Search results for "insecticide"

showing 10 items of 211 documents

Binding Site Alteration Is Responsible for Field-Isolated Resistance to Bacillus thuringiensis Cry2A Insecticidal Proteins in Two Helicoverpa Species

2010

Background Evolution of resistance by target pests is the main threat to the long-term efficacy of crops expressing Bacillus thuringiensis (Bt) insecticidal proteins. Cry2 proteins play a pivotal role in current Bt spray formulations and transgenic crops and they complement Cry1A proteins because of their different mode of action. Their presence is critical in the control of those lepidopteran species, such as Helicoverpa spp., which are not highly susceptible to Cry1A proteins. In Australia, a transgenic variety of cotton expressing Cry1Ac and Cry2Ab (Bollgard II) comprises at least 80% of the total cotton area. Prior to the widespread adoption of Bollgard II, the frequency of alleles conf…

0106 biological sciencesCrops AgriculturalInsecticidesHelicoverpa punctigeraScienceUNESCO::CIENCIAS DE LA VIDA::Biología de insectos (Entomología)::Entomología generalBacillus thuringiensisBacterial ProteinGenetically modified cropsHelicoverpa armigera01 natural sciencesMicrobiologyLepidoptera genitaliaInsecticide Resistance03 medical and health sciencesBacterial ProteinsBacillus thuringiensisBotanyBacillus thuringiensiBiotechnology/Applied MicrobiologyAnimalsMode of actionBiotechnology/Plant BiotechnologyHelicoverpaInsecticide030304 developmental biology0303 health sciencesMultidisciplinaryBinding SitesbiologyAnimalQfungiBinding SiteRbiology.organism_classificationBinding site alterationHelicoverpa speciesLepidoptera010602 entomologyCry1AcBacillus thuringiensis; Binding site alteration; Helicoverpa speciesMedicine:CIENCIAS DE LA VIDA::Biología de insectos (Entomología)::Entomología general [UNESCO]Plant Biology/Agricultural BiotechnologyResearch ArticleProtein BindingPLoS ONE
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Composition, Antifungal, Phytotoxic, and Insecticidal Activities of Thymus kotschyanus Essential Oil

2020

Essential oils (EOs) are some of the outstanding compounds found in Thymus that can exert antifungal, phytotoxic, and insecticidal activities, which encourage their exploration and potential use for agricultural and food purposes. The essential oils (EO) obtained from Thymus kotschyanus collected in the East Azerbaijan Province (Iran) were characterized using a gas chromatography-mass spectrometry (GC-MS) analysis. Thymol was the most important compound (60.48%), although 35 other active compounds were identified in the EO. Significant amounts of carvacrol (3.08%), p-cymene (5.56%), and &gamma

0106 biological sciencesInsecticidesAntifungal AgentsPharmaceutical ScienceOryzaephilus surinamensisCyclohexane Monoterpenespost-harvest management01 natural sciencesArticleGas Chromatography-Mass SpectrometryAnalytical Chemistrylaw.inventionThymus Plantlcsh:QD241-441chemistry.chemical_compound0404 agricultural biotechnologylcsh:Organic chemistrylawthymol010608 biotechnologyDrug DiscoveryOils VolatileAnimalsPlant OilsCarvacrolPhysical and Theoretical Chemistryγ-terpeneThymolEssential oilBotrytis cinereabiologySitophilusOrganic Chemistrymonoterpenesfood and beverages04 agricultural and veterinary sciencesbiology.organism_classification040401 food scienceFungicideHorticulturechemistryChemistry (miscellaneous)Molecular Medicinecrop pestsPenicillium expansumMolecules
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Can Indirect Herbicide Exposure Modify the Response of the Colorado Potato Beetle to an Organophosphate Insecticide?

