Search results for "PEST"

showing 10 items of 1124 documents

Silica Nanoparticles for Insect Pest Control.

2019

To date, control strategies used against insect pest species are based on synthetic insecticide applications. In addition, the efficacy of these treatments could be decreased due to insecticide resistance in insect populations. Also, the irrational use of chemical control strategies has negative consequences of non-target organisms and threatening human health. Designing nanomaterial for pest insect control is a promising alternative to traditional insecticide formulations. In particular, it has been proven that silica nanoparticles have the potential for molecules delivery, release control improvement and also their toxicity as insecticide alone. In this work, we summarized the state of kn…

InsecticidesInsectaCrop pestInsect pest controlCROP PESTNANOTOXICOLOGY MEDICAL INSECT PESTGREEN-SYNTHESIS02 engineering and technology010501 environmental sciencesBiology01 natural sciencesInsect ControlSilica nanoparticlesPest insectInsect pestInsecticide ResistanceHuman healthDrug DiscoveryAnimalsINSECTICIDESSILICA NANOPARTICLES0105 earth and related environmental sciencesPharmacologybusiness.industryOtras Ciencias QuímicasfungiCiencias Químicas021001 nanoscience & nanotechnologySilicon DioxideINSECT PEST MANAGEMENTBiotechnologyInsecticide resistanceNanoparticles0210 nano-technologybusinessChemical controlCIENCIAS NATURALES Y EXACTASCurrent pharmaceutical design
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Susceptibility of Spodoptera frugiperda and S. exigua to Bacillus thuringiensis Vip3Aa insecticidal protein

2011

The Vip3Aa protein is an insecticidal protein secreted by Bacillus thuringiensis during the vegetative stage of growth. The activity of this protein has been tested after different steps/protocols of purification using Spodoptera frugiperda as a control insect. The results showed that the Vip3Aa protoxin was stable and retained full toxicity after being subjected to common biochemical steps used in protein purification. Bioassays with the protoxin in S. frugiperda and S. exigua showed pronounced differences in LC(50) values when mortality was measured at 7 vs. 10d. At 7d most live larvae were arrested in their development. LC(50) values of "functional mortality" (dead larvae plus larvae rem…

InsecticidesLongevityBacillus thuringiensisInsect pest controlInsect proteaseBacterial ProteinSpodopteraSpodopteraMedian lethal doseMicrobiologyLethal Dose 50Vegetative insecticidal proteinBacterial ProteinsSpecies SpecificityBacillus thuringiensisparasitic diseasesExiguaProtein purificationBotanyAnimalsBacillus thuringiensiBioassayPest Control BiologicalInsecticideEcology Evolution Behavior and SystematicsbiologyAnimalfungiMidgutbiology.organism_classificationBioinsecticideHost-Pathogen InteractionMode of actionLarvaHost-Pathogen InteractionsInstarBiological AssayElectrophoresis Polyacrylamide GelDisease SusceptibilityJournal of Invertebrate Pathology
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Bioproduction of an extract from Penicillium funiculosum Thom with activity against Ceratitis capitata and Tetranychus urticae

1993

The bioproduction conditions of a crude extract from a strain of Penicillium funiculosum Thom, which shows activity against Ceratitis capitata and Tetranychus urticae, have been optimized. The efficacy degree was 95% (C. capitata) and 100% (T. urticae), according to Abbot. This is the first report on the pesticide activity of an extract from P. funiculosum against these species. The best yields were obtained when P. funiculosum was grown in Raulin-Thom medium at pH 6.5 with sucrose candy as the carbon source and ammonium sulphate and phosphate as the nitrogen source. Other favourable conditions were static cultures, at 28 degrees C, and in the dark.

