Search results for "Clima"

showing 10 items of 6069 documents

Living in a high CO2 world: a global meta-analysis shows multiple trait-mediated fish responses to ocean acidification

2018

International audience; Understanding how marine organisms will be affected by global change is of primary importance to ensure ecosystem functioning and nature contributions to people. This study meets the call for addressing how life‐history traits mediate effects of ocean acidification on fish. We built a database of overall and trait‐mediated responses of teleost fish to future CO2 levels by searching the scientific literature. Using a meta‐analytical approach, we investigated the effects of projected CO2 levels by IPCC for 2050–2070 and 2100 on fish eco‐physiology and behavior from 320 contrasts on 42 species, stemming from polar to tropical regions. Moreover, since organisms may exper…

0106 biological sciencesgrowth[SDE.MCG]Environmental Sciences/Global Changesteleostssurvival010603 evolutionary biology01 natural sciencescalcification14. Life underwaterdevelopment[SDV.BDD]Life Sciences [q-bio]/Development Biologyfish traitsEcology Evolution Behavior and SystematicsteleostbehaviorEcology010604 marine biology & hydrobiologyOcean acidification15. Life on land13. Climate action[SDE]Environmental SciencesTraitEnvironmental scienceFish <Actinopterygii>heterogeneity[SDE.BE]Environmental Sciences/Biodiversity and Ecologyfish traitmetabolismEcological Monographs
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Forest bioenergy harvesting changes carbon balance and risks biodiversity in boreal forest landscapes

2020

Climate solutions relying on forest bioenergy may be in conflict with carbon sequestration and storage by forests as well as conservation of biodiversity. We quantified effects of forest-residue harvesting for bioenergy on both forest carbon balance and biodiversity in a boreal forest landscape. Through a modeling framework, we simulated forest development in four real watersheds with three scenarios: (i) with and (ii) without forest-residue harvesting and (iii) set aside to study the conservation potential of these landscapes in the future without management. We simulated changes in the forest carbon stocks and in the quality and quantity of deadwood resources for 100 years and combined t…

0106 biological scienceshakkuutähteet010504 meteorology & atmospheric sciencesBiodiversityCarbon sequestration010603 evolutionary biology01 natural sciencesclimate change mitigationhabitat requirementsBioenergylahopuutbiodiversity0105 earth and related environmental sciencesdeadwoodGlobal and Planetary ChangeEcologyAgroforestryTaigaForestryhiilensidontailmastonmuutoksetbiodiversiteettilogging residuesbioenergiametsäenergiaEnvironmental scienceCanadian Journal of Forest Research
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Ecosystem carbon response of an Arctic peatland to simulated permafrost thaw

2019

Permafrost peatlands are biogeochemical hot spots in the Arctic as they store vast amounts of carbon. Permafrost thaw could release part of these long-term immobile carbon stocks as the greenhouse gases (GHGs) carbon dioxide (CO 2 ) and methane (CH 4 ) to the atmosphere, but how much, at which time-span and as which gaseous carbon species is still highly uncertain. Here we assess the effect of permafrost thaw on GHG dynamics under different moisture and vegetation scenarios in a permafrost peatland. A novel experimental approach using intact plant–soil systems (mesocosms) allowed us to simulate permafrost thaw under near-natural conditions. We monitored GHG flux dynamics via high-resolution…

0106 biological scienceshiilidioksidiPeat010504 meteorology & atmospheric sciencesPermafrostikiroutaPermafrostAtmospheric sciences01 natural sciencesMethaneCO2 EXCHANGEclimate warmingPALSA MIREchemistry.chemical_compoundDissolved organic carbonGeneral Environmental SciencekasvihuoneilmiöGlobal and Planetary ChangeCLIMATE-CHANGEEcologyArctic Regionsmethane oxidationhiilen kiertopermafrost-carbon-feedbackPlantsmesocosmCOORGANIC-MATTERkasvihuonekaasutCH4 FLUXESgreenhouse gasNORTHERN PEATLANDSCarbon dioxideCO2MethaneOxidation-ReductionBiogeochemical cycleTUNDRA SOILSClimate Changeta1172ta1171010603 evolutionary biologymetaaniCarbon CycleGreenhouse GasesMETHANE EMISSIONSEnvironmental Chemistry0105 earth and related environmental sciencesAtmosphere15. Life on landCarbon DioxideWATER-TABLEEXTRACTION METHODArcticchemistry13. Climate actionGreenhouse gasEnvironmental science
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Vegetation structure and greenness in Central Africa from Modis multi-temporal data.

