Search results for "Parental investment"

showing 10 items of 26 documents

Reed Warbler Hosts Do Not Fine-Tune Mobbing Defenses During the Breeding Season, Even When Cuckoos Are Rare

2021

Hosts of brood parasitic cuckoos often employ mobbing attacks to defend their nests and, when mobbing is costly, hosts are predicted to adjust their mobbing to match parasitism risk. While evidence exists for fine-tuned plasticity, it remains unclear why mobbing does not track larger seasonal changes in parasitism risk. Here we test a possible explanation from parental investment theory: parents should defend their current brood more intensively as the opportunity to replace it declines (re-nesting potential), and therefore “counteract” any apparent seasonal decline to match parasitism risk. We take advantage of mobbing experiments conducted at two sites where reed warblers (Acrocephalus sc…

Ecologyparental investmentEvolutionavian brood parasitismQH359-425re-nesting potentialfrontline defenseseasonal changeQH540-549.5Frontiers in Ecology and Evolution
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Female Oviposition Decisions and Their Impact on Progeny Life-History Traits

2008

An important factor affecting the life-history of an organism is parental investment in reproduction: reproductive decisions are almost invariably costly. Therefore, reproductive decisions should be beneficial in terms of increased offspring number or fitness. For example, egg laying decisions in many insects can influence resource availability of the offspring through changes in the larval density, and resource availability will have effects on many life-history traits. Here we studied whether female reproductive decisions affect offspring fitness in Callosobruchus maculatus seed beetles. Females laid more eggs on black-eye beans than on mung beans. However, when the difference in the surf…

LarvaOffspringEcologymedia_common.quotation_subjectfood and beveragesBiologybiology.organism_classificationLife history theoryToxicologyCallosobruchus maculatusAnimal ecologyInsect ScienceReproductionParental investmentEcology Evolution Behavior and SystematicsSex ratiomedia_commonJournal of Insect Behavior
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Manipulation of offspring number and size: benefits of large body size at birth depend upon the rearing environment

2003

Summary 1. Allocation of reproductive effort between the number and size of offspring determines the immediate rearing environment for the growing young. As the number of offspring increases, the amount of parental investment per individual offspring decreases, and the quality of the rearing environment is expected to decrease. This may result in a lower quality of offspring reared in such conditions. 2. We studied the effects of the rearing environment on the quality of juvenile bank voles, Clethrionomys glareolus , with different initial body sizes at birth in a 2 〈 2 factorial experiment. The rearing environment was manipulated by enlarging both the litter size by two extra pups, and mea…

Litter (animal)EcologyOffspringmedia_common.quotation_subjectMaternal effectBody sizeBiologyAnimal scienceJuvenileAnimal Science and ZoologyReproductionParental investmentEcology Evolution Behavior and SystematicsClethrionomys glareolusmedia_commonJournal of Animal Ecology
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Maternal effort and male quality in the bank vole, Clethrionomys glareolus.

1999

Parental investment in reproduction is adjusted according to potential benefits in terms of offspring survival and/or mating success. If male quality affects the reproductive success of a female, then females mating with high-quality males should invest more in reproduction. Although the subject has been of general interest, further experimental verification of the hypothesis is needed. We studied whether female bank voles (Clethrionomys glareolus) adjusted their maternal effort according to male quality, measured as mating success. To enable the measurement of maternal effort during nursing separately from male genetic effects the litters were cross-fostered. Further, the genetic backgroun…

Litter (animal)MaleLitter Sizemedia_common.quotation_subjectBiologyGeneral Biochemistry Genetics and Molecular BiologyEatingMiceSex FactorsAnimalsQuality (business)MatingParental investmentMaternal BehaviorGeneral Environmental Sciencemedia_commonGeneral Immunology and MicrobiologyReproductive successEcologyArvicolinaeReproductionGeneral Medicinebiology.organism_classificationBank voleGenetics PopulationArvicolinaeFemaleReproductionGeneral Agricultural and Biological SciencesDemographyResearch ArticleProceedings. Biological sciences
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Absence of long-term effects of reproduction on longevity in the mouse model.

2014

Background Most human demographic data, particularly those on natural fertility populations, find no relationship or even a positive association between fertility and longevity. The present study aims to ascertain whether there is a trade-off between fertility and longevity in the mouse model. Methods The study was focused on the first litter produced by 10- to 14-wk-old hybrid (C57BL/6JIco female X CBA/JIco male) mice. A single female/male per litter was individually housed with a male/female at the age of 25 and 52 wk, respectively, until the end of reproductive life in females or natural death in males under controlled housing conditions. Post-reproductive females and virgin mice were re…

Litter (animal)MaleTrade-offsAgingOffspringmedia_common.quotation_subjectLongevityFertilityGravidityBiologyModels BiologicalEndocrinologyLife-history traitsPregnancyAnimalsGender gapParental investmentSurvival analysisreproductive and urinary physiologyCrosses Geneticmedia_commonGeneticsSex CharacteristicsSurvival timesReproductionResearchLongevityObstetrics and GynecologySurvival AnalysisMice Inbred C57BLParental investmentParityFertilityReproductive MedicinePhysiological costs of reproductionNatural fertilityMice Inbred CBAFemaleReproductionDevelopmental BiologyDemographyReproductive biology and endocrinology : RBE
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Coevolution of parental investment and sexually selected traits drives sex-role divergence

