Search results for "cuticular"

showing 10 items of 37 documents

Only Females Oviposit: Chemical Discrimination of Adult Stink Bug Sex by the Egg Parasitoid Trissolcus japonicus

2021

Egg parasitoids foraging for suitable hosts scattered in the environment rely mainly on chemical cues. Elucidating the chemical ecology of natural enemies is important in the development of effective and successful strategies for conservation biological control. In this context, the host cuticular hydrocarbons, which are exploited by several species of egg parasitoids as contact kairomones, could be used to retain them by providing information about the presence and the sex of adults of the target species: sex is important because only females of the host species lay the eggs that can be subsequently utilized for parasitoid reproduction. However, the chemical basis of host sex discriminatio…

0106 biological scienceslcsh:EvolutionBiological pest controlZoologyContext (language use)010603 evolutionary biology01 natural sciencesParasitoidlcsh:QH540-549.5lcsh:QH359-425Halyomorpha halysBrown marmorated stink bugEcology Evolution Behavior and SystematicsScelionidaeEcologybiologyHost (biology)cuticular hydrocarbonskairomonefungibiology.organism_classification1-hexadecene cuticular hydrocarbons Halyomorpha halys host searching behavior kairomone samurai wasp Scelionidae1-hexadeceneChemical ecology010602 entomologyKairomonehost searching behaviorlcsh:EcologyScelionidae
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Is mate choice in Drosophila males guided by olfactory or gustatory pheromones ?

2010

International audience; Drosophila melanogaster flies use both olfactory and taste systems to detect sex pheromones and select the most suitable mate for reproduction. In nature, flies often face multiple potential partners and should have an acute sensory ability to discriminate between different pheromonal bouquets. We investigated both the pheromones and the chemosensory neurons influencing Drosophila mate choice. We measured various courtship traits in single tester males simultaneously presented with two target male and/or female flies carrying different pheromonal bouquets (pairs of control flies of the same or different sex, same-sex target pairs of pheromonal variant strains). The c…

0106 biological sciencesmelanogasteranimal structuresmedia_common.quotation_subject[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritioneducationSensory systemOlfactionsex pheromone010603 evolutionary biology01 natural sciencesCourtshiptaste03 medical and health sciencesDrosophilidaemate choice10. No inequalityDrosophilaEcology Evolution Behavior and Systematicsreproductive and urinary physiology030304 developmental biologymedia_common0303 health sciencesCommunicationbiologyCourtship displaybusiness.industryfungibiology.organism_classificationDrosophila melanogasterMate choiceEvolutionary biologySex pheromonebehavior and behavior mechanismscourtshipcuticular hydrocarbonAnimal Science and ZoologyDrosophilabusiness[SDV.AEN]Life Sciences [q-bio]/Food and Nutritiondiscriminationolfaction
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Synthesis and influence of fatty acid esters on the foliar penetration of herbicides

1998

Abstract Synthesis of mono-esters of tetraethylene glycol and di-esters of tetraethylene glycol was accomplished from fatty acids and tetraethylene glycol in the absence of solvent and catalyst. Esterification was studied in a batch reactor by using a response surface methodology to evaluate the influence of synthesis variables such as molar substrate ratio of fatty acid relative to tetraethylene glycol (1.39–7.52), temperature (145–167°C), reaction time (0.5–8 h) on the yield of mono- and di-esters of tetraethylene glycol. A multipurpose reactor was developed for the transformation of fatty acids into pure α-monoglycerides. The 1-monoglycerides of heptanoic, undecelenic, oleic, linoleic an…

030309 nutrition & dietetics[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineering[SDV]Life Sciences [q-bio]HORDEUM VULGARE LEpicuticular waxCatalysis03 medical and health scienceschemistry.chemical_compound[SDV.IDA]Life Sciences [q-bio]/Food engineeringOrganic chemistry[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringComputingMilieux_MISCELLANEOUSchemistry.chemical_classification0303 health sciencesWaxfood and beveragesFatty acidFatty acid ester04 agricultural and veterinary sciencesTECHNIQUE DES TRACEURS[SDV.IDA] Life Sciences [q-bio]/Food engineeringSolvent[SDV] Life Sciences [q-bio]chemistryErucic acidvisual_art040103 agronomy & agriculturevisual_art.visual_art_medium0401 agriculture forestry and fisheriesHordeum vulgareAgronomy and Crop Science
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Micromorphological observations on leaf and pollen ofCapparisL. sect.Capparis(Capparaceae)

