Search results for "Integra"

showing 10 items of 5314 documents

Integrated management strategies of Meloidogyne incognita and Pseudopyrenochaeta lycopersici on tomato using a Bacillus firmus-based product and two …

2019

Abstract Because of the restrictions on chemical pesticide use and their negative effects on the environment, as well as on human and animal health, alternative strategies for plant pest and pathogen managements are highly desirable. The objective of this work was to evaluate the suitability of a commercial formulation of Bacillus firmus strain 1-1582, applied either alone or in combination with oxamyl or fosthiazate, to control the southern root-knot nematode Meloidogyne incognita and the fungal plant pathogen Pseudopyrenochaeta lycopersici under greenhouse conditions during two tomato crop cycles. Application of B. firmus suppressed nematode population levels during the second crop cycle …

0106 biological sciencesIntegrated pest managementBacillus firmuPopulationOxamyl01 natural sciencesTomatoCropchemistry.chemical_compoundMeloidogyne incognitaeducationSouthern root-knot nematodeeducation.field_of_studybiologyCorky rootCrop yieldfungiSettore AGR/12 - Patologia Vegetalefood and beveragesIntegrated pest managementSoil pathogenbiology.organism_classificationNematicide010602 entomologyHorticultureBiopesticidechemistryBacillus firmusAgronomy and Crop Science010606 plant biology & botanyCrop Protection
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Exploiting chemical ecology to manage hyperparasitoids in biological control of arthropod pests

2020

Abstract Insect hyperparasitoids are fourth trophic level organisms that commonly occur in terrestrial food webs, yet they are relatively understudied. These top‐carnivores can disrupt biological pest control by suppressing the populations of their parasitoid hosts, leading to pest outbreaks, especially in confined environments such as greenhouses where augmentative biological control is used. There is no effective eco‐friendly strategy that can be used to control hyperparasitoids. Recent advances in the chemical ecology of hyperparasitoid foraging behavior have opened opportunities for manipulating these top‐carnivores in such a way that biological pest control becomes more efficient. We p…

0106 biological sciencesIntegrated pest managementBiological pest controlReview01 natural sciencespush-pullhyperparasitoid foraginginfochemical-based strategieLaboratory of Entomology/dk/atira/pure/sustainabledevelopmentgoals/industry_innovation_and_infrastructureinfochemical‐based strategiesTrophic levelEcologyPlan_S-Compliant-TAParasietenEnvironmental resource managementherbivore‐induced plant volatilespush‐pullGeneral MedicineChemical ecologyfourth trophic level organismherbivore-induced plant volatileinternationalSDG 9 - IndustryFood ChainForagingDuurzame gewasbeschermingEarly detectionmultitrophic interactionsBiologyHost-Parasite InteractionsGeleedpotigenAnimalsmultitrophic interactionfourth trophic level organismsInnovationPest Control BiologicalArthropodsbusiness.industryherbivore-induced plant volatilesLaboratorium voor Entomologiebiology.organism_classification010602 entomologyInsect Scienceand InfrastructureSDG 9 - Industry Innovation and InfrastructurePEST analysisArthropodEPSinfochemical-based strategiesbusinessAgronomy and Crop Science010606 plant biology & botanyPest Management Science
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Biological control of invasive stink bugs: review of global state and future prospects

2020

International audience; Invasive stink bugs (Hemiptera: Pentatomidae) are responsible for high economic losses to agricul-ture on a global scale. The most important species, dating from recent to old invasions, includeBagrada hilaris (Burmeister), Halyomorpha halys (Stal), Piezodorus guildinii (Westwood), Nezara vir-idula (L.), and Murgantia histrionica (Hahn). Bagrada hilaris, H. halys,andN. viridula are nowalmost globally distributed. Biological control of these pests faces a complex set of challenges thatmust be addressed to maintain pest populations below the economic injury level. Several case studiesof classical and conservation biological control of invasive stink bugs are reported …

0106 biological sciencesIntegrated pest managementBiological pest controlTachinidaepre-emptive classical biological controllandscape management010603 evolutionary biology01 natural sciencesinvasive speciesHemipteraEncyrtidaeTachinidaeinvasive speciePentatomidaebiocontrolbiocontrol chemical ecology Hemiptera invasive species landscape management pre‐emptive classical biological control semiochemicals parasitoid Pentatomidae risk assessment Tachinidae ScelionidaeparasitoidEcology Evolution Behavior and SystematicsBagrada hilarisbiologysemiochemicalsbusiness.industryEcologyPest controlchemical ecologypreemptive classical biological controlrisk assessmentsemiochemicalPentatomidaebiocontrol chemical ecology Hemiptera invasive species landscape management preemptive classical biological control semiochemicals parasitoid Pentatomidae risk assessment Tachinidae Scelionidaebiology.organism_classificationHemiptera010602 entomologySettore AGR/11 - Entomologia Generale E Applicata13. Climate actionInsect Science[SDE.BE]Environmental Sciences/Biodiversity and EcologybusinessScelionidae[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Larval intraspecific competition for food in the European grapevine moth Lobesia botrana.

