0000000000331174

AUTHOR

Kristian Spilling

showing 12 related works from this author

Light and Primary Production Shape Bacterial Activity and Community Composition of Aerobic Anoxygenic Phototrophic Bacteria in a Microcosm Experiment

2020

ABSTRACT Phytoplankton is a key component of aquatic microbial communities, and metabolic coupling between phytoplankton and bacteria determines the fate of dissolved organic carbon (DOC). Yet, the impact of primary production on bacterial activity and community composition remains largely unknown, as, for example, in the case of aerobic anoxygenic phototrophic (AAP) bacteria that utilize both phytoplankton-derived DOC and light as energy sources. Here, we studied how reduction of primary production in a natural freshwater community affects the bacterial community composition and its activity, focusing primarily on AAP bacteria. The bacterial respiration rate was the lowest when photosynthe…

Lightphytoplankton-bacteria couplingaerobic anoxygenic phototrophic bacteriabacterial community compositionAAP community compositionlcsh:QR1-502Fresh WaterBacterial growthPhotosynthesisBacterial Physiological Phenomenaphytoplankton-bacteria couplingPhotoheterotrophMicrobiologylcsh:Microbiology03 medical and health sciencesbacterial community compositionVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 470AAP community compositionSeawaterFood sciencePhotosynthesisMolecular BiologyEcosystem030304 developmental biologyaerobic anoxygenic phototrophic bacteria2. Zero hunger0303 health sciencesPhototroph030306 microbiologyChemistryMicrobiotaAnoxygenic photosynthesisQR1-502Bacteria AerobicLight intensityPhototrophic ProcessesInternationalAerobic anoxygenic phototrophic bacteriaPlan_S-Compliant_OAErratumEnergy sourcemSphere
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Effect of Intensity and Mode of Artificial Upwelling on Particle Flux and Carbon Export

2021

Reduction of anthropogenic CO2 emissions alone will not sufficiently restrict global warming and enable the 1.5°C goal of the Paris agreement to be met. To effectively counteract climate change, measures to actively remove carbon dioxide from the atmosphere are required. Artificial upwelling has been proposed as one such carbon dioxide removal technique. By fueling primary productivity in the surface ocean with nutrient-rich deep water, it could potentially enhance downward fluxes of particulate organic carbon (POC) and carbon sequestration. In this study we investigated the effect of different intensities of artificial upwelling combined with two upwelling modes (recurring additions vs. on…

0106 biological sciences010504 meteorology & atmospheric sciencesPHYTOPLANKTON COMMUNITYScienceartificial upwellingchemistry.chemical_elementOcean EngineeringQH1-199.5Carbon sequestrationAquatic ScienceAtmospheric sciencesOceanography01 natural sciencesremineralization ratechemistry.chemical_compoundWater columnORGANIC-CARBONVDP::Matematikk og Naturvitenskap: 400::Geofag: 450particle propertiesOrganic matter1172 Environmental sciences0105 earth and related environmental sciencesWater Science and TechnologyCO2 CONCENTRATIONSTotal organic carbonchemistry.chemical_classificationGlobal and Planetary Change010604 marine biology & hydrobiologyQTECHNICAL NOTEUPPER OCEANGeneral. Including nature conservation geographical distributionsinking velocityPlanktoncarbon sequestrationMARINE SNOWBACTERIAL-GROWTHINVERSE RELATIONSHIPexport fluxchemistry13. Climate actionCarbon dioxideEnvironmental scienceUpwellingmesocosm studyremineralization depthCarbonTRANSPARENT EXOPOLYMER PARTICLESFrontiers in Marine Science
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European Union legislation on macroalgae products

2021

AbstractMacroalgae-based products are increasing in demand also in Europe. In the European Union, each category of macroalgae-based products is regulated separately. We discuss EU legislation, including the law on medicinal products, foods including food supplements and food additives, feed and feed additives, cosmetics, packaging materials, fertilizers and biostimulants, as well as biofuels. Product safety and consumer protection are the priorities with any new products. Macroalgae products can be sold as traditional herbal medicines. The novel food regulation applies to macroalgae foods that have not previously been used as food, and organic macroalgae are a specific regulatory category. …

