Search results for "EED"

showing 10 items of 5952 documents

Simulateur de pulvérisation localisée d’herbicide

2019

Site-specific spraying is a technological lever to reduce the herbicide amount used in the case of chemical control of weeds. At the present time, detection and control technologies are available to apply herbicide only where weeds are present and thus provide an alternative to homogeneous application of chemicals on the entire surface of the field. In order to assess this practice, a digital simulator has been developed combining virtual infestation maps with different theoretical sprayer configurations. Simulations were used to localize herbicide applications and quantify herbicide reduction based on the spatial distribution of weeds and the width of independent spray units (boom sections…

[SDE] Environmental Sciences[SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/Agronomywidth sectionspray patternadventice;largeur de tronçon;répartition transversale;réduction d’herbicide;sous-dosage;weed;width section;spray pattern;herbicide reduction;under-application[SDV]Life Sciences [q-bio]sous-dosage[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/Agronomy[SDV.SA.STA] Life Sciences [q-bio]/Agricultural sciences/Sciences and technics of agricultureréduction d’herbicideAdventicelargeur de tronçonrépartition transversale[SDV] Life Sciences [q-bio]herbicide reduction[SDV.SA.STA]Life Sciences [q-bio]/Agricultural sciences/Sciences and technics of agriculture[SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyunder-applicationweed
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Spray droplet characteristics measured using high speed imaging techniques

2016

Presented at Conference International Advances in Pesticide Application (IAPA), Barcelone, ESP (2016-01-13 - 2016-01-15).; International audience; Spray droplet characteristics are important features of an agricultural spray. The objective of this study is to measure the droplet size for different types of hydraulic spray nozzles using a developed backlighted image acquisition system and image processing technique. An in-focus droplet criterion was established to decide whether a droplet is in focus and can be measured in an accurate way. Tests included five different nozzles (Albuz ATR orange and red, TeeJet XR 110 01, XR 110 04 and Al 110 04).

[SDE] Environmental Sciences[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciences[SDV]Life Sciences [q-bio]droplet generatorspray characterisationdroplet size[ SPI.SIGNAL ] Engineering Sciences [physics]/Signal and Image processing[SDV] Life Sciences [q-bio][SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyhigh speed imaging[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processing[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciences[SPI.SIGNAL] Engineering Sciences [physics]/Signal and Image processing
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How does sulfur deficiency modulate pea response to water stress? Impact on early developing and mature seeds

2018

National audience; Pea (Pisum sativum L.) produces seeds rich in proteins but yield and quality remain unstable across years due to various stresses. Sulfur (S) deficiency and water stress are two abiotic stresses that interact in the current context of climate change and low-input practices, and recent studies suggest an important role for sulfate transport and metabolism in the plant response to water stress. To investigate the interplay between sulfur nutrition and the water stress response, sulfate-deprived pea plants were subjected to a 9-days period of water stress during the early reproductive phase. While water stress did not impact seed yield, sulfur deficiency alone or combined wi…

[SDE] Environmental Sciences[SDV]Life Sciences [q-bio]food and beveragesdroughtsulfur deficiencysulfur nutrition[SDV] Life Sciences [q-bio]shotgun proteomics[SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biologyseed embryogenesis[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyseed qualityComputingMilieux_MISCELLANEOUSseed embryogenisis
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Non-target-site-based resistance to herbicides: what do we know, and how can we know more?

2013

Non-target-site-based resistance (NTSR) includes all types of mechanisms conferring resistance to herbicides that do not involve modifications at the herbicide target site. NTSR can be the most widespread type of resistance in a weed species, especially in grasses. NTSR can confer resistance to herbicides with different modes of action. Despite the threat it sets upon chemical weed control, NTSR is still the dark side of resistance to herbicides. In particular, NTSR genetics is poorly known. As a consequence, there are no quick, molecular-based, NTSR diagnostic tools, which hampers the development of tactics aiming at delaying NTSR selection in the field. The lack of data regarding NTSR gen…

[SDE] Environmental Sciences[SDV]Life Sciences [q-bio]fungireviewfood and beveragesnon-target-site-based resistanceomics[SDV] Life Sciences [q-bio]herbicide[SDE]Environmental Sciencesevolution[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologymetabolismweed
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Stock de semences versus relevé de flore : comment mesurer les évolutions de la flore adventice liées à des modifications de systèmes de culture ?

