Search results for "GLYPHOSATE"

showing 10 items of 72 documents

Gestion des adventices en semis direct : effet des couverts et de leur conduite

2019

National audience; Un essai pluriannuel en semis-direct a testé l’effet de couverts (quatre mélanges comparés à du sol nu) sous divers niveaux de ressources (en azote et en eau) sur la flore adventice et sur les cultures suivantes de la succession (orge de printemps puis lin d'hiver) conduites sans fertilisation et sans désherbage. Une augmentation du nombre d’espèces cultivées dans un mélange ne permet pas de mieux concurrencer les adventices. Un apport d’azote au semis permet au couvert de produire plus de biomasse de couvert mais ne réduit pas le salissement dans le couvert. Comparé à l’action du gel ou au roulage des couverts sur le gel, la destruction chimique du couvert (glyphosate) a…

[SDV] Life Sciences [q-bio][SDE] Environmental Scienceseffet précédentglyphosatediversité spécifique[SDV]Life Sciences [q-bio][SDE]Environmental Sciencessemis-directcompétitionbiomasse[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyCouvert;semis-direct;compétition;biomasse;effet précédent;glyphosate;diversité spécifique
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Usages et alternatives au glyphosate dans l’agriculture française. Rapport Inra à la saisine Ref TR507024

2017

Suite à la lettre de saisine des Ministres de l’Agriculture et de l’Alimentation, de la Transition écologique et solidaire, de la Santé, et de l’Enseignement Supérieur, de la Recherche et de l'Innovation du 2 novembre dernier l’Inra a remis le 30 novembre 2017 aux Ministres concernés son rapport sur les usages et les alternatives au glyphosate dans l’agriculture française. Ce rapport répond à plusieurs objectifs : analyser les usages du glyphosate, identifier les alternatives possibles avec leurs incidences économiques et organisationnelles ainsi les difficultés spécifiques à certaines filières ou modes de production. Il propose enfin des mesures d’accompagnement de la transition vers des s…

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesglyphosateherbicide[SDV]Life Sciences [q-bio][SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyétude[SHS] Humanities and Social Sciencesprotection des culturespesticide[SHS]Humanities and Social Sciences
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Gestion des adventices en semis-direct : l’effet du couvert varie selon les ressources du sol et le mode de destruction du couvert

2019

National audience; Un essai pluriannuel en semi-direct a testé l’effet des couverts sur la flore adventice et sur les cultures suivantes conduites sans fertilisation et sans désherbage. Une augmentation du nombre d’espèces cultivées dans un mélange ne permet pas de mieux concurrencer les adventices. Un apport d’azote au semis permet au couvert de produire plus de biomasse de couvert mais ne réduit pas le salissement dans le couvert. Comparé à l’action du gel ou au roulage des couverts sur le gel, la destruction chimique du couvert (glyphosate) a réduit l’infestation des adventices dans la culture suivante. Les couverts ne peuvent pas à eux seul assurer une régulation complète des adventices…

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesinterculturerégulation biologiqueglyphosate[SDV]Life Sciences [q-bio][SDE]Environmental Sciencescompétition[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologydiversité
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Weed dynamic in Conservation Agriculture: experiences from the Isite-BFC regional network of farmers and cropping system experiments on agroecology i…

2021

ISBN: 978-84-09-37744-2; International audience; Conservation Agriculture (CA) relies on three fundamental pillars: diversified crop rotation, permanent soil coverand no soil disturbance. Weed control relies on few tools because pre-sowing tillage, pre-emergence herbicidespraying and in-crop mechanical weeding are not possible. This could lead to drastic changes in weed communitiesand quickly after the transition to CA, with fewer annual species (weed seeds remain on the soil surface, a conditiondeemed to be unfavourable to weed germination) and higher perennial species. However, the implementation ofCA principles could be transcribed into a wide array of cropping systems because the object…

[SDV] Life Sciences [q-bio]glyphosate[SDV]Life Sciences [q-bio]weed compositionfamers’ networkparticipative researchweed diversity
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ENGAGED: System design of direct seedings under permanent cover crop without glyphosate

2022

Direct seeding under permanent cover crop (SDCV) corresponds to sow a crop in a multiyear vegetal cover crop(often clover) without soil perturbation. It is an emblematic technique of Conservation Agriculture whose agronomicand environmental interests are multiple because of the special attention paid to soils. However, the issue of weedcontrol and permanent cover crop control is central to SDCV culture systems. The use of non-selective herbicide suchas glyphosate is the most common technical lever for weed and cover crop management. Glyphosate is in the hotseat since the President of France announced its banning from 2023. It becomes necessary to find alternatives for thesustainability of t…

[SDV] Life Sciences [q-bio]glyphosatedirect Seedingweeds controlco-designpermanent covercroplow herbicidefarmers innovation tracking
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Predicting pesticide biodegradation potential from microbial community composition: new tools for bioremediation

