Search results for "INS"

showing 10 items of 35719 documents

A multidisciplinary analytical framework to delineate spawning areas and quantify larval dispersal in coastal fish

2019

International audience; Assessing larval dispersal is essential to understand the structure and dynamics of marine populations. However, knowledge about early-life dispersal is sparse, and so is our understanding of the spawning process, perhaps the most obscure component of biphasic life cycles. Indeed, the poorly known species-specific spawning modality and early-life traits, along with the high spatio-temporal variability of the oceanic circulation experienced during larval drift, hamper our ability to properly appraise the realized connectivity of coastal fishes. Here, we propose an analytical framework which combines Lagrangian modeling, network theory, otolith analyses and biogeograph…

0106 biological sciencesConservation of Natural ResourcesOceans and SeasPopulation DynamicsCoastal fishEcosystem ManagementConservationAquatic ScienceOceanography010603 evolutionary biology01 natural sciencesFish natal originsmedicineMediterranean SeaAnimalsDiplodus vulgarisMarine ecosystem14. Life underwaterEcosystemOtolithMarine Protected AreaLagrangian Flow Network[SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmosphere[SDV.EE]Life Sciences [q-bio]/Ecology environmentFish natal originbiologyEcology010604 marine biology & hydrobiologyFishesMarine connectivityPelagic zoneGeneral MedicineDiplodusbiology.organism_classificationPollutionCoastal fishesCoastal fishemedicine.anatomical_structureLarvaBiological dispersalMarine protected areaModels-hydrodynamicsModels-hydrodynamic
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Large-scale distribution analysis of Antarctic echinoids using ecological niche modelling.

2012

Understanding the factors that determine the distribution of taxa at various spatial scales is a crucial challenge in the context of global climate change. This holds particularly true for polar marine biota that are composed of both highly adapted and vulnerable faunas. We analysed the distribution of 2 Antarctic echinoid species, Sterechinus antarcticus and S. neumayeri, at the scale of the entire Southern Ocean using 2 niche modelling procedures. The performance of distribution models was tested with regard to the known ecology of the species. The respective contributions of environmental parameters are discussed along with the putative roles played by biotic interactions and biogeograph…

0106 biological sciencesContext (language use)Aquatic ScienceHabitat suitability map010603 evolutionary biology01 natural sciences[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsGARPSea ice14. Life underwaterSouthern OceanEcology Evolution Behavior and SystematicsPolar frontEcological nichegeography[ SDE.BE ] Environmental Sciences/Biodiversity and Ecologygeography.geographical_feature_categoryBiotic componentEcologybiologyEcology010604 marine biology & hydrobiologyEchinoidea15. Life on landbiology.organism_classificationSterechinus[ SDV.EE.ECO ] Life Sciences [q-bio]/Ecology environment/EcosystemsSterechinusOceanographyArctic13. Climate actionEchinoidea [Sea urchins]Biological dispersal[SDE.BE]Environmental Sciences/Biodiversity and EcologyMaxent
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Conceptual and operational perspectives on ecosystem restoration options in the European Union and elsewhere

2015

Summary Egoh et al. (2014) prioritized areas for ecological restoration in the European Union (EU) so that Europe could cost-efficiently meet the globally agreed 15% restoration target. We identify three major deficiencies in their analysis, one conceptual and two operational, which compromise the conclusions of the prioritization. The conceptual flaw is neglect of both the magnitude of degradation and the magnitude of improvement of the ecosystem condition expected due to restoration. The first operational flaw is inclusion of inappropriately measured restoration costs into the analyses. The second is use of spatial units that are so large (10 × 10 km) that only a fraction of each unit cou…

0106 biological sciencesConvention on Biological DiversityEcologyCost efficiencybusiness.industry010604 marine biology & hydrobiologyCompromisemedia_common.quotation_subjectEnvironmental resource managementAgroecological restoration15. Life on land010603 evolutionary biology01 natural sciencesEcosystem servicesUnit (housing)13. Climate actionmedia_common.cataloged_instanceEuropean unionbusinessRestoration ecologymedia_commonJournal of Applied Ecology
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Sex pheromone identified after solid phase microextraction from tergal glands of female alates in Cornitermes bequaerti (Isoptera, Nasutitermitinae)

