Search results for " Weed"

showing 10 items of 66 documents

Maize-based low-input cropping systems can provide effective weed control while ensuring crop productivity

2016

Conventional Maize Monoculture (MMConv) is now questioned for environmental reasons. During a five-year field experiment, yield and weed pressure of MMConv was compared to three low-input Cropping Systems (CS) : MMLI, a Low-Input Maize Monoculture; MMCT, a Conservation Tillage Maize Monoculture; Maize-MSW, Maize rotated with Soyabean and Wheat, all designed to reduce water pollution. In 2014 and 2015, weed-free zones were established on all CS. Weed biomass was higher in MMCT, especially for spring grasses and perennials. MMConv (11.3±1.1 T ha-1) and MMLI (10.6±2.3 T ha-1) had higher grain yields than MMCT (8.2±1.9 T ha-1). Finally, concerning yields observed in weed-free zones, MMCT yields…

[SDV] Life Sciences [q-bio]cropping system experimentdésherbage intégré des cultures[ SDV ] Life Sciences [q-bio]maïsintegrated weed management[SDV]Life Sciences [q-bio]weed competitionsystème de cultureimpact des adventicesmaize
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The role of models in management and conservation of weeds

2013

Session 7 - Options and perspectives in weed managementEASPEEcolDurCT1; Weeds are both a harmful crop pest and an important component of biodiversity. Moreover, herbicide use must be reduced to limit its impact on environment, and weed control must now combine numerous management techniques with partial efficiency aiming at preventing weed occurrence. Biological regulations of weeds by other biotic components could also contribute to control infestations. Thus, new cropping systems are needed, combining numerous techniques and aiming at both maximising weed-related biodiversity and minimising weed harmfulness.[br/]Weed dynamics models are increasingly used to design innovative cropping syst…

[SDV] Life Sciences [q-bio]model[ SDV ] Life Sciences [q-bio]integrated weed managementdecision aids[SDV]Life Sciences [q-bio]cropping systemsimulationbiodiversityweed
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What are the biological determinants of regeneration of perennial weeds? Effect of fragment weight and bud number on the regrowth of five perennial w…

2022

Perennial weeds have become an increasing problem with the reduction of herbicide use andtillage. Because of their capacity to regenerate from vegetative organs, such as roots andrhizomes, they must be controlled with different management techniques than annuals. Todate, few studies exist on this topic and farmers often lack solutions to control perennials intheir cropping systems. Management strategies must focus on the depletion of theregenerative organ reserves to hamper the production of new shoots. However, there is aneed for a better understanding of below-ground organs physiology and the determiningfactors of their regrowth capacities.Our aim was to assess the number of shoots and th…

[SDV] Life Sciences [q-bio]number of budsvegetative organsperennial weeds regenerationfragment size
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New Decision-making Tools for sustainable Weed Control

2021

En 2017, le Conseil fédéral suisse a adopté le pland’action visant à la réduction des risques et à l’utilisation durable des produits phytosanitaires. L’une desmesures de ce plan est «la renonciation complète oupartielle aux herbicides». Or, celle-ci n’est réalisablequ’au travers d’une stratégie de gestion globale desadventices, à l’échelle de la culture et de la rotation. Eneffet, les adventices sont nuisibles pour la culture enplace l’année en cours, mais aussi de manière pluriannuelle par le biais de leur stock semencier. La mise enœuvre de mesures préventives et curatives basées surles principes de la protection intégrée nécessite denouveaux outils d’aide à la décision. Des indicateursd…

[SDV] Life Sciences [q-bio]weed thresholdsintegrated weed managementcurative weed controlpreventive repairharmfulness of weeds
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The role of models for multicriteria evaluation and multiobjective design of cropping systems for managing weeds

2014

agroecology[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesmodelintegrated weed management[SDV]Life Sciences [q-bio][SDE]Environmental Sciencesdecision aid[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologycropping systemweedbiodiversity
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Modelling cropping system effects on branched broomrape dynamics in interaction with weeds

2018

International audience; Branched broomrape, Phelipanche ramosa (L.) Pomel, is a parasitic plant which infects many crop and weed species. As a holoparasite, it entirely relies on host resources to survive and reproduce. It is a major pest in oilseed rape in France. Its management has to be thought as a part of the overall weed management because infected weeds either must be killed to limit crop infection or can be used to stimulate suicidal parasite germinations. In order to design efficient pest management strategies, we modelled the effects of cropping systems on P. ramosa dynamics in interaction with weeds in a model called PHERASYS. PHERASYS functions and parameters were based on the l…

agroecologyparasitic plant[SDE] Environmental Sciencesmodel[SDV]Life Sciences [q-bio]fungifood and beveragescropping system[SDV] Life Sciences [q-bio]integrated weed management[SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyphelipanche ramosa (L.) pomel
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Impact de la conduite des cultures intermédiaires sur la flore adventice : résultats de l’analyse de 31 essais

