Search results for "Conservation"

showing 10 items of 2328 documents

Weed flora evolution in direct seeding under cover systems

2019

Since the beginning of agriculture, farmers have been working the soil to produce. With the apparition of mechanization (development of plow coupled to tractors in the early 20th century), this practice has intensified and widespread on all farms. However, in France, since the 2000s, more and more farmers are questioning the utility of working the soil to produce. A new form of agriculture has appeared; the direct seeding under cover which groups together a set of cropping systems that meet certain requirements: no tillage, maximum vegetation cover and diversified rotation. By its emergent properties, this new form of agriculture raises new questions of research that mobilize both agronomy …

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesmaximum soil coverageconservation agricultureno tillage[SDV]Life Sciences [q-bio][SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyweed flora
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« Messicoles » : conservation des plantes messicoles dans les parcelles cultivées : caractérisation des systèmes de cultures favorables, rôles foncti…

2013

Segetal plants, or “messicoles” as they are known in French, are weedy inhabitants of wheat crops (mainly winter cereals). The national list of segetal species includes 102 taxa; of which 7 are extinct, 52 threatened, 30 to be kept under close observation and 12 abundant. Data on their distribution indicates that they are mostly in decline. As their survival is intrinsically linked to farming systems, we need to improve knowledge on their relationships with land management in order to establish a sound scientific basis for protection tools, to support and guide farmer conservation measures and to disseminate concerns for segetal biodiversity to agro-environmental policymakers. We propose to…

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesmessicolepratiques agricoles[SDV]Life Sciences [q-bio][SDE]Environmental Sciencesconservation[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyperceptionbiodiversité
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Etude de la stabilité de l'ADN suivant différentes modalités de conservation

2014

Rapport de stage BTS EA (Plateforme et VN) GenoSol; DEUG

[SDV] Life Sciences [q-bio][SDE] Environmental SciencesqPCRdécongélation[SDV]Life Sciences [q-bio]RISA[SDE]Environmental Sciencesconservationveille technologiqueADN de solcongélation repetabilitéstabilité
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Atelier de co-conception des systèmes de culture de la plateforme CA-SYS

2018

Durant deux jours, l'INRA de Dijon a reçu une quarantaine de personnes, agriculteurs en semis direct sous couvert, agriculteurs biologiques, expérimentateurs, conseillers, chercheurs, pour initier la conception des systèmes de culture qui seront testés sur la plateforme CA-SYS (https://www6.inra.fr/plateforme-casys/). la première journée est consacrée à des échanges avec le groupe afin de discuter des enjeux autour des systèmes agroécologiques, des expériences de chacun. Cette journée est l'occasion de construire une boite à outils pour la conception des systèmes, en réalisant un inventaire des techniques agroécologiques selon des services attendus (Gestion des adventices, des maladies, des…

[SDV] Life Sciences [q-bio]agriculture biologiqueatelier de co-conception[ SDV ] Life Sciences [q-bio][SDV]Life Sciences [q-bio]demarche participativeagroécologieagriculture de conservation
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Co-design and test of biodiversity-based pesticide-free Conservation Agriculture in the long-term CA-SYS platform in France

2022

The French National Institute for Agricultural Research (INRA) has established an ambitious experimental infrastructure (the CA-SYS platform) in autumn 2018 after 5 years of co-design with farmers, crop advisors and researchers. CA-SYS covers an area of 125ha divided into 42 fields. The originality of CA-SYS is that it is explicitly conceivedfor the design and evaluation of biodiversity-based and pesticide-free agroecological systems across agriculturallyrealistic scales. An agroecological system will comprise a matrix of fields of one (or a few) cropping systems over anumber of years interacting with adjacent semi-natural habitats (hedges, grass margin strips, flower strips). Thisspatio-te…

[SDV] Life Sciences [q-bio]conservation agriculturecrop diversificationconservation tillagecropping system designmulticriteria assessment
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Are No-Till Herbicide-Free Systems Possible? A Simulation Study

2022

Conservation agriculture (CA) allows farmers to reduce costs and enhance soil health, buttends to increase either weed infestation and associated crop yield loss, and/or herbicide use.We aimed to investigate how much tillage contributes to reducing weed infestation and yieldloss, and which systems and weed species are the most affected if tillage is deleted. Wecollected farming practices on 395 arable cropping systems from Spain and France, andsimulated them over 30 years and with 10 weather repetitions, using FLORSYS. This processbased model (Colbach et al., 2021, Field Crops Res 261:108006) simulates daily multi-speciesweed floras and crop canopies from cropping systems and pedoclimate ov…

[SDV] Life Sciences [q-bio]conservation agriculturemodel[SDV]Life Sciences [q-bio]yield lossconservation agriculture weed yield loss biodiversity simulation modelsimulationweedbiodiversityFrontiers in Agronomy
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Traits de réponse de la flore adventice à la mise en place du semis direct sous couvert

2013

Conservation Agriculture is designed to deliver more sustainable cropping systems by preserving agricultural soils with tillage abandonment. However, knowledge on the impacts of Conservation Agriculture adoption on weed infestation level and potential shifts in the composition of weed communities appears low and contradictory. We used a trait-based approach to investigate whether there are shifts in values of a set of traits within weed communities following the adoption of Direct Drilling with cover-crop (DD) which is one of the Conservation Agriculture practices. Weed surveys were conducted across a range of times since conversion to DD in 52 winter wheat fields located in north-eastern F…

