0000000000266076

AUTHOR

Laura Forsström

showing 5 related works from this author

Benthic resources are the key to Daphnia middendorffiana survival in a high arctic pond

2011

Summary 1. Shallow arctic lakes and ponds have simple and short food webs, but large uncertainties remain about benthic–pelagic links in these systems. We tested whether organic matter of benthic origin supports zooplankton biomass in a pond in NE Greenland, using stable isotope analysis of carbon and nitrogen in the pond itself and in a 13C-enrichment enclosure experiment. In the latter, we manipulated the carbon isotope signature of benthic algae to enhance its isotopic discrimination from other potential food sources for zooplankton. 2. The cladoceran Daphnia middendorffiana responded to the 13C-enrichment of benthic mats with progressively increasing δ13C values, suggesting benthic feed…

chemistry.chemical_classificationchemistryArcticBenthic zoneEcologyDissolved organic carbonPhytoplanktonEnvironmental sciencePelagic zoneOrganic matterAquatic ScienceZooplanktonIsotope analysisFreshwater Biology
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Responses of microbial food web to increased allochthonous DOM in an oligotrophic subarctic lake

2013

Climate-induced changes in catchment area vegetation and runoff alter the quality and quantity of carbon that enters lakes, with implications for food webs in recipient water bodies. The effect of dissolved organic matter (DOM) on the ratio between heterotrophic and autotrophic biomass and productivity was studied in a subarctic, clear water lake in northern Finland. In a mesocosm experiment, natural DOM from a subarctic bog and a boreal lake was added to the lake water, doubling the initial dissolved organic carbon (DOC) concentration. Optical indices sug- gested that the subarctic DOM addition was more bioavailable, which was in line with the greater increase in bacterial biomass and prod…

Biomass (ecology)Microbial food webProductivity (ecology)EcologyDissolved organic carbonEnvironmental sciencePhotic zoneAutotrophAquatic ScienceEcology Evolution Behavior and SystematicsFood webta119MesocosmAquatic Microbial Ecology
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Seasonal shifts between autochthonous and allochthonous carbon contributions to zooplankton diets in a subarctic lake

2011

We addressed the extent to which autochthonous and allochthonous carbon sources contribute to zooplankton diet throughout the year in oligotrophic subarctic Lake Saanajarvi. Optical measures of dissolved organic matter (DOM) indicated high water discharge and associated terrestrial DOM during winter and low inputs in summer. Bulk particulate organic matter (POM) showed d13C values consistent with allochthonous inputs of DOM. The most positive POM d13C values (227%) occurred during winter, when heterotrophic bacteria and nanoflagellates peaked in abundance; the isotopically lighter autotrophic phytoplankton shifted the POM d13 Ct o229% in summer. The d13C values of zooplankton were up to 4% …

0106 biological sciencesDetritus010504 meteorology & atmospheric sciencesbiologyEcology010604 marine biology & hydrobiologyHeterotroph15. Life on landAquatic ScienceOceanographybiology.organism_classification01 natural sciencesDaphniaSubarctic climateZooplankton13. Climate actionDissolved organic carbonPhytoplanktonAutotroph0105 earth and related environmental sciencesLimnology and Oceanography
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Benthic mats offer a potential subsidy to pelagic consumers in tundra pond food webs

2014

We quantified the potential nutritional contribution of benthic mats to pelagic consumers in tundra ponds using three approaches. (1) We compared benthic and pelagic habitats based on their algal biomass and community composition and assessed the dietary quality in terms of fatty acid (FA) concentrations in both habitats. The algal community compositions differed significantly between habitats. Both benthic and pelagic habitats contained saturated and unsaturated FAs, but on average there were more FAs relative to carbon in the pelagic habitat (44 6 29 m gm g C21) than the benthic habitat (23 6 18 m gm g C21) across all studied ponds. (2) We quantified the contribution of benthic mats to th…

0106 biological sciencesBiomass (ecology)Ecology010604 marine biology & hydrobiologyLake ecosystemPelagic zoneAquatic ScienceBiologyOceanographybiology.organism_classification010603 evolutionary biology01 natural sciencesDaphniaTundraFisheryHabitatBenthic zonePhytoplanktonta118114. Life underwaterLimnology and Oceanography
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Benthic mats offer a potential subsidy to pelagic consumers in tundra pond food webs

2014

We quantified the potential nutritional contribution of benthic mats to pelagic consumers in tundra ponds using three approaches. (1) We compared benthic and pelagic habitats based on their algal biomass and community composition and assessed the dietary quality in terms of fatty acid (FA) concentrations in both habitats. The algal community compositions differed significantly between habitats. Both benthic and pelagic habitats contained saturated and unsaturated FAs, but on average there were more FAs relative to carbon in the pelagic habitat (44 6 29 mg mg C21) than the benthic habitat (23 6 18 mg mg C21) across all studied ponds. (2) We quantified the contribution of benthic mats to the …

tundra pondsnutrition contrubutionpelagic consumersbenthic mats
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