0106 biological sciencesorganic foodmedicineEU directivesNovel foodelintarvikevalvonta01 natural sciencesEnvironmental protectionfood control and monitoringmerilevätsääntelyfood productionbiopolttoaineetmedia_commonalgae2. Zero hunger0303 health scienceslainsäädäntöcosmeticskosmeettiset tuotteetfeedtrade agreementsregulationelintarvikkeetSubsidyfertilizerEU-direktiivit3. Good healthEuropeProduct (business)productsluomuruokabiofueladditivesenterprisesmakrolevätmacroalgaefood.ingredientLegislationEuroopan UnionilevätAquatic Sciencelegislationravinto03 medical and health sciencesfoodlisäaineetmedia_common.cataloged_instanceEuropean Union14. Life underwaterforeign substancesEuropean unionvierasaineet030304 developmental biologyelintarviketuotantobusiness.industryfood010604 marine biology & hydrobiologyFood additiveVDP::Matematikk og Naturvitenskap: 400Consumer protectionconsumer protection policyyrityksetlääkkeetAgricultureseaweedfoodstuffstuotteetkuluttajansuojalannoitteetbusinessAgronomy and Crop Sciencekauppasopimukset
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Editorial: Changing Plankton Communities: Causes, Effects and Consequences

2019

0106 biological scienceszooplanktonBiogeochemical cyclelcsh:QH1-199.5Ocean EngineeringAquatic Sciencelcsh:General. Including nature conservation geographical distributionOceanography010603 evolutionary biology01 natural sciencesZooplanktonMarine bacteriophagePhytoplanktonMarine ecosystemmarine ecosystemslcsh:ScienceWater Science and TechnologyGlobal and Planetary ChangeEcology010604 marine biology & hydrobiologyGlobal changebiogeochemical cyclesPlanktonmarine bacteriaphytoplanktonEnvironmental scienceciliateslcsh:QFrontiers in Marine Science
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Upwelled plankton community modulates surface bloom succession and nutrient availability in a natural plankton assemblage

2022

Upwelling of nutrient-rich waters into the sunlit surface layer of the ocean supports high primary productivity in eastern boundary upwelling systems (EBUSs). However, subsurface waters contain not only macronutrients (N, P, Si) but also micronutrients, organic matter and seed microbial communities that may modify the response to macronutrient inputs via upwelling. These additional factors are often neglected when investigating upwelling impacts on surface ocean productivity. Here, we investigated how different components of upwelled water (macronutrients, organic nutrients and seed communities) drive the response of surface plankton communities to upwelling in the Peruvian coastal zone. Re…

Pacific Oceanfungimarine ecologyplanktonseaskumpuaminenravinteetmerivesinutrients (plants)nutrientsVDP::Matematikk og Naturvitenskap: 400::Geofag: 450mikrobitmicrobesmeriekologiameretEcology Evolution Behavior and SystematicsEarth-Surface ProcessesseawaterTyyni valtameri
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Erratum for Piwosz et al., "Light and Primary Production Shape Bacterial Activity and Community Composition of Aerobic Anoxygenic Phototrophic Bacter…

2020

Metabolic coupling between phytoplankton and bacteria determines the fate of dissolved organic carbon in aquatic environments, and yet how changes in the rate of primary production affect the bacterial activity and community composition remains understudied. Here, we experimentally limited the rate of primary production either by lowering light intensity or by adding a photosynthesis inhibitor. The induced decrease had a greater influence on bacterial respiration than on bacterial production and growth rate, especially at an optimal light intensity. This suggests that changes in primary production drive bacterial activity, but the effect on carbon flow may be mitigated by increased bacteria…

lcsh:QR1-502Ecological and Evolutionary ScienceBiologyphytoplankton-bacteria couplingMicrobiologyQR1-502lcsh:Microbiologybacterial community compositionCommunity compositionBotanyBacterial activityAAP community compositionAerobic anoxygenic phototrophic bacteriaMicrocosmMolecular BiologyResearch Articleaerobic anoxygenic phototrophic bacteriamSphere
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Bioflocculation of Euglena gracilis via direct application of fungal filaments: a rapid harvesting method

