Search results for " agricole"

showing 10 items of 196 documents

Caractérisation du transfert d’eau et des pertes en herbicides dans des sols soumis à différents systèmes de culture économes en herbicides

2012

International audience

[SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/Agronomy[SDE] Environmental SciencesCulture agricoleSol[SDV]Life Sciences [q-bio]caractérisation[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/Agronomy[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil studyculture[SDV] Life Sciences [q-bio]transfertherbicideeau[SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biology[SDV.SA.SDS] Life Sciences [q-bio]/Agricultural sciences/Soil studyComputingMilieux_MISCELLANEOUS
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Les espèces adventices, indispensables à la production agricole dans les systèmes à bas intrants

2015

National audience; Le défi principal de l’agriculture aujourd’hui est la conception de systèmes de culture (SdC) permettant de limiter le recours aux intrants chimiques, tout en régulant les bio-agresseurs des cultures et en maintenant le potentiel de production et le revenu des exploitants agricoles. La flore adventice est un exemple emblématique de ce défi et un obstacle majeur aux objectifs du plan Ecophyto ; les herbicides représentent une part importante des produits phytosanitaires utilisés. L’agroécologie repose sur le postulat que la biodiversité, de par ses fonctions et les services écosystémiques (ex. biocontrôle, pollinisation) qu’elle sous-tend, pourrait compenser l’usage d’intr…

[SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/Agronomyagroécologie;adventices;herbicides;service écosystémiques;biodiversité;production agricole;pollinisation;socio-écosystème agricoleHerbicidesPollinisation[SDV]Life Sciences [q-bio][SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/AgronomyAgroécologieAdventices[SDV] Life Sciences [q-bio]socio-écosystème agricole[SDE]Environmental SciencesProduction agricole[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyService écosystémiquesBiodiversité
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Ecology of N2O reducing bacteria in arable soils

2016

Nitrous oxide (N2O) is an important greenhouse gas (GHG) and the main ozone depleting substance. Agricultural soils are the main anthropogenic-induced source of this GHG. The concentration of N2O in the atmosphere is steadily increasing, but we still lack knowledge on the factors controlling its production and consumption in soils. The reduction of N2O to N2 by microorganisms harboring the N2O reductase gene (nosZ) is the only known biological process able to consume this GHG. Recent studies revealed a previously unknown clade of N2O-reducers which was shown to be important to the N2O sink capacity of soils. This thesis seeks to gain a greater understanding on the ecology of N2O-reducers in…

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesNitrous oxideNitrogenAzoteNosZGreenhouse gasL'oxyde nitreuxMicrobial ecology[SDE.BE] Environmental Sciences/Biodiversity and EcologyAgricultural practicesLa dénitrificationDenitrificationLes pratiques agricoles[SDV.MP.BAC] Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyÉcologie microbienneGaz à effet de serre
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Search for biological signature of the degradation of chlordecone in soil of the French West Indies

2015

The use of chlordecone (CLD) to eradicate the weevil populations in the banana plantations in the French West Indies (Guadeloupe and Martinique) between 1972 and 1993 led to the contamination of the soil and the environment. This very hydrophobic organochlorine insecticide persists in the soil where it slowly transfers not only to the water resources but also to terrestrial and aquatic biota (plants, animals, fishes, shellfishes). Deemed “non-degradable”, CLD is resistant to photolysis, hydrolysis and biodegradation. To date, there is no method to remediate the 20,000 hectares of polluted soil with this insecticide. Given the extent of CLD pollution, biological decontamination processes app…

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesSols agricoles polluésInsecticide organochloréPolluted agricultural soilsCommunauté microbienneEcotoxicology[SDE.BE] Environmental Sciences/Biodiversity and EcologyDégradationÉcotoxicologieMicrobial communityOrganochlorine insecticideToléranceSorptionChlordécone[SDV.SA.SDS] Life Sciences [q-bio]/Agricultural sciences/Soil study
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Panorama du biocontrôle en ZNA, zones non agricoles

2013

Les politiques phytosanitaires européennes et françaises ont fixé l'objectif de réduire l'usage des pesticides et, pour ce faire, incitent à la promotion et à l'utilisation des techniques de biocontrôle et de protection biologique intégrée. Cela s'applique aussi ZNA (Zones Non Agricoles). De nombreuses techniques et applications sont utilisées pour contrôler les problématiques phytosanitaires en zones non agricoles. Sur la base d'un premier travail bibliographique et d'une expertise collective, nous dressons un inventaire et une analyse critique des techniques de biocontrôle et de protection biologique intégrée effectives pour gérer les problématiques phytosanitaires des zones non agricoles…

