Search results for "Benthic zone"

showing 5 items of 265 documents

Long-term abundance dynamics of coastal zooplankton in the Gulf of Riga

1998

The dynamics of three most abundant mesozooplankton species in the coastal zone of the Gulf of Riga — Bosmina longispina, Synchaeta baltica, Keratella quadrata — is analyzed to detect the regulating environmental factors. The only significant downward trend of species abundance was found for S. baltica in autumn. Statistically significant correlation was estimated only between the summer salinity and the abundance of B. longispina. K. quadrata though showed a negative correlation with summer salinity. The abundance of S. baltica had only nonsignificant correlations with the environmental factors. The abundance of coastal mesozooplankton species is determined by the combination of hydrologic…

lcsh:GE1-350biologyEcologyfungiRegulating factorsIndustrial Wastebiology.organism_classificationLatviaZooplanktonZooplanktonSalinityOceanographyCladoceraAbundance (ecology)Benthic zoneAnimalsSeawaterBalticaSeasonsRelative species abundanceWater Pollutants Chemicalgeographic locationslcsh:Environmental sciencesEnvironmental MonitoringGeneral Environmental ScienceEnvironment International
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Do native white-clawed crayfish impact macroinvertebrate assemblages in Mediterranean limestone headwaters?

2019

Crayfish are among the largest aquatic macroinvertebrates in rivers and streams. Their trophic ecology is important for the understanding of the functioning of benthic communities. This is relevant in key areas, such as headwaters, as they partly condition the processes occurring downstream. To shed light on the effects of native white-clawed crayfish,Austropotamobius pallipes, on local macroinvertebrate assemblages from running headwaters, a three-month mesocosm-based field study was designed. Collection and subsequent analysis of benthic samples under different crayfish density levels yielded a set of metrics indicative of short-term impacts at general and taxonomic scales. Neither signif…

lcsh:SH1-691EcologyEcologyManagement Monitoring Policy and LawAquatic ScienceBiologyCrayfishbiology.organism_classificationmesocosmAustropotamobius pallipeslcsh:Aquaculture. Fisheries. AnglingMesocosmAustropotamobius pallipesBenthic zonefreshwater crayfishbenthic macroinvertebrateDominance (ecology)Species richnessheadwaterNature and Landscape ConservationWater Science and TechnologyTrophic levelInvertebrateKnowledge & Management of Aquatic Ecosystems
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Recent changes in chironomid communities and hypolimnetic oxygen conditions relate to organic carbon in subarctic ecotonal lakes

2018

A key question in aquatic elemental cycling is related to the influence of bottom water oxygen conditions in regulating the burial and release of carbon under climate warming. In this study, we used head capsules of Chironomidae larvae to assess community and diversity change between the past (estimated as Pre-Industrial Period) and present and to reconstruct changes in hypolimnetic oxygen conditions from 30 subarctic ecotonal lakes (northeastern Lapland) using the top-bottom paleolimnological approach applying surface sediment (topmost 0-2 cm) and reference (4-5 cm) samples. Subsequently, we tested the findings against dissolved organic carbon (DOC) concentration of the sites. We found tha…

liuennut orgaaninen hiili010504 meteorology & atmospheric sciencesClimateCALIBRATION MODEL010501 environmental sciencesDOC01 natural sciencesPaleolimnologyFreshwater ecosystemFRESH-WATER ECOSYSTEMSDissolved organic carbonGREENHOUSE-GASWaste Management and DisposalTEMPERATUREhappikatoTotal organic carbonCLIMATE-CHANGEpaleolimnologyPollutionSubarctic climateAdaptation PhysiologicalpaleolimnologiaOceanographyBenthic zonedissolved oxygenHypolimnionEnvironmental MonitoringEnvironmental EngineeringClimate Changeta1171ChironomidaeBottom waterRECONSTRUCTIONSSUBFOSSIL CHIRONOMIDSEnvironmental ChemistryAnimals14. Life underwatersurviaissääsket1172 Environmental sciences0105 earth and related environmental sciencesMIDGES DIPTERA15. Life on landNUTRIENT DYNAMICSCarbontop-bottom approachOxygenLakesLapland13. Climate actionEnvironmental scienceta1181subarktinen vyöhykeSOUTHERN FINLANDScience of the Total Environment
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Natural acidification changes the timing and rate of succession, alters community structure, and increases homogeneity in marine biofouling communiti…

2017

Ocean acidification may have far-reaching consequences for marine community and ecosystem dynamics, but its full impacts remain poorly understood due to the difficulty of manipulating pCO2 at the ecosystem level to mimic realistic fluctuations that occur on a number of different timescales. It is especially unclear how quickly communities at various stages of development respond to intermediate-scale pCO2 change and, if high pCO2 is relieved mid-succession, whether past acidification effects persist, are reversed by alleviation of pCO2 stress, or are worsened by departures from prior high pCO2 conditions to which organisms had acclimatized. Here, we used reciprocal transplant experiments al…

marine biodiversitySettore BIO/07 - Ecologia0106 biological sciencesFood Chain010504 meteorology & atmospheric sciencesBiofoulingEcological successionBiology01 natural sciencesEnvironmental ChemistryAnimalsEcosystemSeawater14. Life underwaterUrochordataEcosystem0105 earth and related environmental sciencesGeneral Environmental Sciencenatural analogueGlobal and Planetary ChangeFouling community2300EcologyEcologyOcean acidification010604 marine biology & hydrobiologyCommunity structureOcean acidificationInterspecific competition15. Life on landCarbon DioxideHydrogen-Ion ConcentrationFood webclimate change13. Climate actionBenthic zonecommunityAcidsGlobal change biology
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Benthic foodweb structure in a large shallow lake studied by stable isotope analysis

2014

The benthic foodweb structure of Lake Võrtsjärv, a large (270 km2), shallow, and turbid Estonian lake, was evaluated based on C and N stable-isotope signatures (δ13C, δ15N). Variation in δ13C between sampling sites was not related to site proximity to the littoral zone or the more vegetated southern part of the lake, but rather appeared to be influenced by in-situ site peculiarities. δ13C was stable temporally and between functional feeding groups, a result implying that the whole benthic food web of the lake relies largely on the same C source admixture, essentially particulate organic matter (POM). Thus, the foodweb composition of Lake Võrtsjärv is remarkably homogeneous given the lake’s …

trophic levelsEcologyδ13CEcologyta1172macroinvertebratesδ15Nbenthic food websAquatic ScienceFood webOceanographyBenthic zonemethane-oxidizing bacteriacarbon sourceLittoral zoneEnvironmental sciencecarbon and nitrogen stable isotopesLake VõrtsjärvEcology Evolution Behavior and SystematicsIsotope analysisInvertebrateTrophic levelFreshwater Science
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