Search results for "mes"

showing 10 items of 23665 documents

Social process of adaptation to environmental changes: How eastern african societies intervene between crops and climate

2014

Abstract Studies on climate change can only be conducted on a long time scale, and observing how societies adapt their sowing practices to climate variability is challenging and costly. As an alternative, a space and time substitution design was used, changes in space corresponding to that induced in time by environmental change. On the eastern slope of Mount Kenya, the Tharaka community, originating from the lowlands (750 m), moved up to the midlands (950 m) with their lowland-adapted resources, whereas the Mwimbi, originating from wetter upland (1100 m), moved down to the midlands with their highland-adapted genetic resources. A weather station was installed at 950 and 1100 m, and a logis…

0106 biological sciencesAtmospheric ScienceEnsemencement010504 meteorology & atmospheric sciencesEnvironmental changeF08 - Systèmes et modes de cultureadaptation aux changements climatiqueshttp://aims.fao.org/aos/agrovoc/c_11701 natural scienceshttp://aims.fao.org/aos/agrovoc/c_2018http://aims.fao.org/aos/agrovoc/c_7142http://aims.fao.org/aos/agrovoc/c_72682. Zero hungerGlobal and Planetary ChangeAgroforestryEcologyAgriculturehttp://aims.fao.org/aos/agrovoc/c_203[ SDE.MCG ] Environmental Sciences/Global ChangesPratique culturaleGeography[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/ClimatologyCrop growth[ SDU.STU.CL ] Sciences of the Universe [physics]/Earth Sciences/ClimatologyP40 - Météorologie et climatologie[SDE.MCG]Environmental Sciences/Global ChangesClimate changeGrowing seasonSocietal impactsWeather stationAltitudehttp://aims.fao.org/aos/agrovoc/c_1374567058134E50 - Sociologie ruralehttp://aims.fao.org/aos/agrovoc/c_1666AdaptationClimate variability0105 earth and related environmental sciencesChangement climatiquebusiness.industrySowing15. Life on landhttp://aims.fao.org/aos/agrovoc/c_408613. Climate actionAgricultureSociologieAfricaAdaptationbusinessSocial Sciences (miscellaneous)010606 plant biology & botany
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An integrated analysis of micro- and macro-habitat features as a tool to detect weather-driven constraints: A case study with cavity nesters.

2017

The effects of climate change on animal populations may be shaped by habitat characteristics at both micro- and macro-habitat level, however, empirical studies integrating these two scales of observation are lacking. As analyses of the effects of climate change commonly rely on data from a much larger scale than the microhabitat level organisms are affected at, this mismatch risks hampering progress in developing understanding of the details of the ecological and evolutionary responses of organisms and, ultimately, effective actions to preserve their populations. Cavity nesters, often with a conservation status of concern, are an ideal model because the cavity is a microenvironment potentia…

0106 biological sciencesAtmospheric ScienceResearch FacilitiesPhysiologyOvipositionlcsh:MedicineKestrelMedicine (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)01 natural sciencesGlobal Warming010605 ornithologyNesting BehaviorGeographical LocationsNestReproductive PhysiologyMedicine and Health SciencesNatural Selectionlcsh:ScienceAbiotic componentClimatologyeducation.field_of_studyMultidisciplinaryBiotic componentbiologyAnimal BehaviorEcologyMedicine (all)Falco naumanniEuropeHabitatItalyVertebratesClutchesResearch ArticleEvolutionary ProcessesClimate ChangePopulationAnimal Sexual BehaviorResearch and Analysis MethodsWeather Stations010603 evolutionary biologyBirdsAnimalseducationWeatherEcosystemFalconiformesAnalysis of VarianceBehaviorEvolutionary BiologyBiochemistry Genetics and Molecular Biology (all)Reproductive successlcsh:REndangered SpeciesOrganismsBiology and Life SciencesModels Theoreticalbiology.organism_classificationReproductive SuccessAgricultural and Biological Sciences (all)AmniotesPeople and PlacesLinear ModelsEarth Scienceslcsh:QZoologyPloS one
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Geographical variation in egg mass and egg content in a passerine bird

