Search results for "Insecticide Resistance"

showing 10 items of 46 documents

Isolating, characterising and identifying a Cry1Ac resistance mutation in field populations of Helicoverpa punctigera

2018

AbstractTransgenic cotton expressing insecticidal proteins from Bacillus thuringiensis (Bt) has been grown in Australia for over 20 years and resistance remains the biggest threat. The native moth, Helicoverpa punctigera is a significant pest of cotton. A genotype causing resistance to Cry1Ac in H. punctigera was isolated from the field and a homozygous line established. The phenotype is recessive and homozygous individuals possess 113 fold resistance to Cry1Ac. Individuals that carry Cry1Ac resistance genes are rare in Australia with a frequency of 0.033 being detected in field populations. RNAseq, RT-PCR and DNA sequencing reveals a single nucleotide polymorphism at a splice site in the c…

0106 biological sciences0301 basic medicineHelicoverpa punctigeralcsh:MedicinePolymorphism Single Nucleotide01 natural sciencesArticleInsecticide ResistanceHemolysin Proteins03 medical and health sciencesBacterial ProteinsBacillus thuringiensisGenotypeAnimalsPest Control Biologicallcsh:ScienceGeneGeneticsGossypiumMultidisciplinaryBacillus thuringiensis ToxinsbiologyCadherinlcsh:RfungiAustraliaIntronCadherinsResistance mutationbiology.organism_classificationEndotoxinsLepidoptera010602 entomology030104 developmental biologyCry1Aclcsh:QScientific Reports
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Novel mutations in the voltage-gated sodium channel of pyrethroid-resistant Varroa destructor populations from the Southeastern USA

2016

The parasitic mite Varroa destructor has a significant worldwide impact on bee colony health. In the absence of control measures, parasitized colonies invariably collapse within 3 years. The synthetic pyrethroids tau-fluvalinate and flumethrin have proven very effective at managing this mite within apiaries, but intensive control programs based mainly on one active ingredient have led to many reports of pyrethroid resistance. In Europe, a modification of leucine to valine at position 925 (L925V) of the V. destructor voltage-gated sodium channel was correlated with resistance, the mutation being found at high frequency exclusively in hives with a recent history of pyrethroid treatment. Here,…

0106 biological sciences0301 basic medicineInsecticidesVeterinary medicineGene Identification and Analysislcsh:MedicineMicrobiologiaVoltage-Gated Sodium ChannelsFlumethrinmedicine.disease_causeBiochemistry01 natural sciencesAbellesInsecticide Resistancechemistry.chemical_compoundMethioninePyrethrinsÀcarsDestructorAmino Acidslcsh:ScienceMitesMutationMultidisciplinaryPyrethroidbiologyOrganic CompoundsGeneral MedicineBeesSoutheastern United StatesInsectsChemistryPhysical SciencesInsect ProteinsGeneral Agricultural and Biological SciencesResearch ArticleArthropodaApiaryParàsitsVarroidaeGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesLeucineparasitic diseasesGeneticsMitemedicineAnimalsPoint MutationSulfur Containing Amino AcidsIsoleucineMutation DetectionAllelesbusiness.industryPoint mutationOrganic Chemistrylcsh:ROrganismsChemical CompoundsBiology and Life SciencesProteinsbiology.organism_classificationInvertebratesHymenopteraBiotechnology010602 entomology030104 developmental biologyAliphatic Amino AcidschemistryGenetic LociVarroa destructorMutationlcsh:Qbusiness
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Bacillus thuringiensis Vip3Aa Toxin Resistance in Heliothis virescens (Lepidoptera: Noctuidae)

2017

ABSTRACT Laboratory selection with Vip3Aa of a field-derived population of Heliothis virescens produced >2,040-fold resistance in 12 generations of selection. The Vip3Aa-selected (Vip-Sel)-resistant population showed little cross-resistance to Cry1Ab and no cross-resistance to Cry1Ac. Resistance was unstable after 15 generations without exposure to the toxin. F 1 reciprocal crosses between Vip3Aa-unselected (Vip-Unsel) and Vip-Sel insects indicated a strong paternal influence on the inheritance of resistance. Resistance ranged from almost completely recessive (mean degree of dominance [ h ] = 0.04 if the resistant parent was female) to incompletely dominant (mean h = 0.53 if the resistan…

0106 biological sciences0301 basic medicineMultifactorial Inheritancemedia_common.quotation_subjectPopulationInsectBiology01 natural sciencesApplied Microbiology and BiotechnologyInsecticide ResistanceLepidoptera genitaliaHemolysin Proteins03 medical and health sciencesBacterial ProteinsBacillus thuringiensisInvertebrate MicrobiologyAnimalsSelection GeneticeducationCrosses Geneticmedia_commonGeneticseducation.field_of_studyBacillus thuringiensis ToxinsEcologyHeliothis virescensfungibiology.organism_classificationSurvival AnalysisEndotoxinsLepidoptera010602 entomology030104 developmental biologyCry1AcPaternal InheritanceNoctuidaeBiological AssayPEST analysisFood ScienceBiotechnologyApplied and Environmental Microbiology
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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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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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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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Insecticidal spectrum and mode of action of the Bacillus thuringiensis Vip3Ca insecticidal protein.

