Search results for "PLANTE"

showing 10 items of 493 documents

Elicitation of tobacco celles with ergosterol activates a signal pathway including mobilization of internal calcium

2003

International audience

[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyREPONSE DE LA PLANTE[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyComputingMilieux_MISCELLANEOUS
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Involvment of lipid-protein complexes in plant-microorganism interactions

2002

International audience

[SDV.IDA]Life Sciences [q-bio]/Food engineeringREPONSE DE LA PLANTE[SDV.IDA] Life Sciences [q-bio]/Food engineeringComputingMilieux_MISCELLANEOUS
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Study of virus flows between wild and cultivated Poaceae

2017

BGPI : équipe 6; Study of virus flows between wild and cultivated Poaceae. 16. Rencontres de Virologie Végétale (RVV 2017)

[SDV.MP.VIR] Life Sciences [q-bio]/Microbiology and Parasitology/Virologypoaceaemaladie virale[SDV.MP.VIR]Life Sciences [q-bio]/Microbiology and Parasitology/Virologyprotection des plantes[ SDV.MP.VIR ] Life Sciences [q-bio]/Microbiology and Parasitology/Virologypathologie végétalecrop protection
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Modélisation des effets des systèmes de culture sur la dynamique de la plante parasite orobanche rameuse en interaction avec les adventices

2019

Reducing pesticide use is a major challenge in agriculture and involves developing more sustainable methods that rely on non-chemical cropping techniques and biological regulations according to agroecological principles. Branched broomrape (Phelipanche ramosa (L.) Pomel) is a root parasitic plant which infects crops and causes dramatic yield losses worldwide. Managing broomrape is complex because it requires combining several cropping techniques whithin a global weed management strategy because broomrape is also able to infect non-parasitic weeds. The aim of this thesis was to stynthetize knowledge on branched broomrape dynamics in agroecosystems and to aggregate it within a mechanistic mod…

[SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/AgronomyModèle mécanisteParasitic plant[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/AgronomyMechanistic modelWeed managementSystème de cultureGestion des adventicesAgroécologieAgroecologyPlante parasiteCropping systemPhelipanche ramosa
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Infestation de Rhamphicarpa fistulosa (Hoschst.) Benth. en riziculture de bas-fonds au nord du Togo

2016

International audience; Le riz constitue de nos jours la base alimentaire de plus de 2,5 milliards de personnes en Afrique subsaharienne où sa demande ne cesse de croître. Pour faire face à cette demande qui dépasse souvent doublement les productions nationales, et pour diminuer ses importations sans cesse croissantes, le Togo à l’instar des pays ouest-Africains a élaboré un document stratégique qui mise sur l’extension et la productivité des rizières de bas-fond. Malheureusement, les bas-fonds rizicoles en Afrique tropicale sont souvent confrontés à la pression des adventices et plus particulièrement des adventices parasites de la famille des Orobanchaceae. Rhamphicarpa fistulosa, plante h…

[SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/AgronomyRhamphicarpa fistulosa;plante parasite;infestation;communauté végétale;structureRhamphicarpa fistulosaInfestation[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/Agronomystructure[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil study[SDV.SA.SDS] Life Sciences [q-bio]/Agricultural sciences/Soil studyPlante parasiteCommunauté végétale
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Comparaison de la multifonctionnalité relative aux flux azotés induits par dix cultures de légumineuses

2019

National audience; Les légumineuses sont à l’origine de fonctions uniques et/ou complémentaires à celles d’autres groupes d’espèces (céréales, oléagineux) sur les-quelles reposent des services écosystémiques rela-tifs à l’azote. Pourtant, le choix des légumineuses à graines selon leur aptitude à fournir ces services écosystémiques reste difficile compte tenu du manque de références sur une diversité d’espèces. Au cours d’une succession culturale de deux ans (lé-gumineuse –blé), cinq flux azotés et plusieurs traits de plantes considérés comme explicatifs de ces flux azotés ont été mesurés, afin de dresser le profil fonctionnel de dix espèces de légumineuses à graines. Il s’agissait de compre…

[SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/AgronomyServices écosystémique[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/AgronomyTraits de plantesBourgogneLégumineuses à grainesProfil fonctionnel
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Agro-environmental impact of the cultivation of herbicide tolerant genetically modified rapeseed varieties

2001

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesAGRONOMIEAMELIORATION DES PLANTESGENETIQUECOLZA
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Characterization and role of nitric oxide production in Arabidopsis thaliana defense responses induced by oligogalacturonides

