Search results for "Cropping"

showing 10 items of 150 documents

Sustainable production of fennel and dill by intercropping

2008

Intercropping is claimed to be one of the most significant cropping techniques in sustainable agriculture, and much research and many reviews attribute to its utilization a number of environmental benefits, from promoting land biodiversity to diversifying agricultural outcome. In this sense, intercropping is thought to be a useful means of minimizing the risks of agricultural production in many environments, including those typical of under-developed or marginal areas. In order to validate this hypothesis in a representative area of the semiarid Mediterranean environment, we evaluated the possibility of growing dill and fennel, both belonging to the family Apiaceae, in temporary intercroppi…

0106 biological sciences[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesEnvironmental EngineeringfennelBiomassInteraction01 natural sciencesdillYield (wine)Anethum graveolens L.Cropping systemComputingMilieux_MISCELLANEOUSMathematics2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environment[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesbiologybusiness.industryIntercropping04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationSettore AGR/02 - Agronomia E Coltivazioni Erbacee[SDV.EE] Life Sciences [q-bio]/Ecology environmentAgronomyAgricultureSemi-arid climatemedicinal and aromatic plant040103 agronomy & agriculture0401 agriculture forestry and fisheriesFoeniculum vulgare Mill.businessCroppingintercroppingAgronomy and Crop Science010606 plant biology & botany
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Nonchemical weeding of medicinal and aromatic plants

2013

International audience; Medicinal and aromatic plants are major crops of domestic and industrial interest. Medicinal and aromatic plants are increasingly organically grown to enhance profitability. However, the presence of weeds may lead to a decrease in both yield and quality. Therefore, nonchemical methods of weed control are needed. In this study, mechanical weeding, flaming, stale seedbed, and biodegradable mulch were tested from 2003/2004 to 2006/2007 on coriander, fennel, and psyllium. Biomass and seed yield were measured. The biomass of weeds remaining at harvest was also measured. Results show a high sensitivity of coriander, fennel, and psyllium crops to the presence of weeds. Stal…

0106 biological sciences[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesEnvironmental Engineeringfood.ingredientFennelCorianderBiomassBiology01 natural sciencesPsylliumCropfoodYield (wine)parasitic diseasesCoriandrum sativum L.Medicinal and aromatic plants CorianderSeedbedPlantago psyllium L.2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environmentfungiSustainable agricultureSowingfood and beverages04 agricultural and veterinary sciencesrespiratory systemWeed controlPsylliumSettore AGR/02 - Agronomia E Coltivazioni ErbaceeAgronomyCropping techniques040103 agronomy & agriculture0401 agriculture forestry and fisheriesFoeniculum vulgare Mill.Medicinal and aromatic plantsAgronomy and Crop ScienceMulch010606 plant biology & botanyMedicinal and aromatic plants Coriander; Coriandrum sativum L.; Fennel; Foeniculum vulgare Mill.; Psyllium; Plantago psyllium L.; Sustainable agriculture; Cropping techniques
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Spatio-temporal pattern of Pentastiridius leporinus migration in an ephemeral cropping system

2010

International audience; * 1 Cixiid planthoppers (Hemiptera: Fulgoromorpha: Cixiidae) are considered to be important economic pests because of their ability to transmit phloem-restricted prokaryotes causing emerging plant diseases worldwide. However, little information is available on the biology and ecology of such species. This is the case for Pentastiridius leporinus (Linnaeus), a cixiid planthopper reported to live on common reed across Countries of Central and Northern Europe. However, in the east of France, the same planthopper species appears to complete its life cycle in the sugar beet-wheat cropping system and has been repeatedly shown to transmit prokaryotic plant pathogens that ar…

0106 biological sciences[SDV]Life Sciences [q-bio]WHEATCIXIIDAEPLANTHOPPERPENTASTIRUDIUS LEPORINUS01 natural sciencesCropPlanthopperCropping systemNymphSugarSYNDROME "BASSES RICHESSES"2. Zero hungerbiologyEcologyfungifood and beveragesForestry15. Life on landbiology.organism_classificationCixiidaeKRIGINGHemiptera010602 entomologyInsect ScienceEMERGING DISEASESugar beetGEOSTATISTICSAgronomy and Crop ScienceGEOGRAPHIC INFORMATION SYSTEM (GIS)SUGAR BEET010606 plant biology & botany
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Soil and fertilizer phosphorus : effects on plant P supply and mycorrhizal development

