Search results for "parasitoids"

showing 10 items of 36 documents

Sexual communication in the egg parasitoid Trissolcus brochymenae

2009

The males of the egg parasitoid Trissolcus brochymenae (Hymenoptera Scelionidae) exploit a short range pheromone for recognition of the other gender. To evaluate the role of this pheromone, the behavior of virgin males has been studied in closed arena when exposed to the following cues: 1) virgin females (alive, dead "washed" with solvents, dead" unwashed"); 2) dissected and re-assembled virgin females (females dissected into head, mesosoma, and gaster, then reassembled using two solvent "washed" parts and an "unwashed” part, or "unwashed" legs assembled with entire" washed" body); 3) "washed" females treated with acetone extracts (of virgin females and of legs). Males antennate and mount v…

Settore AGR/11 - Entomologia Generale E Applicataooparasitoids sex pheromones sexual behaviour Gc-MS
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Plant responses induced by Halyomorpha halys (Het.: Pentatomidae)

2016

The Brown Marmorated Stink Bug Halyomorpha halys (Heteroptera: Pentatomidae), is a very polyphagous pest of fruit crops, horticultural crops and ornamentals. Native from eastern Asia, this invasive species was recorded for the first time in Modena in 2012 and is now spreading in Northern and Central Italy. With its establishment in the invaded areas, new interactions with native tri-trophic systems (plants - stink bugs - parasitoids) are expected. A plant attacked by an ovipositing stink bug may respond by the emission of induced plant synomones, which are exploited by egg parasitoids for host location (indirect defences). This mechanism had been studied for coevolved tritrophic systems at …

Settore AGR/11 - Entomologia Generale E ApplicataPlant defences egg parasitoids tritrophic systems stink bugs
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Attraction of Trichogramma Wasps to Butterfly Oviposition-Induced Plant Volatiles Depends on Brassica Species, Wasp Strain and Leaf Necrosis

2021

Within the Brassicaceae, wild as well as crop species are challenged by specialist herbivores including cabbage white butterflies (Pieris spp.). The wild crucifer Brassica nigra responds to oviposition by Pieris butterflies by the synergistic expression of two egg-killing traits. Genotypes that express a hypersensitive response (HR)-like necrosis (direct egg-killing) also emit oviposition-induced plant volatiles (OIPVs) attracting Trichogramma egg parasitoids (indirect egg-killing). This so-called double defense line can result in high butterfly egg mortalities. It remains unknown whether this strategy is unique to B. nigra or more common in Brassica species. To test this, we examined the r…

0106 biological scienceshypersensitive responseEvolutionBrassicaTrichogramma evanescens010603 evolutionary biology01 natural sciencesParasitoidBrassica rapaBotanyQH359-425Laboratory of EntomologyQH540-549.5Ecology Evolution Behavior and SystematicsEcologybiologyegg parasitoidshost locationtritrophic interactionsfungifood and beveragesPierisbiology.organism_classificationPE&RCLaboratorium voor EntomologieAttractionBiosystematiekPlant BreedingPieris (butterfly)egg parasitoidBrassica oleraceaBiosystematicsindirect defensePieriTrichogramma010606 plant biology & botanyFrontiers in Ecology and Evolution
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Hymenoptera Complex Associated with Myzus persicae and Hyalopterus spp. in Peach Orchards in Northeastern Spain and Prospects for Biological Control …

2019

Aphids are a serious pest for peach crops. They have traditionally been managed with insecticides, but there is increasing concern about the risk that insecticides pose to both humans and the environment. As a first step to use biological control in aphid management, we conducted a 3-year field survey in northeastern Spain to determine which parasitoids and hyperparasitoids were most prevalent on two aphids, Myzus persicae (Sulzer) and Hyalopterus spp. Koch, the most harmful to peach trees. We collected 11 parasitoid species from M. persicae, with Aphidius matricariae (Haliday) being the most abundant. Two parasitoid species were also collected from Hyalopterus spp., Aphidius transcaspicus …

0106 biological sciencesIntegrated pest managementhyperparasitoidsBiological pest control632Biology010603 evolutionary biology01 natural sciencesArticleAphididaelcsh:ScienceAphidiinae2. Zero hungerAphidbusiness.industryconservationPest controlAphididae15. Life on landbiology.organism_classification010602 entomologyAgronomyInsect Sciencelcsh:QIPMPEST analysisMyzus persicaebusinessAphidiinae
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New Spanish Dinotrema species with propodeal areola or mainly sculptured propodeum (Hymenoptera, Braconidae, Alysiinae)

