Search results for "photoperiodism"

showing 10 items of 54 documents

Seasonal photoperiodism regulates the expression of cuticular and signalling protein genes in the pea aphid

2007

International audience; Seasonal photoperiodism in aphids is responsible for the spectacular switch from asexual to sexual reproduction. However, little is known on the molecular and physiological mechanisms involved in reproductive mode shift through the action of day length. Earlier works showed that aphid head, but not eyes, directly perceives the photoperiodic signal through the cuticle. In order to identify genes regulating the photoperiodic response, a 3321 cDNA microarray developed for the pea aphid, Acyrthosiphon pisum was used to compare RNA populations extracted from heads of short- and long-day reared aphids. Microarray analyses revealed that 59 different transcripts were signifi…

MaleCell signalingPhotoperiodBiologyBiochemistry03 medical and health sciences0302 clinical medicineComplementary DNAAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyRNA MessengerMolecular BiologyGeneOligonucleotide Array Sequence Analysis030304 developmental biologyGeneticsphotoperiodism0303 health sciencesAphidReverse Transcriptase Polymerase Chain ReactionGene Expression Profilingfood and beveragesbiology.organism_classificationSexual reproductionAcyrthosiphon pisumADNcGene Expression RegulationAphidsInsect ScienceInsect ProteinsFemaleSeasonsHeadMoulting030217 neurology & neurosurgerySignal Transduction
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Analysis of synaptic bodies in the Sprague–Dawley rat pineal gland under extreme photoperiods

2007

Synaptic bodies (SBs) are small, prominent organelles in pinealocytes, most probably involved in signal transduction processes. To check the influence of the photoperiod on their shape plasticity and number we chose two extreme lighting conditions, i.e. 20 h of illumination followed by 4 h of darkness (LD 20:4) versus (LD 4:20). Pineal glands were assessed at 0, 4 and 13 h after dark onset. Under both conditions reconstructed SBs were plates or ribbons but never spheres and there were no obvious differences in morphology. Photoperiodic changes in SB profile size and number were investigated: application of the established method for SB quantification based on single section profile counts (…

MaleMorphology (linguistics)LightPhotoperiodGeneral Physics and AstronomyBiologyPlasticityPineal GlandPinealocytelaw.inventionRats Sprague-DawleyRat Pineal GlandMicroscopy Electron TransmissionStructural BiologylawImage Processing Computer-AssistedAnimalsGeneral Materials ScienceOrganellesphotoperiodismCell BiologyAnatomyRatsSprague dawleyDarknessBiophysicsFemaleElectron microscopeMicron
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Myo-inositol as a main metabolite in overwintering flies: seasonal metabolomic profiles and cold stress tolerance in a northern drosophilid fly

2012

SUMMARY Coping with seasonal changes in temperature is an important factor underlying the ability of insects to survive over the harsh winter conditions in the northern temperate zone, and only a few drosophilids have been able to colonize sub-polar habitats. Information on their winter physiology is needed as it may shed light on the adaptive mechanisms of overwintering when compared with abundant data on the thermal physiology of more southern species, such as Drosophila melanogaster. Here we report the first seasonal metabolite analysis in a Drosophila species. We traced changes in the cold tolerance and metabolomic profiles in adult Drosophila montana flies that were exposed to thermope…

MalePhysiologyClimatekylmäkoomasta toipuminenvuodenaikaisuuschemistry.chemical_compoundkylmänkestävyyskylmään sopeutuminenFinlandOverwinteringphotoperiodismPrincipal Component Analysisbiologyseasonalitycryoprotectantcold acclimationTemperatureAdaptation PhysiologicalCold TemperatureHabitatMetabolomeDrosophilaFemaleSeasonsDrosophila melanogasterProlinePhotoperiodchill coma recoveryreproductive diapauseAquatic ScienceStress PhysiologicalBotanyTemperate climatemedicineCold acclimationAnimalsMetabolomicsHistidineLactic AcidMolecular BiologyEcology Evolution Behavior and Systematicsfungicold toleranceSeasonalitybiology.organism_classificationmedicine.diseaseTrehalosekryoprotektantitchemistrylisääntymisdiapaussiInsect Scienceta1181Animal Science and ZoologyInositol
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Seasonal differences in ventricular proliferation of adult Gallotia galloti lizards.

