Search results for " SENESCENCE"

showing 10 items of 139 documents

Condition‐dependent mortality exacerbates male (but not female) reproductive senescence and the potential for sexual conflict

2020

Disentangling the relationship between age and reproduction is central to understand life-history evolution, and recent evidence shows that considering condition-dependent mortality is a crucial piece of this puzzle. For example, nonrandom mortality of 'low-condition' individuals can lead to an increase in average lifespan. However, selective disappearance of such low-condition individuals may also affect reproductive senescence at the population level due to trade-offs between physiological functions related to survival/lifespan and the maintenance of reproductive functions. Here, we address the idea that condition-dependent extrinsic mortality (i.e. simulated predation) may increase the a…

0106 biological sciences0301 basic medicineNatural selectionReproductive successOffspringmedia_common.quotation_subjectBiology010603 evolutionary biology01 natural sciencesPredationSexual conflict03 medical and health sciencesReproductive senescence030104 developmental biologyAgeingReproductionEcology Evolution Behavior and SystematicsDemographymedia_commonJournal of Evolutionary Biology
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Forecasting ocean warming impacts on seabird demography: a case study on the European storm petrel

2016

Bottom-up climatic forcing has been shown to be influential for a variety of marine taxa, but evidence on seabird populations is scarce. Seasonal variation in environmental conditions can have an indirect effect on subsequent reproduction, which, given the longevity and single-brooding of seabirds, may affect population dynamics. Our study focuses on linking the effect of oceanographic conditions (from 1991 to 2013) to the fecundity and consequently pop - ulation growth rate of the Mediterranean subspecies of the European storm petrel Hydrobates pelagicus melitensis. In this study, we examined 23 yr of > 5400 capture–mark−recaptures (CMR) and modelled the probability of skipping reproductio…

0106 biological sciencesEcologybiologyEcology010604 marine biology & hydrobiologyEffects of global warming on oceansCapture mark recaptureAquatic Sciencebiology.organism_classification010603 evolutionary biology01 natural sciencesHydrobates pelagicusOceanographyGeographySettore AGR/11 - Entomologia Generale E Applicatabiology.animalPopulation growthStorm petrelSeabirdCapture−mark−recapture · Environmental stochasticity · Hydrobates pelagicus · Population growth rate · SenescenceEcology Evolution Behavior and Systematics
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Paternal age negatively affects sperm production of the progeny.

2021

International audience; Parental age has profound consequences for offspring’s phenotype. However, whether patrilineal age affects offspring sperm production remains unknown, despite the importance of sperm production for male reproductive success in species facing post-copulatory sexual selection. Using a longitudinal dataset on ejaculate attributes of the houbara bustard, we showed that offspring sired by old fathers had different age-dependent trajectories of sperm production compared to offspring sired by young fathers. Specifically, they produced less sperm (−48%) in their first year of life, and 14% less during their lifetime. Paternal age had the strongest effect, with weak evidence …

0106 biological sciencesMaleAgingOffspring010603 evolutionary biology01 natural sciencesPaternal Age[SDV.BDLR.RS]Life Sciences [q-bio]/Reproductive Biology/Sexual reproductionejaculate qualityBirdsReproductive senescencereproductive senescence[SDV.BA.ZV]Life Sciences [q-bio]/Animal biology/Vertebrate ZoologyAnimalsBustardEcology Evolution Behavior and Systematicsreproductive and urinary physiologybiologyReproductive successEcology010604 marine biology & hydrobiologyReproductionbiology.organism_classificationSpermSpermatozoamale gametesAgeingSexual selectionpost copulatory sexual selectionSpermatogenesisDemographyoffspring phenotypeEcology lettersReferences
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Post-copulatory sexual selection allows females to alleviate the fitness costs incurred when mating with senescing males.

