Search results for "trophic interaction"

showing 10 items of 48 documents

High Temperatures Result in Smaller Nurseries which Lower Reproduction of Pollinators and Parasites in a Brood Site Pollination Mutualism

2014

In a nursery pollination mutualism, we asked whether environmental factors affected reproduction of mutualistic pollinators, non-mutualistic parasites and seed production via seasonal changes in plant traits such as inflorescence size and within-tree reproductive phenology. We examined seasonal variation in reproduction in Ficus racemosa community members that utilise enclosed inflorescences called syconia as nurseries. Temperature, relative humidity and rainfall defined four seasons: winter; hot days, cold nights; summer and wet seasons. Syconium volumes were highest in winter and lowest in summer, and affected syconium contents positively across all seasons. Greater transpiration from the…

Hot TemperaturePollinationSyconiumWaspslcsh:MedicineBiologyMutualismPlant-Animal InteractionsPollinatorAnimalsPollinationSymbiosislcsh:ScienceMutualism (biology)MultidisciplinaryEcologyPhenologyEcologyPlant EcologyReproductionlcsh:RBiology and Life SciencesFicusbiology.organism_classificationBroodTrophic InteractionsSpecies InteractionsCommunity EcologyInflorescenceParasitismFruitlcsh:QSeasonsFig waspResearch ArticlePLoS ONE
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Microbial symbionts of parasitoids

2020

Parasitoids depend on other insects for the development of their offspring. Their eggs are laid in or on a host insect that is consumed during juvenile development. Parasitoids harbor a diversity of microbial symbionts including viruses, bacteria, and fungi. In contrast to symbionts of herbivorous and hematophagous insects, parasitoid symbionts do not provide nutrients. Instead, they are involved in parasitoid reproduction, suppression of host immune responses, and manipulation of the behavior of herbivorous hosts. Moreover, recent research has shown that parasitoid symbionts such as polydnaviruses may also influence plant-mediated interactions among members of plant-associated communities…

Indirect interaction0106 biological sciencesInsectaInsect01 natural sciencesMultitrophic interactionParasitoidFood chainLaboratory of Entomologymedia_commonTrophic level0303 health sciencesbiologyEcologyMicrobiotaIndirect interactionsHost-Parasite Interactionfood and beveragesPE&RCParasitoid-host interactionPhenotypeDirect interactionVirusesDirect interactionsFood Chainanimal structuresmedia_common.quotation_subjectInsect-plant interactionZoology010603 evolutionary biologyHost-Parasite Interactions03 medical and health sciencesSymbiosisMultitrophic interactionsAnimalsSymbiosisEcology Evolution Behavior and Systematics030304 developmental biologyHerbivoreCommunityBacteriaViruseAnimalHost (biology)fungibiochemical phenomena metabolism and nutritionbiology.organism_classificationLaboratorium voor EntomologieInsect ScienceParasitoid-host interactionsInsect-plant interactionsbacteriaEPS
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The ecomorphology of southern African rodent incisors: Potential applications to the hominin fossil record.

2018

AbstractThe taxonomic identification of mammalian fauna within fossil assemblages is a well-established component of paleoenvironmental reconstructions. However, many fragmentary specimens recovered from fossil sites are often disregarded as they can be difficult to identify with the precision required for taxonomic methods. For this reason, the large numbers of isolated rodent incisors that are often recovered from hominin fossil bearing sites have generally been seen as offering little interpretive value. Ecomorphological analysis, often referred to as a “taxon-free” method, can potentially circumvent this problem by focusing on the adaptive, rather than the taxonomic significance of rode…