[SDV.SA] Life Sciences [q-bio]/Agricultural scienceszones non agricolesprotection biologique intégréebiocontrôle
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Indicators of agricultural intensity and intensification: a review of the literature

2015

Since the 1960s, research has dealt with agricultural intensification (AI) as a solution to ensure global food security. Recently, sustainable intensification (SI) has increasingly been used to describe those agricultural and farming systems that ensure adequate ecosystem service provision. Studies differ in terms of the application scales and methodologies, thus we aim to summarize the main findings from the literature on how AI and SI are assessed, from the farm to global levels. Our literature review is based on 7865 papers selected from the Web of Science database and analysed using CorText software. A further selection of 105 relevant papers was used for an in-depth full-text analysis …

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences010504 meteorology & atmospheric sciencesagriculture intensiveAgronomia[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/Agronomy01 natural sciencesEcosystem servicesmedia_common2. Zero hungerFood securityIntensive farmingAgriculturaEnvironmental resource managementspatial scales[SHS.GEO]Humanities and Social Sciences/Geography04 agricultural and veterinary sciencesAgroécologiesustainabilityAgricultural sciencesindicateur de rechercheéchelle spatialeGeographyLand use intensity;ecosystem services;farming systems;indicators;spatial scales;sustainabilitymedia_common.quotation_subjectlcsh:Plant cultureEconomiaécosystèmelcsh:AgricultureLand use intensitysustainability.[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/Ecosystemssystème agricolelcsh:SB1-1110farming systemsAgricultural productivity0105 earth and related environmental sciencesétat de l'artbusiness.industrylcsh:S[SDV.SA.AEP]Life Sciences [q-bio]/Agricultural sciences/Agriculture economy and politics15. Life on land[SDE.ES]Environmental Sciences/Environmental and SocietyindicatorsAgricultureSustainability040103 agronomy & agriculturedéveloppement agricole durable0401 agriculture forestry and fisherieslittératureMonocultureecosystem servicesbusinessAgronomy and Crop ScienceSciences agricolesDiversity (politics)Italian Journal of Agronomy
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Cropping system dynamics, climate variability, and seed losses among East African smallholder farmers: a retrospective survey.

2014

Abstract Climate variability directly affects traditional low input and rain-fed farming systems, but few studies have paid attention retrospectively to the cropping system’s ability to mitigate climate risk. This study analyzes the impacts of rainfall variability on farmers’ seed variety losses over time, considering changes in smallholder farming systems. The cropping system dynamics, in favoring maize at the expense of sorghum and pearl millet, have induced an increasing risk of seed loss during drought. Combining ecological anthropology and climatology, a retrospective survey asking farmers about the period 1961–2006 was carried out at three altitudinal levels (750, 950, and 1100 m) on …

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesAtmospheric Sciencehttp://aims.fao.org/aos/agrovoc/c_1969F08 - Systèmes et modes de cultureFacteur climatiqueF30 - Génétique et amélioration des plantesCropping systemPennisetum glaucumhttp://aims.fao.org/aos/agrovoc/c_8157[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciencesComputingMilieux_MISCELLANEOUS2. Zero hungerGlobal and Planetary ChangebiologyEcologyAgroforestryAgriculturehttp://aims.fao.org/aos/agrovoc/c_6927Sorghum bicolor[ SDE.MCG ] Environmental Sciences/Global ChangesGeographyhttp://aims.fao.org/aos/agrovoc/c_6523http://aims.fao.org/aos/agrovoc/c_8504http://aims.fao.org/aos/agrovoc/c_13199[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatologyhttp://aims.fao.org/aos/agrovoc/c_6161[ SDU.STU.CL ] Sciences of the Universe [physics]/Earth Sciences/ClimatologyP40 - Météorologie et climatologiehttp://aims.fao.org/aos/agrovoc/c_29554[SDE.MCG]Environmental Sciences/Global ChangesZea maysSocietal impactsPetite exploitation agricoleSécheressehttp://aims.fao.org/aos/agrovoc/c_7247Retrospective surveyConservation des ressourceshttp://aims.fao.org/aos/agrovoc/c_2391F03 - Production et traitement des semenceshttp://aims.fao.org/aos/agrovoc/c_1666PrecipitationVariétéClimate variabilitySemencePerte de récolteChangement climatiquePrécipitationbusiness.industryClimate riskLow inputSorghumbiology.organism_classification[SDE.ES]Environmental Sciences/Environmental and SocietyIncreasing riskhttp://aims.fao.org/aos/agrovoc/c_408613. Climate actionAgricultureAfricaSystème de culturehttp://aims.fao.org/aos/agrovoc/c_1971businessSocial Sciences (miscellaneous)http://aims.fao.org/aos/agrovoc/c_7113
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Microbial diversity and structure are drivers of the biological barrier effect against Listeria monocytogenes in soil

