Search results for "Global Change Ecology"

showing 5 items of 5 documents

Tropical Andean forests are highly susceptible to nutrient inputs--rapid effects of experimental N and P addition to an Ecuadorian montane forest.

2012

Tropical regions are facing increasing atmospheric inputs of nutrients, which will have unknown consequences for the structure and functioning of these systems. Here, we show that Neotropical montane rainforests respond rapidly to moderate additions of N (50 kg ha -1 yr -1) and P (10 kg ha -1 yr -1). Monitoring of nutrient fluxes demonstrated that the majority of added nutrients remained in the system, in either soil or vegetation. N and P additions led to not only an increase in foliar N and P concentrations, but also altered soil microbial biomass, standing fine root biomass, stem growth, and litterfall. The different effects suggest that trees are primarily limited by P, whereas some pro…

0106 biological sciences010504 meteorology & atmospheric scienceslcsh:MedicinePlant Science01 natural sciencesPlant RootsTreesSoilNutrientGlobal Change EcologyBiomasslcsh:ScienceConservation ScienceBiomass (ecology)MultidisciplinaryEcologyEcologyPhosphorusVegetationBiodiversityPlant litterBiogeochemistrySoil EcologyPlantsTropical; Andean; Forests; Nutrient Input; N; P; Ecuadorian Montane ForestTerrestrial EnvironmentsEcuadorResearch ArticleNitrogenRainforestBiology010603 evolutionary biologyEcosystemsSystems EcologynutrientsPlant-Environment InteractionsForest ecologyEcosystemmontaneforestTerrestrial EcologyFertilizersBiologyEcosystem0105 earth and related environmental sciencesTropical ClimateChemical EcologyPlant Ecologylcsh:RTropics15. Life on landPlant Leaveslcsh:QEcological EnvironmentsPloS one
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Forest Fragmentation and Selective Logging Have Inconsistent Effects on Multiple Animal-Mediated Ecosystem Processes in a Tropical Forest

2011

Forest fragmentation and selective logging are two main drivers of global environmental change and modify biodiversity and environmental conditions in many tropical forests. The consequences of these changes for the functioning of tropical forest ecosystems have rarely been explored in a comprehensive approach. In a Kenyan rainforest, we studied six animal-mediated ecosystem processes and recorded species richness and community composition of all animal taxa involved in these processes. We used linear models and a formal meta-analysis to test whether forest fragmentation and selective logging affected ecosystem processes and biodiversity and used structural equation models to disentangle di…

0106 biological sciencesBiodiversitylcsh:Medicine01 natural sciencesTreesForest restorationGlobal Change EcologySpatial and Landscape EcologyHuman Activitieslcsh:ScienceConservation ScienceMultidisciplinaryEcologyBehavior AnimalAgroforestryEcologyLoggingBiodiversityTerrestrial EnvironmentsTrophic InteractionsCommunity EcologyEcosystem FunctioningResearch ArticleEcological MetricsRainforestBiology010603 evolutionary biologyEcosystemsddc:570Forest ecologyAnimalsHumansEcosystemTerrestrial EcologyBiologyCommunity Structureddc:578EcosystemTropical Climate010604 marine biology & hydrobiologylcsh:RSpecies DiversityModels Theoretical15. Life on landSpecies InteractionsDisturbance (ecology)Secondary forestlcsh:QSpecies RichnessEcological EnvironmentsPLoS ONE
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Ocean Acidification and the Loss of Phenolic Substances in Marine Plants

2012

Rising atmospheric CO(2) often triggers the production of plant phenolics, including many that serve as herbivore deterrents, digestion reducers, antimicrobials, or ultraviolet sunscreens. Such responses are predicted by popular models of plant defense, especially resource availability models which link carbon availability to phenolic biosynthesis. CO(2) availability is also increasing in the oceans, where anthropogenic emissions cause ocean acidification, decreasing seawater pH and shifting the carbonate system towards further CO(2) enrichment. Such conditions tend to increase seagrass productivity but may also increase rates of grazing on these marine plants. Here we show that high CO(2) …

