Search results for "population cycle"

showing 8 items of 18 documents

Population cycles and outbreaks of small rodents: ten essential questions we still need to solve

2021

AbstractMost small rodent populations in the world have fascinating population dynamics. In the northern hemisphere, voles and lemmings tend to show population cycles with regular fluctuations in numbers. In the southern hemisphere, small rodents tend to have large amplitude outbreaks with less regular intervals. In the light of vast research and debate over almost a century, we here discuss the driving forces of these different rodent population dynamics. We highlight ten questions directly related to the various characteristics of relevant populations and ecosystems that still need to be answered. This overview is not intended as a complete list of questions but rather focuses on the most…

0106 biological sciencesmiceLemmingslemmingsjyrsijätEcology (disciplines)PopulationDensity dependenceBiology010603 evolutionary biology01 natural sciencesphase dependenceMiceeducationBiologySouthern HemisphereEcology Evolution Behavior and SystematicsRodent populationsConcepts Reviews and SynthesesGeneralityeducation.field_of_studysopulitEcology010604 marine biology & hydrobiologyVolesmyyrätOutbreakhiiretPhase dependencepopulaatiodynamiikkaChemistryDensity dependencedensity dependencePopulation cyclekannanvaihtelutvolesVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480Oecologia
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Fluctuating food supply affects the clutch size of Tengmalm's owl independent of laying date.

1991

In western Finland, yearly median laying dates of Tengmalm's owls varied from 14 March to 27 April during 1973–1989 and were negatively correlated with the winter densities of voles. Yearly mean clutch sizes varied from 4.0 to 6.7 and were more closely related to the spring than to the winter densities of voles. The yearly mean clutch size decreased with yearly median laying date. The 3-year vole population cycle is typical of the study area. The start of egg-laying was earliest in the peak phase of the cycle (median laying date 22 March), when vole numbers are high during egg-laying, but decline rapidly to low numbers in the next autumn or winter. In the increase phase (1 April) vole abund…

Avian clutch sizeAnimal scienceEcologyAegoliusFood supplyPopulation cycleVoleClutchReproductive valueBiologybiology.organism_classificationLayingEcology Evolution Behavior and SystematicsOecologia
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Response of an arctic predator guild to collapsing lemming cycles

2012

6 pages; International audience; Alpine and arctic lemming populations appear to be highly sensitive to climate change, and when faced with warmer and shorter winters, their well-known high-amplitude population cycles may collapse. Being keystone species in tundra ecosystems, changed lemming dynamics may convey significant knock-on effects on trophically linked species. Here, we analyse long-term (1988-2010), community-wide monitoring data from two sites in high-arctic Greenland and document how a collapse in collared lemming cyclicity affects the population dynamics of the predator guild. Dramatic changes were observed in two highly specialized lemming predators: snowy owl and stoat. Follo…

Food ChainCarnivoraGreenlandPopulation DynamicsPopulationModels BiologicalGeneral Biochemistry Genetics and Molecular BiologyBirdsArcticDicrostonyx groenlandicusbiology.animal[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsArctic foxKeystone specieseducationPredatorResearch ArticlesGeneral Environmental Sciencepredator-prey interactioneducation.field_of_study[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyGeneral Immunology and MicrobiologybiologyArctic RegionsArvicolinaeEcologyReproductionCollared lemmingcyclic population dynamicsGeneral Medicinebiology.organism_classificationclimate changeArcticGuildPopulation cycleSeasonsGeneral Agricultural and Biological Sciences
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Exploitation competition between hole‐nesters ( Muscardinus avellanarius , Mammalia and Parus caeruleus , Aves) in Mediterranean woodlands

2005

Data from a long-term study (1993-2003) using artificial nest-boxes, were analysed to examine competition for nesting between blue tit Parus caeruleus and common dormouse Muscardinus avellanarius in Sicily. Occupation rates and the reproductive biology of the blue tit in sample woodlots outside the distribution area of the common dormouse were used as a control in sample areas where the two species were syntopic. A selection test showed that the two species, when living in syntopy, actively chose the small nest-boxes, thus overlapping in the use of the same spatial resource. The experimental exclusion of the common dormouse from nest-boxes caused an increase of blue tit occupation rate. Onc…

biologyEcologymedia_common.quotation_subjectSettore BIO/05 - ZoologiaMuscardinuscompetition coexistence Parus caeruleus Muscardinus avellanarius Mediterranean woodlandsbiology.organism_classificationCompetition (biology)PredationNestHabitatAbundance (ecology)biology.animalPopulation cycleAnimal Science and ZoologyDormouseEcology Evolution Behavior and Systematicsmedia_commonJournal of Zoology
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Food resources and intestinal parasites as limiting factors for boreal vole populations during winter

2014

Processes limiting the growth of cyclic vole populations have stimulated considerable research and debate over several decades. In Fennoscandia, the peak density of cyclic vole populations occurs in fall, and is followed by a severe winter decline. Food availability and intestinal parasites have been demonstrated to independently and synergistically limit wildlife populations. The purpose of this study was to directly compare competing food and parasite hypotheses on the limitation of overwintering high-density vole populations. Moreover, we evaluated the ability of food limitation and nematode infection to interact and thereby intensify population declines. A two-factor experiment with foo…

education.field_of_studybiologyEcologyField volemedia_common.quotation_subjectPopulationmedicine.diseasebiology.organism_classificationNematode infectionmedicinePopulation cycleVoleReproductionMicrotuseducationEcology Evolution Behavior and SystematicsOverwinteringmedia_commonEcology
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Genetic diversity in the wild : cyclic population dynamics and population isolation

2013

eristyneisyyspopulation cyclemetsämyyrägenetic diversitypopulation isolationmikrosatelliititgeneettinen muuntelupopulaatiodynamiikkafitnesssocial behaviorkelpoisuuspopulaatiogenetiikkaMyodes glareolusmonimuotoisuussyklisyysbank volepirstoutuminenpopulation fragmentation
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Data from: Demographic responses of a site-faithful and territorial predator to its fluctuating prey: long-tailed skuas and arctic lemmings

2013

1. Environmental variability, through interannual variation in food availability or climatic variables, is usually detrimental to population growth. It can even select for constancy in key life-history traits, though some exceptions are known. Changes in the level of environmental variability are therefore important to predict population growth or life-history evolution. Recently, several cyclic vole and lemming populations have shown large dynamical changes, that might affect rodent predator demography or life histories. 2. Skuas constitute an important case study among rodent predators, because of their strongly saturating breeding productivity (they lay only two eggs) and high degree of …

medicine and health careDicrostonyx groenlandicusStercorarius longicaudusPopulation cyclesBreeding successLife SciencesMedicine
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Data from: Predator–vole interactions in northern Europe: the role of small mustelids revised

2014

The cyclic population dynamics of vole and predator communities is a key phenomenon in northern ecosystems, and it appears to be influenced by climate change. Reports of collapsing rodent cycles have attributed the changes to warmer winters, which weaken the interaction between voles and their specialist subnivean predators. Using population data collected throughout Finland during 1986–2011, we analyse the spatio-temporal variation in the interactions between populations of voles and specialist, generalist and avian predators, and investigate by simulations the roles of the different predators in the vole cycle. We test the hypothesis that vole population cyclicity is dependent on predator…

medicine and health careVolePopulation cyclesLife SciencesMedicinepopulation growth rate
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