2014

AbstractEffective pest management with lower amounts of pesticides relies on accurate prediction of insect pest growth rates. Knowledge of the factors governing this trait and the resulting fitness of individuals is thus necessary to refine predictions and make suitable decisions in crop protection. The European grapevine moth, Lobesia botrana, the major pest of grapes in Europe, is responsible for huge economic losses. Larvae very rarely leave the grape bunch on which they were oviposited and thus cannot avoid intraspecific competition. In this study, we determined the impact of intraspecific competition during the larval stage on development and adult fitness in this species. This was tes…

0106 biological sciencesIntegrated pest managementCompetitive BehaviorTime FactorsOvipositionmedia_common.quotation_subjectintraspecific competitionZoologyMothsLobesia botrana010603 evolutionary biology01 natural sciencesIntraspecific competitionSpecies Specificity[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsVitislife history traitsmedia_commonlarval crowdingPopulation DensityAnalysis of VarianceLikelihood FunctionsLarva[ SDE.BE ] Environmental Sciences/Biodiversity and EcologybiologyEcologyfungiLongevityFeeding BehaviorGeneral MedicineFecunditybiology.organism_classificationPupaLepidoptera010602 entomologycompensatory mortalityCrowdingFertilityLarvaInsect ScienceRegression Analysisgrowth rateFranceGenetic FitnessPEST analysis[SDE.BE]Environmental Sciences/Biodiversity and EcologyAgronomy and Crop Science[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Pest management under climate change: The importance of understanding tritrophic relations.

2018

11 pages; International audience; Plants and insects depend on climatic factors (temperature, solar radiation, precipitations, relative humidity and CO2) for their development. Current knowledge suggests that climate change can alter plants and insects development and affect their interactions. Shifts in tritrophic relations are of particular concern for Integrated Pest Management (IPM), because responses at the highest trophic level (natural enemies) are highly sensitive to warmer temperature. It is expected that natural enemies could benefit from better conditions for their development in northern latitudes and IPM could be facilitated by a longer period of overlap. This may not be the ca…

0106 biological sciencesIntegrated pest managementEnvironmental EngineeringInsecta010504 meteorology & atmospheric sciencesPhenological modelsClimate ChangeClimate changeLobesia botrana01 natural sciencesIntegrated Pest ManagementParasitoid[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisClimate changeEnvironmental ChemistryAnimalsVitisEconomic impact analysisHerbivoryWaste Management and Disposal0105 earth and related environmental sciencesTrophic levelddc:333.7-333.9[ SDE.BE ] Environmental Sciences/Biodiversity and EcologybiologyEcologyPhenologyTemperatureHumidity15. Life on landCarbon Dioxidebiology.organism_classificationPollutionHymenopteraLepidoptera010602 entomologySynchrony13. Climate actionBiological controlPest Control[SDE.BE]Environmental Sciences/Biodiversity and EcologyTrichogrammaTritrophic relations[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisThe Science of the total environment
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Effect of mass rearing on the genetic diversity of the predatory mite Amblyseius swirskii

2019

Amblyseius swirskii Athias-Henriot (Acari: Phytoseiidae) is a predatory mite used to control whiteflies and thrips in protected crops. This biocontrol agent, originating from the Eastern Mediterranean region, has been mass-reared for commercial use since 2005 and is widely used in augmentative biocontrol programs. As a polyphagous predator, it has to cope with different biotic and abiotic factors. However, possible adaptation to mass rearing for production might be hindering its resilience and capacity for optimum performance in the field. In this study, we investigated the effect of long-term mass rearing on the genetic diversity of A. swirskii. We identified six microsatellite loci from w…

0106 biological sciencesIntegrated pest managementPhytoseiidaePopulationBiological pest controlZoologyPopulation geneticsbiological controlContext (language use)Laboratorium voor Erfelijkheidsleer010603 evolutionary biology01 natural sciencesmicrosatellitesGenetic variationPhytoseiidaeLaboratory of EntomologyeducationAcariEcology Evolution Behavior and Systematicseducation.field_of_studyGenetic diversitybiologyintegrated pest managementpopulation geneticsPE&RCLaboratorium voor Entomologiebiology.organism_classificationbiocontrol agent010602 entomologyInsect ScienceLaboratory of Geneticsgenetic differentiation
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Can Mating Disruption Be a Possible Route to Control Plum Fruit Moth in Mediterranean Environments?

