Search results for "Rodent"

showing 10 items of 199 documents

Hantavirus infections in fluctuating host populations: the role of maternal antibodies.

2010

Infected females may transfer maternal antibodies (MatAbs) to their offspring, which may then be transiently protected against infections the mother has encountered. However, the role of maternal protection in infectious disease dynamics in wildlife has largely been neglected. Here, we investigate the effects of Puumala hantavirus (PUUV)-specific MatAbs on PUUV dynamics, using 7 years' data from a cyclic bank vole population in Finland. For the first time to our knowledge, we partition seropositivity data from a natural population into separate dynamic patterns for MatAbs and infection. The likelihood of young of the year carrying PUUV-specific MatAbs during the breeding season correlated p…

0106 biological sciencesMaleOrthohantavirusHantavirus InfectionsPopulationPrevalenceZoologyAntibodies Viral010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyRodent Diseases03 medical and health sciencesPregnancySeroepidemiologic StudiesSeasonal breederAnimalseducationFinlandResearch Articles030304 developmental biologyGeneral Environmental ScienceHantavirus0303 health scienceseducation.field_of_studyGeneral Immunology and MicrobiologybiologySin Nombre virusArvicolinaeBody WeightGeneral Medicinebiology.organism_classificationBank voleNatural population growthAnimals NewbornImmunologyRegression AnalysisFemaleSeasonsGeneral Agricultural and Biological SciencesHantavirus InfectionImmunity Maternally-AcquiredProceedings. Biological sciences
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When less means more: evolutionary and developmental hypotheses in rodent molars.

2012

10 pages; International audience; Tooth number in rodents is an example of reduction in evolution. All rodents have a toothless diastema lacking canine and most premolars present in most other mammals. Whereas some rodent lineages retained one premolar (p4), many others lost it during evolution. Recently, an 'inhibitory cascade' developmental model (IC) has been used to predict how the first molar (m1) influences the number and relative sizes of the following distal molars (m2 and m3). The model does not, however, consider the presence of premolars, and here we examine whether the premolar could influence and constrain molar proportions during development and evolution. By investigating a l…

0106 biological sciencesMolarRodentmolar proportionsRodentiapremolarBiologyMacroevolutionModels Biological010603 evolutionary biology01 natural sciencesMandibular first molar03 medical and health sciencesstomatognathic systembiology.animalevolutionPremolarmedicineAnimalsdevelopmentEcology Evolution Behavior and Systematics[ SDU.STU.PG ] Sciences of the Universe [physics]/Earth Sciences/Paleontology030304 developmental biology0303 health sciencesmacroevolutionDentition[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]Anatomyinhibitory cascadeBiological EvolutionMolar[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]medicine.anatomical_structureEvolutionary biologyrodentsDiastemaLinear ModelsBasal phenotype[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/Paleontology
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Evolution of mammal tooth patterns: new insights from a developmental prediction model.

2009

14 pages.; International audience; The study of mammalian evolution is often based on insights into the evolution of teeth. Developmental studies may attempt to address the mechanisms that guide evolutionary changes. One example is the new developmental model proposed by Kavanagh et al. (2007), which provides a high-level testable model to predict mammalian tooth evolution. It is constructed on an inhibitory cascade model based on a dynamic balance of activators and inhibitors, regulating differences in molar size along the lower dental row. Nevertheless, molar sizes in some mammals differ from this inhibitory cascade model, in particular in voles. The aim of this study is to point out arvi…

0106 biological sciencesMolarZoologyBiology010603 evolutionary biology01 natural sciencesModels Biological03 medical and health sciencesMicestomatognathic systemMammal toothCricetinaeevolutionGeneticsAnimalsOdontometryrodents.[ SDV.BDD ] Life Sciences [q-bio]/Development Biology[SDV.BDD]Life Sciences [q-bio]/Development BiologyEcology Evolution Behavior and Systematics[ SDU.STU.PG ] Sciences of the Universe [physics]/Earth Sciences/Paleontology030304 developmental biology0303 health sciencesArvicolinaeFossils[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]evo-devoEvolution of mammalsinhibitory cascadeBiological Evolution[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]Rapid acquisitionEvolutionary biologyrodentsEvolutionary developmental biology[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/PaleontologyGeneral Agricultural and Biological SciencesToothEvolution; international journal of organic evolution
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Reappraisal of ‘chronospecies' and the use of Arvicola (Rodentia, Mammalia) for biochronology.