2011

Reproductive, phenotypic and life-history traits in many animal and plant taxa show geographic variation, indicating spatial variation in selection regimes. Maternal deposition to avian eggs, such as hormones, antibodies and antioxidants, critically affect development of the offspring, with long-lasting effects on the phenotype and fitness. Little is however known about large-scale geographical patterns of variation in maternal deposition to eggs. We studied geographical variation in egg components of a passerine bird, the pied flycatcher (Ficedula hypoleuca), by collecting samples from 16 populations and measuring egg and yolk mass, albumen lysozyme activity, yolk immunoglobulins, yolk and…

0106 biological sciencesAvian clutch sizeAnimal sexual behaviourlcsh:MedicineBreeding01 natural sciencesOrnithologyPasseriformeslcsh:SciencePhysiological EcologyCarotenoidFLYCATCHER FICEDULA-HYPOLEUCAchemistry.chemical_classification0303 health scienceseducation.field_of_studyMultidisciplinaryEcologyGeographybiologyBARN SWALLOW EGGSEcologyPasserinePhenotype1181 Ecology evolutionary biologyembryonic structuresCOLLARED FLYCATCHERPARENTAL QUALITYResearch ArticleCLUTCH-SIZEfood.ingredientPIED FLYCATCHERPopulationZoology010603 evolutionary biologyEvolution Molecular03 medical and health sciencesQH301foodYolkbiology.animalAnimalsTIT PARUS-MAJORYOLK STEROID-LEVELSLATITUDINAL VARIATIONSelection GeneticeducationBiologyOvum030304 developmental biologyLocal adaptationQHlcsh:RFicedulaLAYING ORDERbiology.organism_classificationchemistryEvolutionary Ecologyta1181lcsh:QPopulation EcologyGenetic FitnessZoology
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Early developmental conditions affect stress response in juvenile but not in adult house sparrows (Passer domesticus).

2009

6 pages; International audience; The short- and long-term consequences of developmental conditions on fitness have received growing attention because the environmental conditions during early life may influence growth, condition at independence, recruitment, reproductive success or survival. We tested here, in a natural house sparrow population, if early conditions during nestling stage affected the stress response of the birds (i) shortly after fledging and (ii) next year, during their first breeding. We experimentally manipulated brood size to mimic different rearing conditions, creating reduced (-2 chicks) and enlarged broods (+2 chicks), while in a third group brood size was not manipul…

0106 biological sciencesAvian clutch sizeEarly conditionmedia_common.quotation_subject[SDE.MCG]Environmental Sciences/Global ChangesPopulationZoologyBiologyBreeding010603 evolutionary biology01 natural sciencesNesting Behavior03 medical and health sciencesEndocrinologyStress Physiologicalbiology.animal[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisPasser domesticusJuvenileAnimalsBody SizeeducationHouse sparrowreproductive and urinary physiology030304 developmental biologymedia_common0303 health scienceseducation.field_of_study[ SDE.BE ] Environmental Sciences/Biodiversity and EcologySparrowReproductive successEcologyFledgeClutch Size[SDE.ES]Environmental Sciences/Environmental and SocietyBroodStress protocobehavior and behavior mechanismsBody ConstitutionAnimal Science and ZoologyReproduction[SDE.BE]Environmental Sciences/Biodiversity and EcologyCorticosteroneBrood size manipulationSparrows[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisGeneral and comparative endocrinology
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Effects of interspecific coexistence on laying date and clutch size in two closely related species of hole-nesting birds

2018

Co-existence between great tits Parus major and blue tits Cyanistes caeruleus, \ud but also other hole nesting taxa, constitutes a classic example of species\ud co-occurrence resulting in potential interference and exploitation competition\ud for food and for breeding and roosting sites. However, the spatial and temporal\ud variation in co-existence and its consequences for competition remain poorly\ud understood. 2.We used an extensive database on reproduction in nest boxes by\ud great and blue tits based on 87 study plots across Europe and Northern Africa\ud during 1957-2012 for a total of 19,075 great tit and 16,729 blue tit clutches to \ud assess correlative evidence for a relationship …

