Search results for "LMA"

showing 10 items of 3320 documents

Planning for the future : identifying conservation priority areas for Iberian birds under climate change

2018

[Context]: Species are expected to shift their distributions in response to global environmental changes and additional protected areas are needed to encompass the corresponding changes in the distributions of their habitats. Conservation policies are likely to become obsolete unless they integrate the potential impacts of climate and land-use change on biodiversity.

0106 biological sciences010504 meteorology & atmospheric sciencesRANGE SHIFTSGeography Planning and DevelopmentBiodiversitymaankäyttö01 natural sciencesBioclimatic envelope modelsLand use land-use change and forestryNETWORKEcologyEnvironmental resource managementclimate changelinnutluonnonsuojelupesimälinnustoMODELSLand-use changeClimate change010603 evolutionary biologysuojelualueetBreeding birdsMANAGEMENTReserve networksDISTRIBUTIONSNatura 2000Conservation planningBird conservationDISPERSAL CORRIDORSZonation software1172 Environmental sciences0105 earth and related environmental sciencesNature and Landscape ConservationPortugalbusiness.industryEspanja15. Life on landProtected areasPROTECTED AREASPortugali13. Climate actionSpainPROJECTIONSThreatened speciesilmastonmuutosBIODIVERSITYLandscape ecologybusinessProtected areaNatura 2000CAPE PROTEACEAE
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Pathways towards a sustainable future envisioned by early-career conservation researchers

2021

Scientists have warned decision-makers about the severe consequences of the global environmental crisis since the 1970s. Yet ecological degradation continues and little has been done to address climate change. We investigated early-career conservation researchers' (ECR) perspectives on, and prioritization of, actions furthering sustainability. We conducted a survey (n = 67) and an interactive workshop (n = 35) for ECR attendees of the 5th European Congress of Conservation Biology (2018). Building on these data and discussions, we identified ongoing and forthcoming advances in conservation science. These include increased transdisciplinarity, science communication, advocacy in conservati…

0106 biological sciences010504 meteorology & atmospheric sciencesympäristö[SDV]Life Sciences [q-bio]radicalism01 natural sciences11. SustainabilityAnthropoceneSociologynew conservationworld Scientists' warning to humanityQH540-549.5General Environmental SciencereformismEcologykestävä kehitysantroposeeniSCIENCEtutkijatPE&RCsustainabilityDIVERSEclimate change1181 Ecology evolutionary biologyPlantenecologie en Natuurbeheerluonnonsuojeluyhteiskunnallinen muutosleverage pointsPolitical radicalismWorld Scientists' Warning to HumanityEcology (disciplines)ZhàngClimate changePlant Ecology and Nature ConservationQH1-199.5010603 evolutionary biologyMOVEMENTbiodiversity lossAnthropoceneilmastostrategiatVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 470Life ScienceEarly careerglobal change0105 earth and related environmental sciencesympäristöpolitiikkaGeneral. Including nature conservation geographical distributionEnvironmental ethicsympäristönsuojeluTvärvetenskapliga studier inom samhällsvetenskapilmastonmuutoksetluonnon monimuotoisuusbiodiversiteettireformismi13. Climate actionSustainabilityGeneral Earth and Planetary SciencesSocial Sciences Interdisciplinary
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Evolutionary rescue at different rates of environmental change is affected by trade-offs between short-term performance and long-term survival.

2021

As climate change accelerates and habitats free from anthropogenic impacts diminish, populations are forced to migrate or to adapt quickly. Evolutionary rescue (ER) is a phenomenon, in which a population is able to avoid extinction through adaptation. ER is considered to be more likely at slower rates of environmental change. However, the effects of correlated characters on evolutionary rescue are seldom explored yet correlated characters could play a major role in ER. We tested how evolutionary background in different fluctuating environments and the rate of environmental change affect the probability of ER by exposing populations of the bacteria Serratia marcescens to two different rates …

0106 biological sciences0301 basic medicineEnvironmental changeClimate ChangePopulationevoluutioClimate changeadaptationBiologyAffect (psychology)010603 evolutionary biology01 natural sciences03 medical and health sciencesexperimental evolutionskin and connective tissue diseaseseducationEcology Evolution Behavior and SystematicssopeutuminenExperimental evolutioneducation.field_of_studyExtinctionBacteriaEcologyAnthropogenic EffectstemperatureilmastonmuutoksetAdaptation PhysiologicalBiological Evolutionclimate change030104 developmental biologyHabitat13. Climate actionevolutionary rescuelämpötilasense organsAdaptationympäristönmuutoksetJournal of evolutionary biologyREFERENCES
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Experimental approaches for testing if tolerance curves are useful for predicting fitness in fluctuating environments