2019

8 pages; International audience; Male senescence has detrimental effects on reproductive success and offspring fitness. When females mate with multiple males during the same reproductive bout, post-copulatory sexual selection that operates either through sperm competition or cryptic female choice might allow females to skew fertilization success towards young males and as such limit the fitness costs incurred when eggs are fertilized by senescing males. Here, we experimentally tested this hypothesis. We artificially inseminated female North African houbara bustards with sperm from dyads of males of different (young and old) or similar ages (either young or old). Then, we assessed whether si…

0106 biological sciencesMaleOffspringEvolutionpaternal ageBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyBirds03 medical and health sciencesReproductive senescenceSexual Behavior Animalreproductive senescenceAnimalsMatingSperm competitionLife History Traits030304 developmental biologyGeneral Environmental Science0303 health sciencesGeneral Immunology and MicrobiologyReproductive successoffspring survivalReproductionGeneral MedicineSpermSpermatozoaFemale sperm storageSexual selectionFertilizationFemalesperm selection[SDE.BE]Environmental Sciences/Biodiversity and EcologyGeneral Agricultural and Biological Sciencessiring successDemography[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Age is not just a number—Mathematical model suggests senescence affects how fish populations respond to different fishing regimes

2021

Abstract Senescence is often described as an age‐dependent increase in natural mortality (known as actuarial senescence) and an age‐dependent decrease in fecundity (known as reproductive senescence), and its role in nature is still poorly understood. Based on empirical estimates of reproductive and actuarial senescence, we used mathematical simulations to explore how senescence affects the population dynamics of Coregonus albula, a small, schooling salmonid fish. Using an empirically based eco‐evolutionary model, we investigated how the presence or absence of senescence affects the eco‐evolutionary dynamics of a fish population during pristine, intensive harvest, and recovery phases. Our si…

0106 biological sciencesSenescencesenescenceeco‐evolutionary dynamicstrade‐offsFishingPopulationlife‐historyBiology010603 evolutionary biology01 natural sciencesReproductive senescence14. Life underwatereducationPopulation dynamics of fisheriesEcology Evolution Behavior and SystematicsQH540-549.5Nature and Landscape ConservationOriginal Researcheducation.field_of_studyEcologyTrawlingEcology010604 marine biology & hydrobiologyFecundityfisheriesGillnetting
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Coffee silverskin extract protects against accelerated aging caused by oxidative agents

2016

Nowadays, coffee beans are almost exclusively used for the preparation of the beverage. The sustainability of coffee production can be achieved introducing new applications for the valorization of coffee by-products. Coffee silverskin is the by-product generated during roasting, and because of its powerful antioxidant capacity, coffee silverskin aqueous extract (CSE) may be used for other applications, such as antiaging cosmetics and dermaceutics. This study aims to contribute to the coffee sector’s sustainability through the application of CSE to preserve skin health. Preclinical data regarding the antiaging properties of CSE employing human keratinocytes and Caenorhabditis elegans are col…

0301 basic medicineAgingAntioxidantmedicine.medical_treatmentdermaceuticPharmaceutical ScienceCoffeamedicine.disease_causeAntioxidantsAnalytical Chemistrychemistry.chemical_compound0302 clinical medicineDrug Discoveryoxidative stressFood sciencenutricosmeticCellular SenescenceRoastingChemistryOxidantsChemistry (miscellaneous)030220 oncology & carcinogenesisMolecular Medicinecoffee silverskincoffee silverskin; oxidative stress; UVC radiation; chlorogenic acid; skin health; accelerated aging; nutricosmetic; dermaceuticskin healthCell SurvivalUltraviolet Rayschlorogenic acidOxidative phosphorylationArticlelcsh:QD241-441UVC radiation03 medical and health scienceslcsh:Organic chemistryChlorogenic acidCell Line Tumorparasitic diseasesmedicineaccelerated agingAnimalsHumansPhenolsPhysical and Theoretical ChemistryCaenorhabditis elegansPlant Extractsbusiness.industryOrganic ChemistryAccelerated agingBiotechnologyOxidative StressHaCaT030104 developmental biologyReactive Oxygen SpeciesbusinessBiomarkersOxidative stress
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Cellular Senescence and Inflammaging in Age-Related Diseases