2013

African forests within the Congo Basin are generally mapped at regional scale as broad-leaved evergreen forests, with a main distinction between terra-firme and swamp forests types. At the same time, commercial forest inventories, as well as national maps, have highlighted a strong spatial heterogeneity of forest types. A detailed vegetation map generated using consistent methods is needed to inform decision makers about spatial forest organisation and theirs relationships with environmental drivers in the context of global change. We propose a multi-temporal remotely sensed data approach to characterize vegetation types using vegetation index annual profiles. The classifications identified…

0106 biological scienceshttp://aims.fao.org/aos/agrovoc/c_28568Time Factors010504 meteorology & atmospheric sciencesDatabases FactualRainEcological Parameter Monitoringhttp://aims.fao.org/aos/agrovoc/c_900018001 natural sciencesTrees[ SDE ] Environmental Sciencesremote sensinghttp://aims.fao.org/aos/agrovoc/c_3062K01 - Foresterie - Considérations généralesDynamique des populationsForêt tropicale humidehttp://aims.fao.org/aos/agrovoc/c_6498http://aims.fao.org/aos/agrovoc/c_29008geography.geographical_feature_categoryCentral AfricaEcologyInventaire forestierVegetationArticlesClassificationSpatial heterogeneity[ SDE.MCG ] Environmental Sciences/Global ChangesDeciduoushttp://aims.fao.org/aos/agrovoc/c_7976CongoP31 - Levés et cartographie des solsForêt[SDE]Environmental SciencesSeasonshttp://aims.fao.org/aos/agrovoc/c_1432General Agricultural and Biological Scienceshttp://aims.fao.org/aos/agrovoc/c_34911Research ArticleF40 - Écologie végétaleTélédétectionClimate Change[SDE.MCG]Environmental Sciences/Global ChangesSpectroscopie infrarougeContext (language use)69Typologie010603 evolutionary biologySwampGeneral Biochemistry Genetics and Molecular BiologyCarbon Cycle[ SDU.ENVI ] Sciences of the Universe [physics]/Continental interfaces environmentHumansAfrica Centralhttp://aims.fao.org/aos/agrovoc/c_1666http://aims.fao.org/aos/agrovoc/c_1344http://aims.fao.org/aos/agrovoc/c_8176[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmenthttp://aims.fao.org/aos/agrovoc/c_6111Ecosystem0105 earth and related environmental sciencesChangement climatiquegeographyCartographiehttp://aims.fao.org/aos/agrovoc/c_24174Enhanced vegetation index15. Life on landEvergreenVégétationStructure du peuplement13. Climate actionCouvert forestierPhysical geographyU30 - Méthodes de recherchehttp://aims.fao.org/aos/agrovoc/c_1653tropical rainforestTropical rainforest
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“Porţile de Fier/Iron Gates” Gorges Area (Danube) Fish Fauna

2014

AbstractAn important fisheries sector of the Danube, the “Iron Gates” area, was studied by famous naturalists along the history like Marsigli, Haeckel, Kner, Antipa and Bănărescu. After more than half a century after the last main publication in this area, the “Iron Gates” Danube sector suffered significant human impact, and an assessment of the fish fauna was needed. The paper summarizes the trend of fish species along the XIX to XXIst centuries, and reveals the appearance of new species. The study includes data from about 65 fish species, belonging to: Acipenseridae, Polyodontidae, Clupeidae, Salmonidae, Esocidae, Cyprinidae, Cobitidae, Siluridae, Ictaluridae, Anguillidae, Lotidae, Gaster…

0106 biological scienceshuman impactEcology010604 marine biology & hydrobiologyFaunaEcology (disciplines)010501 environmental scienceshabitat changesfish fauna01 natural sciencesFisheryGeography13. Climate actiondanubeFish <Actinopterygii>14. Life underwaterQH540-549.50105 earth and related environmental sciencesTransylvanian Review of Systematical and Ecological Research
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Chlorophyll a fluorescence illuminates a path connecting plant molecular biology to Earth-system science

