Search results for "Chemical control"

showing 6 items of 16 documents

RESUME:Studies on the Chemical Control of Aonidiella aurantii (Mask.)

1974

Aonidiella aurantii (Mask.) which was accidentally introduced in Sicily in 1968 has since become a dangerous pest requesting special treatments in citrus groves. Experiments have been carried out on Citrus lemon to evaluate the efficacy of several organophosphorous compounds partly in mixture with white oil and this latter applied sole (cf. table 1). The results obtained against young females are set out in table 2; they show excellent results with almost all compounds whereas the same pesticides had a rather poor effect on mature females (cf. table 3). It is concluded that the replacement of white oils by organophosphorous compounds is not justified providing that the control is directed a…

ToxicologybiologyOrganophosphorous compoundsRather poorPlant SciencePEST analysisHorticulturePesticideYoung femaleChemical controlbiology.organism_classificationAgronomy and Crop ScienceAonidiella aurantiiEPPO Bulletin
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New polymorphic markers for genetic diversity studies in an invasive plant: the common ragweed (Ambrosia artemisiifolia L.)

2014

Common ragweed is an annual herb that belongs to the Asteraceae family. It is known as an invasive plant originating from the USA. In France the common ragweed is especially abundant in the Rhône-Alpes basin and currently spreads northwards in Burgundy. Ragweed colonizes different types of environments, such as railways, river sides, wastelands, farmlands and cultivated crops (especially sunflowers crops). Herbicide resistance to linuron, glyphosate and/or acetolactate synthase inhibitors has been reported in the USA, which complicates the chemical control of ragweed. In addition, the highly allergenic pollen of ragweed causes severe allergies. These elements make this plant a major threat …

[SDE] Environmental Sciencespolymorphic molecular markers[SDV]Life Sciences [q-bio]population geneticsgenetic diversitymicrosatellites[SDV] Life Sciences [q-bio]chemical controlherbicide resistance[SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyAmbrosiagene flow
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Historique de l'utilisation des herbicides en France: premières analyses

2010

A data base on the herbicides used in France since 1961 has been built up from the phytosanitary index annually edited by the Association de Coordination Technique Agricole (ACTA). This data base gives the number of active ingredients, associations and commercial products registered every year and for each crop. We also gathered the modes of action, the way of absorption sites and the species susceptibility. Since 1961, 215 molecules have been registered. The number increased regularly with a maximum of 138 in 2002 and only around 100 remain in 2010. The evolution of the number of modes of action available for weed control in wheat is discussed.

[SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/AgronomyHerbicides[SDV]Life Sciences [q-bio][SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/Agronomy[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil studyWeed control[SDV] Life Sciences [q-bio]DatabasesHerbicide resistanceMode of actionChemical controlWheat[SDV.SA.SDS] Life Sciences [q-bio]/Agricultural sciences/Soil studyabsorption
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Stratégies de lutte contre le charançon rouge du palmier

2018

La communauté scientifique internationale (source : publication FAO d’avril 2017) s’accorde sur l’importance de la combinaison des mesures de lutte en fonction des niveaux d’infestation par le charançon rouge du palmier. Plusieurs mesures de lutte sont disponibles ou envisageables : assainissement mécanique, application d’insecticides à titre préventif ou curatif, piégeage de masse et biocontrôle (lutte biologique sensu stricto). Il est à noter que plusieurs expérimentations sur le biocontrôle sont en cours.Dans la perspective d’améliorer les stratégies de lutte contre le charançon rouge du palmier, il est demandé : 1) d’identifier les stratégies de lutte (en tant que combinaison de différe…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesnon chemical control methodbiological controlméthode de lutte chimiquechemical control methodlutte biologiquecontrol strategiescharançon rouge du palmierpalmierRhynchophorus ferrugineuspalm treebioagressorPhoenix canariensisred palm weevilbio-agresseurméthode de lutte non chimiquestratégies de lutte
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CHEMICAL INDUCTION OF PHYTOALEXIN SYNTHESIS IN GRAPEVINES: APPLICATION TO THE CONTROL OF GREY MOULD IN THE VINEYARD

2000

chemistry.chemical_classificationIprodionebiologyPhytoalexinHorticulturebiology.organism_classificationVineyardFungicideHorticultureInorganic saltschemistry.chemical_compoundchemistryBotanyChemical controlBotrytis cinereaActa Horticulturae
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Validation of a set of reference genes to study response to herbicide stress in grasses

2012

Abstract Background Non-target-site based resistance to herbicides is a major threat to the chemical control of agronomically noxious weeds. This adaptive trait is endowed by differences in the expression of a number of genes in plants that are resistant or sensitive to herbicides. Quantification of the expression of such genes requires normalising qPCR data using reference genes with stable expression in the system studied as internal standards. The aim of this study was to validate reference genes in Alopecurus myosuroides, a grass (Poaceae) weed of economic and agronomic importance with no genomic resources. Results The stability of 11 candidate reference genes was assessed in plants res…

internal standardlcsh:MedicineplantBiologyGeneral Biochemistry Genetics and Molecular BiologyReference genesherbicide resistanceReference genePoaceaelcsh:Science (General)real-time pcrGenelcsh:QH301-705.5Medicine(all)GeneticsVegetal BiologyBiochemistry Genetics and Molecular Biology(all)business.industryNoxious weedplant;herbicide resistance;real-time pcr;internal standardEnvironmental and SocietyAlopecurus myosuroideslcsh:R[ SDV.BV.PEP ] Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyGeneral Medicinebiology.organism_classification[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyBiotechnologylcsh:Biology (General)Environnement et SociétébusinessWeedChemical controlBiologie végétaleResearch Articlelcsh:Q1-390BMC Research Notes
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