2007

Lizards present neuronal production throughout the telencephalon in their adult state, both naturally and after experimentally induced brain lesions. As in birds, lizards present seasonal behavioural variations. In birds, such variations have been shown to alter neuronal production. In birds and mammals, lack of stimuli or exposure to stress interferes with adult neurogenetic capacity. The effect of this type of study has not been performed with lizards. In the present study we used bromodeoxyuridine to label dividing cells in the ventricular walls of Gallotia galloti lizards during all four seasons and we investigated the effect of captivity on such proliferation. We found that G. galloti …

MaleTelencephalonLightPhotoperiodCentral nervous systemCaptivityZoologyCell CountStatistics NonparametricLateral Ventriclesparasitic diseasesmedicineAnimalsSauriaMolecular BiologyCell ProliferationphotoperiodismNeuronsAnalysis of VariancebiologyCerebrumEcologyGeneral NeuroscienceStem CellsGallotia gallotiLizardsbiology.organism_classificationmedicine.anatomical_structureBrain lesionsVentricular zonesense organsNeurology (clinical)SeasonsDevelopmental BiologyBrain research
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Population dependent effects of photoperiod on diapause related physiological traits in an invasive beetle (Leptinotarsa decemlineata).

2012

Organisms undergoing latitudinal range expansion face a change in the photoperiod which can lead to a mismatch between the timing of seasonal changes in physiological and life history traits with seasonal environmental changes. This mismatch can lead to lowered survival, for example, due to unsynchronized diapause timing. Successful range expansion even in recent introductions requires that organisms which use the photoperiod for seasonal predictions should show interpopulational differences in photoperiodic responses at different latitudes, as the photoperiod is a function of latitude. We investigated among population differences in photoperiodic responses of life history and physiological…

Maleendocrine systemLightPhysiologymedia_common.quotation_subjectPhotoperiodPopulationZoologyBiologyDiapauseBotanyAnimalsMetamorphosiseducationLeptinotarsaOverwinteringmedia_commonphotoperiodismeducation.field_of_studyMetamorphosis BiologicalHomeoviscous adaptationbiology.organism_classificationLipid MetabolismColeopteraInsect ScienceFemaleSeasonsAdaptationJournal of insect physiology
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Photoperiodic regulation of cold tolerance and expression levels of regucalcin gene in Drosophila montana

2011

Temperature-induced plasticity of cold tolerance has been reported in many insect species, but cold tolerance can also be affected by changes in day (or night) length. In the present study we elucidate the direct and indirect effects of photoperiod on the cold tolerance of females of two Drosophila montana strains--one which possesses a robust photoperiodic diapause and another which does not. In the diapause-strain the time needed for recovery from chill coma showed a positive correlation with day length, but diapause itself played only a minor role in photoperiodic acclimation. The strain that was not able to enter to diapause as a response to day length also lacked photoperiodic cold acc…

Maleendocrine systemPhysiologyPhotoperiodmedia_common.quotation_subjectInsectDiapauseBiologyAcclimatizationBotanyCold acclimationAnimalsDrosophila ProteinsGenemedia_commonphotoperiodismReproductionCalcium-Binding ProteinsIntracellular Signaling Peptides and Proteinsfood and beveragesRegucalcinAdaptation PhysiologicalCell biologyCold TemperatureInsect ScienceDrosophilaFemaleAdaptationJournal of Insect Physiology
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Rat pineal arylalkylamine-N-acetyltransferase: cyclic AMP inducibility of its gene depends on prior entrained photoperiod.

2003

The nocturnal biosynthesis of melatonin in the rat pineal depends on strongly enhanced expression of the enzyme N-acetyltransferase [arylalkylamine N-acetyltransferase (AA-NAT); EC 2.3.1.87]. AA-NAT transcription is stimulated during darkness by adrenergic inputs to the pineal from the suprachiasmatic nucleus (SCN). Nocturnal activation of the AA-NAT promotor following stimulation of pinealocyte adrenoceptors involves cAMP-dependent stimulation of protein kinase A (PKA). The nocturnal rise in AA-NAT depends on the lighting conditions. As compared with light/dark (LD) 12:12, the delay between dark onset and the nocturnal rise in AA-NAT is shortened under long photoperiods and prolonged under…

