Search results for "niche"

showing 10 items of 1201 documents

From clear lakes to murky waters – tracing the functional response of high-latitude lake communities to concurrent ‘greening’ and ‘browning’

2019

Climate change and the intensification of land use practices are causing widespread eutrophication of subarctic lakes. The implications of this rapid change for lake ecosystem function remain poorly understood. To assess how freshwater communities respond to such profound changes in their habitat and resource availability, we conducted a space-for-time analysis of food-web structure in 30 lakes situated across a temperature-productivity gradient equivalent to the predicted future climate of subarctic Europe (temperature +3 degrees C, precipitation +30% and nutrient +45 mu g L-1 total phosphorus). Along this gradient, we observed an increase in the assimilation of pelagic-derived carbon from…

0106 biological sciencesDYNAMICSIMPACTSFood Chainecological stable statesClimate ChangeTROPHIC POSITION010603 evolutionary biology01 natural sciencesjärvetspace-for-time114 Physical sciencesFISHhabitat couplingstable isotope analysisVDP::Mathematics and natural scienses: 400::Zoology and botany: 480FOR-TIME SUBSTITUTIONSPACEEcosystem14. Life underwaterHABITATEcology Evolution Behavior and SystematicsEcosystemIsotope analysisTrophic levelCLIMATE-CHANGEEcology010604 marine biology & hydrobiologyrehevöityminencryptic energetic pathwaysLake ecosystemSHIFTSPelagic zoneeliöyhteisöt15. Life on landSubarctic climateFood webEuropetrophic nicheLakes13. Climate actionBenthic zoneVDP::Matematikk og naturvitenskap: 400::Zoologiske og botaniske fag: 4801181 Ecology evolutionary biologyEnvironmental scienceta1181FOOD-WEBympäristönmuutoksetravintoverkot
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Halophila stipulacea descriptors in the native area (Red Sea): A baseline for future comparisons with native and non-native populations

2018

Abstract Halophila stipulacea is a small tropical seagrass species native to the Red Sea. Due to its invasive character, there is growing interest in understanding its ability to thrive in a broad range of ecological niches. We studied temporal (February 2014 and July 2014), depth (5, 9, 18 m) and spatial (NB and SB) related dynamics of H. stipulacea meadows in the northern Gulf of Aqaba. We evaluated changes in density, morphometry, biomass, and biochemical parameters alongside the reproductive effort. In both sites, maximal growth and vegetative performance occurred in the summer with a marked increase of 35% in shoot density and 18% in biomass; PAR reduction with season and depth induced…

0106 biological sciencesDepth-adaptationSettore BIO/07 - EcologiaSettore BIO/07Range (biology)Anthropogenic pressuresPhenol contentAquatic ScienceSeagrass Temporal changes Depth-adaptation Anthropogenic pressures Morphometric and population parameters Phenol content Nitrogen storage Stable isotopesOceanography010603 evolutionary biology01 natural sciencesMorphometric and population parametersNitrogen storageSeagrassStable isotopesEcological nicheHalophila stipulaceaBiomass (ecology)biologyEcology010604 marine biology & hydrobiologyBaseline (sea)food and beveragesTemporal changesGeneral Medicinebiology.organism_classificationPollutionSexual reproductionSeagrassShoot
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Closely related crabs from opposite niches adopt different mechanisms to adjust oxygen transport

2008

The successful colonization of new environments is often achieved through adaptations or key innovations of existing physiological or biochemical mechanisms. The oxygen supply in marine invertebrates represent a complex and deeply integrated system which plays a fundamental role in animal adaptive plasticity. In particular, species which inhabit highly stochastic environments as shallow water or intertidal bands, have to cope with extremely different regimes of oxygen availability and effectively maintain a stable aerobic metabolism. Within this framework, we have focused on comparative physiology of Portunid Crabs hemocyanin, to evaluate the role molecular heterogeneity and functional plas…

0106 biological sciencesEcological niche0303 health sciencesPhysiologyEcology030310 physiologymedicine.medical_treatmentComparative physiologyOxygen transportIntertidal zoneHemocyaninMarine invertebratesBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesBiochemistryCarcinus aestuarii03 medical and health sciencesmedicine14. Life underwaterLiocarcinus vernalisMolecular BiologyComparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology
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Spatial structure and β-diversity of phytoplankton in Tibetan Plateau lakes: nestedness or replacement?

2017

Spatial patterns and β-diversity of phytoplankton assemblages depend on the relative importance of species dispersal capacity and species-sorting. Variability in species composition, composed by differences in species richness (nestedness) and/or species replacement, may be caused by niche availability and environmental selection. A field survey was carried out in Tibetan plateau on 38 lakes. Tibetan plateau lakes, located at high elevation, are harsh ecosystems characterized by low temperatures, low available nutrients, high UV amount, and strong salinity gradients. Only well-adapted species can survive in these environments. We therefore hypothesized that environmental filtering was the m…

0106 biological sciencesEcological nicheDiversitygeographyPlateaugeography.geographical_feature_categoryNiche theoryEcology010604 marine biology & hydrobiologySpatial scalefungiAquatic ScienceBiology010603 evolutionary biology01 natural sciencesSettore BIO/03 - Botanica Ambientale E ApplicataPhytoplanktonSpatial ecologyBiological dispersalNestednessEcosystemHarsh environmentSpecies richnessEnvironmental filteringHydrobiologia
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Some like it deep : Intraspecific niche segregation in ruffe (Gymnocephalus cernua)