2005

Plants require adequate P from the very early stages of growth for optimum crop production. Phosphorus supply to the crop is affected by soil P, P fertilizer management and by soil and environmental conditions influencing P phytoavailability and root growth. Phosphorus uptake in many crops is improved by associations with arbuscular mycorrhizal fungi. Cropping system and long-term input of P through fertilizers and manures can influence the amount and phytoavailability of P in the system and the development of mycorrhizal associations. Optimum yield potential requires an adequate P supply to the crop from the soil or from P additions. Where early-season P supply is low, P fertilization may…

0106 biological sciences[SDV]Life Sciences [q-bio]chemistry.chemical_elementGrowing seasonPlant ScienceHorticultureBiologyengineering.material01 natural sciencesCropHuman fertilizationYield (wine)Cropping system2. Zero hungerfertilityPhosphorusCrop yieldmicrobiology04 agricultural and veterinary sciences15. Life on landcolonization[SDV] Life Sciences [q-bio]Agronomychemistry040103 agronomy & agricultureengineering0401 agriculture forestry and fisheriesFertilizerAgronomy and Crop Science010606 plant biology & botany
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IPSIM-Cirsium, a Qualitative Expert-Based Model to Predict Infestations of Cirsium arvense

2021

Throughout Europe, Cirsium arvense is the most problematic perennial weed in arable crops, whether managed under organic or conventional agriculture. Non-chemical control methods are limited with partial efficacy. Knowledge is missing on their effect across a wide gradient of cropping systems and pedoclimates. To achieve effective Cirsium arvense management ensuring crop productivity while limiting the reliance of cropping systems on herbicide, expert-based models are needed to gather knowledge on the effect of individual levers and their interactions in order to (i) design and assess finely tuned combinations of farming practices in different pedoclimates and (ii) support decisions for Cir…

0106 biological sciencescropping practicesAgricultural engineeringlcsh:Plant culture01 natural sciencessoillcsh:AgricultureCirsiumlcsh:SB1-1110Cirsium arvenseclimateAgroecologyIPSIM-CirsiumMathematics2. Zero hungerbiologyCirsium arvensebusiness.industrylcsh:SGeneral MedicineCanada thistle04 agricultural and veterinary sciences15. Life on landWeed controlbiology.organism_classificationinjury profile SIMulatorintegrated weed managementAgriculture[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesqualitative modelingArable landbusinessWeedCroppingqualitative modelling010606 plant biology & botanyFrontiers in Agronomy
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Carbon partitioning in a walnut-maize agroforestry system through arbuscular mycorrhizal fungi

2020

National audience; In tree-based intercropping systems, roots of trees and crops are interacting and could influence ecosystem services provided by soil microorganisms. Here, the analysis of diversity of arbuscular mycorrhiza fungi (AMF) associated with roots of walnut and maize reveals differences. Of interest, Funneliformis genus is mainly associated with maize roots, and one OTU related to an uncultured Glomus, might form a common mycorrhizal network linking roots of both plants. In addition, the analysis of 13C of mycelium living in the surrounding environment of roots, suggest that part of the carbon derived from walnut trees could be transferred to maize plants. Our results suggest th…

0106 biological sciencesfood.ingredientwalnutSoil Sciencestable isotopesPlant Sciencemaize01 natural sciencesagroforestryNutrientfoodFunneliformisEcosystemcarbon transferMycorrhizal networkGlomusMycelium2. Zero hungercommon mycorrhizal networkbiologyAgroforestryIntercropping04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationArbuscular mycorrhiza[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesAgronomy and Crop Science010606 plant biology & botany
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GeneSys-Beet: A model of the effects of cropping systems on gene flow between sugar beet and weed beet

2008

A weedy form of the genus Beta, i.e. Beta vulgaris ssp. vulgaris (hence ''weed beet'') frequently found in sugar beet is impossible to eliminate with herbicides because of its genetic proximity to the crop. It is presumed to be the progeny of accidental hybrids between sugar beet (ssp. vulgaris) and wild beet (ssp. maritima), or of sugar beet varieties sensitive to vernalization and sown early in years with late cold spells. In this context, genetically modified (GM) sugar beet varieties tolerant to non-selective herbicides would be interesting to manage weed beet. However, because of the proximity of the weed to the crop, it is highly probable that the herbicide-tolerance transgene would b…