2008

13 pages; International audience; The water vole, genus Arvicola, is characterised by a broad geographic distribution throughout Europe and is widespread during the late Middle and Upper Pleistocene. This genus is used as a major biostratigraphic tool within the Quaternary. Specific determinations using the Schmelzband-Differenzierung-Quotient or SDQ have identified many chronospecies within the fossil species Arvicola cantiana (Hinton, 1910). As SDQ calculation remains limited, this study reappraises the Arvicola genus in terms of morphodiversity and morphospace using outline analysis which takes into account the tooth as a whole. Outline analysis suggests that one single species of Arvico…

0106 biological sciencesMorphology010506 paleontologyArcheologypaléontologie des vertébrés[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and PrehistoryPopulationRodentiaBiochronologyPléistocène moyen010603 evolutionary biology01 natural sciencesEnamel quotientTheriaPaleontologyEutheriaGenusBiochronologyChronospeciesArvicolaWater voleeducation[ SDU.STU.PG ] Sciences of the Universe [physics]/Earth Sciences/Paleontology0105 earth and related environmental scienceseducation.field_of_studychronologiebiologyOutline analysisrongeurbiostratigraphiePléistocène supérieurbiology.organism_classificationEuropeGeography[ SHS.ARCHEO ] Humanities and Social Sciences/Archaeology and PrehistoryArvicolamicromammifère[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/Paleontology
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Cyclic hantavirus epidemics in humans--predicted by rodent host dynamics.

2009

Wildlife-originated zoonotic diseases are a major contributor to emerging infectious diseases. Hantaviruses cause thousands of human disease cases annually worldwide, and understanding and predicting human hantavirus epidemics still poses unsolved challenges. Here we studied the three-level relationships between the human disease nephropathia epidemica (NE), its etiological agent Puumala hantavirus (PUUV) and the rodent host of the virus, the bank vole (Myodes glareolus). A large and long-term data set (14 years, 2583 human NE cases and 4751 trapped bank voles) indicates that the number of human infections shows both seasonal and multi-annual fluctuations, is influenced by the phase of vole…

0106 biological sciencesOrthohantavirusRodentEpidemiologyHantavirus InfectionsPopulationPopulation DynamicsFluorescent Antibody TechniqueAntibodies Viral010603 evolutionary biology01 natural sciencesMicrobiologyPuumala virusVirusRodent Diseases03 medical and health sciencesVirologybiology.animalZoonosesNephropathia epidemicamedicineAnimalsHumansRegistrieseducationEcosystemFinland030304 developmental biologyHantavirus0303 health scienceseducation.field_of_studybiologyHost (biology)ArvicolinaePublic Health Environmental and Occupational Healthvirus diseasesmedicine.diseasebiology.organism_classificationVirology3. Good healthBank voleInfectious DiseasesHemorrhagic Fever with Renal SyndromeParasitologyVoleSeasonsEpidemics
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Intergenerational fitness effects of the early life environment in a wild rodent.

2019

The early life environment can have profound, long-lasting effects on an individual's fitness. For example, early life quality might (a) positively associate with fitness (a silver spoon effect), (b) stimulate a predictive adaptive response (by adjusting the phenotype to the quality of the environment to maximize fitness) or (c) be obscured by subsequent plasticity. Potentially, the effects of the early life environment can persist beyond one generation, though the intergenerational plasticity on fitness traits of a subsequent generation is unclear. To study both intra- and intergenerational effects of the early life environment, we exposed a first generation of bank voles to two early life…

0106 biological sciencesPopulation DensityReproductive successOffspringArvicolinae010604 marine biology & hydrobiologyReproductionfungiMaternal effectSocial environmentRodentiaAdaptive responseBiology010603 evolutionary biology01 natural sciencesPopulation densityPredictive adaptive responseTraitAnimalsAnimal Science and ZoologyFemaleSeasonsEcology Evolution Behavior and SystematicsDemographyThe Journal of animal ecologyREFERENCES
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Do phase-dependent life history traits in cyclic voles persist in a common environment?

2019

Phenotype and life history traits of an individual are a product of environmental conditions and the genome. Environment can be current or past, which complicates the distinction between environmental and heritable effects on the phenotype in wild animals. We studied genome–environment interactions on phenotype and life history traits by transplanting bank voles (Myodes glareolus) from northern and southern populations, originating from low or high population cycle phases, to common garden conditions in large outdoor enclosures. The first experiment focused on the persistence of body traits in autumn-captured overwintering populations. The second experiment focused on population growth and …