2022

Data of 31 field trials were analysed to quantify the impact of cover crops grown during summerfallow on weeds during this period. Results show that weed abundance at the date of cover-cropdestruction greatly varies between experimental locations which differed in terms of pedoclimate,previous crop etc. Cover-crop above-ground biomass did not impact weed plant density. However,weed above-ground biomass decreased with increasing cover-crop biomass. Cover-crop speciesgreatly differed in their ability to reduce weed biomass, according to their own biomass, their speedof soil coverage at early stages and their above-ground plant morphology. Cover crops with highlevels of biomass and rapid soil …

culture intermédiairesoil coverage[SDV] Life Sciences [q-bio]abundancecouverture du sol weedbiomassabondancebiomassecover cropadventice
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A Noxious Weed Ambrosia artemisiifolia L. (Ragweed) as Sustainable Feedstock for Methane Production and Metals Immobilization

2023

Plants of the Ambrosia genus are invasive and cause many ecological problems, including the oppression of the growth of agricultural crops and native plants, land depletion, and the production of strong allergens. The use of weeds as a sustainable feedstock for biogas production, either methane or hydrogen, is a promising way to fulfill the energy needs of the current generation, eliminate the depletion of non-renewable carbon resources, and preserve the ecosystem degradation caused by invasive species impacts. A diversified microbial community was used as inoculum and Ambrosia artemisiifolia L. biomass as a substrate for anaerobic degradation and methane production. In this regard, the dev…

diversified microbial communityRenewable Energy Sustainability and the Environment<i>Ambrosia artemisiifolia</i>; microbial degradation of noxious weeds; copper; sewage detoxification; heavy metals; methane production; syntrophic association of bacteria; strict anaerobes; diversified microbial communityGeography Planning and DevelopmentBuilding and ConstructionManagement Monitoring Policy and Lawmethane productioncopperstrict anaerobessyntrophic association of bacteriaheavy metalsAmbrosia artemisiifoliamicrobial degradation of noxious weedssewage detoxificationSustainability
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Nitrogen uptake and nitrogen fertilizer recovery in old and modern wheat genotypes grown in the presence or absence of interspecific competition

2015

Choosing genotypes with a high capacity for taking up nitrogen (N) from the soil and the ability to efficiently compete with weeds for this nutrient is essential to increasing the sustainability of cropping systems that are less dependent on auxiliary inputs. This research aimed to verify whether differences exist in N uptake and N fertilizer recovery capacity among wheat genotypes and, if so, whether these differences are related to a different competitive ability against weeds of wheat genotypes. To this end, 12 genotypes, varying widely in morphological traits and year of release, were grown in the presence or absence of interspecific competition (using Avena sativa L. as a surrogate wee…

food.ingredientField experimentmedia_common.quotation_subjectWeed suppression abilityGrowing seasonnitrogen assimilation capacityPlant Scienceengineering.materialBiologylcsh:Plant cultureCompetition (biology)old genotypesNutrientfoodlcsh:SB1-1110Original Researchmedia_commonModern varietiesdurum wheat old genotypes modern varieties nitrogen assimilation capacity weed suppression ability weed competition 15N fertilizer recoveryWeed competitionfood and beveragesdurum wheatInterspecific competitionSettore AGR/02 - Agronomia E Coltivazioni ErbaceeAvenaAgronomyengineeringFertilizerWeed15N fertilizer recovery
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Anaerobic Degradation of the Invasive Weed Solidago canadensis L. (goldenrod) and Copper Immobilization by a Community of Sulfate-Reducing and Methan…

2023

The weed Solidago canadensis L. poses a global threat to the environment as it spreads uncontrollably on roadsides, in forests, fields, meadows, and farmland. Goldenrod emits toxic substances that suppress other plants on the site, displacing wild ones. Thus, goldenrod conquers huge areas very quickly. The use of herbicides and mechanical methods does not solve the problem of the spontaneous spread of goldenrod. On the other hand, many scientists consider goldenrod as a valuable source of biologically active substances: flavonoids, phenolic compounds, vitamins, etc. In this study, we consider Solidago plants as a promising, free (cheap), and renewable substrate for the production of methane…

goldenrodEcology<i>Solidago canadensis</i> L.; goldenrod; carbohydrate content; anaerobic degradation of invasive weeds; copper; methane production; methane-producing bacteria; sulfate-reducing bacteriacoppersulfate-reducing bacteriaSolidago canadensis L.Plant Sciencemethane-producing bacteriaanaerobic degradation of invasive weedsEcology Evolution Behavior and Systematicsmethane productioncarbohydrate contentPlants; Volume 12; Issue 1; Pages: 198
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