Search results for "OTI"

showing 10 items of 20628 documents

Neonicotinoids in excretion product of phloem-feeding insects kill beneficial insects

2019

Significance The use of insecticides in agriculture is one of the suggested causes of the decline in insect populations. Neonicotinoids are among the most widely used insecticides. However, they have important negative side effects, especially for pollinators and other beneficial insects feeding on floral nectar and pollen. We identified an exposure route: Neonicotinoids reach and kill beneficial insects when they feed on the most abundant carbohydrate source for insects in agroecosystems, honeydew. Honeydew is the excretion product of phloem-feeding hemipteran insects such as aphids, mealybugs, whiteflies, or psyllids. This route of exposure is likely to affect a much wider range of benefi…

0106 biological sciencesHoneydewInsectaPhloemBiology010603 evolutionary biology01 natural sciencesBiological control agentsToxicologyNeonicotinoidschemistry.chemical_compoundPollinatorImidaclopridAnimalsNectarBeneficial insectsLaboratory of EntomologyMultidisciplinaryAgricultural Sciencesbusiness.industryPollinatorsfungiNeonicotinoidPest controlfood and beveragesFeeding BehaviorBiological SciencesPE&RCEnvironmental risk assessmentLaboratorium voor EntomologieSurvival AnalysisCucurbitaceae010602 entomologyHoneydewchemistryThiamethoxamEPSbusinessThiamethoxam
researchProduct

Involvement of plasma membrane proteins in plant defense responses. Analysis of the cryptogein signal transduction in tobacco

1999

International audience; Cryptogein, a 98 amino acid protein secreted by the fungus Phytophthora cryptogea, induces a hypersensitive response and systemic acquired resistance in tobacco plants (Nicotiana tabacum var Xanthi). The mode of action of cryptogein has been studied using tobacco cell suspensions. The recognition of this elicitor by a plasma membrane receptor leads to a cascade of events including protein phosphorylation, calcium influx, potassium and chloride effluxes, plasma membrane depolarization, activation of a NADPH oxidase responsible for active oxygen species (AOS) production and cytosol acidification, activation of the pentose phosphate pathway, and activation of two mitoge…

0106 biological sciencesHypersensitive responseNicotiana tabacum01 natural sciencesBiochemistryFungal Proteins03 medical and health sciencesTobacco[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyAnimals[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyProtein phosphorylation[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology030304 developmental biologyPlant Proteins0303 health sciencesbiologyAlgal ProteinsCell MembraneMembrane Proteinsfood and beveragesGeneral Medicinebiology.organism_classificationElicitorCell biologyCytosolPlants ToxicMembrane proteinBiochemistrySecond messenger systemREPONSE DE LA PLANTESignal transduction010606 plant biology & botanySignal Transduction
researchProduct

Tobacco cells contain a protein, immunologically related to the neutrophil small G protein Rac2 and involved in elicitor-induced oxidative burst.

1997

Abstract Suspension-cultured cells of Nicotiana tabacum generated active oxygen species (AOS) when they were treated with the proteinaceous elicitor, cryptogein. This response was blocked by diphenylene iodonium, an inhibitor of the neutrophil NADPH oxidase. When microsomal extracts of tobacco cells were probed with an antibody directed against the human small G protein Rac2, two immunoreactive proteins were detected at 18.5 and 20.5 kDa. The same experiment performed with cytosolic extracts of tobacco cells led to the observation of a strong immunoreactive protein at 21.5 kDa only in the cryptogein-treated cells. The appearance of this cytosolic protein was related to the production of AOS…

0106 biological sciencesHypersensitive responseNicotiana tabacumBlotting WesternBiophysicsSmall G Protein01 natural sciencesBiochemistrySuperoxide dismutaseFungal Proteins03 medical and health sciencesStructural BiologyGTP-Binding ProteinsTobaccoGeneticsMolecular BiologyCells Cultured030304 developmental biologyRespiratory Burst0303 health sciencesNADPH oxidasebiologyNADPH oxidaseNicotiana tabacumAlgal Proteinsfood and beveragesCell Biologybiology.organism_classificationMolecular biologyOxidative burst3. Good healthElicitorRespiratory burstrac GTP-Binding ProteinsSmall G proteinCytosolPlants ToxicBiochemistrybiology.proteinCryptogeinReactive Oxygen Species010606 plant biology & botanyRac2FEBS letters
researchProduct