2021

Funding Information: Special thanks to the US Agricultural Research Service for the provision of fungal strains. Thanks also to Dr Marilyn Wiebe (Technical Research Centre of Finland) for her expert advice on fungi and Johanna Oja for her technical help. This research was enabled by funding from The Land and Water Technology Foundation, The Finnish Cultural Foundation, and The Finnish Foundation for Technology Promotion. Publisher Copyright: © 2021, The Author(s). The high cost and environmental impact of traditional microalgal harvesting methods limit commercialization of microalgal biomass. Fungal bioflocculation of microalgae is a promising low-cost, eco-friendly method but the range of …

FlocculationEuglena gracilisFilamentous fungifungal pelletizationved/biology.organism_classification_rank.speciesBiomassPlant ScienceAquatic ScienceleväthiutaleetmenetelmätPenicillium restrictumAlgaeSettlingDry weightBioflocculationEuglena gracilisFungal pelletizationMicroalgal harvestingmicroalgal harvestingbiologyChemistryved/biologyfilamentous fungibiofocculationmikrolevätPulp and paper industrybiology.organism_classificationhiutaloituminenkustannuksetsadonkorjuuympäristövaikutuksetPleurotus ostreatus
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Macroalgae production in Northern Europe: Business and government perspectives on how to regulate a novel blue bioeconomy

2022

Macroalgae biomass production, understood as cultivation and harvesting, is a minor industry in Europe at present, but the sector is recognized as having substantial growth potential. Here, we framed the environmental license as a boundary object between business and authorities and investigated the details of macroalgal licensing procedures in seven Northern European countries (Finland, Estonia, Sweden, Germany, Norway, Iceland, and Scotland). We conducted surveys and interviews with macroalgae companies and licensing authorities to understand the challenges faced by both sides. Generally, macroalgae production in Northern European countries is regulated by environmental and water laws and…

macroalgaelicensinglainsäädäntöboundary objectregulationVDP::Matematikk og Naturvitenskap: 400Aquatic ScienceharvestingcultivationmerilevätPohjois-Eurooppasääntelyviljelytuotantobiotalous
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Bacterioplankton dynamics driven by interannual and spatial variation in diatom and dinoflagellate spring bloom communities in the Baltic Sea

2020

17 pages, 6 figures, 2 tables, supporting information https://doi.org/10.1002/lno.11601.-- This is the pre-peer reviewed version of the following article: María Teresa Camarena‐Gómez, Clara Ruiz‐González, Jonna Piiparinen, Tobias Lipsewers, Cristina Sobrino, Ramiro Logares, Kristian Spilling, Bacterioplankton dynamics driven by interannual and spatial variation in diatom and dinoflagellate spring bloom communities in the Baltic Sea, Limnology and Oceanography 66(1): 255-271 (2021), which has been published in final form at https://doi.org/10.1002/lno.11601. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions

0106 biological sciencesSUCCESSIONLimnologyAquatic ScienceOceanography01 natural sciencesAlgal bloomsuolapitoisuusbakteerit03 medical and health sciencesBACTERIAL PRODUCTIONtaksonomiaPHYTOPLANKTONPhytoplanktonpiilevätDISSOLVED ORGANIC-CARBON14. Life underwaterlajitleväkukinta030304 developmental biology0303 health sciencespanssarilevätPRODUCTIVITYLIMITATIONbiologykoostumus010604 marine biology & hydrobiologyfungiplanktonDinoflagellateVDP::Matematikk og Naturvitenskap: 400BacterioplanktoneliöyhteisötSpring bloomPlanktonVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497mikrolevätbiology.organism_classificationDiatomOceanographyGeography1181 Ecology evolutionary biologyGROWTHPOPULATIONSCRENOTHRIXABUNDANCElämpötilaLimnology and Oceanography
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Factors controlling plankton productivity, particulate matter stoichiometry, and export fluxin the coastal upwelling system off Peru