2017

Generalist fishes commonly show intraspecific niche segregation along the littoral–pelagic resource axis in lakes. Recent studies have shown that the deep, cold and seemingly unproductive profundal zone can also offer underutilised resources and facilitate specialised individuals, and can contribute to lake food webs via methane-derived carbon pathways. Despite numerous examples from salmonid fish species, such intraspecific niche segregation along a littoral–profundal resource axis has not been reported in percids or other predominantly littoral benthivorous fishes. Here, we describe a case of ruffe (Gymnocephalus cernua: Percidae) populations consisting of shallow- and deep-water dwelling…

0106 biological sciencesEcological nicheEcology010604 marine biology & hydrobiologyLake ecosystemNiche segregationhabitatInterspecific competitionAquatic ScienceBiologyGeneralist and specialist speciesbiology.organism_classification010603 evolutionary biology01 natural sciencesPercidaeprofundal zonespacialisationLittoral zonehabitat couplingstable isotope analysista1181individual specialisationProfundal zonecarbon transferisotopesFreshwater Biology
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Interactions between environmental variability and immigration rate control patterns of species diversity

2006

Abstract Theories focussing on local competition processes predict that species diversity is maximised with high-frequency environmental variability or alternatively with intermediate frequencies. The models coupling regional processes to local explanations of diversity patterns predict that the immigration rate from a regional species pool can strongly increase diversity. However, the interaction between local and regional processes in temporally fluctuating environment has received little attention. We explored in a simulation study how the patterns of species diversity are affected by the frequency spectrum of stochastic environmental variations and density independent immigration rate i…

0106 biological sciencesEcological nicheEcologyEcological Modelingmedia_common.quotation_subjectBiodiversitySpecies diversity15. Life on landBiology010603 evolutionary biology01 natural sciencesCompetition (biology)010601 ecologyIntermediate Disturbance HypothesisBiological dispersalGrowth ratehuman activitiesDiversity (business)media_commonEcological Modelling
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2018

Marine life of the Southern Ocean has been facing environmental changes and the direct impact of human activities during the past decades. Benthic communities have particularly been affected by such changes although we only slowly understand the effect of environmental changes on species physiology, biogeography, and distribution. Species distribution models (SDM) can help explore species geographic responses to main environmental changes. In this work, we modeled the distribution of four echinoid species with contrasting ecological niches. Models developed for [2005-2012] were projected to different time periods, and the magnitude of distribution range shifts was assessed for recent-past c…

0106 biological sciencesEcological nicheEcologyRange (biology)Ecology010604 marine biology & hydrobiologyBiogeographySpecies distributionMarine life15. Life on land010603 evolutionary biology01 natural sciencesGeographyBenthic zoneLocal extinction14. Life underwaterEndemismEcology Evolution Behavior and SystematicsNature and Landscape ConservationEcology and Evolution
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Stable isotopes reveal differences in diet among reed bunting subspecies that vary in bill size

2017

Reed bunting Emberiza schoeniclus subspecies vary considerably in bill size and shape and seem to be at an early stage of speciation, in which bill might be indirectly causing reproductive isolation. Hence, we evaluated whether bill size, as well as age and sex, are associated with foraging niche in three west European subspecies of reed bunting: the thin-billed schoeniclus, the intermediate-billed lusitanica and the thick-billed witherbyi. Blood sampling was undertaken at three sites in southwest Europe during the winter (when these subspecies co-occur), and stable isotope analyses (carbon and nitrogen) were performed to assess their foraging niches. Stable isotope analyses of potential fo…

0106 biological sciencesEcological nichebiologyEcologyForagingBuntingEmberiza schoeniclusSubspeciesbiology.organism_classification010603 evolutionary biology01 natural sciences010601 ecologySexual dimorphismSexual selectionAnimal Science and ZoologyEcology Evolution Behavior and SystematicsBlood sampling
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2018

BackgroundThe use and partitioning of trophic resources is a central aspect of community function. On the ground of tropical forests, dozens of ant species may be found together and ecological mechanisms should act to allow such coexistence. One hypothesis states that niche specialization is higher in the tropics, compared to temperate regions. However, trophic niches of most species are virtually unknown. Several techniques might be combined to study trophic niche, such as field observations, fatty acid analysis (FAA) and stable isotope analysis (SIA). In this work, we combine these three techniques to unveil partitioning of trophic resources in a tropical and a temperate community. We des…

0106 biological sciencesEcological nichebiologyEcologyGeneral NeuroscienceNicheTemperate forest04 agricultural and veterinary sciencesGeneral MedicineLasius fuliginosusWasmanniabiology.organism_classification010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular Biology040103 agronomy & agriculture0401 agriculture forestry and fisheriesSpecies richnessGeneral Agricultural and Biological SciencesIsotope analysisTrophic levelPeerJ
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Evolutionary ecology of fast seed germination—A case study in Amaranthaceae/Chenopodiaceae

2017

Abstract Germination is a vulnerable and risky step in a plant’s life cycle. Particularly under harsh environmental conditions, where time windows favourable for seedling establishment and survival are short or unpredictable, germination speed might play a highly adaptive role. We investigated the germination speed of 107 Amaranthaceae s.l. at two different temperatures and related the results to various plant and habitat traits taking into account the molecular phylogenetic relatedness of the species sampled. Germination speed is a fast evolving trait in Amaranthaceae s.l. It evolves towards significantly faster optima in C4 and halophyte lineages, albeit for different reasons. While C4 ph…

0106 biological sciencesEcological nichebiologyEcologymedia_common.quotation_subjectLongevityPlant ScienceAmaranthaceaebiology.organism_classification010603 evolutionary biology01 natural sciencesGerminationSeedlingHalophyteBotanyEvolutionary ecologyChenopodiaceaeEcology Evolution Behavior and Systematics010606 plant biology & botanymedia_commonPerspectives in Plant Ecology, Evolution and Systematics
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