Acquired resistance triggered by elicitins in tobacco and other plants

1996

Elicitins are a family of proteins excreted byPhytophthora spp. They exhibit high sequence homology but large net charge differences. They induce necrosis in tobacco plants which then become resistant to the tobacco pathogenPhytophthora parasitica var.nicotianae. In stem-treated plants, resistance was not restricted to the site of elicitin application, but could be demonstrated by petiole inoculation at all levels on the stem. Resistance was already maximum after two days and lasted for at least two weeks. It was effective not only towardsP. p. var.nicotianae infection, but also against the unrelated pathogenSclerotinia sclerotiorum. In contrast to dichloroisonicotinic acid, an artificial i…

0106 biological sciencesHypersensitive responseNicotiana tabacumPlant ScienceHorticulturePlant disease resistance01 natural sciencesPetuniaMicrobiology03 medical and health sciencesBotany[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyComputingMilieux_MISCELLANEOUS030304 developmental biologyNicotiana0303 health sciencesbiologyINDUCTIONfungifood and beveragesElicitinbiology.organism_classificationNicotiana sylvestrisAgronomy and Crop ScienceSystemic acquired resistanceRESISTANCE010606 plant biology & botany
researchProduct

Type-2 histone deacetylases as new regulators of elicitor-induced cell death in plants

2011

 voir Addenda, notes additionnelles complétant l'article : "Dahan, J., Hammoudi, V., Wendehenne, D., Bourque, S. (2011). Type 2 histone deacetylases play a major role in the control of elicitor-induced cell death in tobacco. Plant signaling & behavior, 6 (11), 1865-1867. DOI : 10.4161/psb.6.11.17848".; International audience; Plant resistance to pathogen attack is often associated with a localized programmed cell death called hypersensitive response (HR). How this cell death is controlled remains largely unknown. Upon treatment with cryptogein, an elicitor of tobacco defence and cell death, we identified NtHD2a and NtHD2b, two redundant isoforms of type-2 nuclear histone deacetylases (HDACs…

0106 biological sciencesHypersensitive responseProgrammed cell deathPhysiologyplant defenceNicotiana tabacum[SDV]Life Sciences [q-bio]Molecular Sequence DataHistone Deacetylase 2Plant Science01 natural sciencesMass SpectrometrycryptogeinFungal Proteins03 medical and health sciences[ SDV.SA.AGRO ] Life Sciences [q-bio]/Agricultural sciences/AgronomyTobaccoAmino Acid SequencePhosphorylationNuclear proteinPhylogeny030304 developmental biology0303 health sciencesbiologyNicotiana tabacumAlgal ProteinsNuclear Proteinsfood and beveragesAcetylationbiology.organism_classificationElicitorCell biologyHistonecell deathhypersensitive response (HR)Acetylationhistone deacetylasebiology.proteinHistone deacetylasePeptidesSequence AlignmentChromatography Liquid010606 plant biology & botanynuclear signalling
researchProduct

Precision, Applicability, and Economic Implications: A Comparison of Alternative Biodiversity Offset Indexes

2021

AbstractThe rates of ecosystem degradation and biodiversity loss are alarming and current conservation efforts are not sufficient to stop them. The need for new tools is urgent. One approach is biodiversity offsetting: a developer causing habitat degradation provides an improvement in biodiversity so that the lost ecological value is compensated for. Accurate and ecologically meaningful measurement of losses and estimation of gains are essential in reaching the no net loss goal or any other desired outcome of biodiversity offsetting. The chosen calculation method strongly influences biodiversity outcomes. We compare a multiplicative method, which is based on a habitat condition index develo…

