Search results for "Clima"

showing 10 items of 6069 documents

Climate Change Genomics Calls for Standardized Data Reporting

2020

The advent of new and affordable high-throughput sequencing techniques allows for the investigation of the genetic basis of environmental adaptation throughout the plant and animal kingdom. The framework of genotype-environment associations (GEA) provides a powerful link by correlating the geographic distribution of genotype patterns of individuals or populations with environmental factors on a spatial scale. We coarsely review the short history of GEA studies, summarizing available studies, organisms, data type, and data availability for these studies. GEA is a powerful tool in climate change research and we therefore focus on climate variables as environmental factors. While our initial a…

0106 biological sciences0301 basic medicineCandidate geneComputer sciencemeta-anaylseslcsh:EvolutionClimate changeGenomics010603 evolutionary biology01 natural sciencesliterature survey03 medical and health sciencesDocumentationgene ontology categorylcsh:QH540-549.5lcsh:QH359-425Adaptation (computer science)environmental association analysisEcology Evolution Behavior and SystematicsGeneralityEcologyData science030104 developmental biologySpatial ecologylcsh:EcologyLiterature surveycandidate genesFrontiers in Ecology and Evolution
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Genetic determinants of seed protein plasticity in response to the environment in Medicago truncatula

2021

As the frequency of extreme environmental events is expected to increase with climate change, identifying candidate genes for stabilizing the protein composition of legume seeds or optimizing this in a given environment is increasingly important. To elucidate the genetic determinants of seed protein plasticity, major seed proteins from 200 ecotypes of Medicago truncatula grown in four contrasting environments were quantified after one-dimensional electrophoresis. The plasticity index of these proteins was recorded for each genotype as the slope of Finlay and Wilkinson's regression and then used for genome-wide association studies (GWASs), enabling the identification of candidate genes for d…

0106 biological sciences0301 basic medicineCandidate geneGenotypelegumesMutantVitamin UGenome-wide association studyPlant ScienceBiologymethionine recycling01 natural sciences[SDV.GEN.GPL]Life Sciences [q-bio]/Genetics/Plants genetics03 medical and health scienceschemistry.chemical_compoundMethionineStress PhysiologicalMedicago truncatulaGeneticsStorage protein[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyGenome-wide association studies (GWAS)GenePlant Proteins2. Zero hungerchemistry.chemical_classificationGeneticsMethionineSeed Storage Proteinsfood and beveragesGlobulinsCell Biologybiology.organism_classificationMedicago truncatulaMetabolic pathwayPhenotype030104 developmental biologychemistrystorage proteins13. Climate actionplasticityMutationSeedsseedGenome-Wide Association Study010606 plant biology & botany
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Ultraviolet radiation accelerates photodegradation under controlled conditions but slows the decomposition of senescent leaves from forest stands in …

2019

Depending on the environment, sunlight can positively or negatively affect litter decomposition, through the ensemble of direct and indirect processes constituting photodegradation. Which of these processes predominate depends on the ecosystem studied and on the spectral composition of sunlight received. To examine the relevance of photodegradation for litter decomposition in forest understoreys, we filtered ultraviolet radiation (UV) and blue light from leaves of Fagus sylvatica and Bettda pendula at two different stages of senescence in both a controlled-environment experiment and outdoors in four different forest stands (Picea abies, Pagus sylvatica, Acer platanoides, Betula pendula). Co…

0106 biological sciences0301 basic medicineCanopyUltraviolet RaysPhysiologyUV-B RADIATIONPlant ScienceForestsANTHOCYANINS01 natural sciencesUV radiationBOREAL FOREST03 medical and health scienceschemistry.chemical_compoundFagus sylvaticaPhotodegradationGeneticsPhotodegradationEcosystemFinlandComputingMilieux_MISCELLANEOUS11832 Microbiology and virologyFlavonoidsSunlight[SDV.EE]Life Sciences [q-bio]/Ecology environment4112 ForestryPhotolysisbiologyChemistryTEMPERATEPLANT LITTERPicea abies15. Life on landPlant litterbiology.organism_classificationPhenolic compoundsUnderstorey light environmentSODANKYLAPlant LeavesHorticultureLIGHT030104 developmental biology13. Climate actionBetula pendulaChlorophyllPATTERNS1182 Biochemistry cell and molecular biologyLEAF-LITTER DECOMPOSITION010606 plant biology & botany
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Quantitative genetics of temperature performance curves of Neurospora crassa