2002

For the first time, a termite sex pheromone secreted by tergal glands has been isolated and identified. In the mandibulate nasute termite Cornitermes bequaerti, pairing of swarming imagoes is mediated by a sex pheromone secreted by females from their tergal glands. These well developed sexual glands located in front of tergites 8, 9, 10 are essentially composed of class 1 and 2 cells, but also of some glandular units of class 3 cells. The major volatile compound of tergal secretion was isolated by solid phase microextraction (SPME) and identified by GC-MS as (3Z, 6Z, 8E)-dodecatrien-1-ol. Sex attraction bioassays with synthetic (3Z, 6Z, 8E)-dodecatrien-1-ol showed that this alcohol was the …

0106 biological sciencesCornitermes bequaerti[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringSwarming (honey bee)ZoologyAlateAnatomyBiology[SDV.IDA] Life Sciences [q-bio]/Food engineeringSolid-phase microextraction010603 evolutionary biology01 natural sciencesAttraction010602 entomologyCellular originInsect ScienceSex pheromone[SDV.IDA]Life Sciences [q-bio]/Food engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUS
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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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Insecticidal Activity of Bacillus thuringiensis Proteins against Coleopteran Pests

2020

Bacillus thuringiensis is the most successful microbial insecticide agent and its proteins have been studied for many years due to its toxicity against insects mainly belonging to the orders Lepidoptera, Diptera and Coleoptera, which are pests of agro-forestry and medical-veterinary interest. However, studies on the interactions between this bacterium and the insect species classified in the order Coleoptera are more limited when compared to other insect orders. To date, 45 Cry proteins, 2 Cyt proteins, 11 Vip proteins, and 2 Sip proteins have been reported with activity against coleopteran species. A number of these proteins have been successfully used in some insecticidal formulations and…

0106 biological sciencesCrops AgriculturalOrder ColeopteraHealth Toxicology and Mutagenesismedia_common.quotation_subjectBacillus thuringiensis proteinsBacillus thuringiensislcsh:MedicineInsectGenetically modified cropsReviewToxicologyInsecticidal activity01 natural sciencesinsecticidal activityLepidoptera genitalia03 medical and health sciencesHemolysin Proteinsmode of actionBacillus thuringiensisBotanyAnimalsstructureMode of actionPest Control Biologicalcoleopteran pests030304 developmental biologymedia_common0303 health sciencesbiologyBacillus thuringiensis Toxinslcsh:RfungiStructurebiology.organism_classificationPlants Genetically ModifiedColeopteraEndotoxins010602 entomologyBiological Control AgentsMode of actionColeopteran pests<i>Bacillus thuringiensis</i> proteinsBacteriaToxins
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Assessment of genetically modified soybean MON 87751 for food and feed uses under Regulation (EC) No 1829/2003 (application EFSA‐GMO‐NL‐2014‐121)

2018

Abstract Soybean MON 87751 was developed through Agrobacterium tumefaciens‐mediated transformation to provide protection certain specific lepidopteran pests by the expression of the Cry1A.105 and Cry2Ab2 proteins derived from Bacillus thuringiensis. The molecular characterisation data and bioinformatic analyses did not identify issues requiring assessment for food and feed safety. None of the compositional, agronomic and phenotypic differences identified between soybean MON 87751 and the conventional counterpart required further assessment. The GMO Panel did not identify safety concerns regarding the toxicity and allergenicity of the Cry1A.105 and Cry2Ab2 proteins as expressed in soybean MO…

0106 biological sciencesCry1AVeterinary (miscellaneous)Plant ScienceTP1-1185Biology01 natural sciencesMicrobiologyGenetically modified soybeansoybean (Glycinemax)MON877510404 agricultural biotechnologyEnvironmental safetyBacillus thuringiensisTX341-641Cry2Ab2Cry1A.105Animal healthbusiness.industryGMONutrition. Foods and food supplyChemical technologyfungiRegulation (EC) No 1829/2003food and beverages10504 agricultural and veterinary sciencesbiology.organism_classification040401 food scienceBiotechnologySettore AGR/02 - Agronomia E Coltivazioni ErbaceeSettore AGR/11 - Entomologia Generale E ApplicataScientific OpinionMON 87751insect resistantAnimal Science and ZoologyParasitologybusinesssoybean (Glycine max)010606 plant biology & botanyFood ScienceRegulation (EC) No 1829/2003EFSA Journal
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Scientific Opinion on application EFSA‐GMO‐BE‐2013‐117 for authorisation of genetically modified maize MON 87427 × MON 89034 × NK603 and subcombinati…

2017

Scientific opinionRequestor: Competent Authority of BelgiumQuestion number: EFSA-Q-2013-00765; In this opinion, the EFSA Panel on Genetically Modified Organisms (GMO Panel) assessed the three-event stack maize MON 87427 9 MON 89034 9 NK603 and its three subcombinations, independently of their origin. The GMO Panel has previously assessed the three single events combined to produce this three-event stack maize and did not identify safety concerns. No new data on the single events, leading to modification of the original conclusions on their safety, were identified. Based on the molecular, agronomic, phenotypic and compositional characteristics, the combination of the single maize events and …

