Search results for " life science"

showing 10 items of 12151 documents

Methodology for determining foliar penetration of herbicides with reference to oil-based adjuvants

1994

Oils are used extensively in pesticide formulation and in pesticide application as spray adjuvants. They improve the biological efficacy of several foliage-applied herbicides without impairing their selectivity. Beneficial effects were first observed with atrazine in maize (Zea mays; Jones and Anderson 1968; Nalewaja 1968) and with phenmedipham in sugar beet (Beta vulgaris: Miller and Nalewaja 1973). More recently, oils have met with success as spray adjuvants for graminicides (Buhler and Burnside 1984; Nalewaja 1986; Barrentine and McWorther 1988) and for bentazone (Doran and Andersen 1975; Nalewaja et al. 1975). Since they allow the use of reduced herbicide application rates, oils also im…

0106 biological sciencesMethyl oleatebiologyChemistry[SDV]Life Sciences [q-bio]Pesticide application04 agricultural and veterinary sciencesbiology.organism_classification01 natural sciencesZea mays[SDV] Life Sciences [q-bio]chemistry.chemical_compoundPesticide formulationAgronomyAgricultural spray adjuvant040103 agronomy & agriculture0401 agriculture forestry and fisheriesSugar beetAtrazineBeneficial effectsMETHODOLOGIE010606 plant biology & botany
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Image analysis methods for assessment of H2O2 production and Plasmopara viticola development in grapevine leaves: application to the evaluation of re…

2013

article i nfo The grapevine downy mildew (Plasmopara viticola) provokes severe damages and destroys the harvest in the absence of an effective protection. Numerous fungicide treatments are thus generally necessary. To promote a sustainable production, alternative strategies of protection including new antifungal molecules, resistant geno- types or elicitor-induced resistance are under trial. To evaluate the relevance of these strategies, resistance tests are required. In this context, three image analysis methods were developed to read the results of tests performed to assessP.viticolasporulation and mycelial development, and H 2 O 2 production in leaves. They have been validated using elic…

0106 biological sciencesMicrobiology (medical)Antifungalmedicine.drug_class[SDV]Life Sciences [q-bio]H2O2Context (language use)01 natural sciencesMicrobiologyImage analysis03 medical and health sciencesPlasmopara viticolamedicinePlant defense against herbivoryImage Processing Computer-Assisted[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyVitisimage analysis;Plasmopara viticola;downy mildew;grapevine;H2O2;resistance testsMolecular Biology[ SDV.MP.MYC ] Life Sciences [q-bio]/Microbiology and Parasitology/MycologyAnalysis method[SDV.MP.MYC]Life Sciences [q-bio]/Microbiology and Parasitology/Mycology030304 developmental biologyDisease ResistancePlant Diseases2. Zero hunger0303 health sciencesResistance (ecology)biologyResistance testsReproducibility of Resultsfood and beveragesHydrogen Peroxidebiology.organism_classificationFungicidePlant LeavesHorticultureAgronomyOomycetesPlasmopara viticola[SDE]Environmental SciencesDowny mildewGrapevine010606 plant biology & botanyDowny mildew
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Immunity and the emergence of virulent pathogens.

2013

6 pages; International audience; The emergence/re-emergence of infectious diseases has been one of the major concerns for human and wildlife health. In spite of the medical and veterinary progresses as to prevent and cure infectious diseases, during the last decades we have witnessed the emergence/re-emergence of virulent pathogens that pose a threat to humans and wildlife. Many factors that might drive the emergence of these novel pathogens have been identified and several reviews have been published on this topic in the last years. Among the most cited and recognized drivers of pathogen emergence are climate change, habitat destruction, increased contact with reservoirs, etc. These factor…

0106 biological sciencesMicrobiology (medical)[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyWildlifeVirulenceBiology[ SDV.IMM.IA ] Life Sciences [q-bio]/Immunology/Adaptive immunologyCommunicable Diseases Emerging010603 evolutionary biology01 natural sciencesMicrobiologyParasite diversity03 medical and health sciencesImmune systemDisease severityImmunityImmune-mediated selection[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisGeneticsAnimalsHumansParasites[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biology[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology0303 health sciencesVirulenceEcology15. Life on land3. Good healthVaccinationInfectious DiseasesHabitat destruction[SDV.IMM.IA]Life Sciences [q-bio]/Immunology/Adaptive immunology13. Climate actionHost-Pathogen InteractionsSpite[SDE.BE]Environmental Sciences/Biodiversity and EcologyImmune-suppression[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Extraction of benzaldehyde from fermentation broth by pervaporation

1996

Abstract The application of pervaporation to extract benzaldehyde produced by microorganisms is considered. A model system was used to study the influence of different parameters and attempts to understand better the mass transfer of this flavour compound. Benzaldehyde was removed from a culture medium from which it was produced by Bjerkandera adusta . The performance of these processes is compared.