2020

Simple Summary Grapholita funebrana is a main pest of plum throughout the Palearctic region. The management of this pest is generally carried out with chemical insecticides. In this study we investigated the suitability of the mating disruption as alternative method of control of this pest. Experiments were carried out in organic plum orchards during 2012 and 2014. Trap catches and fruit sampling were carried out to estimate the efficacy of this technique in reducing males catch and fruit infestation. The results indicated that the males caught in traps placed in the treatment plots was always significantly lower than untreated plots. The chemical analysis of the pheromone emission from the…

0106 biological sciencesIntegrated pest managementTortricidaeGrapholita funebranaMating disruptionsex pheromonemedicine.disease_cause010603 evolutionary biology01 natural sciencesArticleLepidoptera genitaliapheromoneInfestationmedicineTortricidaelcsh:ScienceGrapholita funebranabiologyintegrated pest managementSettore SECS-S/02 - Statistica Per La Ricerca Sperimentale E Tecnologica<i>Grapholita funebrana</i>food and beveragesorganic plum orchardsbiology.organism_classification010602 entomologyHorticultureprunusSettore AGR/11 - Entomologia Generale E ApplicataInsect ScienceSex pheromonePheromonelcsh:Qsex pheromonesInsects
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Do Grapholita funebrana Infestation Rely on Specific Plum Fruit Features?

2019

The effective control of the plum fruit moth, Grapholita funebrana (Lepidoptera: Tortricidae) still represents a difficult challenge for organic plum farming. Little information is available on the susceptibility of plum cultivars to this moth pest. We investigated the roles of several fruit parameters (i.e., shape, volume, hardness, fruit colour, and physiochemical properties) on the susceptibility of four different plum cultivars (Angeleno, Friar, President and Stanley) to G. funebrana attack. Field data demonstrated the importance of some fruit parameters (i.e., elongation index, sugar degree, titratable acidity, cover colour percentage) on susceptibility to G. funebrana infestation. Und…

0106 biological sciencesIntegrated pest managementTortricidaeGrapholita funebranaTitratable acidmedicine.disease_cause01 natural sciencesArticleLepidoptera genitaliaInfestationmedicineTortricidaeCultivarplum fruit mothbiologyfungifood and beveragesbiology.organism_classificationSettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboree010602 entomologyHorticultureSettore AGR/11 - Entomologia Generale E ApplicataInsect SciencePEST analysiscultivar susceptibility010606 plant biology & botanyInsects
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Agronomic practices as potential sustainable options for the management ofPentastiridius leporinus(Hemiptera: Cixiidae) in sugar beet crops

2009

International audience; Cixiid planthoppers (Hemiptera: Fulgoromorpha: Cixiidae) have been shown to vector phloem-limited prokaryotes associated to prominent plant diseases world-wide. However, little information is available on the management of such insects that spend a significant part of their life cycle underground as nymphal stages. Preliminary assays were carried out to analyse the potential of some agronomic practices to reduce the underground populations of Pentastiridius leporinus, a cixiid vector of plant pathogenic bacteria to sugar beets that completes its life cycle in the cropping rotation sugar beet-winter wheat. A first field assay was carried out to test the effect of spri…

0106 biological sciencesIntegrated pest management[SDV]Life Sciences [q-bio]CIXIIDAEHEMIPTERA01 natural sciencesCropPlanthopperSugarSYNDROME "BASSES RICHESSES"2. Zero hungerINTEGRATED PEST MANAGEMENTbiologyfungifood and beveragesLeporinusbiology.organism_classificationCixiidaeTillageINSECTE010602 entomologyAgronomyInsect ScienceINSECT VECTORSSugar beetAgronomy and Crop SciencePENTASTIRIDIUS LEPORINUS010606 plant biology & botanyJournal of Applied Entomology
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Stress for invasion success? Temperature stress of preceding generations modifies the response to insecticide stress in an invasive pest insect

2012

Adaptation to stressful environments is one important factor influencing species invasion success. Tolerance to one stress may be complicated by exposure to other stressors experienced by the preceding generations. We studied whether parental temperature stress affects tolerance to insecticide in the invasive Colorado potato beetle Leptinotarsa decemlineata. Field-collected pyrethroid-resistant beetles were reared under either stressful (17°C) or favourable (23°C) insecticide-free environments for three generations. Then, larvae were exposed to pyrethroid insecticides in common garden conditions (23°C). Beetles were in general tolerant to stress. The parental temperature stress alone affect…

0106 biological sciencesIntegrated pest managementadaptive phenotypic plasticitycarry-overcross-generational effect010603 evolutionary biology01 natural sciencesInvasive speciesinvasive speciesToxicology03 medical and health sciencespyrethroidsGeneticsLeptinotarsaEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesbiologystress toleranceStressorColorado potato beetleHormesisspecies rangeOriginal Articlesbiology.organism_classificationsub-lethal effects13. Climate actionta1181PEST analysisAdaptationGeneral Agricultural and Biological SciencesEvolutionary Applications
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