0106 biological sciencesCry1Aherbicide tolerancemaïsVeterinary (miscellaneous)gmo[SDV]Life Sciences [q-bio]MON87427xMON89034xNK603ogmPlant Science010501 environmental sciencesmaizeCP4EPSPS01 natural sciencesMicrobiologyzea maysMON 87427 × MON 89034 × NK603Cry2Ab2CP4 EPSPS0105 earth and related environmental sciences2. Zero hungerCP4 EPSPSCry1A.105indian cornRegulation (EC) No 1829/2003105GMO;maize;herbicide tolerance;insect resistance;CP4 EPSPS;Cry1A.105;Cry2Ab2;Regulation (EC) No 1829/2003;MON 87427 x MON 89034 x NK603MON 87427 9 MON 89034 9 NK603Scientific OpinionRegulation (EC) No1829/2003Animal Science and ZoologyParasitologyinsect resistance010606 plant biology & botanyFood ScienceRegulation (EC) No 1829/2003
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AtCCS is a functional homolog of the yeast copper chaperone Ccs1/Lys7

2005

AbstractIn plant chloroplasts two superoxide dismutase (SOD) activities occur, FeSOD and Cu/ZnSOD, with reciprocal regulation in response to copper availability. This system presents a unique model to study the regulation of metal-cofactor delivery to an organelle. The Arabidopsis thaliana gene AtCCS encodes a functional homolog to yeast Ccs1p/Lys7p, a copper chaperone for SOD. The AtCCS protein was localized to chloroplasts where it may supply copper to the stromal Cu/ZnSOD. AtCCS mRNA expression levels are upregulated in response to Cu-feeding and senescence. We propose that AtCCS expression is regulated to allow the most optimal use of Cu for photosynthesis.

0106 biological sciencesCu/Zn superoxide dismutaseChloroplastsSaccharomyces cerevisiae ProteinsMolecular Sequence DataArabidopsisBiophysicsSaccharomyces cerevisiaeMetallo chaperoneChloroplastModels Biological01 natural sciencesBiochemistryGreen fluorescent proteinSuperoxide dismutase03 medical and health sciencesDownregulation and upregulationGene Expression Regulation PlantStructural BiologyOrganelleGeneticsAmino Acid SequenceRNA MessengerMolecular BiologyGene030304 developmental biology0303 health sciencesbiologyArabidopsis ProteinsGene Expression ProfilingGenetic Complementation TestCell BiologyYeastChloroplastProtein TransportBiochemistryChaperone (protein)Mutationbiology.proteinSequence AlignmentCopperMolecular Chaperones010606 plant biology & botanyFEBS Letters
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Chemical Composition and Broad-Spectrum Insecticidal Activity of the Flower Essential Oil from an Ancient Sicilian Food Plant, Ridolfia segetum

2021

Several species of the family Apiaceae are aromatic herbs that produce essential oils usable on an industrial scale for pharmaceutical, cosmetic, and food purposes. In particular, some essential oils, such as green insecticides for example, may replace synthetic insecticides, keeping most of their efficacy and avoiding environmental pollution or human poisoning. In the present study, we explored the insecticidal potential of Ridolfia segetum (L.) Moris essential oil (EO) against three different pests: Culex quinquefasciatus Say, Musca domestica L., and Spodoptera littoralis (Boisduval). For this purpose, the EO was obtained by hydrodistillation of flowers and its composition was achieved by…

0106 biological sciencesCulex quiquefasciatusEnvironmental pollutionPlant Sciencemoth pest01 natural sciencesCulex quiquefasciatu<i>Musca domestica</i>law.inventionmosquito controllawRidolfia segetumlcsh:Agriculture (General)Spodoptera littoralisEssential oilcommon houseflybiologygreen pesticideSpodoptera littoralisbiology.organism_classification<i>Spodoptera littoralis</i>lcsh:S1-972Culex quinquefasciatus010602 entomologyHorticulture<i>Culex quiquefasciatus</i>InstarComposition (visual arts)Musca domesticaGas chromatographygreen pesticidesAgronomy and Crop ScienceCommon housefly; Culex quiquefasciatus; Green pesticides; Mosquito control; Moth pest; Musca domestica; Spodoptera littoralis010606 plant biology & botanyFood ScienceAgriculture
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