2017

Most experimental studies on adaptation to stressful environments are performed under conditions that are rather constant and rarely ecologically relevant. Fluctuations in natural environmental conditions are ubiquitous and include for example variation in intensity and duration of temperature, droughts, parasite loads, and availability of nutrients, predators and competitors. The frequency and amplitude of many of these fluctuations are expected to increase with climate change. Tolerance curves are often used to describe fitness components across environmental gradients. Such curves can be obtained by assessing performance in a range of constant environmental conditions. In this perspectiv…

0106 biological sciences0301 basic medicineSpecies distributionlcsh:EvolutionClimate changeEnvironmental stressBiology010603 evolutionary biology01 natural sciencesEnvironmental stress03 medical and health sciencesAbundance (ecology)lcsh:QH540-549.5Tolerance curveslcsh:QH359-425Range (statistics)EconometricsClimate changeConstant and fluctuating environmentsEcology Evolution Behavior and SystematicssietokykysopeutuminenEcologyEcologyconstant and fluctuating environmentsBiotailmastonmuutoksetenvironmental stressSpecies distributionsconstant and fluctuating environmentstolerance curvesclimate changespecies distributions030104 developmental biologyta1181lcsh:EcologyAdaptationConstant (mathematics)ympäristönmuutokset
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Physio-morphological traits and drought stress responses in three wild Mediterranean taxa of Brassicaceae

2019

Crop wild relatives (CWRs) have extremely relevant roles in biodiversity conservation, in investigating phylogeny and improving abiotic stress tolerance of crop plants. We screened the variability in leaf functional traits of three CWRs of kale crops (Brassica oleracea) from Sicily, Italy, grown in pots under well-watered and drought conditions. Our aim was to highlight traits in the different genotypes of endemic Sicilian threatened taxa. We measured several structural/anatomical traits (stomatal size, density and stomatal pore index—SPI, leaf mass per area—LMA) and leaf functional traits (stomatal conductance—gs, leaf water potential—ΨL, leaf temperature (TL), leaf relative water content—…

0106 biological sciences0301 basic medicineStomatal conductancePhysiologyTurgor pressureSPIStomatal conductancePlant ScienceCrop wild relative01 natural sciencesSettore BIO/01 - Botanica GeneraleCrop03 medical and health sciencesLMASettore BIO/04 - Fisiologia VegetaleSicilyWater contentbiologyAbiotic stressPlant physiologyBrassicaceaeLeaf water potentialbiology.organism_classificationHorticulture030104 developmental biologyBrassica oleraceaAgronomy and Crop Science010606 plant biology & botanyActa Physiologiae Plantarum
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Broad thermal tolerance is negatively correlated with virulence in an opportunistic bacterial pathogen

2018

Predicting the effects of global increase in temperatures on disease virulence is challenging, especially for environmental opportunistic bacteria, because pathogen fitness may be differentially affected by temperature within and outside host environment. So far, there is very little empirical evidence on the connections between optimal temperature range and virulence in environmentally growing pathogens. Here, we explored whether the virulence of an environmentally growing opportunistic fish pathogen, Flavobacterium columnare, is malleable to evolutionary changes via correlated selection on thermal tolerance. To this end, we experimentally quantified the thermal performance curves (TPCs) f…

0106 biological sciences0301 basic medicinelämmönsietoGrowing seasonVirulenceZoology010603 evolutionary biology01 natural sciencesthermal tolerancethermal performance curvesbakteerit03 medical and health sciencesOpportunistic pathogenGeneticsPathogenEcology Evolution Behavior and Systematics2. Zero hungerGenetic diversitybiologyHost (biology)opportunistic pathogenta1182virulenssiOriginal Articlesilmastonmuutoksetbiology.organism_classificationvirulenceclimate changetaudinaiheuttajat030104 developmental biology13. Climate actionFlavobacterium columnareta1181Original ArticleGeneral Agricultural and Biological SciencesBacteriaEvolutionary Applications
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Adaptation of a tropical butterfly to a temperate climate

2017

0106 biological sciences0301 basic medicinesopeutuminenEcologyphenotypeperhosetBiology010603 evolutionary biology01 natural sciencesLepidoptera03 medical and health sciencesclimatic zones030104 developmental biologyilmastovyöhykkeetButterflyTemperate climateta1181fenotyyppiAdaptationEcology Evolution Behavior and Systematicsadaptation (change)Biological Journal of the Linnean Society
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Interactions between Climate Change and Infrastructure Projects in Changing Water Resources: An Ethnobiological Perspective from the Daasanach, Kenya