2013

The illustrated descriptions of eight new species of the genus Dinotrema with either the propodeum mainly sculptured ora large propodeal areola from Spain are provided, viz. D. amparoae sp. n., D. benifassaense sp. n., D. lagunasense sp. n., D. pilarae sp. n., D. robertoi sp. n., D. teresae sp. n., D. tinencaense sp. n., and D. torreviejaense sp. n..

new speciesDiptera parasitoidsDinotremaZoologyHymenopteraBiologybiology.organism_classificationArticleBraconidaemedicine.anatomical_structureGenusSpainlcsh:ZoologyBotanyPropodeummedicineAnimal Science and Zoologylcsh:QL1-991BraconidaeEcology Evolution Behavior and SystematicsAreolaAlysiinaeAlysiinaeZooKeys
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The effect of distance between parasitoid and host on the parasitism of Psyttalia concolor (Szépligeti) in organic olive orchards

2013

Bactrocera oleae (Rossi) is a major pest of olive fruits. Biological control of olive fruit fly mainly relies on the activity of the Braconid species Psyttalia concolor (Szépligeti), which parasitizes Bactrocera oleae at the larval stage. Parasitism tests have been carried out at the insect growing facility (insectariums) of the Mediterranean Agronomic Institute of Bari (C.I.H.E.A.M.). The critical point of the use of P. concolor as a biological control agent in organic olive crop is the assessment of its effectiveness against B. oleae. Its lower presence in fruits of cultivated olives rather than in small fruits of wild olives suggests an influence of the size of the fruit, and of the thic…

Settore AGR/11 - Entomologia Generale E ApplicataBactrocera oleae Ceratitis capitata larval parasitoids biological control parasitism level distance
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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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Prospects of herbivore egg-killing plant defenses for sustainable crop protection

2016

Abstract Due to a growing demand of food production worldwide, new strategies are suggested to allow for sustainable production of food with minimal effects on natural resources. A promising alternative to the application of chemical pesticides is the implementation of crops resistant to insect pests. Plants produce compounds that are harmful to a wide range of attackers, including insect pests; thus, exploitation of their natural defense system can be the key for the development of pest‐resistant crops. Interestingly, some plants possess a unique first line of defense that eliminates the enemy before it becomes destructive: egg‐killing. Insect eggs can trigger (1) direct defenses, mostly i…

0106 biological sciences[SDV]Life Sciences [q-bio]Biological pest controlReviewInsectphylogeny01 natural sciencesPlant defense against herbivoryLaboratory of EntomologyPhylogenyoviposition-induced plant volatilemedia_common2. Zero hungerEcologyegg parasitoidsOviposition-induced plant volatilesfood and beveragesEgg depositionBiosystematiekegg depositionEgg deposition; egg parasitoids; hypersensitive response; oviposition-induced plant volatiles; phylogeny; Ecology Evolution Behavior and Systematics; Ecology; Nature and Landscape ConservationHypersensitive responseegg parasitoidhypersensitive responsemedia_common.quotation_subjectReviewsoviposition‐induced plant volatilesBiology010603 evolutionary biologyprotection des plantesEgg parasitoidsEcology Evolution Behavior and Systematicsoviposition-induced plant volatilesNature and Landscape ConservationHerbivoreegg deposition;egg parasitoids;hypersensitive response;oviposition-induced plant volatiles;phylogenybusiness.industryfungiPesticideLaboratorium voor EntomologieEcology Evolution Behavior and SystematicCrop protectionSettore AGR/11 - Entomologia Generale E ApplicataAgronomySustainabilityoeuf d'insecteFood processingBiosystematicsEPSbusiness010606 plant biology & botany
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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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Evaluating the quality of the Mexican fruit-fly, Anastrepha ludens, as host for the parasitoid Melittobia digitata

2013

We investigated the presence of Melittobia digitata (Hymenoptera: Eulophidae) and its associations with its natural hosts in Veracruz, Mexico. The parasitoid was confirmed to be present and found to attack prepupae of Trypoxylon and Sceliphron (Hymenoptera: Crabronidae and Sphecidae, respectively) mud daubers as well as pupae of the Mexican fruit fly Anastrepha ludens (Diptera: Tephritidae). Since A. ludens is a very important pest of citrus and mango in Mexico and Central America, we evaluated, in laboratory experiments, the quality of A. ludens as host of M. digitata comparing the development of the parasitoid in another unrelated fly species (Sarcophaga [Neobellieria] bullata) (Diptera: …

Sphecidaefood.ingredientbiologyTrypoxylonbiology.organism_classificationbiological pest control pupal parasitoids Eulophidae TephritidaeSceliphronParasitoidMud dauberCrabronidaefoodSettore AGR/11 - Entomologia Generale E Applicatalcsh:Biology (General)TephritidaeBotanyAnastrepha ludenslcsh:QH301-705.5
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