[SDV] Life Sciences [q-bio]traits fonctionnels[ SDV ] Life Sciences [q-bio]non labour[SDV]Life Sciences [q-bio]agriculture de conservationRLQmauvaises herbes
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Harnessing the biodiversity value of Central and Eastern European farmland

2015

A large proportion of European biodiversity today depends on habitat provided by low‐intensity farming practices, yet this resource is declining as European agriculture intensifies. Within the European Union, particularly the central and eastern new member states have retained relatively large areas of species‐rich farmland, but despite increased investment in nature conservation here in recent years, farmland biodiversity trends appear to be worsening. Although the high biodiversity value of Central and Eastern European farmland has long been reported, the amount of research in the international literature focused on farmland biodiversity in this region remains comparatively ti…

[SDV]Life Sciences [q-bio]BiodiversityEuropean unionAccession[SHS]Humanities and Social SciencesAgricultural landAgricultural intensification; agri-environment schemes; common agricultural policy; European Union; high nature value farmlandspecies richnessintensificationmedia_common2. Zero hungerhigh nature value farmlandagri-environment schemesEcologyconservationCommon agricultural policyPE&RCcommon agricultural policyEastern europeanEcosystems ResearchAgri-environment schemesbuntings miliaria-calandra1181 Ecology evolutionary biologyeu accessionDierecologieAnimal EcologyCommon Agricultural PolicyHigh nature value farmlandResource (biology)agri environment schemesEnvironmental science4111 AgronomyAgricultural intensification agri-environment schemes common agricultural policy European Union high nature value farmlandmedia_common.cataloged_instanceEuropean unionland-use intensity/dk/atira/pure/core/keywords/biologyEcology Evolution Behavior and Systematics1172 Environmental scienceseuropean unionbusiness.industryAgricultural intensificationbird populationsagri-environmental measuresmember states15. Life on landMedio AmbienteAgricultureWildlife Ecology and Conservation570 Life sciences; biologyagricultural intensificationbusiness
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Diversity and complexity of microbial communities from a chlor-alkali tailings dump

2015

Abstract Revegetation of the tailings dumps produced by various industrial activities is necessary to prevent dust storms and erosion and represents a great challenge for ecological restoration. Little is known about the microbial colonisation and community structure of revegetated tailings following site exploitation. Here, we report the sequencing of 16S rRNA and internal transcribed spacer (ITS) fungal RNA gene amplicons from chlor-alkali residue and from an adjacent undisturbed soil to define the composition and assembly of the rhizosphere microbial communities. After quality filtering, a total of 72,373 and 89,929 bacterial sequences and 122,618 and 111,209 fungal sequences remained fo…

[SDV]Life Sciences [q-bio]Microbial networks010501 environmental sciences01 natural sciences[ SDE ] Environmental SciencesElectric network topologyHebelomaBacteria (microorganisms)ComputingMilieux_MISCELLANEOUS2. Zero hunger0303 health sciencesRhizosphereBar codingEcologyEcologySoil physico-chemical propertiesFungal communityRhizosphere microbial communitiesAnthropogenic soilsSoil typeTailingsTailings dumpSoil conservationBacterial communityGammaproteobacteriaComplex networksMicroorganismsSoil ScienceBiologyMicrobiology03 medical and health sciencesRevegetationMicrobial ecologyPseudomonasGammaproteobacteriaBotanyDominance (ecology)RevegetationEcological restoration030304 developmental biology0105 earth and related environmental sciencesBar-codingGeoporaBacteria15. Life on landbiology.organism_classificationMicrobial population biologyInternal transcribed spacers13. Climate actionRNA
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Economies d'agglomération et configurations spatiales dans les espaces ruraux

1997

The question to be addressed here is that of the agglomeration/dispersion forces that are likely to account for the location of people and jobs in rural areas and the way they explain spatial patterns in rural areas depending on urban influence. Economic geography models may provide suitable tools with which to investigate the organization of rural areas. We first review these models, focusing on dispersion forces, which rest basically on land consumption and transport costs. We suggest then a set of hypotheses concerning the main forces at work in rural areas. Intensity of agglomeration economies is hypothesized to be related to the urban size, which in turn induces increasing land rents a…

[SDV]Life Sciences [q-bio]rural areasGeography Planning and Development0211 other engineering and technologies02 engineering and technologyrentes foncières[SHS]Humanities and Social Scienceséconomie géographiqueLOCALISATIONcommuting11. SustainabilityEconomics[ SHS.ECO ] Humanities and Social Sciences/Economies and financesEconomic geography[SHS.ECO] Humanities and Social Sciences/Economics and FinanceComputingMilieux_MISCELLANEOUSmigrations alternantesmedia_commoneducation.field_of_studydensityEconomies of agglomeration05 social sciencesEconomic renttransport planning1. No poverty021107 urban & regional planningDiseconomies of scale[SHS.ECO]Humanities and Social Sciences/Economics and Finance[SDV] Life Sciences [q-bio]service locationspatial configuration8. Economic growth[SHS] Humanities and Social Sciences050703 geographyrural planningagglomeration economiesespaces rurauxeconomic geographyurban spreadmedia_common.quotation_subjectétalement urbainPopulation0507 social and economic geographyland rentsbassins d'emploiEnvironmental Science (miscellaneous)Environnement espace et sociétéurban planningUrban planningeducationTransportation planningeconomic theoryeconomicscountryside conservationSpatial ecologylabor market areasEconomic systemRural area
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