0106 biological sciencesAvian clutch sizeclutch sizenest boxesRange (biology)media_common.quotation_subjectintraspecific competitionZoology[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomy010603 evolutionary biology01 natural sciencesEcology and EnvironmentIntraspecific competitionCompetition (biology)QH301NestAfrica NorthernAnimalsclutch size density interspecific competition intraspecific competition nest boxes reaction norm spatiotemporal variationPasseriformesBiologyEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUSmedia_commonQL_671Parusdensitybiology010604 marine biology & hydrobiologyReproductioninterspecific competition[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]CyanistesInterspecific competitionbiology.organism_classificationspatiotemporal variationEuropeChemistrySettore AGR/11 - Entomologia Generale E Applicatareaction norminternationalAnimal Science and ZoologyFemale[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Phenological sensitivity to climate change is higher in resident than in migrant bird populations among European cavity breeders

2018

Many organisms adjust their reproductive phenology in response to climate change, but phenological sensitivity to temperature may vary between species. For example, resident and migratory birds have vastly different annual cycles, which can cause differential temperature sensitivity at the breeding grounds, and may affect competitive dynamics. Currently, however, adjustment to climate change in resident and migratory birds have been studied separately or at relatively small geographical scales with varying time series durations and methodologies. Here, we studied differential effects of temperature on resident and migratory birds using the mean egg laying initiation dates from 10 European n…

0106 biological sciencesBLUE TITadaptation01 natural sciencesNesting Behavior010605 ornithologyGEOGRAPHICAL VARIATIONadaptation birds climate change competition information use laying date nest boxes timingtimingClimate changePasseriformesGeneral Environmental ScienceTrophic levelmedia_commonGlobal and Planetary ChangeEcologyEcologyPhenologyReproductionTemperatureEuropeNEST-SITE SELECTIONclimate changeMIGRATORY BIRDSinternationalTROPHIC LEVELSSeasonslaying datecompetitionnest boxesmedia_common.quotation_subjectta1172Climate changeBiologySPRING TEMPERATURE010603 evolutionary biologyCompetition (biology)BirdsLONG-DISTANCE MIGRANTmedicineAnimalsEnvironmental ChemistryTIT PARUS-MAJORAdaptationNest boxCompetitionSHIFTSInterspecific competitioninformation use15. Life on landSeasonalitymedicine.disease13. Climate actionbirdsFLYCATCHERS FICEDULA-HYPOLEUCAta1181Animal MigrationAdaptationGlobal Change Biology
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Systems Approach to Eastern Baltic Coastal Zone Management

2020

Relying on the results of multivariate analysis of the re-analysis case studies from the BaltCoast project, specific features of integrated coastal management (ICM) approaches in Estonia, Latvia, Lithuania, and the Kaliningrad Oblast of the Russian Federation are highlighted in this paper. Eleven Eastern Baltic ICM case studies have been re-analyzed in-depth, which was the main focus of the present paper, covering a wide range of coastal landscapes, themes, policy issues, and ICM approaches. Five principal components explaining 84.86% of the total variance of ICM factor scores have been elicited by calculating rotation sums of squared loadings: (1) Stakeholder Involvement

0106 biological sciencesBaltic Stateslcsh:Hydraulic engineering010504 meteorology & atmospheric sciencesProcess (engineering)Geography Planning and DevelopmentBaltic states ; integrated coastal management ; systems approach framework ; Stakeholder involvement ; retrospective analysissystems approach frameworkAquatic Science01 natural sciencesBiochemistrylcsh:Water supply for domestic and industrial purposeslcsh:TC1-978Coastal zoneRetrospective analysisintegrated coastal management0105 earth and related environmental sciencesWater Science and Technologylcsh:TD201-500business.industry010604 marine biology & hydrobiologyEnvironmental resource managementStakeholderretrospective analysisGeographyRussian federationbusinessCoastal managementStakeholder involvementWater
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The Bias of combining variables on fish's aggressive behavior studies.