2022

Bioaugmentation is receiving increasing attention as a green technology to treat contaminatedareas by inoculating specific biodegrading microorganisms. However, our understanding of therole of microbial community composition and structure in the expression of contaminantdegradation potential is yet to improve. It could help making wise choice for microorganisms –community or specific strain – to be inoculated in contaminated soils with consideration to theirindigeneous microbiota.Here we tried to predict the microbial degradation of two herbicides, glyphosate andisoproturon by means of penalized regression and machine learning methods routinely used ingenomic selection. To this end, we cond…

[SDV] Life Sciences [q-bio]glyphosateisoproturonmicrobial community compositionmicrobial degradationgenomic selection
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Strategic tillage in Conservation Agriculture : consequences on weed communities and winter wheat productivity

2021

In Europe, Conservation Agriculture is currently challenged by higher weed pressure, potential glyphosate ban andreduced crop yield. The introduction of strategic tillage could be a viable option to diversify selection pressures onweeds and increase crop yield. Three types of fallow management (ploughing (CT), reduced tillage (RT), no-till withglyphosate (NT)) were compared on four fields after 17 years of no-plough, which ended with 7 years of NT. Weeddensity, weed composition, crop productivity and yield components were assessed in the following winter wheat.The reintegration of tillage after 17 years of Conservation Agriculture proved to be a major driver of weed communities before weedi…

[SDV] Life Sciences [q-bio]glyphosateweed compositionweed diversityyield componentsstrategic tillage
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La résistance aux herbicides en viticulture

2017

SPEGESTADCT1 INRA; Le premier cas de résistance au glyphosate (groupe HRAC G) en France concerne l'ivraie raide (Lolium rigidum). Il a été découvert dans le Gard sur une parcelle de vigne et confirmé par des tests de laboratoire à l'INRA de Dijon en 2006. Depuis, cette résistance a été détectée dans 5 régions viticoles (Pays de Loire, Charente, Aquitaine, Midi-Pyrénées et Languedoc-Roussillon) et déclarée par la firme Mosanto. Dans le cadre de la gestion de cette résistance, un dispositif de surveillance a été mis en place. Il donne lieu à des prélèvements de graines sur le terrain dans des parcelles présentant des difficultés de désherbage du ray-grass. Les tests de résistance sont réalisé…

[SDV] Life Sciences [q-bio]herbicides[ SDV ] Life Sciences [q-bio][SDV]Life Sciences [q-bio]glyphosate (groupe HRAC G)résistancerecommandationsvignedésherbageinhibiteurs de l'ALS (groupe HRAC B)
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Herbicidal activity of derivatives of 9-aminofluoren-9-ylphosphonic acid

1991

A series of derivatives of 9‐aminofluoren‐9‐ylphosphonic acid (phosphonic analogues of morphactins) were synthesized and screened for herbicidal activity against Lepidium sativum, Cucumis sativus and Lycopersicon esculentum. Ethyl 9‐(N‐alkylamino)fluoren‐9‐yl(phenyl)phosphinates appeared to be equipotent with glyphosate and thus may be recognized as new lead compounds for further structural modifications.

biologyMorphactinsChemistryStereochemistryBiological activitybiology.organism_classificationApplied Microbiology and BiotechnologyLycopersiconLepidium sativumchemistry.chemical_compoundGlyphosateOrganic chemistryCucumisCucurbitaceaeSolanaceaePesticide Science
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Mode of action of herbicidal derivatives of aminomethylenebisphosphonic acid. Part II. Reversal of herbicidal action by aromatic amino acids

1997

The herbicidal action of N-pyridylaminomethylenebisphosphonic acids is accompanied by an impairment of anthocyanin biosynthesis. This suggests that they might act as inhibitors of some steps in aromatic amino acid biosynthesis. Herbicidal effects were reversed by aromatic amino acids using both bacterial and plant models, a finding that strongly supports this hypothesis. Structural features of these compounds suggest the sixth enzyme in the shikimate pathway 5-enol-pyruvoylshikimate-3-phosphate (EPSP) synthase as a possible target, since a strong structural similarity exists between aminomethylenebisphosphonic acid and an inhibitor of EPSP synthase, the herbicide glyphosate. This is, howeve…

chemistry.chemical_classificationaromatic metabolismStereochemistryN-Pyridylaminomethylenebisphosphonic acids; EPSP synthase; Herbicides; Glyphosate; Aromatic metabolismEPSP synthasePlant Science3-Phosphoshikimate 1-Carboxyvinyltransferasechemistry.chemical_compoundEnzymeherbicidesBiochemistrychemistryMechanism of actionBiosynthesisN-Pyridylaminomethylenebisphosphonic acidsglyphosatemedicineAromatic amino acidsShikimate pathwaymedicine.symptomMode of actionAgronomy and Crop ScienceEPSP synthaseJournal of Plant Growth Regulation
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