Search results for "dictyoptera"

showing 10 items of 23 documents

Production, regeneration and biochemical precursors of the major components of the defensive secretion of Eurycotis floridana (Dictyoptera, polyzoste…

2000

0965-1748 (Print) Journal Article; The defensive secretion of the cockroach Eurycotis floridana contains three main components, (E)-2-hexenal, (E)-2-hexenol and (E)-2-hexenoic acid, which represented about 98% of the organic phase. The quantity of the aldehyde, alcohol, and acid present in the defensive secretion increased rapidly for 60 days from the imaginal moult. Following artificial discharge, the males were able to regenerate their initial volume of secretion over a 30 day period. To investigate the possible routes of biosynthesis of the three components, E. floridana was injected with 14C-labeled fatty acids and acetate, and the incorporation of 14C into the three components were qua…

MaleExocrine glandCockroachesEurycotisExocrine Glands/physiologyBiochemistryPheromonesCarbon Radioisotopes/diagnostic usePalmitic acidHexanols/*metabolismchemistry.chemical_compoundExocrine GlandsBiosynthesisbiology.animalmedicineAnimalsSecretionCarbon RadioisotopesCaproatesMolecular BiologyCockroachbiologyDictyopterabiology.organism_classificationmedicine.anatomical_structurechemistryBiochemistryPheromones/biosynthesisInsect ScienceCockroaches/*chemistryHexanoic Acids/*metabolismHexanolsMoulting
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Male sex pheromone of cockroach Eurycotis floridana (Walker) (Blattidae, Polyzosteriinae): role and composition of tergites 2 and 8 secretions

1994

0098-0331; In Eurycotis floridana, the male calling behavior is associated with the exposition of epidermal glands located under tergites 2, 7, and 8. 4-Hydroxy-5-methyl-3(2H)-furanone and 4-hydroxy-2,5-dimethyl-3(2H)-furanone were recently identified as the specific components of tergite 7 secretion. Methylene chloride extracts of tergite 7 and its major compound 4-hydroxy-5-methyl-3(2H)-furanone attract the conspecific females at a distance. Methylene chloride extracts of tergite 8 are also attractive at a distance to the females, whereas extracts of tergite 2 had no effect on males and females. Our GC investigations showed the absence of specific compounds in tergite 2 secretions. The GC…

0106 biological sciencesEURYCOTIS FLORIDANAZoologyDODECANOL(2R* 3R*)-BUTANEDIOL010603 evolutionary biology01 natural sciencesBiochemistrySEXUAL BEHAVIORbiology.animalEcology Evolution Behavior and SystematicsCockroachDICTYOPTERAbiologyBlattidaeDictyopteraBENZYL-2-HYDROXYBENZOATEGeneral MedicineAnatomybiology.organism_classification010602 entomologyPolyzosteriinaeBLATTIDAECOCKROACHSexual behaviorSex pheromoneSEX PHEROMONEComposition (visual arts)[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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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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Pheromones inBlattella germanica andBlaberus craniifer (Blaberoidea): Glandular source, morphology and analyses of pheromonally released behaviours

1993

Females ofBlattella germanica andBlaberus craniifer produce a volatile sex pheromone attractive at a distance for conspecific males. During the emission of the pheromone, females ofB. craniifer adopt a typical calling posture; we never observe such a stance inB. germanica females. For both species, the glandular structures responsible for pheromonal production are located on the female pygidium. InB. germanica, the thickness of the glandular epithelium is clearly correlated with the attractiveness of females, being maximum for 13 day old females. The functions of the pygidial glands are discussed in both species.

Glandular epitheliumbiologyNature ConservationSex pheromoneBlaberoideaBotanyDictyopteraZoologyPheromonebiology.organism_classificationBiochemistryEcology Evolution Behavior and SystematicsPygidiumChemoecology
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Molecular characterization of Lma-p54, a new epicuticular surface protein in the cockroach Leucophaea maderae (Dictyoptera, oxyhaloinae)

2002

0965-1748 (Print) Journal Article Research Support, Non-U.S. Gov't; The epicuticular surface protein Lma-p54 is imbedded in the "cuticular waxes" which cover the abdominal surface of the adult Leucophaea maderae. Natural Lma-p54 was purified and the complete cDNA sequence was determined by RT-PCR using primers based on Edman degradation fragments. Northern blot and in situ hybridization analyses showed that Lma-p54 was expressed in the adult abdominal epidermis and in the chemical sense organs of both sexes. Sequence alignment indicates that Lma-p54 is closely related to aspartic proteases (EC 3.4.23). However, there are critical amino acid substitutions at the level of the active site and,…

MaleDNA ComplementaryMolecular Sequence DataSequence HomologyCockroachesSequence alignmentRecombinant Proteins/chemistryComplementary/geneticsBiochemistryPolymerase Chain ReactionCockroaches/*genetics/growth & developmentComplementary DNAAspartic Endopeptidases/*geneticsAspartic Acid EndopeptidasesAnimalsGlycoproteins/*geneticsNorthern blotAmino Acid SequenceMolecular BiologyPeptide sequenceIn Situ HybridizationGlycoproteinschemistry.chemical_classificationSequence Homology Amino AcidbiologyEdman degradationBase SequenceDictyopteraDNAbiology.organism_classificationMolecular biologyRecombinant ProteinsAmino acidInsect Proteins/*geneticsAmino AcidBiochemistrychemistryInsect ScienceLarvaInsect ProteinsFemaleGlycoproteinSequence Alignment
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Isolation and identification of 4,6,8-trimethyl-7,9-undecadien-5-ol, a female-specific compound, in tergal gland secretion ofCryptocercus punctulatus…

1991

International audience; The secretion of the tergal glands of Cryptocercus punctulatus consists of a complex mixture of 27 compounds. Of this mixture, only one compound (compound B) is specific for females. By dissecting 200 tergal glands, 50 µg of pure compound B was collected by preparative GC; it was identified as (Z, E-4,6,8-trimethyl-7,9-undecadien-5-oI. Its functions as well as its absolute configuration still have to be determined.