InsecticidesMitesSucrosebiologyDipteraPenicilliumGeneral MedicineFungi imperfectiCeratitis capitatabiology.organism_classificationApplied Microbiology and BiotechnologyBioproductionchemistry.chemical_compoundHorticulturechemistryCulture Media ConditionedCapitataBotanyAnimalsAmmoniumPenicillium funiculosumTetranychus urticaePest Control BiologicalBiotechnologyApplied Microbiology and Biotechnology
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Relationship between esterase activity and acrinathrin and methiocarb resistance in field populations of western flower thrips, Frankliniella occiden…

2006

The western flower thrips, Frankliniella occidentalis (Pergande), is a serious pest in the south-east of Spain owing to its direct feeding on crops, transmission of the tomato spotted wilt virus and its very high level of resistance to insecticides. Mechanisms of resistance were examined using field populations of F. occidentalis with different susceptibilities to acrinathrin, methiocarb (selective insecticides), endosulfan, metamidophos and deltamethrin (broad-spectrum insecticides). Esterase activity towards alpha-naphthyl acetate and p-nitrophenyl acetate in resistant strains was significantly higher than in the reference strain (MLFOM) for both model substrates. This higher activity was…

InsecticidesPesticide resistanceInsectaMethiocarbNaphtholsInsecticide ResistanceLethal Dose 50Nitrophenolschemistry.chemical_compoundBotanyPyrethrinsAnimalsEndosulfanbiologyEsterasesfood and beveragesGeneral MedicineThripidaebiology.organism_classificationWestern flower thripsHorticultureDeltamethrinchemistryMethiocarbInsect ScienceAcrinathrinPEST analysisAgronomy and Crop SciencePest management science
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Proteolytic processing of Bacillus thuringiensis Vip3A proteins by two Spodoptera species

2014

Abstract Vip3 proteins have been described to be secreted by Bacillus thuringiensis during the vegetative growth phase and to display a broad insecticidal spectrum against lepidopteran larvae. Vip3Aa protoxin has been reported to be significantly more toxic to Spodoptera frugiperda than to Spodoptera exigua and differences in the midgut processing have been proposed to be responsible. In contrast, we have found that Vip3Ae is essentially equally toxic against these two species. Proteolysis experiments were performed to study the stability of Vip3A proteins to peptidase digestion and to see whether the differences found could explain differences in toxicity against these two Spodoptera speci…

InsecticidesPhysiologyProteolysisBacterial ProteinSpodopteraSpodopteraMicrobiologyVegetative insecticidal proteinBacterial ProteinsSpecies SpecificitySpodoptera exiguaBacillus thuringiensisExiguamedicineAnimalsPest Control BiologicalMidgut peptidaseInsecticideChymotrypsinbiologymedicine.diagnostic_testAnimalMedicine (all)Serine EndopeptidasesfungiSpodoptera frugiperdaMidgutbiology.organism_classificationTrypsinSerine EndopeptidaseSerine peptidaseBiochemistryMode of actionLarvaInsect Sciencebiology.proteinDigestionDigestive Systemmedicine.drugJournal of Insect Physiology
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Target vs non-target analysis to determine pesticide residues in fruits from Saudi Arabia and influence in potential risk associated with exposure

2017

The occurrence of pesticide residues in fruits was determined by a target method for 62 analytes and a wide scope screening method against a database of 500 pesticides. Limits of quantification (LOQs) were from 0.5 to 6.3 μg kg−1 for the target method and from 0.5 to 119 μg kg−1 for the non-target. Thirty samples: dates, apples, oranges, tangerines, lemons and grapefruits were selected because their high consumption, except lemons and grapefruits that were to cover all citrus fruits. Using the target method, 15 compounds (mostly insecticides and fungicides) out of 62 pesticides (organophosphorus, carbamates, pyrethroids, chloroacetanilides, triazines, triazoles, imidazoles, etc.) were detec…

InsecticidesSaudi ArabiaFood Contamination010501 environmental sciencesFludioxonilToxicologyEthion01 natural sciencesFruitsToxicologyFluvalinatechemistry.chemical_compound0404 agricultural biotechnologyRisk FactorsEstimated daily intake (EDI)Humans0105 earth and related environmental sciencesRisk assessmentReference dosePesticide residuesPesticide residueHerbicidesPesticide Residues04 agricultural and veterinary sciencesGeneral MedicinePesticide040401 food scienceFungicides IndustrialchemistryFruitEnvironmental chemistryChlorpyrifosAcrinathrinFood Science
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Assessment of Organochlorine Pesticide Residues in West African City Farms: Banjul and Dakar Case Study