0106 biological sciencesMicroorganismFlavourBioengineering02 engineering and technology01 natural sciencesApplied Microbiology and BiotechnologyBiochemistryBenzaldehydechemistry.chemical_compoundBjerkandera adusta010608 biotechnologyMass transfer[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyOrganic chemistry[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyFermentation brothComputingMilieux_MISCELLANEOUSChromatographybiologyChemistryExtraction (chemistry)021001 nanoscience & nanotechnologybiology.organism_classificationPervaporation0210 nano-technology
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Transcriptome and proteome analysis of Pinctada margaritifera calcifying mantle and shell: focus on biomineralization

2010

Abstract Background The shell of the pearl-producing bivalve Pinctada margaritifera is composed of an organic cell-free matrix that plays a key role in the dynamic process of biologically-controlled biomineralization. In order to increase genomic resources and identify shell matrix proteins implicated in biomineralization in P. margaritifera, high-throughput Expressed Sequence Tag (EST) pyrosequencing was undertaken on the calcifying mantle, combined with a proteomic analysis of the shell. Results We report the functional analysis of 276 738 sequences, leading to the constitution of an unprecedented catalog of 82 P. margaritifera biomineralization-related mantle protein sequences. Component…

0106 biological sciencesModels MolecularProteomicsProteome[SDV]Life Sciences [q-bio]Proteomics01 natural sciencesContig MappingMantle (mollusc)MargaritiferaIn Situ HybridizationGeneticsExpressed Sequence Tags0303 health sciencesMineralsbiologyPinctada margaritifera[ SDV.BBM.GTP ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]ProteomeBiotechnologyResearch Articlelcsh:QH426-470Sequence analysislcsh:BiotechnologyMolecular Sequence Data010603 evolutionary biology03 medical and health sciencesCalcification Physiologiclcsh:TP248.13-248.65[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]GeneticsAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyAmino Acid SequencePinctadaRNA Messenger[SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/Biomaterials030304 developmental biologyBase SequenceSequence Homology Amino AcidGene Expression ProfilingAnimal StructuresMolecular Sequence AnnotationSequence Analysis DNAbiology.organism_classification[ SDV.IB.BIO ] Life Sciences [q-bio]/Bioengineering/Biomaterialslcsh:GeneticsGene Expression RegulationEvolutionary biologyPinctadaBiomineralization
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Molecular Bases for Sensitivity to Tubulin-Binding Herbicides in Green Foxtail

2004

Abstract We investigated the molecular bases for resistance to several classes of herbicides that bind tubulins in green foxtail (Setaria viridis L. Beauv.). We identified two α- and two β-tubulin genes in green foxtail. Sequence comparison between resistant and sensitive plants revealed two mutations, a leucine-to-phenylalanine change at position 136 and a threonine-to-isoleucine change at position 239, in the gene encoding α2-tubulin. Association of mutation at position 239 with herbicide resistance was demonstrated using near-isogenic lines derived from interspecific pairings between green foxtail and foxtail millet (Setaria italica L. Beauv.), and herbicide sensitivity bioassays combine…

0106 biological sciencesModels MolecularSetariaPhysiologyProtein ConformationMolecular Sequence DataSetaria PlantDrug ResistancePlant Sciencemedicine.disease_cause01 natural sciencesTubulin binding[SDV.GEN.GPL]Life Sciences [q-bio]/Genetics/Plants genetics03 medical and health sciencesFocus Issue on the Plant CytoskeletonSpecies SpecificityTubulin[SDV.GEN.GPL] Life Sciences [q-bio]/Genetics/Plants geneticsBotanyGeneticsmedicineBioassayAmino Acid SequenceGeneCross-resistancePhylogenyComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesMutationbiologyBase SequenceSetaria viridisHerbicidesbiology.organism_classificationBiochemistryFoxtail010606 plant biology & botanyProtein Binding
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Dust and grit matter: abrasives of different size lead to opposing dental microwear textures in experimentally fed sheep (Ovis aries)

2020

ABSTRACT External abrasives ingested along with the herbivore diet are considered main contributors to dental wear, though how the different sizes and concentrations of these abrasives influence wear remains unclear. Dental microwear texture analysis (DMTA) is an established method for dietary reconstruction which describes a tooth9s surface topography on a micrometre scale. The method has yielded conflicting results as to the effect of external abrasives. In the present study, a feeding experiment was performed on sheep (Ovis aries) fed seven diets of different abrasiveness. Our aim was to discern the individual effects of size (4, 50 and 130 µm) and concentration (0%, 4% and 8% of dry mat…