2016

Sex-role evolution theory attempts to explain the origin and direction of male–female differences. A fundamental question is why anisogamy, the difference in gamete size that defines the sexes, has repeatedly led to large differences in subsequent parental care. Here we construct models to confirm predictions that individuals benefit less from caring when they face stronger sexual selection and/or lower certainty of parentage. However, we overturn the widely cited claim that a negative feedback between the operational sex ratio and the opportunity cost of care selects for egalitarian sex roles. We further argue that our model does not predict any effect of the adult sex ratio (ASR) that is …

Male0106 biological sciences0301 basic medicineTime Factorsparental investmentScienceevoluutioGeneral Physics and AstronomyBiologyModels Biological010603 evolutionary biology01 natural sciencesArticleGeneral Biochemistry Genetics and Molecular Biologysukupuolianisogamy03 medical and health sciencesQuantitative Trait Heritablesex rolesevolutionAnimalsSex RatioOperational sex ratioParental investmenthealth care economics and organizationsCoevolutionSex CharacteristicsMultidisciplinaryQGeneral ChemistrylisääntyminenInvestment (macroeconomics)Biological Evolution030104 developmental biologysukupuolivalintaAnisogamysukupuoliroolitSexual selectionta1181FemalePaternal careSocial psychologysukusolutSex characteristicsNature Communications
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Sex roles and the evolution of parental care specialization

2019

Males and females are defined by the relative size of their gametes (anisogamy), but secondary sexual dimorphism in fertilization, parental investment and mating competition is widespread and often remarkably stable over evolutionary timescales. Recent theory has clarified the causal connections between anisogamy and the most prevalent differences between the sexes, but deviations from these patterns remain poorly understood. Here, we study how sex differences in parental investment and mating competition coevolve with parental care specialization. Parental investment often consists of two or more distinct activities (e.g. provisioning and defence) and parents may care more efficiently by s…

Male0106 biological sciencesEvolutionparental investmentsukupuolierotevoluutioyksiavioisuusBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular Biologymating competitionSexual Behavior Animal03 medical and health sciencesmonogamySpecialization (functional)sex-role reversalAnimalssexual selectionSex RatioMatingParental investmentPhylogeny030304 developmental biologyGeneral Environmental ScienceSex Characteristics0303 health sciencesPhylogenetic inertiaParentingGeneral Immunology and MicrobiologylisääntymiskäyttäytyminenGeneral MedicineMating systemdivision of labourAnisogamysukupuolivalintaEvolutionary biologySexual selectionFemaleGeneral Agricultural and Biological SciencesPaternal care
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Parental effects on offspring longevity--evidence from 17th to 19th century reproductive histories.

2004

Family studies provide support for a modest genetic influence on offspring life span, although the magnitude of these correlations is small.The study aimed to clarify the relative contributions of parental age at birth and overall parental longevity on offspring lifespan, and to identify the biological and cultural mechanisms.Information was derived from two village genealogies (1650-1927) encompassing 9979 births (5315 males, 4664 females). Data selection was guided by the inclusion of information about parental age at birth and lifespan, offspring lifespan and cohort-specific life expectancy.Parental age at reproduction displayed a negative association with offspring survivability, which …

MaleAgingPhysiologyEpidemiologyOffspringmedia_common.quotation_subjectLongevityNegative associationBiologyHistory 18th CenturyPaternal AgeCohort StudiesHistory 17th CenturyGermanyGeneticsHumansParental investmentReproductive Historymedia_commonGeneticsPublic Health Environmental and Occupational HealthLongevityHistory 19th CenturyHistory 20th CenturyFemaleParent–offspring conflictReproductionReproductive HistoriesData selectionDemographyMaternal AgeAnnals of human biology
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2015

AbstractThe genetic conflict between parents and their offspring is a cornerstone of kin selection theory and the gene-centred view of evolution, but whether it actually occurs in natural systems remains an open question. Conflict operates only if parenting is driven by genetic trade-offs between offspring performance and the parent’s ability to raise additional offspring, and its expression critically depends on the shape of these trade-offs. Here we investigate the occurrence and nature of genetic conflict in an insect with maternal care, the earwig Forficula auricularia. Specifically, we test for a direct response to experimental selection on female future reproduction and correlated res…

MultidisciplinaryOffspringTrade offsGeneral Physics and AstronomyGeneral ChemistryBiologyAffect (psychology)General Biochemistry Genetics and Molecular BiologyFamily lifeDevelopmental psychologySexual reproductionEvolutionary biologyParent–offspring conflictParental investmentEmpirical evidenceNature Communications
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Negative association between parental care and sibling cooperation in earwigs: a new perspective on the early evolution of family life?

2015

International audience; The evolution of family life requires net fitness benefits for offspring, which are commonly assumed to mainly derive from parental care. However, an additional source of benefits for offspring is often overlooked: cooperative interactions among juvenile siblings. In this study, we examined how sibling cooperation and parental care could jointly contribute to the early evolution of family life. Specifically, we tested whether the level of food transferred among siblings (sibling cooperation) in the European earwig F orficula auricularia (1) depends on the level of maternal food provisioning (parental care) and (2) is translated into offspring survival, as well as fem…

NymphInsectaSibling rivalry (animals)genetic structuresOffspringForficula auriculariaAnimalsSiblingMaternal BehaviorParental investmentEcology Evolution Behavior and SystematicsBehavior AnimalbiologyEcologySiblingsFeeding BehaviorClutch Sizebiology.organism_classificationBiological EvolutionSurvival AnalysisFamily life[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate ZoologyFemaleSocial evolutionPaternal careDemography
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