2018

AbstractOrganisms live in complex multivariate environments. In agroecosystems, this complexity is often human-induced as pest individuals can be exposed to many xenobiotics simultaneously. Predicting the effects of multiple stressors can be problematic, as two or more stressors can have interactive effects. Our objective was to investigate whether indirect glyphosate-based herbicide (GBH) exposure of the host plant has interactive effects in combination with an insecticide (azinphos-methyl) on an invasive pest Colorado potato beetle (Leptinotarsa decemlineata Say). We tested the effects of GBH and insecticide on the survival, insecticide target genes expression (acetylcholinesterase genes)…

0106 biological sciencesInsecticidesCarbamateColoradomedicine.medical_treatmentGlutathione reductase010501 environmental sciencesPharmacology010603 evolutionary biology01 natural sciencesSuperoxide dismutasechemistry.chemical_compoundmedicineAnimalsGlutathione TransferaseSolanum tuberosum0105 earth and related environmental scienceschemistry.chemical_classificationEcologybiologyHerbicidesGlutathione peroxidaseOrganophosphateColorado potato beetlefood and beveragesGeneral MedicineGlutathionebiology.organism_classificationOrganophosphatesColeopterachemistryInsect Sciencebiology.proteinAzinphos-methylJournal of Economic Entomology
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Insecticide residues in cotton soils of Burkina Faso and effects of insecticides on fluctuating asymmetry in honey bees (Apis mellifera Linnaeus).

2011

8 pages; International audience; Four insecticides (acetamiprid, cypermethrin, endosulfan and profenofos) are used quarterly in the cotton-growing areas of Burkina Faso, West Africa. These insecticides were investigated in soils collected from traditionally cultivated and new cotton areas. Also, the effects of insecticide exposure on the developmental instability of honey bees, Apis mellifera, were explored. In soil samples collected three months after insecticide treatments, endosulfan and profenofos concentrations varied in the range of 10-30μgkg(-1) in the traditionally cultivated zones and 10-80μgkg(-1) in the new cotton zones, indicating a pollution of agricultural lands. However, only…

0106 biological sciencesInsecticidesEnvironmental EngineeringPyridinesHealth Toxicology and Mutagenesis[ SDV.SA.SDS ] Life Sciences [q-bio]/Agricultural sciences/Soil study[SDV.BID]Life Sciences [q-bio]/BiodiversityVertisol[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil study010501 environmental sciencesBiology010603 evolutionary biology01 natural sciencesFluctuating asymmetryAcetamipridCypermethrinToxicologyNeonicotinoidschemistry.chemical_compoundLixisolBurkina FasoPyrethrinsAnimalsSoil PollutantsEnvironmental ChemistryEndosulfan0105 earth and related environmental sciences2. Zero hunger[ SDV.BID ] Life Sciences [q-bio]/BiodiversityGossypium[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyOrganothiophosphatesPesticide ResiduesPublic Health Environmental and Occupational HealthAgricultureGeneral MedicineGeneral ChemistryBees15. Life on landPesticidePollutionchemistryAgronomy[SDE.BE]Environmental Sciences/Biodiversity and EcologyOrchardEndosulfanEnvironmental Monitoring
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Investigation of deltamethrin resistance in salmon lice (Lepeophtheirus salmonis) provides no evidence for roles of mutations in voltage-gated sodium…

2020

BACKGROUND The pyrethroid deltamethrin is used to treat infestations of farmed salmon by parasitic salmon lice, Lepeophtheirus salmonis (Kroyer). However, the efficacy of deltamethrin for salmon delousing is threatened by resistance development. In terrestrial arthropods, knockdown resistance (kdr) mutations of the voltage-gated sodium channel (Nav ), the molecular target for pyrethroids, can cause deltamethrin resistance. A putative kdr mutation of an L. salmonis sodium channel homologue (LsNav 1.3 I936V) has been identified previously. At the same time, deltamethrin resistance of L. salmonis has been shown to be inherited maternally and to be associated with mitochondrial DNA (mtDNA) muta…

0106 biological sciencesMaleMitochondrial DNALocus (genetics)Voltage-Gated Sodium ChannelsBiology01 natural sciencesCopepodaInsecticide Resistancechemistry.chemical_compoundFish DiseasesEtofenproxSalmonparasitic diseasesGenotypeNitrilesPyrethrinsAnimalsGeneticsPyrethroidKnockdown resistanceGeneral Medicinebiology.organism_classification010602 entomologyDeltamethrinchemistryLepeophtheirusInsect ScienceMutationFemaleAgronomy and Crop Science010606 plant biology & botanyPest management scienceREFERENCES
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Prolonged diapause has sex-specific fertility and fitness costs

