Relationship between the elemental composition of stream biofilms and water chemistry—a catchment approach

As benthic biofilms mediate essential functions in stream ecosystems (e.g., carbon flux, storage of nutrients and other substances), the element-specific regulation of the biofilm composition is of great interest. We tested whether (1) the elemental composition of biofilms is related to that of the...

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Published inEnvironmental monitoring and assessment Vol. 187; no. 7; p. 432
Main Authors Kamjunke, Norbert, Mages, Margarete, Büttner, Olaf, Marcus, Hanna, Weitere, Markus
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.07.2015
Springer Nature B.V
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Abstract As benthic biofilms mediate essential functions in stream ecosystems (e.g., carbon flux, storage of nutrients and other substances), the element-specific regulation of the biofilm composition is of great interest. We tested whether (1) the elemental composition of biofilms is related to that of the water column and (2) there are different accumulation patterns from the dissolved phase (adsorption) and the particulate phase (incorporation of suspended matter). We analysed biomass parameters, nutrients and metals in biofilms and surface waters at 28 sites within a stream network (Bode catchment, Germany). Algal biomass in biofilms was dominated by diatoms. The P/C ratio in biofilms was positively related to total phosphorus of surface water (and to the proportion of agricultural area in the catchment) indicating phosphorus limitation of biofilms, whereas the N/C ratio was not related to nitrate levels of surface water, and neither the P/C nor the N/C ratio to the concentration of dissolved organic carbon (DOC) of surface water. Biofilms were enriched in metals compared to their concentrations in water. The metals in biofilms were positively related to the concentration of dissolved metals in surface water for iron and strontium (but not for manganese, copper, zinc, arsenic or lead) and to the concentrations of particle-associated metals of surface waters for strontium and lead. Manganese and arsenic were the metals with a negative effect on the biomasses of biofilm diatoms and cyanobacteria. Overall, we observed element-specific accumulation patterns in biofilms with selected elements being related to the water column while others were probably subject to biofilm-internal processes.
AbstractList As benthic biofilms mediate essential functions in stream ecosystems (e.g., carbon flux, storage of nutrients and other substances), the element-specific regulation of the biofilm composition is of great interest. We tested whether (1) the elemental composition of biofilms is related to that of the water column and (2) there are different accumulation patterns from the dissolved phase (adsorption) and the particulate phase (incorporation of suspended matter). We analysed biomass parameters, nutrients and metals in biofilms and surface waters at 28 sites within a stream network (Bode catchment, Germany). Algal biomass in biofilms was dominated by diatoms. The P/C ratio in biofilms was positively related to total phosphorus of surface water (and to the proportion of agricultural area in the catchment) indicating phosphorus limitation of biofilms, whereas the N/C ratio was not related to nitrate levels of surface water, and neither the P/C nor the N/C ratio to the concentration of dissolved organic carbon (DOC) of surface water. Biofilms were enriched in metals compared to their concentrations in water. The metals in biofilms were positively related to the concentration of dissolved metals in surface water for iron and strontium (but not for manganese, copper, zinc, arsenic or lead) and to the concentrations of particle-associated metals of surface waters for strontium and lead. Manganese and arsenic were the metals with a negative effect on the biomasses of biofilm diatoms and cyanobacteria. Overall, we observed element-specific accumulation patterns in biofilms with selected elements being related to the water column while others were probably subject to biofilm-internal processes.