0106 biological sciencesDICTYOPTERASTRUCTUREWOODROACHStereochemistry[SDV]Life Sciences [q-bio]Absolute configurationDictyopteraGeneral MedicineAnatomyBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesBiochemistryCryptocercus punctulatus010602 entomologyCRYPTOCERCIDAEPheromoneSecretionGland secretionCRYPTOCERCUS PUNCTULATUSCOCK-ROACHEcology Evolution Behavior and SystematicsJournal of Chemical Ecology
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The defensive secretion of Eurycotis floridana (Dictyoptera, Blattidae, Polyzosteriinae): chemical identification and evidence of an alarm function

1997

0965-1748 doi: DOI: 10.1016/S0965-1748(97)00033-7; The defensive secretion of the cockroach Eurycotis floridana was believed to contain only (E)-2-hexenal. However, we have shown it consists of 40 components, of which 30 were tentatively identified. (E)-2-Hexenal, (E)-2-hexenol and (E)-2-hexenoic acid represented approximately 98% of the organic phase. The other 2% included 10 aldehydes, 10 alcohols, four acids, two lactones and one ether. Four compounds are novel insect exudates: 3-ethoxyhexanal, 3-hydroxyhexanal, [(E)-1-pentenyl]-4-propyl-1,3-dioxane and 3-[(E)-2-hexenoxyl-hexanal. In addition to its well-known allomonal function, we have demonstrated that the defensive secretion also act…

0106 biological sciencesStereochemistryDEFENSEmedia_common.quotation_subjectEtherInsectEurycotisDictyoptera010603 evolutionary biology01 natural sciencesBiochemistryEurycotis floridanaPheromonesExocrine glandschemistry.chemical_compoundBlattidaebiology.animalBotany[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular Biology[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyMolecular BiologyComputingMilieux_MISCELLANEOUSmedia_commonCockroachbiologyBlattidaeDefenceDictyopterabiology.organism_classification3. Good health010602 entomologychemistryInsect ScienceSex pheromonePheromoneAlarm
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Calling behaviour of female Periplaneta americana: Behavioural analysis and identification of the pheromone source

1993

Abstract The site for the production of Periplanone B, one of the components of the female sex pheromone of Periplaneta americana , was localized in glands situated in the genital atrium, and we have called these structures atrial glands. While emitting the sex pheromone, females adopt a characteristic calling posture during which time the atrial glands are exposed. Behavioural assays of males utilizing pentane extracts of various female body parts revealed that atrial gland extracts are highly attractive, and induced more wing-raising behaviour, than any other female body part. GC-MS analyses support these results by revealing that Periplanone B is only present in the atrial glands. We est…

0106 biological sciencesmedicine.medical_specialtybiologyPhysiologyBehavioural analysisBlattidaePeriplanone BDictyopterabiology.organism_classification010603 evolutionary biology01 natural sciences010602 entomologychemistry.chemical_compoundEndocrinologystomatognathic systemchemistryInsect ScienceInternal medicineSex pheromonecardiovascular systemmedicinePheromoneSex organPeriplanetaJournal of Insect Physiology
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Seducin, male sex pheromone of the cockroachNauphoeta cinerea: Isolation, identification, and bioassay.

1990

The male sex pheromone of the cockroachNauphoeta cinerea was isolated from adult sternal glands and identified by gas chromatography-mass spectrometry. This pheromone, which attracts females from a distance, is a multicomponent blend. It is composed principally of three compounds: 3-hydroxy-2-butanone (acetoin), 2-methylthiazolidine, and 4-ethyl-2-meth-oxyphenol. A mixture of synthetic compounds in a ratio of 4∶4∶1 (2700 ng) elicits maximal response and short latency of response by receptive females, similar to that induced by male sternal gland extracts. Tested separately, each compound induces a positive response, but the moving times spent by females are generally longer than with the mi…

medicine.medical_specialtyCockroachanimal structuresbiologyAcetoinDictyopteraGeneral Medicine4-Ethylguaiacolbiology.organism_classificationBiochemistryBlaberidaechemistry.chemical_compoundEndocrinologychemistryInternal medicinebiology.animalSex pheromoneBotanymedicinePheromoneBioassayEcology Evolution Behavior and SystematicsJournal of chemical ecology
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Pheromonal emission during the mating behavior ofEurycotis floridana (Walker) (Dictyoptera: Blattidae)

1996

The sexual behavior of males and females ofEurycotis floridana was investigated and the various associated behavioral sequences are described. Olfactometer data proved that the male produces a volatile sex pheromone attractive at a distance to conspecific females. The male initiates courtship behavior by exposing the glandular areas on the anterior parts of abdominal tergites 2, 7, and 8. This male calling behavior was observed throughout the day. The males can mate when 8 days old, whereas virgin females are sexually receptive 18 days after becoming adults. Once attracted near the male, the female opens her genital atrium and climbs on the back of the male, where she feeds on the glandular…

Courtship displayAnimal ecologyInsect ScienceMating callSex pheromonePheromoneDictyopteraAnatomyEurycotisBiologyMatingbiology.organism_classificationEcology Evolution Behavior and SystematicsJournal of Insect Behavior
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