0000000000820043

AUTHOR

Noureddine Soltani

showing 11 related works from this author

Diflubenzuron-Induced alterations during in vitro development ofTenebrio molitor pupal integument

1987

The effects of diflubenzuron (DFB) in Tenebrio molitor pupae were first investigated on cuticle secretion induced by 20-hydroxyecdysone in vitro. The sternal integuments were treated by DFB either 3 days before culture or during culture. DFB, when applied before culture, did not prevent the molting hormone from inducing a new cuticle deposition by integument explants in vitro. However, this cuticle showed several architectural alterations and a thickness reduction. When applied during the culture in the presence of 20-hydroxyecdysone, DFB at high dose (≥ 20 μg/ml) was able to inhibit cuticle secretion, but lower doses (⩽ 10 μg/ml) resulted in epicuticle deposition. These observations confir…

medicine.medical_specialtyEcdysteroidanimal structuresintegumentary systemPhysiologyCuticlefungiRadioimmunoassayArthropod cuticleGeneral MedicineBiologyBiochemistryIn vitrochemistry.chemical_compoundEndocrinologychemistryIn vivoInsect ScienceInternal medicinemedicineIntegumentExplant cultureArchives of Insect Biochemistry and Physiology
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Evaluation of Triflumuron, a benzoylphenylurea derivative, onTenebrio molitorpupae (Col., Tenebrionidae): effects on cuticle

1996

Triflumuron (TFM), a benzoylphenylurea (BPU) derivative, exhibited insecticidal activity when injected to newly ecdysed pupae of Tenebrio molitor. Mortality occurs by defect in adult ecdysis. Treatment resulted in a significant increase in the duration of pupal stage and caused a reduction in both cuticle thickness and incorporation of ''C-labelled precursor into chitin compared to controls. Moreover, TFM reduced the amount of cuticle chitin without any significant effect on protein level. Thus, TFM acts by preventing the chitin biosynthesis confirming the primary mode of action of the BPU insecticides.

MudaBenzoylphenylureaCuticlefungiBiologychemistry.chemical_compoundChitinchemistryBiochemistryInsect ScienceEcdysisInsect growth regulatorBotanyNymphMode of actionAgronomy and Crop ScienceJournal of Applied Entomology
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Boric acid toxicity to the German cockroach, Blattella germanica: Alterations in midgut structure, and acetylcholinesterase and glutathione S-transfe…

2006

0048-3575 doi: DOI: 10.1016/j.pestbp.2005.05.002; Oral toxicity of boric acid, an inorganic insecticide, was evaluated on German cockroach, Blattella germanica L. (Dictyoptera, Blattellidae). Newly emerged adults were exposed to various concentrations of boric acid incorporated into the diet. Results showed that treated insects exhibited toxic symptoms with a dose-dependent mortality. Histological study of midgut revealed alterations in the epithelial cells and a signiWcant increase in the epithelium thickness. In a second series of experiments, the compound was investigated on the activities of acetylcholinesterase (AChE) and glutathione S-transferases (GSTs). Data showed that the compound…

0106 biological sciencesAchéHealth Toxicology and MutagenesisBiology01 natural sciences03 medical and health scienceschemistry.chemical_compoundMidgutPesticides030304 developmental biology2. Zero hunger0303 health sciencesGerman cockroachDictyopteraMidgutGeneral MedicineGlutathionebiology.organism_classificationBoric acidAcetylcholinesteraselanguage.human_language3. Good healthGlutathione S-transferase010602 entomologyGlutathione S-transferaseBlattella germanicachemistryBiochemistryToxicitylanguagebiology.proteinAcetylcholinesteraseAgronomy and Crop Science
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Topical bioassay of Oberon® on Drosophila melanogaster pupae: delayed effects on ovarian proteins, cuticular hydrocarbons and sexual behaviour

2021

International audience; Spiromesifen (Oberon? 240 SC; concentrated solution; Bayer CropScience, Germany) a pesticide derived from spirocyclic tetronic acids, acts mainly though blocking lipid biosynthesis via acetyl-CoA carboxylase. However, its mode of action requires further analyses. This study aims to evaluate the sublethal effects of spiromesifen on the fruit fly Drosophila melanogaster. The treatment was carried out by topical application on newly moulted pupae using two concentrations (LD10 = 21.45 and LD25 = 39.53 ?g a.i./pupa). Our results showed that the developmental duration of larvae and pupae were not significantly affected by treatment. However, spiromesifen caused delayed ef…