Male0106 biological sciencesTeethHominidsRodentEcomorphologyFaunaSocial SciencesPlant Science01 natural sciencesIncisorsFeeding behaviorMedicine and Health SciencesData ManagementMammalsMultidisciplinaryEcologybiologyFossilsQREukaryotaHominidaeDietary behaviorBiological EvolutionTrophic InteractionsIncisorGeographyCommunity EcologyVertebratesMedicineFemaleTaxonomy (biology)Physical AnthropologyAnatomyResearch ArticleComputer and Information Sciences010506 paleontologyHominidaeScienceRodentiaEnvironmentModels BiologicalRodents010603 evolutionary biologyAfrica SouthernArchaic Humansstomatognathic systemPlant-Animal InteractionsPaleoanthropologybiology.animalAnimalsHomininsHerbivoryTaxonomy0105 earth and related environmental sciencesFossil RecordPlant EcologyEcology and Environmental SciencesOrganismsBiology and Life SciencesPaleontologyFeeding Behaviorbiology.organism_classificationDietJawEvolutionary biologyAnthropologyAmniotesEarth SciencesPaleoecologyPaleobiologyDigestive SystemHeadPLoS ONE
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Attraction of egg-killing parasitoids toward induced plant volatiles in a multi-herbivore context

2015

In response to insect herbivory, plants emit volatile organic compounds which may act as indirect plant defenses by attracting natural enemies of the attacking herbivore. In nature, plants are often attacked by multiple herbivores, but the majority of studies which have investigated indirect plant defenses to date have focused on the recruitment of different parasitoid species in a single-herbivore context. Here, we report our investigation on the attraction of egg parasitoids of lepidopteran hosts (Trichogramma brassicae and T. evanescens) toward plant volatiles induced by different insect herbivores in olfactometer bioassays. We used a system consisting of a native crucifer, Brassica nigr…

OIPVsWaspsPheromoneSpodopteraPheromonesMultitrophic interactionParasitoid foraging behaviourParasitoidHost-Parasite InteractionsMultitrophic interactionsVolatile Organic CompoundBotanyPlant defense against herbivoryButterflieIndirect plant defencesAnimalsHerbivoryLaboratory of EntomologyEcology Evolution Behavior and SystematicsOIPVOvumPieris brassicaeAphidVolatile Organic CompoundsbiologyHIPVEPS-2HIPVsAnimalMedicine (all)fungifood and beveragesHost-Parasite InteractionTrichogramma brassicaeFeeding BehaviorWaspLaboratorium voor Entomologiebiology.organism_classificationEcology Evolution Behavior and SystematicChemical ecologySettore AGR/11 - Entomologia Generale E ApplicataBrevicoryne brassicaeLarvaButterfliesTrichogrammaIndirect plant defenceMustard Plant
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Integrating natural enemies and semiochemicals in cultural control for an effective IPM

2012

Since their discovery, many semiochemicals (behavior modifying chemicals) have been identified and synthetized, and a number of techniques have been developed to use them in integrated pest management (IPM) programs against insect pests. In particular, the uses of semiochemicals in IPM to monitor insect pest populations and to interfere with their behavior preventing agricultural damage are widely adopted by the growers. In the same time, evidences that semiochemicals can also modify the behavior of insect natural enemies inspired researchers to explore the possibility to use semiochemicals to conserve and/or enhance the efficacy of natural enemies in cropping systems. However the use of se…

Settore AGR/11 - Entomologia Generale E ApplicataHymenoptera parasitoid tri-trophic interactions herbivore-induced plant volatiles
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The Plant as a Habitat for Entomophagous Insects

2016

Populations of herbivorous insects are naturally consumed by other predacious or predatory insect species. These entomophagous insects are thus plant-dwelling organisms that use the plant for several vital functions and are affected by plant traits at the evolutionary, organism and population levels. Many entomophagous species are used for the biological control of insect pests worldwide. The aim of this chapter is to provide an exhaustive review of mechanisms underlying the interactions between plants and entomophagous insects, including those governing life history traits at the individual level, as well as those acting on population and community structure and dynamics. We detail how pro…

Settore AGR/11 - Entomologia Generale E ApplicataVegetation landscapePlant defenceVolatileLearningBehaviourMicroclimatePlant ScienceDevelopmentTri-trophic interactionNectarPredatorParasitoid
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Morphological Similarity and Ecological Overlap in Two Rotifer Species