2019

Le suivi des changements de la composition adventice est une préoccupation majeure lors de la mise en place de nouveaux systèmes de culture. Il se pose toutefois des questions sur la méthodologie à mettre en place pour ce type de travail. L’étude du stock de semences qui représente en théorie la flore potentielle, semble s’imposer comme la façon la plus évidente de caractériser les communautés de mauvaises herbes. Toutefois cette méthode est lourde à mettre en place et nécessite un nombre d’échantillons important. La flore adventice d’une centaine de parcelles conduites en semis direct sous couvert a été étudiée au travers de deux méthodes : un relevé de flore réalisé au printemps et un éch…

[SDE] Environmental Sciences[SDV]Life Sciences [q-bio]potential floradirect seeding under coverflore potentielle[SDV] Life Sciences [q-bio]sampling methodsweed species[SDE]Environmental Sciencessemis direct sous couvertmauvaise herbe[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyflore levéeemerged floraméthodes d’échantillonnage
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The roles of the embryo-surrounding tissues in regulating Medicago truncatula seed filling

2011

National audience

[SDE] Environmental Sciences[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineering[SDV]Life Sciences [q-bio]legume[SDV.IDA] Life Sciences [q-bio]/Food engineeringEndosperm[SDV] Life Sciences [q-bio][SDE]Environmental Sciences[SDV.IDA]Life Sciences [q-bio]/Food engineering[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biology[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineeringseed fillingComputingMilieux_MISCELLANEOUSseed developmenttranscription factor
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Gérer l’ambroisie à feuilles d’armoise en agriculture biologique

2019

Managing common ragweed in organic agriculture Common ragweed (Ambrosia artemisiifolia L.) is an invasive plant native to North America, capable of developing rapidly in many environments: agricultural fields, roadsides, construction sites, wastelands, riverbanks. Pollen, emitted at the end of summer, causes strong allergic reactions in sensitive people (rhinitis, asthma, etc.). It is also a threat to agriculture, as this annual plant can cause significant yield losses if it is not controlled. A study was conducted to analyze the practices of organic farmers in arable crop systems to control ragweed, as well as their level of knowledge of this plant according to their location. The results …

[SDE] Environmental Sciencesagroecology[SDV]Life Sciences [q-bio]agroécologieAmbrosia artemisiifolia;gestion intégrée;agroécologie;prévention;désherbage mécanique;integrated weed management;agroecology;prevention strategy;mechanical weedingprevention strategymechanical weeding[SDV] Life Sciences [q-bio]préventionintegrated weed management[SDE]Environmental Sciencesgestion intégrée[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologydésherbage mécanique
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Reduction of nitrate leaching: what is the contribution of the residual weed flora?

2018

International audience; Integrated crop protection tolerates residual weeds if they are not harmful for crop production. Weeds are often solely considered as a pest, causing crop yield loss, harvest pollution, diseases … However, they may also provide beneficial services for agroecosystems, promoting plant biodiversity and feeding other organisms potentially beneficial to crop production (pollinators, carabids…). The role of residual weed flora as nitrate catchers, during summer fallow, has however rarely been assessed. Yet, some weed species are known for their high potential to take up soil nitrogen. The present study aimed to (1) develop an indicator to account for the potential benefici…

[SDE] Environmental Sciencesagroecology[SDV]Life Sciences [q-bio]funginitrate catcherfood and beveragesrespiratory systemcropping systemnitrate leachingparasitic diseases[SDE]Environmental Sciencesweeds[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyComputingMilieux_MISCELLANEOUS
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Evolution des problèmes malherbologiques à l’adoption du semis direct sous couvert

2019

Le semis direct sous couvert regroupe un ensemble de pratiques appliquées simultanément en vue de répondre à trois principes : réduction totale du travail du sol, couverture optimale des sols et diversification de la succession culturale. Cette approche représente, en France, une stratégie innovante qui semble convaincre de plus en plus d’agriculteurs. En se privant du travail du sol, la gestion des adventices en semis direct sous couvert devient plus complexe, ce qui limite l’adoption généralisée du semis direct sous couvert. Afin d’éclairer les problèmes malherbologiques rencontrés en semis direct sous couvert, un questionnaire en ligne à destination des agriculteurs a été diffusée en Fra…

[SDE] Environmental Sciencesagronomic transition phaseweed community changeflore adventice[SDV]Life Sciences [q-bio]enquêtechangement de flore[SDV] Life Sciences [q-bio]questionnaire en ligne[SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyonline surveytransition agronomiqueweed problems
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Editorial Highlight. Discover Cambridge. Will frost-resistant weeds benefit from climate change ? About The paper ‘Relative success of frost-resistan…

2021

[SDE] Environmental Sciencesarable fieldsclimate changeweedsadaptationwild oat
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