0106 biological sciencesanimal structuresprogeny010603 evolutionary biology01 natural sciencesOberonLipid biosynthesisBioassaycomputer.programming_languagebiology010604 marine biology & hydrobiologycuticular hydrocarbonsfungisexual behaviour[SDV.BDLR]Life Sciences [q-bio]/Reproductive BiologyPesticidebiology.organism_classificationspiromesifenproteinsPupaBiochemistryAnimal Science and ZoologyhexapodaDrosophila melanogasterdelayed effectscomputerDevelopmental Biology
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Biological activity of flucycloxuron, a novel benzoylphenylurea derivative, onTenebrio molitor: comparison with diflubenzuron and triflumuron

1993

Flucycloxuron, a novel benzoylphenylurea (BPU) derivative, exhibited insecticidal activity when injected into newly ecdysed pupae ofTenebrio molitor. Mortality occurs because of defective adult ecdysis. Treatment caused a reduction in both cuticle thickness and incorporation of14C-labelled precursor into chitin, although it had no significant effect on the protein synthesis. The potencies of other BPU compounds as inhibitors of chitin biosynthesis have been examined and results showed that diflubenzuron was less effective than either flucycloxuron or triflumuron.

PharmacologyBenzoylphenylureaCuticlefungiBiological activityCell BiologyBiologyCellular and Molecular Neurosciencechemistry.chemical_compoundDiflubenzuronBiochemistryChitinchemistryEcdysisBotanyProtein biosynthesisMolecular MedicineMolecular BiologyDerivative (chemistry)Experientia
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Pre-imaginal exposure to Oberon® disrupts fatty acid composition, cuticular hydrocarbon profile and sexual behavior in Drosophila melanogaster adults

2021

International audience; Oberon® is a commercial formulation of spiromesifen, a pesticide inhibitor of lipid biosynthesis via acetyl CoA carboxylase, widely used in agricultural crop protection. However, its mode of action requires further analysis. We currently examined the effect of this product on Drosophila melanogaster as a non-target and model organism. Different concentrations of spiromesifen were administered by ingestion (and contact) during pre-imaginal development, and we evaluated its delayed action on adults. Our results suggest that spiromesifen induced insecticidal activity on D. melanogaster. Moreover, spiromesifen treatment significantly increased the duration of larval and …

Male0106 biological sciencesInsecticidesmedicine.medical_specialtyPhysiologyHealth Toxicology and MutagenesisAnimal ScalesBiologyToxicology01 natural sciencesBiochemistrySexual Behavior Animal03 medical and health sciencessexual behaviorInternal medicineLipid biosynthesisMelanogastermedicineAnimalsSpiro CompoundsMode of action030304 developmental biology0303 health sciencesLarvacuticular hydrocarbonsFatty AcidsfungiAcetyl-CoA carboxylasetoxicityLipid metabolismCell BiologyGeneral Medicinebiology.organism_classificationspiromesifenHydrocarbons[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoology010602 entomologyDrosophila melanogasterEndocrinologyToxicityFemaleDrosophila melanogasterComparative Biochemistry and Physiology Part C: Toxicology & Pharmacology
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Lipid Metabolism during the Sexual Maturation of the Mealworm (Tenebrio molitor): Effect of Ingested Diflubenzuron

1997

Abstract Diflubenzuron (DFB), a benzoylphenylurea derivative, when fed to adult females of Tenebrio molitor during sexual maturation (i.e., from adult ?? to day 9), was found to accumulate in the fat body and to quantitatively and qualitatively affect lipid synthesis. DFB treatment decreased the overall lipid level in the fat body and caused perturbations in both the rate of incorporation and distribution of radiolabeled oleic acid in the different classes of lipids. Compared to untreated controls, a significant increase in the level of saturated fatty acids and a significant decrease in the level of unsaturated fatty acids were observed in the fat body. In the ovaries, the fatty acid compo…