2021

Remote sensing methods enable detection of solar-induced chlorophyll a fluorescence. However, to unleash the full potential of this signal, intensive cross-disciplinary work is required to harmonize biophysical and ecophysiological studies. For decades, the dynamic nature of chlorophyll a fluorescence (ChlaF) has provided insight into the biophysics and ecophysiology of the light reactions of photosynthesis from the subcellular to leaf scales. Recent advances in remote sensing methods enable detection of ChlaF induced by sunlight across a range of larger scales, from using instruments mounted on towers above plant canopies to Earth-orbiting satellites. This signal is referred to as solar-in…

0106 biological sciencesklorofylliChlorophyll a010504 meteorology & atmospheric sciencesEarth scienceEcology (disciplines)Plant Scienceekofysiologia01 natural sciencesFluorescencebiofysiikkayhteyttäminenchemistry.chemical_compoundLEAFLEAVESWATERPhotosynthesisCO2 ASSIMILATIONSCOTS PINE[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmentMolecular Biology0105 earth and related environmental sciences[SDU.OCEAN]Sciences of the Universe [physics]/Ocean AtmosphereChlorophyll ASUN-INDUCED FLUORESCENCEfluoresenssiBiogeochemistrykasvillisuus15. Life on land11831 Plant biologyReflectivityREFLECTANCEPlant LeavesEarth system scienceddc:580RESOLUTIONchemistryPHOTOSYSTEM-I13. Climate actionRemote Sensing TechnologyEarth SciencessatelliittikuvausEnvironmental sciencekaukokartoitus010606 plant biology & botanyNature Plants
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Severe effects of long-term drought on calcareous grassland seed banks

2018

Climate change models project shifts in precipitation patterns at regional and global scales. Increases in dry areas and the occurrence of drought predicted in future scenarios are likely to threaten grassland ecosystems. Calcareous grassland seed banks have proven to be resistant to short-term drought, but their responses to long-term drought are unknown. Here we show that 14 years of summer drought changed calcareous grassland seed bank composition, reducing its size and richness, and that these responses do not simply reflect patterns in the above-ground vegetation. Moreover, the effect of drought was larger on seed banks than on vegetation, and above-ground responses mediated by soil de…

0106 biological scienceskuivuusAtmospheric ScienceSoil seed bankCalcareous grasslandnurmetClimate changedroughtlcsh:QC851-999complex mixtures010603 evolutionary biology01 natural sciencesniitytsiemenetparasitic diseasesEnvironmental ChemistryEcosystemlcsh:Environmental scienceslcsh:GE1-350maaperäGlobal and Planetary Changegrassland ecologysiemenkasvitfungifood and beveragesenvironmental impactsVegetationekosysteemit (ekologia)Disturbance (ecology)Agronomyympäristövaikutuksetclimate-changeilmastonmuutosEnvironmental sciencelcsh:Meteorology. ClimatologySpecies richnessseed banksCalcareousclimate-change ecology010606 plant biology & botanynpj Climate and Atmospheric Science
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Larvicidal Activity of Essential Oils of Five Apiaceae Taxa and Some of Their Main Constituents Against Culex quinquefasciatus.

2018

Apiaceae are aromatic herbs producing essential oils which are used on an industrial scale for various purposes. Notably, Apiaceae essential oils may replace synthetic insecticides keeping most of their efficacy and avoiding environmental pollution and human poisoning. In the present work, we explored the insecticidal potential of the essential oils from five Apiaceae taxa, namely Sison amomum, Echinophora spinosa, Heracleum sphondylium subsp. sphondylium, Heracleum sphondylium subsp. ternatum, and Trachyspemum ammi, as well as their major constituents (sabinene, p-cymene, terpinolene, myristicin, and thymol), against the filariasis vector Culex quinquefasciatus. For the purpose, the essent…