2020

AbstractEarth’s temperature is increasing due to anthropogenic CO2emissions; and organisms need either to adapt to higher temperatures, migrate into colder areas, or face extinction. Temperature affects nearly all aspects of an organism’s physiology via its influence on metabolic rate and protein structure, therefore genetic adaptation to increased temperature may be much harder to achieve compared to other abiotic stresses. There is still much to be learned about the evolutionary potential for adaptation to higher temperatures, therefore we studied the quantitative genetics of growth rates in different temperatures that make up the thermal performance curve of the fungal model systemNeuros…

0106 biological sciences0301 basic medicineClimate ChangeQuantitative Trait LocievoluutioAdaptation BiologicalkasvuevolvabilityG‐matrixphenotypic plasticity010603 evolutionary biology01 natural sciencesNeurospora crassa03 medical and health sciencesGenetic variationGeneticsSelection (genetic algorithm)Ecology Evolution Behavior and Systematics030304 developmental biologyAbiotic component0303 health sciencesExperimental evolutionExtinctionModels GeneticNeurospora crassabiologyepigeneettinen periytyminenCrassaTemperatureGenetic VariationQuantitative geneticsbiology.organism_classificationgeneettinen muunteluBiological EvolutionEvolvability030104 developmental biologyreaction norm13. Climate actionEnvironmental sciencefenotyyppilämpötilafungiAdaptationsienetGeneral Agricultural and Biological SciencesBiological systemEvolution
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Seasonal changes in morpho-functional aspects of two Anemonia sulcata (Pennant, 1777) wild populations

2017

Marine benthic organisms can be used as indicators of the quality of environmental status and as monitoring tools to detect natural or anthropogenic perturbations. In temperate waters, metabolic and biochemical responses may be governed by physiological changes driven by seasonal factors. Gathering baseline information on the mechanisms underlying seasonal acclimation patterns is therefore a critical step towards the understanding of the physiological responses of biological indicators. In poikilothermic metazoans, the production of regulatory metabolic enzymes can be used as tools for deciphering the acclimation potential. The aim of this study was to characterize the natural seasonal vari…

0106 biological sciences0301 basic medicineCnidariaBiometrySeasonal variationBiodiversityHydrolaseAquatic ScienceSea anemoneAnemonia sulcata; Biometry; Biondicator; Hydrolase; Peroxidase; Seasonal variation; Thermal stress; Oceanography; Ecology Evolution Behavior and Systematics; Aquatic ScienceOceanography010603 evolutionary biology01 natural sciencesAcclimatizationAnemonia sulcata03 medical and health sciencesBiondicatorAnthozoaTemperate climateEcology Evolution Behavior and SystematicsPeroxidasebiologyEcologybiology.organism_classificationEcology Evolution Behavior and Systematic030104 developmental biologyPoikilothermBenthic zoneThermal streMarine Biodiversity
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Northern European Salmo trutta (L.) populations are genetically divergent across geographical regions and environmental gradients

2020

The salmonid fish Brown trout is iconic as a model for the application of conservation genetics to understand and manage local interspecific variation. However, there is still scant information about relationships between local and large-scale population structure, and to what extent geographical and environmental variables are associated with barriers to gene flow. We used information from 3,782 mapped SNPs developed for the present study and conducted outlier tests and gene–environment association (GEA) analyses in order to examine drivers of population structure. Analyses comprised >2,600 fish from 72 riverine populations spanning a central part of the species' distribution in norther…