0106 biological sciencesPopulation DynamicsPhenotypic plasticitymedicine.disease_cause01 natural sciencesphenotypic plasticityBANK VOLESMaternal effectChitty effectSeasonal breederLife History TraitsOverwintering2. Zero hungereducation.field_of_studyArvicolinaeBank voleReproductionMaternal effectBody sizePOPULATION-CYCLE1181 Ecology evolutionary biologyGROWTHSeasonsmaternal effectympäristötekijätmetsämyyräPopulationZoologyBiologyWINTER FOOD010603 evolutionary biologyLife history theoryHereditymedicineJuvenileAnimalsbank volechitty effecteducationRODENT DYNAMICSEcology Evolution Behavior and SystematicsperinnöllisyysPhenotypic plasticityMICROTUS-AGRESTIS010604 marine biology & hydrobiologyEVOLUTIONPopulation Ecology–Original ResearchDENSITYCommon gardenfenotyyppicommon gardenbody size
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Large Spatial Scale of the Phenotype-Environment Color Matching in Two Cryptic Species of African Desert Jerboas (Dipodidae: Jaculus)

2014

We tested the camouflage hypothesis, or the linkage between animal (Saharan rodent) and habitat coloration, on the largest geographical scale yet conducted. We aimed to determine whether phenotypic variation is explained by micro-habitat variation and/or genetic polymorphism to determine 1) the strength of linkage between fur color and local substrate color, and 2) the divergence in fur coloration between two genetic clades, representing cryptic species, throughout the complete range of the African desert jerboas (Jaculus jaculus). We used a combination of museum and field-collected specimens, remote sensing tools, satellite and digital photography and molecular genetic and phylogenetic met…

0106 biological sciencesRange (biology)Skin Pigmentation01 natural sciencesDipodidaeJaculus jaculusGeoinformaticsPhylogeny0303 health sciencesMultidisciplinaryRemote Sensing ImageryPhylogenetic treeEcologyGeographyPigmentationQRCytochromes cBiological EvolutionPhenotypeSympatric speciationMedicineResearch ArticleSpecies complexComputer and Information SciencesScienceZoologyRodentiaBiologyEnvironment010603 evolutionary biology03 medical and health sciencesGenetic variationAnimalsSelection Genetic030304 developmental biologyEvolutionary BiologySpatial AnalysisPolymorphism GeneticEcology and Environmental SciencesBiology and Life SciencesGenetic Variation15. Life on landbiology.organism_classificationGenetic divergenceHaplotypesEvolutionary EcologyRemote Sensing TechnologyEarth Sciencesta1181HairPlos One
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Parasite-induced behavioral change: mechanisms.

2010

Animal behavior and parasitism are more tightly linked than commonly thought. One of the most astonishing phenomena in host–parasite antagonistic interactions is ‘host manipulation,’ that is, the ability of a parasite to alter the behavior of its host in ways that appear to increase parasite fitness at the expense of host fitness. The mechanisms by which a parasite hijacks the behavior of its host have been explored using ethopharmacological and immunocytochemical approaches or carrying out a large-scale proteomic study on manipulated host’s brain. These few mechanistic studies have confirmed both the complexity of host manipulation by parasites and the importance of understanding the molec…

0106 biological sciencesSerotonin[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyProteomeParasitismBiologyBioinformatics010603 evolutionary biology01 natural sciencesRodentsTranscriptome03 medical and health sciences[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisParasite hosting[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyAnimal behavior030304 developmental biology0303 health sciences[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyHost (biology)Phenotype3. Good healthCrustaceansNeuromodulatorInsectsParasiteEvolutionary biologyProteome[SDE.BE]Environmental Sciences/Biodiversity and EcologyEthopharmacologyTranscriptome[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Rodents and palaeogenetics: new perspectives.

2008

10 pages; Rodents are the most diversified mammalian order (484 extant genera including 2277 species), and they have a worldwide distribution. Palaeontological, morphological and molecular data have greatly helped to resolve their systematics and evolutionary history. However, some discrepancies remain between palaeontologists and molecular biologists. New techniques in molecular biology, and especially in palaeogenetics, allow us to have direct access to the hereditary material of extinct organisms, and they can compensate for some morphological limits. Unfortunately, few studies are dealing with rodent palaeogenetics, despite the amount of museum and fossil material available. Here, we re…

0106 biological sciencesSystematicsZoologyBiology[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomy010603 evolutionary biology01 natural sciencesRodentsGenetic diversity03 medical and health sciencesExtant taxonPhylogeneticsPalaeoparasitologyPhylogeny030304 developmental biology[ SDU.STU.PG ] Sciences of the Universe [physics]/Earth Sciences/Paleontology0303 health sciences[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology[SDV.GEN.GPO]Life Sciences [q-bio]/Genetics/Populations and Evolution [q-bio.PE]Ancient DNAPhylochronologyGeneral EngineeringPaleogenetics[ SDV.GEN.GPO ] Life Sciences [q-bio]/Genetics/Populations and Evolution [q-bio.PE]Ancient DNA[SDE.BE]Environmental Sciences/Biodiversity and Ecology[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/Paleontology[ SDV.BID.SPT ] Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomy
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