2019

Made available in DSpace on 2019-10-06T16:27:42Z (GMT). No. of bitstreams: 0 Previous issue date: 2019-07-01 Quantifying animal aggressive behavior by behavioral units, either displays or attacks, is a common practice in animal behavior studies. However, this practice can generate a bias in data analysis, especially when the variables have different temporal patterns. This study aims to use Bayesian Hierarchical Linear Models (B-HLMs) to analyze the feasibility of pooling the aggressive behavior variables of four cichlids species. Additionally, this paper discusses the feasibility of combining variables by examining the usage of different sample sizes and family distributions to aggressive …

0106 biological sciencesBayesian probabilityPosterior probabilityBayesian analysisPoisson distribution010603 evolutionary biology01 natural sciencesBehavioral Neurosciencesymbols.namesakeBiasPrior probabilityStatisticsAnimals0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyPterophyllum scalareMathematicsProbabilitybiologyBehavior Animal05 social sciencesMultilevel modelBayes TheoremGeneral MedicineCichlidsbiology.organism_classificationAggressive behaviourMarkov ChainsAggressionVariable (computer science)Sample size determinationData Interpretation StatisticalsymbolsAnimal Science and ZoologyPooled dataMonte Carlo MethodBehavioural processes
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Fifteen operationally important decisions in the planning of biodiversity offsets

2018

Many development projects, whether they are about construction of factories, mines, roads, railways, new suburbs, shopping malls, or even individual houses, have negative environmental consequences. Biodiversity offsetting is about compensating that damage, typically via habitat restoration, land management, or by establishment of new protected areas. Offsets are the fourth step of the so-called mitigation hierarchy, in which ecological damage is first avoided, minimized second, and third restored locally. Whatever residual damage remains is then offset. Offsetting has been increasingly adopted all around the world, but simultaneously serious concerns are expressed about the validity of the…

0106 biological sciencesBiodiversity offsettingComputer scienceta1172FrameworkCONSERVATIONLand managementBiodiversity010501 environmental sciencesResidualECOLOGY010603 evolutionary biology01 natural sciences12. Responsible consumptionOperational designAdditionalityMANAGEMENTympäristövastuuOffset ratioRestoration ecologyEcology Evolution Behavior and SystematicsMultiplier1172 Environmental sciences0105 earth and related environmental sciencesNature and Landscape ConservationRESTORATIONOUTCOMESSubjective judgmentPERMANENCEEcological compensation15. Life on landEnvironmental economicsPOLICYkompensointibiodiversiteettiCONTEXTympäristövaikutukset13. Climate actionNo net lossADDITIONALITYta1181Time preferenceFlexibility
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Factors controlling plankton community production, export flux, and particulate matter stoichiometry in the coastal upwelling system off Peru

2020

Eastern boundary upwelling systems (EBUS) are among the most productive marine ecosystems on Earth. The production of organic material is fueled by upwelling of nutrient-rich deep waters and high incident light at the sea surface. However, biotic and abiotic factors can modify surface production and related biogeochemical processes. Determining these factors is important because EBUS are considered hotspots of climate change, and reliable predictions of their future functioning requires understanding of the mechanisms driving the biogeochemical cycles therein. In this field experiment, we used in situ mesocosms as tools to improve our mechanistic understanding of processes controlling organ…

0106 biological sciencesBiogeochemical cycle010504 meteorology & atmospheric scienceslcsh:Lifecoastal01 natural sciencesMesocosmWater columnlcsh:QH540-549.511. SustainabilityPhytoplanktonPeruAkashiwo sanguinea14. Life underwaterEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface Processesbiology//purl.org/pe-repo/ocde/ford#4.01.00 [https]010604 marine biology & hydrobiologylcsh:QE1-996.5Biological pumpPlanktonbiology.organism_classificationstoichiometrylcsh:Geologyexport fluxlcsh:QH501-531Oceanographyplankton production13. Climate actionEnvironmental scienceUpwellinglcsh:Ecology
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