2021

The fast and widespread environmental changes that have intensified in the last decades are bringing disproportionate impacts to Indigenous Peoples and Local Communities. Changes that affect water resources are particularly relevant for subsistence-based peoples, many of whom already suffer from constraints regarding reliable access to safe water. Particularly in areas where water is scarce, climate change is expected to amplify existing stresses in water availability, which are also exacerbated by multiple socioeconomic drivers. In this paper, we look into the local perceptions of environmental change expressed by the Daasanach people of northern Kenya, where the impacts of climate change …

0106 biological sciencesAFRICANORTHERNPERCEPTIONS010504 meteorology & atmospheric sciencesEnvironmental changeKOOBI FORAmedia_common.quotation_subjectpaikallisyhteisötClimate changepadotPlant Science01 natural sciencesArticlevesistöjen säännöstelyEffects of global warming11. SustainabilityvesivaratKNOWLEDGEKeniaEnvironmental planning1172 Environmental sciences0105 earth and related environmental sciencesmedia_commonFRESH-WATEROmo-Turkana basin1. No povertySubsistence agricultureenvironmental changelocal ecological knowledgeilmastonmuutokset15. Life on landRESILIENCELivelihooddams010601 ecologyWater resourcesGeography13. Climate actionAnthropologyetnobiologiaLocal Ecological KnowledgealkuperäiskansatAnimal Science and ZoologyPsychological resiliencewater grabbingWater grabbingympäristönmuutoksetkokemustieto
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Traits mediate niches and co‐occurrences of forest beetles in ways that differ among bioclimatic regions

2021

Aim The aim of this study was to investigate the role of traits in beetle community assembly and test for consistency in these effects among several bioclimatic regions. We asked (1) whether traits predicted species’ responses to environmental gradients (i.e. their niches), (2) whether these same traits could predict co-occurrence patterns and (3) how consistent were niches and the role of traits among study regions. Location Boreal forests in Norway and Finland, temperate forests in Germany. Taxon Wood-living (saproxylic) beetles. Methods We compiled capture records of 468 wood-living beetle species from the three regions, along with nine morphological and ecological species traits. Eight …

0106 biological sciencesBayesian joint species distribution models (JSDMs)Species distributionMODELSDead woodClimate changeUNCERTAINTYphylogeny010603 evolutionary biology01 natural sciencesPhylogeneticsSPECIES DISTRIBUTIONDISTRIBUTIONSsaproxylic beetlesenvironmental gradientsEcology Evolution Behavior and SystematicsEcological nichekovakuoriaisetSAPROXYLIC BEETLESfylogeniaEcologyEcology010604 marine biology & hydrobiologybayesilainen menetelmäBIOTIC INTERACTIONSBayesian joint species distribution models (JSDMs); climate change; Coleoptera; ecological traits; environmental gradients; HMSC; morphological traits; phylogeny; saproxylic beetles; species associations15. Life on landilmastonmuutoksetecological traitsspecies associationsHMSCekologinen lokeroColeopteraGeographyclimate changeFUNCTIONAL TRAITS1181 Ecology evolutionary biologymorphological traitsPATTERNSDEAD-WOODympäristönmuutoksetRESPONSES
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Accounting for species interactions is necessary for predicting how arctic arthropod communities respond to climate change

2021

Species interactions are known to structure ecological communities. Still, the influence of climate change on biodiversity has primarily been evaluated by correlating individual species distributions with local climatic descriptors, then extrapolating into future climate scenarios. We ask whether predictions on arctic arthropod response to climate change can be improved by accounting for species interactions. For this, we use a 14-year-long, weekly time series from Greenland, resolved to the species level by mitogenome mapping. During the study period, temperature increased by 2 degrees C and arthropod species richness halved. We show that with abiotic variables alone, we are essentially un…

0106 biological sciencesClimate ResearchArthropodaBiodiversityClimate changeAccounting010603 evolutionary biology01 natural sciencesArcticniveljalkaisetTrophic cascade1172 Environmental sciencesEcology Evolution Behavior and SystematicsTrophic levelAbiotic componentarktinen alueEcologyfood webEcologybusiness.industry010604 marine biology & hydrobiologyeliöyhteisötilmastonmuutokset15. Life on landFood webjoint species distribution modelbiodiversiteettitrophic cascadeclimate changeGeographyArctic13. Climate actioncommunity assemblySpecies richnessbusinessravintoverkotEcography
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