2011

Nitric oxide (NO) regulates a wide range of plant processes from development toenvironmental adaptation. In this study, NO production and its effects were investigated in aplant-pathogen context. The production of NO following Arabidopsis treatment witholigogalacturonides (OGs), an endogenous elicitor of plant defense, was assessed using the NOsensitive probe 4, 5-diamino fluorescein diacetate. Pharmacological and genetic approaches wereused to analyze NO enzymatic sources and its role in the Arabidopsis thaliana /Botrytis cinereainteraction. We showed that NO production involves both a L-arginine- and a nitrate reductase(NR)-pathways. OGs-induced NO production was Ca2+-dependent and modula…

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesArabidopsis thalianaMonoxyde d’azoteNitrate réductaseArabidopsisNitric oxideOligogalacturonidesBotrytis cinereaPlant defenseRéactions de défenses des plantesCalcium[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyTranscriptomeReactive oxygen speciesFormes activées de l’oxygèneNitrate reductase
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Etude des interactions plantes-microbes et microbes-microbes au sein de la rhizosphère, sous un aspect coûts-bénéfices, dans un contexte de variation…

2013

Understanding the interactions that bind plants and soil microorganisms is an essential step for the sustainable management of ecosystems, especially in agriculture. The ecosystem services resulting from such interactions include plant productivity which responds, in part, to the food requirements of the world's population and the regulation of biogeochemical cycles. These ecosystem services depend on trophic links between the two partners in the interaction and can be represented by a tradeoff between the costs and benefits for each partner. Plants, being autotrophic organisms or primary producers, are key organisms which introduce carbon into the ecosystem, through photosynthesis. Part of…

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesCosts-benefits relationshipBiodiversityRelations coûts-bénéficesPlants-microbes interactionsSymbiotsChangement globalRhizosphèreMedicago truncatulaSymbiotesADN SIP[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyBiodiversitéGlobal changeDNA SIPInteractions plantes-microbes
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Cropping system dynamics, climate variability, and seed losses among East African smallholder farmers: a retrospective survey.

2014

Abstract Climate variability directly affects traditional low input and rain-fed farming systems, but few studies have paid attention retrospectively to the cropping system’s ability to mitigate climate risk. This study analyzes the impacts of rainfall variability on farmers’ seed variety losses over time, considering changes in smallholder farming systems. The cropping system dynamics, in favoring maize at the expense of sorghum and pearl millet, have induced an increasing risk of seed loss during drought. Combining ecological anthropology and climatology, a retrospective survey asking farmers about the period 1961–2006 was carried out at three altitudinal levels (750, 950, and 1100 m) on …

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesAtmospheric Sciencehttp://aims.fao.org/aos/agrovoc/c_1969F08 - Systèmes et modes de cultureFacteur climatiqueF30 - Génétique et amélioration des plantesCropping systemPennisetum glaucumhttp://aims.fao.org/aos/agrovoc/c_8157[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciencesComputingMilieux_MISCELLANEOUS2. Zero hungerGlobal and Planetary ChangebiologyEcologyAgroforestryAgriculturehttp://aims.fao.org/aos/agrovoc/c_6927Sorghum bicolor[ SDE.MCG ] Environmental Sciences/Global ChangesGeographyhttp://aims.fao.org/aos/agrovoc/c_6523http://aims.fao.org/aos/agrovoc/c_8504http://aims.fao.org/aos/agrovoc/c_13199[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatologyhttp://aims.fao.org/aos/agrovoc/c_6161[ SDU.STU.CL ] Sciences of the Universe [physics]/Earth Sciences/ClimatologyP40 - Météorologie et climatologiehttp://aims.fao.org/aos/agrovoc/c_29554[SDE.MCG]Environmental Sciences/Global ChangesZea maysSocietal impactsPetite exploitation agricoleSécheressehttp://aims.fao.org/aos/agrovoc/c_7247Retrospective surveyConservation des ressourceshttp://aims.fao.org/aos/agrovoc/c_2391F03 - Production et traitement des semenceshttp://aims.fao.org/aos/agrovoc/c_1666PrecipitationVariétéClimate variabilitySemencePerte de récolteChangement climatiquePrécipitationbusiness.industryClimate riskLow inputSorghumbiology.organism_classification[SDE.ES]Environmental Sciences/Environmental and SocietyIncreasing riskhttp://aims.fao.org/aos/agrovoc/c_408613. Climate actionAgricultureAfricaSystème de culturehttp://aims.fao.org/aos/agrovoc/c_1971businessSocial Sciences (miscellaneous)http://aims.fao.org/aos/agrovoc/c_7113
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