0106 biological sciencesINDICATORSConservation of Natural Resourcesekologinen kompensaatioköyhtyminenBiodiversity offsettingOffset (computer science)arviointimenetelmätComputer scienceCONSERVATIONBiodiversityDIVERSITY010603 evolutionary biology01 natural sciencesOutcome (game theory)ArticleRICHNESSAdditive functionEconometricsEcosystem1172 Environmental sciencesRESTORATIONEstimationMotivationGlobal and Planetary ChangeEcology010604 marine biology & hydrobiologyMultiplicative functionkustannustehokkuusEcological compensationBiodiversity15. Life on landFINLANDluonnon monimuotoisuusPollutionBiodiversity calculation methodkompensointibiodiversiteettiECOLOGICAL EQUIVALENCEINSIGHTSHabitat destructionBiodiversity offsetting13. Climate actionPOLYPORESNo net losslaskentamallit511 EconomicsTrade ratioDEAD WOOD
researchProduct

Argyrella richardsiae, a new species of Melastomataceae from the wet miombo woodlands of south-central Africa

2017

A new species from the wet miombo woodlands of Tanzania and Angola, Argyrella richardsiae Veranso-Libalah & G.Kadereit, sp. nov. (Melastomataceae, Melastomateae), is described and illustrated. Although the widespread Argyrella canescens also occurs in Tanzania and northeastern Angola, A. richardsiae is morphologically most similar to Argyrella bambutorum known only from the Northwest of Cameroon, but differs by its indumentum of glandular trichomes on the entire plant (versus a mixture of stellate and glandular trichomes in other species of Argyrella), leaf-blades with serrulate margins (versus entire margins in A. bambutorum) and lateral nerves that become faint mid-way and never reach…

0106 biological sciencesIndumentumMelastomataceaeEndangered speciesPlant ScienceWoodland010502 geochemistry & geophysicsTanzania010603 evolutionary biology01 natural sciencesMagnoliopsidalcsh:BotanyBotanyIUCN Red ListPlantaeEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesnew speciesbiologyAgroforestryMyrtalesDissotisArgyrellabiology.organism_classificationTrichomeApex (geometry)lcsh:QK1-989TracheophytaAngolaMelastomataceaeAfricaConservation statusHeterotisResearch ArticlePhytoKeys
researchProduct

Priming: getting ready for battle

2006

International audience; Infection of plants by necrotizing pathogens or colonization of plant roots with certain beneficial microbes causes the induction of a unique physiological state called “priming.” The primed state can also be induced by treatment of plants with various natural and synthetic compounds. Primed plants display either faster, stronger, or both activation of the various cellular defense responses that are induced following attack by either pathogens or insects or in response to abiotic stress. Although the phenomenon has been known for decades, most progress in our understanding of priming has been made over the past few years. Here, we summarize the current knowledge of p…

0106 biological sciencesInsectaPhysiology[SDV]Life Sciences [q-bio]beta-Aminobutyric acidPriming (agriculture)01 natural sciencesPlant Physiological Phenomenachemistry.chemical_compoundsalicylic acid.ethylenePlant biology (Botany)0303 health sciencesAminobutyratesJasmonic acidfood and beveragesGeneral MedicinePlantsLife sciencesmycorrhizal fungimycorhizeBiologieSignal Transductionacide jasmoniquesalicylic acidBiologyMicrobiology03 medical and health sciencesβ-aminobutyric acidMycorrhizal fungiAnimalsβ-aminobutyric acid;bacterial lipopolysaccharides;ethylene;jasmonic acid;mycorrhizal fungi;salicylic acid.Plant Physiological Phenomena030304 developmental biologyacide aminobutyriquePlant rootsAbiotic stressjasmonic acidfungiEthylenesCellular defenseImmunity Innateß-aminobutyric acidbacterial lipopolysaccharideschemistryéthylènefungiAgronomy and Crop Science010606 plant biology & botanyMolecular Plant-Microbe Interactions
researchProduct

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
researchProduct

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
researchProduct