2019

AbstractDiapause in seasonal environments allows insects to survive adverse seasons. However, individuals can sometimes enter a prolonged diapause for more than a year, and also skip favourable seasons, which can bring additional costs through e.g. loss of metabolic resources. At the same time, prolonged diapause can be beneficial if it allows individuals to have a risk-spreading strategy to skip potentially suboptimal breeding seasons. We studied if prolonged diapause (2-year diapause) negatively affects the fertility and fitness of female and male Colorado potato beetles (Leptinotarsa decemlineata) compared to control (1-year diapause) beetles. We also tested the parental effects on the s…

0106 biological sciencesOffspringmedia_common.quotation_subjectFertilityDiapauseinsektisidit010603 evolutionary biology01 natural sciencesinvasive speciesOxidative damagevieraslajithedelmällisyyslepotilaLeptinotarsaEcology Evolution Behavior and Systematicssietokykymedia_commonfertilitystress tolerancebiologyinsecticidekoloradonkuoriainenbiology.organism_classificationSex specificfitnessdiapause010602 entomologyextended diapauseAnimal ecologyprolonged diapauseDemographyEvolutionary Ecology
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Chlamyphilone, a Novel Pochonia chlamydosporia Metabolite with Insecticidal Activity

2019

Metabolites from a collection of selected fungal isolates have been screened for insecticidal activity against the aphid Acyrthosiphon pisum. Crude organic extracts of culture filtrates from six fungal isolates (Paecilomyces lilacinus, Pochonia chlamydosporia, Penicillium griseofulvum, Beauveria bassiana, Metarhizium anisopliae and Talaromyces pinophilus) caused mortality of aphids within 72 h after treatment. In this work, bioassay-guided fractionation has been used to characterize the main bioactive metabolites accumulated in fungal extracts. Leucinostatins A, B and D represent the bioactive compounds produced by P. lilacinus. From P. griseofulvum and B. bassiana extracts, griseofulvin an…

0106 biological sciencesPenicillium griseofulvumInsecticidesMagnetic Resonance SpectroscopyMetabolitePharmaceutical ScienceMetarhizium anisopliaeBeauveria bassianabeneficial microbesBassiana01 natural sciencesArticleAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compoundAscomycotalcsh:Organic chemistryDrug DiscoveryFood sciencePhysical and Theoretical ChemistryBiological ProductsbiologyMolecular Structure010405 organic chemistryChemistrysecondary metabolitesOrganic Chemistryfungifood and beveragespea aphidbiology.organism_classificationGriseofulvinazaphilonesBeauvericin0104 chemical sciencesAcyrthosiphon pisum010602 entomologybeneficial microbesChemistry (miscellaneous)Molecular Medicinesecondary metabolites; beneficial microbes; pea aphid; azaphilonesMolecules
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Developing green insecticides to manage olive fruit flies? Ingestion toxicity of four essential oils in protein baits on Bactrocera oleae

2020

Abstract Effective and eco-friendly plant-borne insecticides for developing lure and kill control tools against tephritid flies are scarce. Herein, the activity of four essential oils (EOs) obtained from two Apiaceae, Pimpinella anisum L. and Trachyspermum ammi (L.) Sprague, and two Lamiaceae, Thymbra spicata L. and Ocimum gratissimum L., was evaluated against the olive fruit fly, Bactrocera oleae (Rossi), a key pest of olive groves. The EO chemical composition was determined by gas chromatography coupled with mass spectrometry (GC-MS) analyses. The four EOs incorporated in protein baits were tested for ingestion toxicity on B. oleae adults, mimicking lure and kill assays. Results showed con…

