Search results for "Circadian clock"

showing 7 items of 57 documents

Involvement of circadian oscillation(s) in the photoperiodic time measurement and the induction of reproductive diapause in a northern Drosophila spe…

2013

An ability to predict forthcoming changes in environmental conditions and get prepared for them in advance is crucial for the survival and reproduction of organisms living in a seasonally changing environment. We have studied the possible involvement of circadian oscillator(s) in the photoperiodic timer controlling seasonal responses by tracing Drosophila montana females' diapause induction in constant darkness and in a classical Nanda-Hamner experiment. Nearly all females developed ovaries in continuous darkness, which shows the direct development to be their default developmental pathway in the absence of photoperiods. In Nanda-Hamner experiment the females' diapause incidence was close t…

endocrine systemLightPhysiologymedia_common.quotation_subjectPhotoperiodCircadian clockZoologyDiapauseRhythmBotanyAnimalsHumansCircadian rhythmDrosophilamedia_commonphotoperiodismLife Cycle StagesbiologyReproductionDarknessbiology.organism_classificationCircadian RhythmInsect ScienceDarknessta1181DrosophilaFemalesense organsReproductionJournal of insect physiology
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Mapping and quantification of cryptochrome expression in the brain of the pea aphid Acyrthosiphon pisum.

2021

Aphids are paradigmatic photoperiodic animals often used to study the role of the circadian clock in the seasonal response. Previously, we described some elements of the circadian clock core (genes period and timeless) and output (melatonin, AANATs and PTTH) that could have a role in the regulation of the aphid seasonal response. More recently we identified two opsins (C-ops and SWO4) as candidate input photoperiodic receptors. In the present report, we focus on the study of cryptochromes (cry) as photoreceptors of the circadian clock and discuss their involvement in the seasonal response. We analyze the expression of cry1 and cry2 genes in a circadian and seasonal context, and map their ex…

endocrine systemanimal structuresTimelessPeriod (gene)Circadian clockPeasBrainContext (language use)Biologybiology.organism_classificationCell biologyAcyrthosiphon pisumCircadian RhythmCLOCKCryptochromesCryptochromeInsect ScienceAphidsCircadian ClocksGeneticsAnimalssense organsCircadian rhythmMolecular BiologyTranscription FactorsInsect molecular biologyREFERENCES
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Nanda-Hamner Curves Show Huge Latitudinal Variation but No Circadian Components in Drosophila Montana Photoperiodism

2021

Insect species with a wide distribution offer a great opportunity to trace latitudinal variation in the photoperiodic regulation of traits important in reproduction and stress tolerances. We measured this variation in the photoperiodic time-measuring system underlying reproductive diapause in Drosophila montana, using a Nanda-Hamner (NH) protocol. None of the study strains showed diel rhythmicity in female diapause proportions under a constant day length (12 h) and varying night lengths in photoperiods ranging from 16 to 84 h at 16°C. In the northernmost strains (above 55°N), nearly all females entered diapause under all photoperiods and about half of them even in continuous darkness, while…

endocrine systemmahlakärpäsetphotoperiodic countercircadian clockbiorytmithyönteisetnorthern insectsreproductive diapausenon-circadian photoperiodslepotilatalvehtiminenvuorokausirytmi
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Arylalkylamine N-acetyltransferase gene expression in retina and pineal gland of rats under various photoperiods

2004

Abstract The present study examines how the circadian oscillators in the retina and the suprachiasmatic nucleus (SCN) respond to changes in photoperiod. ArylalkylamineN-acetyltransferase (aa-nat) gene expression studied by quantitative RT-PCR revealed that in adult Sprague–Dawley rats kept under different light–dark (LD) cycles for two weeks the temporal pattern of AA-NAT mRNA expression was identical in retina and pineal gland. In both tissues, the time span between the onset of darkness and the nocturnal rise in AA-NAT mRNA expression was 3 h under LD 20:4, 6 h under LD 12:12, and 15 h under LD 4:20. As aa-nat expression in the pineal gland is regulated by the circadian oscillator in SCN,…