0106 biological scienceslarvicidal activityInsecticides[SDV]Life Sciences [q-bio]VolatileEnvironmental pollution01 natural sciencesBiochemistrychemistry.chemical_compoundThymolInsecticideTraditional medicinebiologyCulex quinquefasciatusAmmiGeneral Medicineselected main constituentMyristicinCulexLarvaEchinophoraMolecular MedicineDrugcomic_books.characterSabineneBioengineeringessential oilDose-Response RelationshipStructure-Activity RelationshipCulex quinquefasciatuselected main constituentsOils VolatileAnimalsMolecular Biologyessential oilsApiaceaeDose-Response Relationship Drug010405 organic chemistryHeracleum sphondyliumAnimalGeneral Chemistrybiology.organism_classification0104 chemical sciencesFive Apiaceae taxachemistry13. Climate actioncomic_booksOils010606 plant biology & botanyCulex quinquefasciatus; essential oils; Five Apiaceae taxa; larvicidal activity; selected main constituents; Animals; Apiaceae; Culex; Dose-Response Relationship Drug; Insecticides; Larva; Oils Volatile; Structure-Activity RelationshipApiaceaeChemistrybiodiversity
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Summertime total OH reactivity measurements from boreal forest during HUMPPA-COPEC 2010

2012

Ambient total OH reactivity was measured at the Finnish boreal forest station SMEAR II in Hyytiälä (Latitude 61&amp;deg;51' N; Longitude 24&amp;deg;17' E) in July and August 2010 using the Comparative Reactivity Method (CRM). The CRM – total OH reactivity method – is a direct, in-situ determination of the total loss rate of hydroxyl radicals (OH) caused by all reactive species in air. During the intensive field campaign HUMPPA-COPEC 2010 (&lt;b&gt;H&lt;/b&gt;yytiälä &lt;b&gt;U&lt;/b&gt;nited &lt;b&gt;M&lt;/b&gt;easurements of &lt;b&gt;P&lt;/b&gt;hotochemistry and &lt;b&gt;P&lt;/b&gt;articles in &lt;b&gt;A&lt;/b&gt;ir – &lt;b&gt;C&lt;/b&gt;omprehensive &lt;b&gt;O&lt;/b&gt;rganic &lt;b&gt;P&l…

0106 biological scienceslcsh:Chemistry010504 meteorology & atmospheric scienceslcsh:QD1-99913. Climate action15. Life on land01 natural scienceslcsh:Physicslcsh:QC1-999010606 plant biology & botany0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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Characteristics, Main Impacts, and Stewardship of Natural and Artificial Freshwater Environments: Consequences for Biodiversity Conservation

2020

International audience; In this overview (introductory article to a special issue including 14 papers), we consider all main types of natural and artificial inland freshwater habitas (fwh). For each type, we identify the main biodiversity patterns and ecological features, human impacts on the system and environmental issues, and discuss ways to use this information to improve stewardship. Examples of selected key biodiversity/ecological features (habitat type): narrow endemics, sensitive (groundwater and GDEs); crenobionts, LIHRes (springs); unidirectional flow, nutrient spiraling (streams); naturally turbid, floodplains, large-bodied species (large rivers); depth-variation in benthic commu…

0106 biological scienceslcsh:Hydraulic engineeringvaikutuksetGeography Planning and DevelopmentBiodiversityhabitatWetlandhabitaatti01 natural sciencesBiochemistryFreshwater ecosystemLeast-impaired habitat relictekosysteemitlcsh:Water supply for domestic and industrial purposeselinympäristöfreshwaterWater Science and Technologybiodiversitygeography.geographical_feature_categoryEcologyconservation6. Clean waterfoundation speciesOverexploitationHabitat[SDE]Environmental SciencesimpactluonnonsuojeluSettore BIO/07 - EcologiaBiodiversity; Conservation; Ecosystem; Foundation species; Freshwater; Habitat; Impact; Least-impaired habitat relicts; StewardshipAquatic Science010603 evolutionary biologyhoitostewardshiplcsh:TC1-97814. Life underwaterecosystemgeographylcsh:TD201-500Foundation specie010604 marine biology & hydrobiologyleast-impaired habitat relicts15. Life on landluonnon monimuotoisuusbiodiversiteettiHabitat destruction13. Climate actionThreatened speciesSettore BIO/03 - Botanica Ambientale E ApplicataFoundation speciesEnvironmental sciencemakea vesiWater
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