2003

Validated analytical procedures for the determination of 21 organochlorine pesticides have been applied to 74 water samples, 76 soil samples, and 160 vegetable samples from nine Sene-Gambian farms. Mean pesticide residue levels found were compared to the results of other studies. The main contaminants were DDTs in water (231.9 ng/L), in soil (71.4 ng/g), and in vegetables (5.03 ng/g). The distribution of pesticide residues in water and neighboring soils and the soil-plant transfer of these pesticides is briefly discussed. Different bioconcentration factors for sum HCHs, sum DDTs, and sum endosulfans obtained in this study allow us to confirm the complex processes already reported in the lit…

InsecticidesSoil testHealth Toxicology and MutagenesisFood ContaminationBioconcentrationToxicologyDDTchemistry.chemical_compoundWater SupplyEnvironmental protectionVegetablesSoil PollutantsCitiesWater pollutionEndosulfanPesticide residuePesticide ResiduesAgricultureGeneral MedicinePesticidePollutionSoil contaminationSenegalchemistryEnvironmental chemistrySoil waterEnvironmental scienceGambiaHexachlorocyclohexaneEnvironmental MonitoringArchives of Environmental Contamination and Toxicology
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Confirmation of Fenthion Metabolites in Oranges by IT-MS and QqTOF-MS

2007

14 pages, 4 figures, 4 tables.-- PMID: 18020315 [PubMed].-- Printed version published Dec 15, 2007.

InsecticidesSulfoneElectrosprayFenoxon sulfoxideMass spectrometryMass SpectrometryAnalytical ChemistrySulfonechemistry.chemical_compoundSample preparationSulfonesPesticidesOrganophophorous pesticide fenthionChemical ionizationChromatographyFenthionHydrolysisSulfoxideFenoxon sulfoneSulfoxideFenthionchemistrySulfoxidesCholinesterase InhibitorsIon trapFood AnalysisCitrus sinensisAnalytical Chemistry
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Temperature–Time Relationship in Collembolan Response to Chemical Exposure

1999

Abstract Effects of temperature on chemical toxicity to a collembolan, Folsomia candida , in relation to time were studied in this experiment. Field soil was used as a test substrate. Collembolans were incubated at three different temperatures (+13, +16, and +19°C) and in two different dimethoate concentrations (1 and 3 mg/kg), clean soil serving as the control. Four destructive samplings were done at 2-week intervals. Dimethoate degradation was also analyzed. Dimethoate 1 mg/kg had a slight effect on both adult growth and reproduction, whereas 3 mg/kg was fatal to F. candida in the soil used. Toxic effects tended to last longer at low temperature than at high temperature, but the differenc…

InsecticidesTime FactorsHealth Toxicology and Mutagenesismedia_common.quotation_subjectmedicine.disease_causeIsotomidaechemistry.chemical_compoundAnimal sciencemedicineAnimalsSoil PollutantsEcotoxicologyDimethoateArthropodsmedia_commonbiologyChemistryEcologyTemperaturePublic Health Environmental and Occupational HealthEnvironmental factorSubstrate (chemistry)General MedicinePesticidebiology.organism_classificationPollutionSoil contaminationCold TemperatureBiodegradation EnvironmentalLarvaCholinesterase InhibitorsReproductionDimethoateEcotoxicology and Environmental Safety
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Daphnia magna feeding behavior after exposure to tetradifon and recovery from intoxication.

1999

Abstract The feeding behavior of the cladocera Daphnia magna subjected to a short-term exposure to the acaricide tetradifon (4-chlorophenyl 2,4,5-trichlorophenyl sulfone) was studied. The experiments were performed using the unicellular algae Nannochloris oculata at a density of 5×10 5 cells/ml as food for the organisms. In a first experiment, three generations (F0, F1, and F3) of the daphnids were exposed to sublethal levels of tetradifon (0.1, 0.18, 0.22, and 0.44 mg/l) and the effect of the toxicant on filtration and ingestion rates was determined. Rates of filtration and ingestion of D. magna declined in the three generations studied with increasing toxicant concentrations; however, tox…

InsecticidesbiologyHealth Toxicology and MutagenesisDaphnia magnaPublic Health Environmental and Occupational HealthBranchiopodaGeneral MedicineEnvironmental exposureFeeding BehaviorPesticidebiology.organism_classificationPollutionTetradifonToxicologychemistry.chemical_compoundchemistryCladoceraDaphniaHydrocarbons ChlorinatedIngestionAnimalsBiological AssayWater Pollutants ChemicalToxicantEcotoxicology and environmental safety
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