As benthic biofilms mediate essential functions in stream ecosystems (e.g., carbon flux, storage of nutrients and other substances), the element-specific regulation of the biofilm composition is of great interest. We tested whether (1) the elemental composition of biofilms is related to that of the water column and (2) there are different accumulation patterns from the dissolved phase (adsorption) and the particulate phase (incorporation of suspended matter). We analysed biomass parameters, nutrients and metals in biofilms and surface waters at 28 sites within a stream network (Bode catchment, Germany). Algal biomass in biofilms was dominated by diatoms. The P/C ratio in biofilms was positively related to total phosphorus of surface water (and to the proportion of agricultural area in the catchment) indicating phosphorus limitation of biofilms, whereas the N/C ratio was not related to nitrate levels of surface water, and neither the P/C nor the N/C ratio to the concentration of dissolved organic carbon (DOC) of surface water. Biofilms were enriched in metals compared to their concentrations in water. The metals in biofilms were positively related to the concentration of dissolved metals in surface water for iron and strontium (but not for manganese, copper, zinc, arsenic or lead) and to the concentrations of particle-associated metals of surface waters for strontium and lead. Manganese and arsenic were the metals with a negative effect on the biomasses of biofilm diatoms and cyanobacteria. Overall, we observed element-specific accumulation patterns in biofilms with selected elements being related to the water column while others were probably subject to biofilm-internal processes.As benthic biofilms mediate essential functions in stream ecosystems (e.g., carbon flux, storage of nutrients and other substances), the element-specific regulation of the biofilm composition is of great interest. We tested whether (1) the elemental composition of biofilms is related to that of the water column and (2) there are different accumulation patterns from the dissolved phase (adsorption) and the particulate phase (incorporation of suspended matter). We analysed biomass parameters, nutrients and metals in biofilms and surface waters at 28 sites within a stream network (Bode catchment, Germany). Algal biomass in biofilms was dominated by diatoms. The P/C ratio in biofilms was positively related to total phosphorus of surface water (and to the proportion of agricultural area in the catchment) indicating phosphorus limitation of biofilms, whereas the N/C ratio was not related to nitrate levels of surface water, and neither the P/C nor the N/C ratio to the concentration of dissolved organic carbon (DOC) of surface water. Biofilms were enriched in metals compared to their concentrations in water. The metals in biofilms were positively related to the concentration of dissolved metals in surface water for iron and strontium (but not for manganese, copper, zinc, arsenic or lead) and to the concentrations of particle-associated metals of surface waters for strontium and lead. Manganese and arsenic were the metals with a negative effect on the biomasses of biofilm diatoms and cyanobacteria. Overall, we observed element-specific accumulation patterns in biofilms with selected elements being related to the water column while others were probably subject to biofilm-internal processes.
ArticleNumber 432
Author Kamjunke, Norbert
Büttner, Olaf
Marcus, Hanna
Weitere, Markus
Mages, Margarete
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  organization: Department of River Ecology, Helmholtz-Centre for Environmental Research-UFZ, Department of Lake Research, Helmholtz-Centre for Environmental Research-UFZ
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  givenname: Margarete
  surname: Mages
  fullname: Mages, Margarete
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  fullname: Büttner, Olaf
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  surname: Marcus
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  organization: Department of River Ecology, Helmholtz-Centre for Environmental Research-UFZ
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  organization: Department of River Ecology, Helmholtz-Centre for Environmental Research-UFZ
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Keywords River Bode
Stoichiometry
Stream biofilms
Nutrients
Total reflection X-ray fluorescence spectrometry (TXRF)
Heavy metals
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crossref_primary_10_1007_s10661_015_4664_6
springer_journals_10_1007_s10661_015_4664_6
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  day: 01
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PublicationSubtitle An International Journal Devoted to Progress in the Use of Monitoring Data in Assessing Environmental Risks to Man and the Environment
PublicationTitle Environmental monitoring and assessment
PublicationTitleAbbrev Environ Monit Assess
PublicationTitleAlternate Environ Monit Assess
PublicationYear 2015
Publisher Springer International Publishing
Springer Nature B.V
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Snippet As benthic biofilms mediate essential functions in stream ecosystems (e.g., carbon flux, storage of nutrients and other substances), the element-specific...
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StartPage 432
SubjectTerms Adsorption
adverse effects
Algae
Arsenic
Arsenic - analysis
Atmospheric Protection/Air Quality Control/Air Pollution
Bacillariophyceae
Bacteria
biofilm
Biofilms
Biomass
Carbon
Catchments
Chemical composition
Chlorophyta - chemistry
Copper
Creeks & streams
Cyanobacteria
Cyanobacteria - chemistry
Diatoms - chemistry
Dissolved organic carbon
Earth and Environmental Science
Ecology
Ecosystem
ecosystems
Ecotoxicology
elemental composition
Elements
Environment
Environmental Management
Environmental Monitoring
Environmental research
Food
Germany
Heavy metals
iron
Lead
Manganese
Marine microorganisms
Metal concentrations
Metals
Metals - analysis
Metals, Heavy - analysis
Microorganisms
Monitoring/Environmental Analysis
Nitrates - analysis
Nutrients
Particulate Matter
Phosphorus
Phosphorus - analysis
Plankton
Ratios
Retention
Rivers
Rivers - chemistry
Rivers - microbiology
streams
Strontium
Surface water
Suspended matter
Toxicity
Water - analysis
Water chemistry
Water column
Water Pollutants, Chemical - analysis
watersheds
zinc
Zinc - analysis
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Title Relationship between the elemental composition of stream biofilms and water chemistry—a catchment approach
URI https://link.springer.com/article/10.1007/s10661-015-4664-6
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Volume 187
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