0106 biological sciencesattract and killTrachyspermum ammi01 natural sciencesIntegrated Pest Managementchemistry.chemical_compoundPimpinella anisumBactroceraCarvacrolTrachyspermum ammiThymolPimpinella anisumbiology010405 organic chemistryOcimum gratissimumThymbra spicataAmmiattract and kill; botanical insecticide; Integrated Pest Management; Ocimum gratissimum; Pimpinella anisum; Thymbra spicata; Trachyspermum ammiattract and kill botanical insecticide Integrated Pest Management Pimpinella anisum Trachyspermum ammi Ocimum gratissimum Thymbra spicatabiology.organism_classificationOcimum gratissimum0104 chemical sciencesHorticultureSettore AGR/11 - Entomologia Generale E Applicatachemistrybotanical insecticideLamiaceaeAgronomy and Crop Science010606 plant biology & botany
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Larvicidal Activity of Essential Oils of Five Apiaceae Taxa and Some of Their Main Constituents Against Culex quinquefasciatus.

2018

Apiaceae are aromatic herbs producing essential oils which are used on an industrial scale for various purposes. Notably, Apiaceae essential oils may replace synthetic insecticides keeping most of their efficacy and avoiding environmental pollution and human poisoning. In the present work, we explored the insecticidal potential of the essential oils from five Apiaceae taxa, namely Sison amomum, Echinophora spinosa, Heracleum sphondylium subsp. sphondylium, Heracleum sphondylium subsp. ternatum, and Trachyspemum ammi, as well as their major constituents (sabinene, p-cymene, terpinolene, myristicin, and thymol), against the filariasis vector Culex quinquefasciatus. For the purpose, the essent…

0106 biological scienceslarvicidal activityInsecticides[SDV]Life Sciences [q-bio]VolatileEnvironmental pollution01 natural sciencesBiochemistrychemistry.chemical_compoundThymolInsecticideTraditional medicinebiologyCulex quinquefasciatusAmmiGeneral Medicineselected main constituentMyristicinCulexLarvaEchinophoraMolecular MedicineDrugcomic_books.characterSabineneBioengineeringessential oilDose-Response RelationshipStructure-Activity RelationshipCulex quinquefasciatuselected main constituentsOils VolatileAnimalsMolecular Biologyessential oilsApiaceaeDose-Response Relationship Drug010405 organic chemistryHeracleum sphondyliumAnimalGeneral Chemistrybiology.organism_classification0104 chemical sciencesFive Apiaceae taxachemistry13. Climate actioncomic_booksOils010606 plant biology & botanyCulex quinquefasciatus; essential oils; Five Apiaceae taxa; larvicidal activity; selected main constituents; Animals; Apiaceae; Culex; Dose-Response Relationship Drug; Insecticides; Larva; Oils Volatile; Structure-Activity RelationshipApiaceaeChemistrybiodiversity
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Efficacy and Resistance Management Potential of a Modified Vip3C Protein for Control of Spodoptera frugiperda in Maize

2018

AbstractA modified Vip3C protein has been developed that has a spectrum of activity that has the potential to be commercially useful for pest control, and shows good efficacy against Spodoptera frugiperda in insect bioassays and field trials. For the first time Vip3A and Vip3C proteins have been compared to Cry1 and Cry2 proteins in a complete set of experiments from insect bioassays to competition binding assays to field trials, and the results of these complementary experiments are in agreement with each other. Binding assays with radiolabelled toxins and brush border membrane vesicles from S. frugiperda and Helicoverpa armigera show that the modified Vip3C protein shares binding sites wi…

0301 basic medicineBrush bordermedia_common.quotation_subject030106 microbiologyBacillus thuringiensislcsh:MedicineInsectBiologyHelicoverpa armigeraSpodopteraSpodopteraZea maysArticleInsecticide Resistance03 medical and health sciencesBacillus thuringiensisBioassayAnimalsBinding sitePest Control Biologicallcsh:Sciencemedia_commonMultidisciplinaryBinding Sitesbusiness.industryfungilcsh:RPest controlbiology.organism_classificationPlants Genetically ModifiedEndotoxinsBiochemistryLarvalcsh:QbusinessScientific Reports
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