0106 biological sciencesCymodocea nodosaved/biology.organism_classification_rank.speciesCarbonatesSecondary MetabolismMarine and Aquatic Scienceslcsh:MedicinePlant Science01 natural scienceschemistry.chemical_compoundGlobal Change Ecologylcsh:SciencePhysiological EcologyMultidisciplinaryAlismatalesbiologyEcologyEcologyPlant BiochemistryMarine EcologyOcean acidificationPotamogetonaceaeHydrogen-Ion ConcentrationSeagrassProductivity (ecology)ItalyCarbon dioxideCoastal EcologyResearch ArticleOceans and SeasMarine Biology010603 evolutionary biologyStatistics NonparametricHydrothermal VentsPhenolsPlant-Environment InteractionsTerrestrial plantSeawater14. Life underwaterocean acidification climate change mediterranean sea seagrassBiologyAnalysis of VarianceChemical EcologyMarylandved/biology010604 marine biology & hydrobiologyPlant Ecologyfungilcsh:R15. Life on landCarbon Dioxidebiology.organism_classificationSalinitychemistry13. Climate actionEarth Scienceslcsh:QRuppia maritima
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Lymnaea schirazensis, an Overlooked Snail Distorting Fascioliasis Data: Genotype, Phenotype, Ecology, Worldwide Spread, Susceptibility, Applicability

2011

BackgroundLymnaeid snails transmit medical and veterinary important trematodiases, mainly fascioliasis. Vector specificity of fasciolid parasites defines disease distribution and characteristics. Different lymnaeid species appear linked to different transmission and epidemiological patterns. Pronounced susceptibility differences to absolute resistance have been described among lymnaeid populations. When assessing disease characteristics in different endemic areas, unexpected results were obtained in studies on lymnaeid susceptibility to Fasciola. We undertook studies to understand this disease transmission heterogeneity.Methodology/principal findingsA ten-year study in Iran, Egypt, Spain, t…

EpidemiologyInternational CooperationSnailAnimal PhylogeneticsGlobal HealthPolymerase Chain ReactionMalacologyFoodborne DiseasesGlobal Change EcologyComparative AnatomyPhylogenyLymnaeaGalba truncatulaMolecular EpidemiologyMultidisciplinaryEcologyGeographybiologyZoonotic DiseasesEcologyQRMalacologyInfectious DiseasesPhenotypeBiogeographyVeterinary DiseasesMedicinePublic HealthResearch ArticleNeglected Tropical DiseasesDisease EcologyFascioliasisConservation of Natural ResourcesSpecies complexFasciolosisGenotypeScienceZoologyDNA MitochondrialDNA RibosomalInfectious Disease EpidemiologyIntraspecific competitionVeterinary EpidemiologyHepaticaPhylogeneticsbiology.animalparasitic diseasesGeneticsParasitic DiseasesAnimalsBiologyEvolutionary BiologyModels GeneticSelfingSequence Analysis DNAbiology.organism_classificationBiomarker EpidemiologyHaplotypesAnimal TaxonomyBioindicatorsParasitologyVeterinary ScienceZoologyPopulation GeneticsBiomarkersHelminthologyPLoS ONE
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Translocation as a novel approach to study effects of a new breeding habitat on reproductive output in wild birds

2011

Environmental conditions under which species reproduce have major consequences on breeding success and subsequent fitness. Therefore breeding habitat choice is ultimately important. Studies rarely address the potential fitness pay-offs of alternative natural breeding habitats by experimental translocation. Here we present a new tool to study fitness consequences of free living birds in different habitats. We translocated a migratory passerine, the pied flycatcher (Ficedula hypoleuca), to a novel site, where pairs were subjected to a short stay (2-4 days) in a nest box-equipped aviary before being released. We show that it is technically possible to retain birds in the new area for breeding,…

MaleSELECTIONFITNESSOvipositionlcsh:MedicineAnimals WildBreedingBehavioral EcologyGlobal Change EcologyDISPERSALFAMILIARITYGLOBAL CLIMATE-CHANGEAnimalsPasseriformeslcsh:ScienceBiologyEcosystemPOPULATIONEvolutionary BiologyCONSEQUENCESEcologyReproductionlcsh:RTRAPSClutch SizeEvolutionary EcologyDISTANCESURVIVALlcsh:QAnimal MigrationFemalePopulation EcologyResearch Article
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