.organism_classificationparasitoidsdiversidadeParasitoidPirineussistema florestalHabitatprotected arealcsh:Zoologylcsh:QL1-991Área protegidaProtected areaforest systemBraconidaeBeechRevista Brasileira de Entomologia
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Competitive interactions in insect parasitoids: effects of microbial symbionts across tritrophic levels

2023

Competition for hosts is a common ecological interaction in insect parasitoids. In the recent years, it has become increasingly evident that microorganisms can act as ‘hidden players’ in parasitoid ecology. In this review, we propose that parasitoid competition should take into consideration the microbial influence. In particular, we take a tritrophic perspective and discuss how parasitoid competition can be modulated by microorganisms associated with the parasitoids, their herbivore hosts, or the plants attacked by the herbivores. Although research is still in its infancy, recent studies have shown that microbial symbionts can modulate the contest outcome. The emerging pattern is that micr…

H10 Pests of plantsParasitoidsMicroorganismsBiological interactionU40 Surveying methodsextrinsic competitionBiological competitionmicrobe-mediated effectintrinsic competitionInsect ScienceParasitoids ecologyMicrobial influenceparasitoid competitionHostsH20 Plant diseasesF40 Plant ecologyPlant pestsEcology Evolution Behavior and Systematicsparasitoid-associated symbiont
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Contrasting reproductive traits of competing parasitoids facilitate coexistence on a shared host pest in a biological control perspective

2022

BACKGROUND: Interspecific competition in insect parasitoids is an important ecological phenomenon that has relevant implications for biological pest control. To date, interspecific intrinsic (=larval) competition has been intensively studied, while investigations on extrinsic (=adult) competition have often lagged behind. In this study we examined the role played by parasitoid reproductive traits and host clutch size on the outcome of extrinsic competition between Trissolcus basalis (Wollaston) and Ooencyrtus telenomicida (Vassiliev), two egg parasitoids of the pest Nezara viridula (L). Laboratory experiments were conducted by allowing both parasitoid species to exploit an egg mass made of …

HeteropteraPhenotypeInsect ScienceWaspsAnimalsGeneral MedicinePest Control Biologicalinterspecific competition extrinsic competition intrinsic competition egg parasitoids stink bugs Trissolcus basalis Ooencyrtus telenomicida Nezara viridulaAgronomy and Crop ScienceHost-Parasite InteractionsOvumPest Management Science
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Plant surfaces of vegetable crops mediate interactions between chemical footprints of true bugs and their egg parasitoids.

2009

During the host location process, egg parasitoids can eavesdrop on chemical cues released from immature and adult hosts. These indirect host-related cues are highly detectable, but of low reliability because they lead egg parasitoid females to an area where oviposition is likely to occur rather then providing wasps with direct information on the presence of eggs and their location. In the host-parasitoid associations between true bugs and their scelionid egg parasitoids, female wasps perceive the chemical residues left by host adults walking on substrates as contact kairomones, displaying a characteristic arrestment posture. In this study, we demonstrated that epicuticular waxes of leaves o…

Host (biology)media_common.quotation_subjectForagingfungifood and beveragesInsectBiologybiology.organism_classificationParasitoidVicia fabaArticle AddendumSettore AGR/11 - Entomologia Generale E ApplicataNezara viridulaKairomoneBotanyBrassica oleraceaInsect egg parasitoids southern green stink bug vicia faba brassica oleraceaGeneral Agricultural and Biological Sciencesmedia_commonCommunicativeintegrative biology
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Biological protection against grape berry moths. A review

2018

International audience; Grape is a major crop, covering 7.5 M ha worldwide, that is currently being confronted with three main challenges: intensive pesticide use that must be reduced, invasion by new pests/diseases, and climate change. The biological control of pests and vectors would help address these challenges. Here, we review the scientific literature on the biological control of grape moths by macroorganisms (excluding nematodes). Two components, biological control with an active human role, mainly using biocontrol agents through inundation or inoculation, and conservation biological control, are considered. The major points are the following. (1) Tortricid grape moths seriously dama…