2016

The Vip3Ca protein, discovered in a screening of Spanish collections of Bacillus thuringiensis, was known to be toxic to Chrysodeixis chalcites, Mamestra brassicae and Trichoplusia ni. In the present study, its activity has been tested with additional insect species and we found that Cydia pomonella is moderately susceptible to this protein. Vip3Ca (of approximately 90 kDa) was processed to an approximately 70 kDa protein when incubated with midgut juice in all tested species. The kinetics of proteolysis correlated with the susceptibility of the insect species to Vip3Ca. The activation was faster to slower in the following order: M. brassicae (susceptible), Spodoptera littoralis (moderately…

0301 basic medicineInsecticides030106 microbiologyInsect pest controlAgrotis ipsilonVegetative insecticidal proteinsMothsmedicine.disease_causeMicrobiologyCiencias BiológicasInsecticide Resistance03 medical and health sciencesBiología Celular MicrobiologíaBacterial ProteinsBacillus thuringiensisBotanyTrichoplusiamedicineAnimalsSpodoptera littoralisPest Control BiologicalEcology Evolution Behavior and SystematicsHistological localizationbiologyToxinfungiVEGETATIVE INSECTICIDAL PROTEINSMidgutBioinsecticidesApical membranebiology.organism_classificationCROP PROTECTIONChrysodeixis chalcitesBIOINSECTICIDES030104 developmental biologyCrop protectionINSECT PEST CONTROLHISTOLOGICAL LOCALIZATIONCIENCIAS NATURALES Y EXACTASJournal of invertebrate pathology
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Transgenerational effects of insecticides - implications for rapid pest evolution in agroecosystems

2018

Although pesticides are a major selective force in driving the evolution of insect pests, the evolutionary processes that give rise to insecticide resistance remain poorly understood. Insecticide resistance has been widely observed to increase with frequent and intense insecticide exposure, but can be lost following the relaxation of insecticide use. One possible but rarely explored explanation is that insecticide resistance may be associated with epigenetic modifications, which influence the patterning of gene expression without changing underlying DNA sequence. Epigenetic modifications such as DNA methylation, histone modifications, and small RNAs have been observed to be heritable in art…

0301 basic medicineIntegrated pest managementInsecticidesInsectapest evolutionagroecosystemsContext (language use)BiologyinsektisiditEpigenesis GeneticInsecticide Resistance03 medical and health sciencesAnimalsEpigeneticsEcology Evolution Behavior and SystematicsEpigenesisResistance (ecology)fungifood and beveragesPesticidehyönteismyrkytBiological EvolutionCrop Productiontuholaistorjunta030104 developmental biologyHistoneEvolutionary biologyInsect ScienceDNA methylationbiology.proteinhyönteisetta1181agroekologiatorjuntamenetelmät
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Susceptibility, mechanisms of response and resistance to Bacillus thuringiensis toxins in Spodoptera spp.

2016

Bioinsecticides based on Bacillus thuringiensis have long been used as an alternative to synthetic insecticides to control insect pests. In this review, we focus on insects of the genus Spodoptera, including relevant polyphagous species that are primary and secondary pests of many crops, and how B. thuringiensis toxins can be used for Spodoptera spp. pest management. We summarize the main findings related to susceptibility, midgut binding specificity, mechanisms of response and resistance of this insect genus to B. thuringiensis toxins.

0301 basic medicineIntegrated pest managementResistance (ecology)media_common.quotation_subjectBacterial ToxinsfungiBacillus thuringiensisfood and beveragesMidgutInsectSpodopteraBiologySpodopterabiology.organism_classificationMicrobiologyInsecticide Resistance03 medical and health sciences030104 developmental biologyInsect ScienceBacillus thuringiensisBotanyAnimalsEcology Evolution Behavior and Systematicsmedia_commonCurrent Opinion in Insect Science
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Analysis of cross-resistance to Vip3 proteins in eight insect colonies, from four insect species, selected for resistance to Bacillus thuringiensis i…

2018

Abstract Bacillus thuringiensis Vip3 proteins are synthesized and secreted during the vegetative growth phase. They are activated by gut proteases, recognize and bind to midgut receptors, form pores and lyse cells. We tested the susceptibility to Vip3Aa and Vip3Ca of Cry1A-, Cry2A-, Dipel- and Vip3-resistant insect colonies from different species to determine whether resistance to other insecticidal proteins confers cross-resistance to Vip3 proteins. As expected, the colonies resistant to Cry1A proteins, Dipel (Helicoverpa armigera, Trichoplusia ni, Ostrinia furnacalis and Plodia interpunctella) or Cry2Ab (H. armigera and T. ni) were not cross-resistant to Vip3 proteins. In contrast, H. arm…

0301 basic medicineProteasesInsectabiologymedia_common.quotation_subjectfungi030106 microbiologyBacillus thuringiensisMidgutInsectHelicoverpa armigerabiology.organism_classificationMicrobiologyInsecticide Resistance03 medical and health sciencesBacterial ProteinsBacillus thuringiensisTrichoplusiaAnimalsPest Control BiologicalEcology Evolution Behavior and SystematicsCross-resistancemedia_commonOstrinia furnacalisJournal of Invertebrate Pathology
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