2004

Sect. Capparis is represented by a single species, Capparis spinosa L., divided into several intraspecific taxa showing plesiomorphic features and disjunct distributions in the Old World. Leaf surface and pollen features were investigated in the whole group by SEM and light microscope observations. The section is characterized by simple hairs, a reticulate to undulate cuticle, anomocytic stomata surrounded by a peristomal rim, and trizonocolporate, prolate pollen grains. The characteristics of the indumentum appear constant, while the studied taxa are fairly differentiated with respect to cuticular patterns and dimensions of the stomata, and show slight differences in pollen size and exine …

CapparisbiologyIndumentumSettore BIO/02 - Botanica SistematicaCapparis spinosaCapparaceaePlant ScienceDisjunctbiology.organism_classificationmedicine.disease_causeTrichomefood.foodCuticular striation disjunction paleotropical regions palynology trichomes.ReticulatefoodPollenBotanymedicineEcology Evolution Behavior and SystematicsPlant Biosystems - An International Journal Dealing with all Aspects of Plant Biology
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Changes of species specific cuticular hydrocarbon profiles in the cockroaches Nauphoeta cinerea and Leucophaea maderae reared in heterospecific groups

1997

0013-8703 (Print) 1570-7458 (Online); The cuticular hydrocarbon profiles of the cockroaches Nauphoeta cinerea and Leucophaea maderae are species-specific when maintained in homospecific rearings. When individuals were reared in mixed species colonies, they initially remained in homospecific groups under different shelters. However, after 14 days they formed one heterospecific group with cuticular profiles showing characteristics of both species. When individuals were returned in monospecific rearings, their cuticular hydrocarbon profiles returned to species-specific ones within 3 weeks.

Chemical signatureCockroachbiologyEcologyCuticlecuticular hydrocarbonsZoologyDictyopterachemical signatureDictyopterabiology.organism_classificationChemical communicationBlaberidaeMixed speciesOxyhaloinaeartificial heterospecific coloniesInsect Sciencebiology.animalinterspecific recognitionEcology Evolution Behavior and SystematicsLeucophaea maderae
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Data from: Coping with the climate: cuticular hydrocarbon acclimation of ants under constant and fluctuating conditions

2018

Terrestrial arthropods achieve waterproofing by a layer of cuticular hydrocarbons (CHCs). At the same time, CHCs also serve as communication signals. To maintain waterproofing under different climate conditions, insects adjust the chemical composition of their CHC layer, but this may affect the communication via CHC. The detailed acclimatory changes of CHCs and how these influence their physical properties are still unknown. Here, we studied acclimation in two closely related ant species with distinct CHC profiles, Myrmica rubra and Myrmica ruginodis, in response to constant or fluctuating temperature and humidity regimes. We measured how acclimation affected CHC composition and viscosity, …

Cuticular hydrocarbon acclimationMyrmica ruginodisdrought survivalLife sciencesphenotypic plasticityHymenopteramedicine and health careEuropeMyrmica rubradesiccation resistanceGermanyviscosityMedicineFormicidaemicrorheology
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Analysis of composition, morphology, and biosynthesis of cuticular wax in wild type bilberry (Vaccinium myrtillus L.) and its glossy mutant

2021

Abstract In this study, cuticular wax load, its chemical composition, and biosynthesis, was studied during development of wild type (WT) bilberry fruit and its natural glossy type (GT) mutant. GT fruit cuticular wax load was comparable with WT fruits. In both, the proportion of triterpenoids decreased during fruit development concomitant with increasing proportions of total aliphatic compounds. In GT fruit, a higher proportion of triterpenoids in cuticular wax was accompanied by a lower proportion of fatty acids and ketones compared to WT fruit as well as lower density of crystalloid structures on berry surfaces. Our results suggest that the glossy phenotype could be caused by the absence o…

