Search results for "Molting cycle"

showing 4 items of 4 documents

Proteoglycan occurrence in gastrolith of the crayfish Cherax quadricarinatus (Malacostraca: Decapoda).

2012

14 pages; International audience; Biomineralized structures are hybrid composites formed and stabilized by the close interaction of the organic and the inorganic phases. Crayfish are good models for studying biomineralization because they develop, in a molting-mineralization cycle, semi-spherical mineralized structures referred to as gastroliths. The organic matrix of these structures consists of proteins, polysaccharides, and lipids. Chitin is the main polysaccharide and is concentrically arranged as fibrous chitin-protein lamellar structures. Although several proteins and low-molecular weight phosphorylated components have been reported to be involved in gastrolith mineralization, the occ…

Keratan sulfateCheraxAnatomyAquatic ScienceBiologyMatrix (biology)biology.organism_classificationbiomineralization[ SDV.IB.BIO ] Life Sciences [q-bio]/Bioengineering/BiomaterialsMolting cycleAmorphous calcium carbonatecarbohydrates (lipids)chemistry.chemical_compoundBiochemistrychemistryGastrolithProteoglycanglycosaminoglycansCherax quadricarinatusamorphous calcium carbonategastrolithbiology.proteinproteoglycanscalcium storageBiomineralization
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Evolution of ecdysteroids and of their apolar conjugates during the post-embryonic development of the tickOrnithodoros moubata

1997

The ecdysteroid (ES) content of the soft tick Ornithodoros moubata was investigated during the five successive nymphal molting cycles by means of an enzyme immunoassay (EIA). Samples were submitted to esterase hydrolysis in order to release free ecdysteroids from the acyl-ester conjugates (AP = apolar products). Crude and hydrolysed extracts were then analyzed by EIA using two different antibodies, a monoclonal raised against 20-hydroxyecdysone (20E) and a polychlonal raised against ecdysone (E). With the crude extracts, each molting cycle was associated with an ES peak, occurring in the middle of the instar. 20E was preponderant during the first 2 nymph cycles, but the proportion of E and …

EcdysteroidbiologyPhysiologyfungiGeneral Medicinebiology.organism_classificationBiochemistryEsteraseMolting cyclechemistry.chemical_compoundBiochemistrychemistryInsect ScienceOrnithodoros moubataInstarNymphMoultingEcdysoneArchives of Insect Biochemistry and Physiology
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Developmental profiles of epidermal mRNAs during the pupal-adult molt of Tenebrio molitor and isolation of a cDNA clone encoding an adult cuticular p…

1992

0012-1606 (Print) Journal Article; Changes in translatable mRNAs from the wing epidermis of the Coleoptera Tenebrio molitor have been investigated during metamorphosis by analysis of in vitro translated products. Striking differences between the patterns obtained from mRNAs extracted during pupal and adult cuticle secretion indicated that a drastic change in gene expression occurs during the pupal-adult transition. In addition to these stage-specific modifications, the mRNA patterns changed within each cuticular synthesis program (pupal or adult), especially at ecdysis. After tritiated leucine incorporation, some of the major radiolabeled cuticular proteins showed similar changes suggesting…

animal structuresPupa/drug effects/metabolismBiological/*geneticsBiologyMolting cycleWingDNA/*isolation & purificationJuvenile Hormones/*pharmacologyMessenger/*metabolismComplementary DNAGene expressionProtein biosynthesisWings AnimalAnimalsNorthern blotRNA MessengerTenebrioTenebrio/drug effects/*genetics/growth & developmentMolecular BiologyProteins/*geneticsDevelopmental profileMetamorphosisfungiMetamorphosis BiologicalPupaEpidermis/growth & developmentProteinsCell BiologyDNAMolecular biologyJuvenile HormonesEcdysisProtein BiosynthesisJuvenile hormoneInsect ProteinsRNAEpidermisDevelopmental Biology
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Morphogenesis of mechanoreceptor and epidermal cells of crickets during the last instar, and its relation to molting-hormone level.

1980

(1) The fine structure of the cercal campaniform sensilla and epidermal cells of Gryllus bimaculatus Deg. (Saltatoria, Gryllidae) was examined, and the ecdysteroid level was monitored throughout the last larval instar. (2) The epidermal cells show changes in shape, cytoplasmic inclusions and differentiation of the apical cell membrane, coupled to the phases of buildup and breakdown of the (cercus) cuticle. (3) The imaginal epicuticle of the epidermal cells begins to form later (by about approximately 6h) than that of the campaniform sensilla. (4) The campaniform sensilla were studied with respect to (a) the morphogenesis of the cuticular apparatus, (b) the inclusion of phenol oxidases in th…

MaleEcdysoneanimal structuresHistologyCuticleCampaniform sensillaApolysisMolting cyclePathology and Forensic Medicinechemistry.chemical_compoundAnimalsEcdysteroidintegumentary systembiologyGryllus bimaculatusfungiMetamorphosis BiologicalCell BiologyAnatomybiology.organism_classificationCell biologychemistryEpidermal CellsEcdysisLarvaOrthopteraFemaleMechanoreceptorsEcdysoneCell and tissue research
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