Mealwormmedicine.medical_specialtyBenzoylphenylureabiologyHealth Toxicology and MutagenesisLipid metabolismGeneral MedicineMetabolismbiology.organism_classificationchemistry.chemical_compoundOleic acidDiflubenzuronEndocrinologychemistryInternal medicineSaturated fatty acidmedicinelipids (amino acids peptides and proteins)Agronomy and Crop ScienceUnsaturated fatty acidPesticide Biochemistry and Physiology
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Experimental Study on Diflubenzuron: Degradation in Freshwater and Bioconcentration in Mosquitofish Following Chronic Exposure

2013

ISSN: 2152-2197 ; ESSN: 2152-2219. Editeur commercial : Scientific Research Publishing; International audience; Diflubenzuron (DFB, trade name dimilin® 25 WP) is a chitin synthesis inhibitor widely used against forest insect pests in Algeria. Prior to implementation of these products as chemical agents for mosquito control, knowledge on their potential effects on non-target organisms and its behaviour in water are needed. Therefore, the present study was focused on DFB and aimed to use an HPLC procedure developed previously in order to obtain information on its degradation in freshwater and its bioconcentration in adult females of the fish Gambusia affinis (Cyprinodondiformes, Poeciliidae),…

Poeciliidaebiologygambusia affinis[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionBiological pest controlBioconcentrationdiflubenzuron;dimilin;gambusia affinis;residue;HPLC;degradation;bioconcentrationbiology.organism_classificationGambusiaToxicologyresiduesMosquito controlchemistry.chemical_compoundDiflubenzuronbioconcentrationchemistryAlimentation et NutritiondimilinFood and NutritionDegradation (geology)diflubenzuronHPLC[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMosquitofishdegradationJournal of Environmental Protection
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Protein synthesis in developing ovaries of mealworm under in vivo and in vitro conditions: Effects of diflubenzuron

1996

Abstract The effect of diflubenzuron (DFB) on protein synthesis in the ovaries of Tenebrio molitor was evaluated during oocyte maturation using in vivo and in vitro assays. When incorporated into the diet (5 and 10 mg g −1 ), DFB was found to affect both the weight, the protein levels and the incorporation of tritiated leucine into proteins of ovaries. In addition, electrophoretic separation of ovarian proteins by sodium dodecyl sulfate-polyacrylamide slab gels (SDS-PAGE) showed that DFB applied in vivo did not have a significant effect on the number of protein bands. When added to the culture medium (5 and 10 μg ml −1 ), DFB resulted in a slight but significant decrease in the rate of inco…

MealwormbiologySodiumchemistry.chemical_elementOvaryHorticulturebiology.organism_classificationIn vitrochemistry.chemical_compoundDiflubenzuronmedicine.anatomical_structurechemistryBiochemistryIn vivoInsect SciencemedicineProtein biosynthesisLeucineAgronomy and Crop ScienceFood ScienceJournal of Stored Products Research
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Analyse des hydrocarbures cuticulaires chez Blattella germanica : effets de divers groupes de pesticides

2010

Analyse des hydrocarbures cuticulaires chez [i]Blattella germanica[/i] : effets de divers groupes de pesticides. Actes de la CIFE VI. Série Zoologie

[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoology[ SDV.BA.ZI ] Life Sciences [q-bio]/Animal biology/Invertebrate Zoology[SDV.BA.ZI] Life Sciences [q-bio]/Animal biology/Invertebrate Zoology
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Effects of halofenozide (RH-0345) on cuticular hydrocarbons of mosquito larvae of Culex pipiens

2011

Poster; Insect cuticular hydrocarbons are known to have a protection and a pheromonal role. Quantitative changes in the cuticular hydrocarbons of Diptera occur over time and were used in a preliminary attempt to age-grade of mosquitoes. Halofenozide (RH-0345) is an insect growth regulator belonging to the class of non-steroidal ecdysone agonists. In a previous study, halofenozide was found to be effective against larvae of Culex pipiens L. (Diptera: Culicidae) and exerted its toxicity primarily by the induction of a precocious lethal molting (Boudjelida et al., 2005). In this study, newly molted 4th instar larvae of C. pipiens were exposed to halofenozide (23% EC) for 24 h at LC50 (12.58 µg…

[SDV.AEN] Life Sciences [q-bio]/Food and NutritionhalofenozideCulexanimal structurescuticular hydrocarbons[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionparasitic diseasesfungi[SDV.AEN]Life Sciences [q-bio]/Food and Nutritioninsecticidesmosquitoes
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