Landscape architecture0106 biological sciencesEnvironmental EngineeringLobesia botrana;Eupoecilia ambiguella;biodiversity;agroecology;viticulture;agricultural practices;landscape architecture;parasitoids;predators[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/AgronomyBiological pest controlBiologyLobesia botrana010603 evolutionary biology01 natural sciencesPredationvitis vinifera[ SDV.SA.AGRO ] Life Sciences [q-bio]/Agricultural sciences/AgronomyLobesia botrana[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis2. Zero hunger[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyViticultureParasitoidsResistance (ecology)business.industryAgroforestryfungiPest controlfood and beveragesBiodiversity15. Life on landbiology.organism_classificationPredatorsAgricultural practices010602 entomologyEupoecilia ambiguella13. Climate actionAgriculturePEST analysis[SDE.BE]Environmental Sciences/Biodiversity and EcologyViticulturevignebusinessAgronomy and Crop Sciencecontrôle biologiqueAgroecology[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisAgronomy for Sustainable Development
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Bactrocera oleae. Fattori naturali di controllo

2019

Bactrocera oleae. Natural control factors. Natural control factors (parasitoids and climatic factors) influencing the olive fruit fly, Bactrocera oleae, are analysed comparing two different areas of cultivated and wild olives, Sicily and the Western Cape of South Africa. Bactrocera oleae has a similar level of parasitization in both areas, much higher in wild olives than in cultivated ones. Climatic conditions are much more important than climatic factors, influencing the growth of olive fruit fly populations, producing a higher level of infestation in more humid and rainy productive seasons.

Olive fruit fly Parasitoids Relative humidity Temperature Rain Psyttalia concolor Psyttalia lounsburyi Bracon celer Utetes africanus Psyttalia humilis Olive infestationSettore AGR/11 - Entomologia Generale E Applicata
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Effect of dual biotic stress on plant volatile synomones used by an egg parasitoid

Plants respond to arthropod herbivory with the induction of volatiles called herbivore-induced plant volatiles (HIPVs). These volatiles appear to be important sources of information that attract parasitoids. Parasitic wasps foraging decisions are often affected by community characteristics such as community diversity and complexity. As part of a complex habitat, the presence of unsuitable hosts (non-host) may affect foraging behavior of parasitoids. In this chapter, we outline the importance of the presence of unsuitable herbivores on the behavioral responses of parasitoids. First we review the foraging behavior of parasitoid in tritrophic interaction. Then we focus on foraging behavior by …

Parasitoids. HIPVs. non-host. above- ground. below-ground [Key-words]Key-words: Parasitoids. HIPVs. non-host. above- ground. below-ground
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Learning can be detrimental for a parasitic wasp

2021

Animals have evolved the capacity to learn, and the conventional view is that learning allows individuals to improve foraging decisions. The parasitoid Telenomus podisi has been shown to parasitize eggs of the exotic stink bug Halyomorpha halys at the same rate as eggs of its coevolved host, Podisus maculiventris, but the parasitoid cannot complete its development in the exotic species. We hypothesized that T. podisi learns to exploit cues from this non-coevolved species, thereby increasing unsuccessful parasitism rates. We conducted bioassays to compare the responses of naïve vs. experienced parasitoids on chemical footprints left by one of the two host species. Both naïve and experienced …

PhysiologyOvipositionEggsWaspsSocial SciencesInvasive SpeciesIntroduced speciesPheromonesParasitoidLearning and MemoryReproductive PhysiologyPsychologyForagingeducation.field_of_studyMultidisciplinaryAnimal BehaviorQREgg parasitoids host Specificity chemical cues maladaptive learning Halyomorpha halys Telenomus podisiEvolutionary trapMedicineFemaleResearch ArticleScienceForagingPopulationZoologyParasitismBiologyHost SpecificityHost-Parasite InteractionsHeteropteraSpecies ColonizationAnimalsLearningParasite EvolutioneducationBehaviorReproductive successHost (biology)fungiEcology and Environmental SciencesCognitive PsychologyParasite PhysiologyBiology and Life Sciencesbiology.organism_classificationSettore AGR/11 - Entomologia Generale E ApplicataTelenomus podisiCognitive ScienceParasitologyZoologyNeuroscience
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