2013

Co-occurrence of cryptic species raises theoretically relevant questions regarding their coexistence and ecological similarity. Given their great morphological similitude and close phylogenetic relationship (i.e., niche retention), these species will have similar ecological requirements and are expected to have strong competitive interactions. This raises the problem of finding the mechanisms that may explain the coexistence of cryptic species and challenges the conventional view of coexistence based on niche differentiation. The cryptic species complex of the rotifer Brachionus plicatilis is an excellent model to study these questions and to test hypotheses regarding ecological differentia…

Species complexEcological MetricsScienceNicheRotiferaLimnetic EcologyMorphology (biology)CopepodaSpecies SpecificityLimiting similarityAnimalsBiologyCommunity StructureEcosystemFreshwater EcologyEcological nicheCoexistence theoryMultidisciplinaryEcologybiologyEcologyQRNiche differentiationSpecies DiversityBiodiversityAutecologyBrachionusbiology.organism_classificationTrophic InteractionsSpecies InteractionsCommunity EcologyPredatory BehaviorMedicinePopulation EcologyResearch ArticlePLoS ONE
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Effect of the host plant on the immunity of a phytophagous insect : influence of grape variety on the ability of the European grapevine moth to defen…

2013

In tritrophic interactions involving phytophagous insects, host plants and natural enemies, trophic levels are highly dependent on each other. Host plant may strongly affect directly phytophagous insect and indirectly natural enemies growing on these phytophagous insects. When a natural enemy attacks a phytophagous insect, the host immune system constitutes the last chance for the host to survive to an infection. A great variation of insect immune system is generally found in populations for susceptibility to pathogens, suggesting that variable selection pressures may have shaped and driven adaptation of immune traits. This project aims to determine the influence of both host plant and natu…

Succès de parasitismeGrape varietiesLocal immune selectionGrapevine mothImmune trade-offInteractions tri-trophiquesTordeuses de la vignePhenotypic plasticityAdaptation locale[SDE.BE] Environmental Sciences/Biodiversity and EcologyTritrophic interactionsCompromis immunitaireSystème immunitaire des insectesCépage de vigneSuccessful parasitismPlasticité phénotypiqueInsect immune system
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Host plant cultivar of the grapevine moth Lobesia botrana affects the life history traits of an egg parasitoid.

2009

6 pages; International audience; The quality and susceptibility of insect eggs for egg parasitoids may be affected by the diet experienced by the females that produce the host eggs. We tested the hypothesis that the host plant fed upon by an herbivore during the larval stages will determine the quality of the eggs laid by the adult for an egg parasitoid. We used the tritrophic system comprising five grape cultivars, the European grapevine moth, Lobesia botrana and the parasitoid Trichogramma evanescens. Parasitoid performance in host eggs of different sizes and originating from five grape cultivars was determined. Overall, egg parasitism was higher on cultivars on which L. botrana laid larg…

[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyTrichogramma evanescensParasitismLobesia botranaParasitoidLobesia botranaBotany[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyCultivarHost sizeEgg parasitoidLarvabiologyHost (biology)fungifood and beveragesbiology.organism_classificationTritrophic interactionHorticultureHost plant qualityTrichogramma evanescensInsect Scienceembryonic structuresAgronomy and Crop ScienceTrichogramma[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Ecological role of mycotoxins in wheat crop residues and consequences on the multitrophic interactions in the soil and further development of Fusariu…

2009

Format du poster : 21 X 29,7; absent

[SDE.BE] Environmental Sciences/Biodiversity and Ecology[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology[SDV.SA] Life Sciences [q-bio]/Agricultural scienceswheat cropmultitrophic interactions in the soilconsequencesdevelopment of Fusarium graminearum[SDE.BE]Environmental Sciences/Biodiversity and Ecology[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciencesecological role of mycotoxins
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