2018

0301 basic medicineAgingArticle SubjectImmunologyCellular senescenceCell BiologyBiologymedicine.disease_causeBioinformatics03 medical and health sciencesOxidative Stress030104 developmental biologyEditorialAge relatedmedicinelcsh:PathologyAnimalsHumansSettore MED/05 - Patologia ClinicaCellular Senescence Inflammaging Age-Related DiseasesOxidative stressCellular Senescencelcsh:RB1-214Mediators of Inflammation
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From lymphopoiesis to plasma cells differentiation, the age-related modifications of B cell compartment are influenced by “inflamm-ageing”

2017

Ageing is a complex process characterized by a general decline in physiological functions with increasing morbidity and mortality. The most important aspect of ageing is the chronic inflammatory status, named “inflamm-ageing”, strictly associated with the deterioration of the immune function, termed “immunosenescence”. Both are causes of increased susceptibility of elderly to infectious diseases, cancer, dementia, cardiovascular diseases and autoimmunity, and of a decreased response to vaccination. It has been widely demonstrated that ageing has a strong impact on the remodelling of the B cell branch of immune system. The first evident effect is the significant decrease in circulati…

0301 basic medicineAgingImmunosenescenceHealth StatusPlasma CellsNaive B cellAutoimmunityInflammationBiologyLymphocyte ActivationBiochemistry03 medical and health sciences0302 clinical medicineImmune systemAntigenAge-related diseasemedicineAnimalsHumansLymphopoiesisProgenitor cellMolecular BiologyCellular SenescenceB cellInflammationB cellB-LymphocytesLymphopoiesisCell DifferentiationImmunosenescenceInflamm-ageing030104 developmental biologymedicine.anatomical_structureNeurologyImmune SystemImmunologyInflammation Mediatorsmedicine.symptomExhausted/Senescent cell030215 immunologyBiotechnologyAgeing Research Reviews
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Acute telomerase components depletion triggers oxidative stress as an early event previous to telomeric shortening

2018

Loss of function of dyskerin (DKC1), NOP10 and TIN2 are responsible for different inheritance patterns of Dyskeratosis congenita (DC; ORPHA1775). They are key components of telomerase (DKC1 and NOP10) and shelterin (TIN2), and play an important role in telomere homeostasis. They participate in several fundamental cellular processes by contributing to Dyskeratosis congenita through mechanisms that are not fully understood. Presence of oxidative stress was postulated to result from telomerase ablation. However, the resulting disturbed redox status can promote telomere attrition by generating a vicious circle, which promotes cellular senescence. This fact prompted us to study if acute loss of …

0301 basic medicineAgingTelomeraseTelomere-Binding ProteinsClinical BiochemistryCell Cycle ProteinsBiologymedicine.disease_causeBiochemistryDyskeratosis CongenitaDyskerin03 medical and health sciencesTelomere HomeostasisRibonucleoproteins Small NucleolarmedicineHumanslcsh:QH301-705.5TelomeraseCellular SenescenceTelomere ShorteningRibonucleoproteinlcsh:R5-920TelomeropathiesOrganic ChemistryNuclear ProteinsShelterinmedicine.diseaseMolecular biologyTelomereCell biologyOxidative Stress030104 developmental biologylcsh:Biology (General)DNA damageRNA InterferenceAntioxidantlcsh:Medicine (General)Oxidative stressDyskeratosis congenitaResearch PaperHeLa CellsRedox Biology
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Endothelial progenitor cells in ageing

2016

“The senescence status of somatic stem/progenitor cells contributes to ageing process”, and “an individual is as old as old are its stem cells”. These quotes represent the concepts, which are actually object of investigations of researchers involved in ageing studies.

0301 basic medicineAgingbusiness.industryCellular senescenceCell biologyEndothelial stem cell03 medical and health sciences030104 developmental biologyVasculogenesisAgeingMedicineAnimalsHumansSettore MED/05 - Patologia ClinicaProgenitor cellbusinessCellular SenescenceDevelopmental BiologyEndothelial Progenitor CellsEndothelial progenitor cells ageing
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