Glossy type mutantBilberryWax compositionMutantVaccinium myrtillusBerryVaccinium myrtillus01 natural sciencesAnalytical ChemistryAnthocyaninschemistry.chemical_compound0404 agricultural biotechnologyBiosynthesisVDP::Mathematics and natural science: 400::Zoology and botany: 480Food scienceWaxbiologyChemistryPlant Extracts010401 analytical chemistryFatty AcidsWild typefood and beverages04 agricultural and veterinary sciencesGeneral MedicineTriterpenoidsbiology.organism_classification040401 food science0104 chemical sciencesCuticular waxvisual_artFruitWaxesvisual_art.visual_art_mediumComposition (visual arts)Gene expressionMicroscopy Electrochemical ScanningFruit cuticleFood ScienceVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480
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Relevance of Interactions between Starch-based Coatings and Plum Fruit Surfaces: A Physical-Chemical Analysis

2019

In order to extend the shelf life of the fruit, improve appearance, and to keep all nutrition properties of the plum from diminishing, edible coatings comprised of wheat starch and wheat starch&ndash

GlycerolAbsorption of waterStarch02 engineering and technologycoatingsepicuticular waxEpicuticular waxSurface tensionContact anglelcsh:Chemistrychemistry.chemical_compoundCoatingSpectroscopy Fourier Transform Infrared[SDV.IDA]Life Sciences [q-bio]/Food engineeringlcsh:QH301-705.5SpectroscopyWaxstarchfood and beveragesPrunus domestica04 agricultural and veterinary sciencesGeneral Medicine021001 nanoscience & nanotechnology040401 food scienceComputer Science Applicationsvisual_artvisual_art.visual_art_medium[SDV.IB]Life Sciences [q-bio]/Bioengineeringsurface propertiesfilms0210 nano-technologyMaterials scienceengineering.materialArticleCatalysisInorganic Chemistry0404 agricultural biotechnologySurface TensionPhysical and Theoretical ChemistryFourier transform infrared spectroscopyMolecular BiologyOrganic ChemistryWhey ProteinsChemical engineeringchemistrylcsh:Biology (General)lcsh:QD1-999FruitWaxesFood PreservativesWettabilityengineeringwater relationsInternational Journal of Molecular Sciences
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Leaf and stem anatomy in eight Hypericum species (Clusiaceae).

2013

Abstract - Foliar micromorphology, epicuticular wax morphology and anatomical features of leaves and stem, particularly secondary xylem, were examined with light microscopy, general and histochemical staining and scanning electron microscopy in eight Hypericum species. Outer tegument tissue and type of secondary xylem are determining characteristics. Secondary xylem is ring-porous in H. perforatum, H. perfoliatum, H. tetrapterum, H. triquetrifolium, H. androsaemum and H. hircinum. In H. aegypticum and H. pubescens xylem is diffuse-porous, which is considered to be a more primitive type. These characteristics may be considered an additional criterion for species identification.

Hypericum speciesbiologyXylemClusiaceaePlant ScienceAnatomyViral tegumentbiology.organism_classificationAnatomy epiderma epicuticular wax Hypericum morphology SEM stem xylemHistochemical stainingepicuticular waxEpicuticular waxepidermaBotanymorphologySEMSpecies identificationxyemstemAnatomyHypericumEcology Evolution Behavior and SystematicsHypericumAnatomy; epiderma; epicuticular wax; Hypericum; morphology; SEM; stem; xylem
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Cuticular protein genes in Tenebrio molitor (Coleoptera: Tenebrionidae)

1995

1210-5759; We have previously isolated from the beetle Tenebrio molitor, cDNAs coding for two glycine-rich cuticular proteins named ACP-20, ACP-22 and ACP-17 and an alanin-rich cuticular protein named LPCP-22. The ACP-20, ACP-22, ACP-17 mRNAs are detected by Northern blot and In situ hybridization analysis only in epidermal regions secreting heavily sclerotized cuticle during the pharate adult stage.The LPCP-22 mRNA is detected in most epidermal regions during the secretion of larval and pupal cuticles. Then, its presence is restricted to the epidermal zones secreting intersegmental soft cuticle in the newly ecdysed pupa. The stage- and tissue-specific gene system seems to be convenient mod…

Juvenile Hormonesanimal structuresstomatognathic systemintegumentary systemcuticular proteinMetamorphosisfungiTenebrio molitor
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