Search results for "microbial population"

showing 3 items of 133 documents

Nitrate removal microbiology in woodchip bioreactors : a case-study with full-scale bioreactors treating aquaculture effluents

2020

Woodchip bioreactors are viable low-cost nitrate (NO3−) removal applications for treating agricultural and aquaculture discharges. The active microbial biofilms growing on woodchips are conducting nitrogen (N) removal, reducing NO3− while oxidizing the carbon (C) from woodchips. However, bioreactor age, and changes in the operating conditions or in the microbial community might affect the NO3− removal as well as potentially promote nitrous oxide (N2O) production through either incomplete denitrification or dissimilatory NO3− reduction to ammonium (DNRA). Here, we combined stable isotope approach, amplicon sequencing, and captured metagenomics for studying the potential NO3− removal rates, a…

inorganic chemicalsdenitrifikaatioEnvironmental EngineeringDenitrification010504 meteorology & atmospheric sciencesNitrogenAquaculture010501 environmental sciences01 natural sciencesDenitrifying bacteriachemistry.chemical_compoundBioreactorstyppiNitraterecirculation aquaculture systemsBioreactorEnvironmental ChemistryWaste Management and DisposalEffluentvesiviljely (kalatalous)0105 earth and related environmental sciencesNitratesdenitrificationnitrous oxideorganic chemicalsfood and beveragesRecirculating aquaculture systemdityppioksidiequipment and suppliesPollution6. Clean waterDNRAnitrogen removalchemistryMicrobial population biology13. Climate actionEnvironmental chemistrybioreaktoritDenitrificationWoodchips
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Extremophilic microbial communities on photovoltaic panel surfaces: a two‐year study

2020

Solar panel surfaces can be colonized by microorganisms adapted to desiccation, temperature fluctuations and solar radiation. Although the taxonomic and functional composition of these communities has been studied, the microbial colonization process remains unclear. In the present work, we have monitored this microbial colonization process during 24 months by performing weekly measurements of the photovoltaic efficiency, carrying out 16S rRNA gene high‐throughput sequencing, and studying the effect of antimicrobial compounds on the composition of the microbial biocenosis. This is the first time a long‐term study of the colonization process of solar panels has been performed, and our results…

lcsh:BiotechnologyBioengineeringBiologyGeneralist and specialist speciesApplied Microbiology and BiotechnologyBiochemistry03 medical and health sciencesExtremophileslcsh:TP248.13-248.65RNA Ribosomal 16SExtreme environmentExtremophileColonizationPhylogenyResearch Articles030304 developmental biology0303 health sciencesBacteria030306 microbiologyEcologyMicrobiotaPhotovoltaic systemfood and beveragesBiodiversity15. Life on landMicrobial population biology13. Climate actionSpecies richnessDesiccationBiotechnologyResearch ArticleMicrobial Biotechnology
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Grazing intensity in subarctic tundra affects the temperature adaptation of soil microbial communities

2015

Abstract Grazing by large ungulates, such as reindeer (Rangifer tarandus L.), in subarctic tundra exerts a considerable effect on the soil microclimate. Because of higher insulation by the aboveground vegetation in light versus heavily grazed areas, soil temperatures during the growing season are considerably higher under heavy grazing. Here, we hypothesized that these grazer-induced changes in soil microclimate affect the temperature sensitivity of soil microbial activity. To test this hypothesis, we conducted soil incubations at different temperatures (4 °C, 9 °C and 14 °C) for six weeks using soils from sites with contrasting long-term grazing intensities. Microbial respiration at low te…

ta1172MicroclimateSoil ScienceGrowing seasoncomplex mixturesMicrobiologyparasitic diseasesGrazingEnzyme activitiesOrganic matterTundra2. Zero hungerchemistry.chemical_classificationta118315. Life on landSubarctic climateBacterial communitiesTundraQPCRGrazingAgronomyMicrobial population biologychemistry13. Climate actionSoil waterNext-generation sequencingEnvironmental scienceSoil Biology and Biochemistry
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