0106 biological sciencesMolar010506 paleontology10253 Department of Small Animals1109 Insect SciencePhysiologyEvolutionRuminantDental WearAquatic Science010603 evolutionary biology01 natural sciencesTexture (geology)MicrotextureAnimal scienceBehavior and Systematics1312 Molecular BiologyAnimalsGritOvisMolecular BiologySheep DomesticEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesFeeding experimentbiology630 Agriculture1104 Aquatic ScienceEcologyChemistryAbrasiveTooth wearDust1314 Physiologybiology.organism_classificationAbrasivesAnimal FeedDiet1105 Ecology Evolution Behavior and SystematicsTooth wearInsect Science570 Life sciences; biologyParticulate MatterAnimal Science and Zoology1103 Animal Science and Zoology
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The way wear goes: phytolith-based wear on the dentine–enamel system in guinea pigs (Cavia porcellus)

2019

The effect of phytoliths on tooth wear and function has been contested in studies of animal–plant interactions. For herbivores whose occlusal chewing surface consists of enamel ridges and dentine tissue, the phytoliths might particularly erode the softer dentine, exposing the enamel ridges to different occlusal forces and thus contributing to enamel wear. To test this hypothesis, we fed guinea pigs (Cavia porcellus; n = 36 in six groups) for threeweeks exclusively on dry or fresh forage of low(lucerne), moderate (fresh timothy grass) or very high (bamboo leaves) silica content representing corresponding levels of phytoliths. We quantified the effect of these treatments with measuremen…

0106 biological sciencesMolar10253 Department of Small AnimalsDentistry01 natural sciences2300 General Environmental ScienceLower body2400 General Immunology and MicrobiologyphytolithsGeneral Environmental Science2. Zero hunger630 AgricultureEcologybiologyEnamel paintOcclusal forcesGeneral Medicinemedicine.anatomical_structurePhytolithvisual_artvisual_art.visual_art_mediumGeneral Agricultural and Biological Sciences010506 paleontologygrowthGuinea PigsCaviaGenetics and Molecular Biology1100 General Agricultural and Biological Sciences010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular Biologystomatognathic systemIncisor1300 General Biochemistry Genetics and Molecular BiologymedicineAnimalsHerbivoryDental Enamel0105 earth and related environmental sciencesGeneral Immunology and Microbiologybusiness.industrybiology.organism_classificationAnimal FeedMolarDietstomatognathic diseasesTooth wearplasticityGeneral BiochemistryDentin570 Life sciences; biologyMasticationTooth Weardental wearbusinessProceedings of the Royal Society B: Biological Sciences
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Morphological modularity and assessment of developmental processes within the vole dental row (Microtus arvalis, Arvicolinae, Rodentia).

2009

10 pages; International audience; Knowledge of mammalian tooth formation is increasing, through numerous genetic and developmental studies. The prevalence of teeth in fossil remains has led to an intensive description of evolutionary patterns within and among lineages based on tooth morphology. The extent to which developmental processes have influenced tooth morphologies and therefore the role of these processes in these evolutionary patterns are nonetheless challenging. Recent methodological advances have been proposed allowing the inference of developmental processes from adult morphologies and the characterization of the degree of developmental integration/modularity of morphological tr…

0106 biological sciencesMolarMorphogenesisZoology[SDV.BID]Life Sciences [q-bio]/Biodiversity010603 evolutionary biology01 natural sciencesModularity03 medical and health sciencesstomatognathic systemMorphogenesisAnimals[ SDV.BDD ] Life Sciences [q-bio]/Development BiologyMicrotus[SDV.BDD]Life Sciences [q-bio]/Development BiologyEcology Evolution Behavior and Systematics030304 developmental biology[ SDV.BID ] Life Sciences [q-bio]/Biodiversity0303 health sciencesbiologyArvicolinaebiology.organism_classificationTooth morphologyArvicolinaeVoleToothDevelopmental Biology
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When less means more: evolutionary and developmental hypotheses in rodent molars.

2012

10 pages; International audience; Tooth number in rodents is an example of reduction in evolution. All rodents have a toothless diastema lacking canine and most premolars present in most other mammals. Whereas some rodent lineages retained one premolar (p4), many others lost it during evolution. Recently, an 'inhibitory cascade' developmental model (IC) has been used to predict how the first molar (m1) influences the number and relative sizes of the following distal molars (m2 and m3). The model does not, however, consider the presence of premolars, and here we examine whether the premolar could influence and constrain molar proportions during development and evolution. By investigating a l…

0106 biological sciencesMolarRodentmolar proportionsRodentiapremolarBiologyMacroevolutionModels Biological010603 evolutionary biology01 natural sciencesMandibular first molar03 medical and health sciencesstomatognathic systembiology.animalevolutionPremolarmedicineAnimalsdevelopmentEcology Evolution Behavior and Systematics[ SDU.STU.PG ] Sciences of the Universe [physics]/Earth Sciences/Paleontology030304 developmental biology0303 health sciencesmacroevolutionDentition[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]Anatomyinhibitory cascadeBiological EvolutionMolar[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]medicine.anatomical_structureEvolutionary biologyrodentsDiastemaLinear ModelsBasal phenotype[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/Paleontology
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