0106 biological scienceshttp://aims.fao.org/aos/agrovoc/c_890PopulationSoil ScienceContext (language use)H60 - Mauvaises herbes et désherbageFlux de gènesGenetically modified01 natural sciencesF30 - Génétique et amélioration des planteshttp://aims.fao.org/aos/agrovoc/c_9000024Crophttp://aims.fao.org/aos/agrovoc/c_37331http://aims.fao.org/aos/agrovoc/c_34285[SDV.BV]Life Sciences [q-bio]/Vegetal Biologyhttp://aims.fao.org/aos/agrovoc/c_2018Cropping systemeducation2. Zero hungereducation.field_of_studybiologyU10 - Informatique mathématiques et statistiquesModélisation des culturesfungifood and beverages04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationWeed controlGene flowTillagePratique culturalehttp://aims.fao.org/aos/agrovoc/c_8347AgronomyOrganisme génétiquement modifié040103 agronomy & agriculture0401 agriculture forestry and fisheriesSugar beetBeta vulgarisWeedAgronomy and Crop ScienceMauvaise herbeModelCropping system010606 plant biology & botanyField Crops Research
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Weed and Weeding Effects on Medicinal Herbs

2017

Competition with weeds exerts significant depressive effects on yield and quality features of Medicinal Plants (MPs). According to the crop, the part of plant to be harvested, the environmental features (including cropping technique) and the severity of infestation, yield losses due to the presence of weeds may vary within wide intervals. Furthermore, unlike the majority of other crops, MPs are cultivated with the goal to obtain relevant quantities of specific secondary metabolites, whose final quantity determines the quality level (and, consequently, the market value) of the harvested drug. Almost all papers addressed to this topic agree on the statement that unrestricted weed growth may a…

0106 biological sciencesmedia_common.quotation_subjectBiologymedicine.disease_cause01 natural sciencesCompetition (biology)ToxicologyCropparasitic diseasesInfestationGrazingmedicinemedia_commonBiomass (ecology)fungicompetition yields essential oil (EO) weeding management critical period for weed control (CPWD) relative losses (RL)food and beverages04 agricultural and veterinary sciencesSettore AGR/02 - Agronomia E Coltivazioni ErbaceeHorticulture040103 agronomy & agriculture0401 agriculture forestry and fisheriesWeedMulchCropping010606 plant biology & botany
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Crop and density effects on weed beet growth and reproduction

2004

Summary Weed beet populations growing in each crop of the arable rotation could be a relay for the gene flow from adjacent transgenic herbicide-resistant sugarbeet. In this study, weed beet growth and reproduction were assessed under several conditions which could be found in the rotation: various weed beet densities (ranging from 1 to 120 plants m−2) and various crops (winter wheat, spring barley, spring pea, sugarbeet, maize, ryegrass). Measurements were carried out both on life-cycle dynamics (bolting time, time to flowering onset, dynamics of flower opening) and on other quantitative data (survival rate, bolting rate and pollen, flower and seed production). Increasing weed beet density …

0106 biological sciencesmedia_common.quotation_subjectPlant ScienceBiologymedicine.disease_cause01 natural sciencesCompetition (biology)CropPollenmedicine[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyCropping systemComputingMilieux_MISCELLANEOUSEcology Evolution Behavior and Systematicsmedia_common2. Zero hungerBolting04 agricultural and veterinary sciences15. Life on landAgronomy040103 agronomy & agriculture0401 agriculture forestry and fisheriesReproductionArable landWeedAgronomy and Crop Science010606 plant biology & botanyWeed Research
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Identification of weed community traits response to conservation agriculture

2013

International audience; 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 lo…

0106 biological sciencesno-tillConservation agriculture[SDV]Life Sciences [q-bio]RLQ01 natural sciences[SHS]Humanities and Social SciencesNo-till farming[SDV.BV]Life Sciences [q-bio]/Vegetal Biologyfunctional traits2. Zero hungerEcology[ SDV ] Life Sciences [q-bio]business.industryAgroforestry04 agricultural and veterinary sciences15. Life on land[SDV] Life Sciences [q-bio]Tillagearable weedsGeographyconservation agricultureAgronomyAgriculture[SDE]Environmental Sciences040103 agronomy & agricultureTrait0401 agriculture forestry and fisheriesAnimal Science and ZoologyOrdinationbusinessWeedAgronomy and Crop ScienceCropping010606 plant biology & botany
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