endocrine systemmedicine.medical_specialtyLightArylamine N-AcetyltransferasePhotoperiodCircadian clockBiophysicsGene ExpressionBiologyPineal GlandBiochemistryRetinaRats Sprague-DawleyPineal glandInternal medicineGene expressionmedicineAnimalsRNA MessengerCircadian rhythmMolecular BiologyphotoperiodismSuprachiasmatic nucleusCell BiologyDarknessCircadian RhythmRatsEndocrinologymedicine.anatomical_structureDarknessArylalkylaminesense organsBiochemical and Biophysical Research Communications
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The role of the circadian clock in adaptation in seasonally changing environment in Drosophila montana

2012

liikeaktiivisuusrytmisopeutuminenlisääntymislepokausiseasonalityeclosion rhythmkärpäsetvuodenaikaisrytmivalojaksoinen kellophotoperiodic timercircadian clockgene expressionlocomotor activity rhythmgeeniekspressiosirkadinen kelloclock neuronsvuorokausirytmi
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Coffee Restores Expression of lncRNAs Involved in Steatosis and Fibrosis in a Mouse Model of NAFLD

2021

Background and aim: Coffee intake exerts protective effects against non-alcoholic fatty liver disease (NAFLD), although without fully cleared mechanisms. In this study we aimed to assess whether coffee consumption may influence the expression of long non-coding RNAs (lncRNAs) in the liver. Methods: C57BL/6J mice were fed a 12-week standard diet (SD), high-fat diet (HFD) or HFD plus decaffeinated coffee solution (HFD + coffee). Expression of specific lncRNAs involved in NAFLD was analyzed by real-time PCR. For the most differentially expressed lncRNAs, the analysis was also extended to their mRNA targets. Results: Decaffeinated coffee intake reduced body weight gain, prevented NAFLD, lowered…

lncRNA.Liver CirrhosisMalemedicine.medical_specialtyGm16551; H19; NAFLD; coffee; lncRNA; Animals; Coffee; Disease Models Animal; Fatty Liver; Gene Expression; Liver; Liver Cirrhosis; Male; Mice; Mice Inbred C57BL; Non-alcoholic Fatty Liver Disease; RNA Long NoncodingCoenzyme ACircadian clockcoffeeGene ExpressionBiologyInbred C57BLArticlechemistry.chemical_compoundMicelncRNADownregulation and upregulationFibrosisSettore BIO/13 - Biologia ApplicataNon-alcoholic Fatty Liver DiseaseInternal medicineNAFLDmedicineAnimalsTX341-641Messenger RNANutrition and DieteticsH19Nutrition. Foods and food supplyAnimalGm16551Fatty liverNAFLD; coffee; lncRNA; Gm16551; H19nutritional and metabolic diseasesmedicine.diseaseMice Inbred C57BLFatty LiverDisease Models AnimalEndocrinologychemistryLiverLipogenesisDisease ModelsRNARNA Long NoncodingLong NoncodingSteatosisFood Science
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Deregulated Copper Transport Affects Arabidopsis Development Especially in the Absence of Environmental Cycles    

2010

Abstract Copper is an essential cofactor for key processes in plants, but it exerts harmful effects when in excess. Previous work has shown that the Arabidopsis (Arabidopsis thaliana) COPT1 high-affinity copper transport protein participates in copper uptake through plant root tips. Here, we show that COPT1 protein localizes to the plasma membrane of Arabidopsis cells and the phenotypic effects of transgenic plants overexpressing either COPT1 or COPT3, the latter being another high-affinity copper transport protein family member. Both transgenic lines exhibit increased endogenous copper levels and are sensitive to the copper in the growth medium. Additional phenotypes include decreased hypo…

photoperiodismbiologyPhysiologyMembrane transport proteinPeriod (gene)Circadian clockfood and beveragesPlant Sciencebiology.organism_classificationTransport proteinCell biologyArabidopsisBotanyGeneticsbiology.proteinArabidopsis thalianaCircadian rhythmPlant Physiology
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