0106 biological sciences0301 basic medicineConservation geneticsSELECTIONPopulationsalmonidCONSERVATIONlcsh:Evolutiongenotype‐environment association010603 evolutionary biology01 natural sciencesGene flow03 medical and health sciencesbrown troutLOCAL ADAPTATIONSampling designlcsh:QH359-425GeneticsGENOME SCANS14. Life underwaterSalmoeducationEcology Evolution Behavior and SystematicsLocal adaptationGenotype‐environment associationeducation.field_of_studyCLIMATE-CHANGEbiologyBROWN TROUTSTRUCTURED POPULATIONSR-PACKAGESampling (statistics)genotype-environment associationVDP::Matematikk og Naturvitenskap: 400biology.organism_classification030104 developmental biologyEvolutionary biologyoutlier testTEMPORAL-CHANGESOutlierGeneral Agricultural and Biological SciencesASCERTAINMENT BIASlocal adaptation
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Microbial symbionts expanding or constraining abiotic niche space in insects

2020

In addition to their well-studied contributions to their host’s nutrition, digestion, and defense, microbial symbionts of insects are increasingly found to affect their host’s response toward abiotic stressors. In particular, symbiotic microbes can reduce or enhance tolerance to temperature extremes, improve desiccation resistance by aiding cuticle biosynthesis and sclerotization, and detoxify heavy metals. As such, individual symbionts or microbial communities can expand or constrain the abiotic niche space of their host and determine its adaptability to fluctuating environments. In light of the increasing impact of humans on climate and environment, a better understanding of host-microbe …

0106 biological sciences0301 basic medicineEntomologyInsectamedia_common.quotation_subjectAcclimatizationNicheInsectBiology010603 evolutionary biology01 natural sciencesAdaptability03 medical and health sciencesAnimal ShellsStress PhysiologicalMetals HeavyNitrogen FixationAnimalsSymbiosisEcology Evolution Behavior and SystematicsEcosystemmedia_commonAbiotic componentResistance (ecology)Host Microbial InteractionsHost (biology)EcologyMicrobiotafungiTemperatureDroughts030104 developmental biology13. Climate actionInsect ScienceDesiccationCurrent Opinion in Insect Science
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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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Transcriptomic responses to environmental change in fishes: Insights from RNA sequencing

2017

The need to better understand how plasticity and evolution affect organismal responses to environmental variability is paramount in the face of global climate change. The potential for using RNA sequencing (RNA-seq) to study complex responses by non-model organisms to the environment is evident in a rapidly growing body of literature. This is particularly true of fishes for which research has been motivated by their ecological importance, socioeconomic value, and increased use as model species for medical and genetic research. Here, we review studies that have used RNA-seq to study transcriptomic responses to continuous abiotic variables to which fishes have likely evolved a response and th…

0106 biological sciences0301 basic medicineEnvironmental changeClimate changeadaptationBiology010603 evolutionary biology01 natural sciencesphenotypic plasticityTranscriptome03 medical and health sciencestranscriptomics14. Life underwaterlcsh:SciencePhenotypic plasticityMultidisciplinarygenomic reaction normsEcologyGlobal warmingRNARNA sequencing030104 developmental biologyclimate changeEvolutionary biologylcsh:QAdaptationlcsh:Llcsh:EducationFACETS
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2018

Rapid environmental fluctuations are ubiquitous in the wild, yet majority of experimental studies mostly consider effects of slow fluctuations on organism. To test the evolutionary consequences of fast fluctuations, we conducted nine independent experimental evolution experiments with bacteria. Experimental conditions were same for all species, and we allowed them to evolve either in fluctuating temperature alternating rapidly between 20°C and 40°C or at constant 30°C temperature. After experimental evolution, we tested the performance of the clones in both rapid fluctuation and in constant environments (20°C, 30°C and 40°C). Results from experiments on these nine species were combined meta…

0106 biological sciences0301 basic medicineExperimental evolutionEcologyBiologyGeneralist and specialist speciesbiology.organism_classification010603 evolutionary biology01 natural sciences03 medical and health sciences030104 developmental biology13. Climate actionAdaptationConstant (mathematics)Biological systemEcology Evolution Behavior and SystematicsBacteriaNature and Landscape ConservationEcology and Evolution
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