Maleendocrine systemmedicine.medical_specialtyArylamine N-AcetyltransferasePhotoperiodStimulationBiologyPineal GlandGene Expression Regulation EnzymologicPinealocyteMelatoninRats Sprague-DawleyCellular and Molecular NeuroscienceNorepinephrineOrgan Culture TechniquesInternal medicineReceptors Adrenergic betamedicineCyclic AMPAnimalsProtein kinase AMolecular BiologyMelatoninphotoperiodismSuprachiasmatic nucleusfungiAdrenergic beta-AgonistsDarknessCyclic AMP-Dependent Protein KinasesCircadian RhythmRatsbody regionsEndocrinologyEnzyme InductionDarknessArylalkylaminehormones hormone substitutes and hormone antagonistsPhotic Stimulationmedicine.drugSignal TransductionBrain research. Molecular brain research
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Cyclic AMP-inducible genes respond uniformly to seasonal lighting conditions in the rat pineal gland

2006

The encoding of photoperiodic information ensues in terms of the daily profile in the expression of cyclic AMP (cAMP)-inducible genes such as the arylalkylamine N-acetyltransferase (AA-NAT) gene that encodes the rate-limiting enzyme in melatonin formation. In the present study, we compared the influence of the photoperiodic history on the cAMP-inducible genes AA-NAT, inducible cyclic AMP early repressor (ICER), fos-related antigen-2 (FRA-2), mitogen-activated protein kinase phosphatase-1 (MKP-1), nerve growth factor inducible gene-A (NGFI-A) and nerve growth factor inducible gene-B (NGFI-B) in the pineal gland of rats. For this purpose, we monitored the daily profiles of each gene in the sa…

Maleendocrine systemmedicine.medical_specialtyLightRepressorBiologyPineal GlandCyclic AMP Response Element ModulatorRats Sprague-DawleyPineal glandInternal medicineCyclic AMPmedicineAnimalsRNA MessengerCircadian rhythmProtein kinase AphotoperiodismReverse Transcriptase Polymerase Chain ReactionGeneral NeuroscienceCircadian RhythmRatsEndocrinologyNerve growth factormedicine.anatomical_structureGene Expression RegulationArylalkylamineFemalehormones hormone substitutes and hormone antagonistsEndocrine glandNeuroscience
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Circadian and photoperiodic correlation between the number of pineal gland synaptic ribbons and serum melatonin levels in the rat.

1987

A study is made of the number of pineal gland synaptic ribbons in 35 maleWistar rats over a 24-hour period during the months of September and February, in correlation to the serum melatonin levels during the same periods and photophases.The results of the study confirm those reported by others authors and suggest that the synaptic ribbons may be the stimuli-transmitting organs facilitating pineal secretory function.

Maleendocrine systemmedicine.medical_specialtyPeriodicityHistologyLightPeriod (gene)BiologyPineal GlandSynapseMelatoninPineal glandInternal medicinemedicineAnimalsCircadian rhythmMelatoninphotoperiodismRats Inbred StrainsCircadian RhythmRatsmedicine.anatomical_structureEndocrinologynervous systemSynapsesAnatomyhormones hormone substitutes and hormone antagonistsmedicine.drugActa anatomica
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The photoperiod entrains the molecular clock of the rat pineal.

2005

The suprachiasmatic nucleus-pineal system acts as a neuroendocrine transducer of seasonal changes in the photoperiod by regulating melatonin formation. In the present study, we have investigated the extent to which the photoperiod entrains the nonself-cycling oscillator in the Sprague-Dawley rat pineal. For this purpose, the 24-h expression of nine clock genes (bmal1, clock, per1, per2, per3, cry1, cry2, dec1 and dec2) and the aa-nat gene was monitored under light-dark 8 : 16 and light-dark 16 : 8 in the rat pineal by using real-time RT-PCR. The 24-h pattern of the expression of only per1, dec2 and aa-nat genes was affected by photoperiod. In comparison with the short photoperiod, the durat…

Maleendocrine systemmedicine.medical_specialtyTime FactorsPhotoperiodCLOCK ProteinsClockworkBiologyPineal GlandRats Sprague-DawleyBiological ClocksInternal medicinemedicineAnimalsCircadian rhythmRNA MessengerphotoperiodismAnalysis of VarianceReverse Transcriptase Polymerase Chain ReactionGeneral NeuroscienceAdaptation PhysiologicalRatsPER2CLOCKDEC1PER3EndocrinologyGene Expression RegulationTrans-ActivatorsFemaleSuprachiasmatic Nucleussense organshormones hormone substitutes and hormone antagonistsPER1The European journal of neuroscience
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