2013

International audience; Understanding the ecology of pathogenic organisms is important in order to monitor their transmission in the environment and the related health hazards. We investigated the relationship between soil microbial diversity and the barrier effect against Listeria monocytogenes invasion. By using a dilution-to-extinction approach, we analysed the consequence of eroding microbial diversity on L. monocytogenes population dynamics under standardised conditions of abiotic parameters and microbial abundance in soil microcosms. We demonstrated that highly diverse soil microbial communities act as a biological barrier against L. monocytogenes invasion and that phylogenetic compos…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesBiodiversité et EcologiePopulation DynamicsBiodiversitylcsh:MedicineRNA Ribosomal 16Slcsh:SciencePhylogenySoil MicrobiologyAbiotic component0303 health scienceseducation.field_of_studyMultidisciplinaryMicrobial ViabilityEcologyrespiratory systemerosioninvasionAgricultural sciencespyrosequencingMicrocosmSoil microbiologyResearch ArticlePopulationérosionBiologyDNA Ribosomalcomplex mixturessurvivaldiversitysoilBiodiversity and Ecology03 medical and health sciencesMicrobial ecologyRNA Ribosomal 18SSoil ecologyeducationdiversity;erosion;pyrosequencing;invasion;Listeria monocytogenes;soil;survivalEcosystem030304 developmental biologydiversitéMicrobial ViabilityBacteria030306 microbiologylcsh:RGenetic VariationSequence Analysis DNA15. Life on landListeria monocytogenespyroséquençage13. Climate actionlcsh:Q[SDE.BE]Environmental Sciences/Biodiversity and Ecologyhuman activitiesSciences agricoles
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Microalgae community structure analysis based on 18S rDNA amplification from DNA extracted directly from soil as a potential soil bioindicator

2005

International audience; Soil algae are photosynthetically active microorganisms showing changeable community structure, depending on the soil type, the agricultural practices and the application of pesticides. To characterise algal community structure, molecular approaches complementary to classical microbiological approaches based on the isolation and the culture of soil algae are required. Our study describes a polymerase chain reaction (PCR) approach targeting algal 18S rDNA sequences of desoxyribonucleic acid (DNA) samples extracted either from unialgal eukaryotic microalgae culture, complex assemblages of microalgae populations or natural soil communities. Our first results showed that…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesEnvironmental EngineeringSoil biologyMicroorganism010501 environmental sciences01 natural sciencesalgae communitiemicroorganisme du solsoilAlgaepcrBotanyRibosomal DNA0105 earth and related environmental sciences2. Zero hungerbioindicateur[SDV.EE]Life Sciences [q-bio]/Ecology environment[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesalgue édaphyteamplified rDNAbiologyEdaphic04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationSoil typeSoil contaminationAgricultural sciences[SDV.EE] Life Sciences [q-bio]/Ecology environmentSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesalgae communitie;soil;amplified rDNAalgae communitiesAgronomy and Crop ScienceSciences agricolesadn recombiné
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Enhanced isoproturon mineralisation in a clay silt loam agricultural soil

2005

International audience; 14C-ring-labelled isoproturon mineralisation was investigated in a French agricultural soil previously exposed to isoproturon. 50 different soil samples collected every 2 m along a transect of 100 m in length were treated one or two times with isoproturon under laboratory conditions and analysed by radiorespirometry. 94% of the soil samples showed a high ability to mineralise isoproturon with a relatively low variability in the cumulative percentage of mineralisation ranging from 30 to 51% of the initially added radioactivity for the samples treated once with the herbicide. About 45 to 67% of the initially added radioactivity was transformed into 14CO2 in soil sample…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesEnvironmental EngineeringSoil testSoil biologyBIODEGRADATION010501 environmental sciences01 natural sciencesISOPROTURONSoil pH0105 earth and related environmental sciences[SDV.EE]Life Sciences [q-bio]/Ecology environment2. Zero hunger[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesChemistrySOIL MICROFLORA04 agricultural and veterinary sciencesMineralization (soil science)BiodegradationPesticideSoil contaminationAgricultural sciencesISOPROTURON;BIODEGRADATION;SOIL MICROFLORA[SDV.EE] Life Sciences [q-bio]/Ecology environmentLoamEnvironmental chemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesAgronomy and Crop ScienceSciences agricoles
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