2020

Abstract. Eastern boundary upwelling systems (EBUS) are among the most productive marine ecosystems on Earth. The high productivity in surface waters is facilitated by upwelling of nutrient-rich deep waters, with high light availability enabling fast phytoplankton growth and nutrient utilization. However, there are numerous biotic and abiotic factors modifying productivity and biogeochemical processes. Determining these factors is important because EBUS are considered hotspots of climate change, and reliable predictions on their future functioning requires understanding of the mechanisms driving biogeochemical cycles therein. In this study, we used in situ mesocosms to obtain mechanistic un…

Biogeochemical cycleOceanographyWater columnbiologyPhytoplanktonAkashiwo sanguineaEnvironmental scienceUpwellingDominance (ecology)Planktonbiology.organism_classificationMesocosm
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KOSMOS 2017 Peru Side Experiment: nutrients, phytoplankton abundances, enzyme rates, photophysiology

2022

This data was collected during an short-term incubation experiment in March 2017 that investigated the response of a surface plankton community to upwelling. This experiment was carried in the framework of the SFB754-funded KOSMOS mesocosm study that took place in La Punta, Callao, Peru between February-April 2017. A total of six different treatments were used to disentangle chemical and biological characteristics of deep water that influence surface plankton blooms: 2 different deep water sources with different nutrient concentrations; 3 treatments to distinguish the effects of inorganic nutrients, organic nutrients and deep water microbial populations. Measured variables include inorganic…

ratioDay of experimentSFB754colored dissolved organic matter at 325 nmNitriteChlorophyll aAbsorption coefficient colored dissolved organic matter at 254 nmClimate - Biogeochemistry Interactions in the Tropical Ocean (SFB754)colorimetric determinationFluorometerFluorometricNitrateNanoplanktonPhytoplankton cells phycocyanin-containing (FL-4)PicoeukaryotesFluorometer fast repetition rateCalculatedFlow cytometryNutrient consumption ratioforward scatterSynechococcusupwelling systemsMesocosm experimentSpectrophotometricClimate Biogeochemistry Interactions in the Tropical Ocean SFB754SilicateBiogeochemistryBiospheric SciencesMaximum photochemical quantum yield of photosystem IIenzyme activitycell sizeDissolved inorganic nitrogen/dissolved inorganic phosphorus ratioKOSMOS_2017chainsAbsorption coefficient colored dissolved organic matter 250 nm/365 nm ratioeastern tropical South Pacific OceanKOSMOSExcess phosphateAbsorption coefficient colored dissolved organic matter at 325 nmNatural SciencesGeosciencescolored dissolved organic matter at 254 nmphycocyanin containing FL 4Absorption coefficientPhosphateTank numberPhytoplankton cells chainsNetwork of Leading European AQUAtic MesoCOSM Facilities Connecting Mountains to Oceans from the ArctReplicatenutrientsfast repetition rateDATE TIMECryptophytesMicrophytoplanktonPhytoplankton cellsLeucine aminopeptidase activityDissolved inorganic nitrogen dissolved inorganic phosphorus ratiofungiEnzymatic assayContinuous flow analyserTreatmentDATE/TIMEcolored dissolved organic matter 250 nm 365 nmPhytoplanktonPhytoplankton cell size forward scatterNetwork of Leading European AQUAtic MesoCOSM Facilities Connecting Mountains to Oceans from the Arctic to the Mediterranean (AQUACOSM)CDOMContinuous flow analyser colorimetric determinationNitrate and Nitrite
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KOSMOS 2017 Peru mesocosm study: overview data

2020

Eastern boundary upwelling systems (EBUS) are among the most productive marine ecosystems on Earth. The production of organic material is fueled by upwelling of nutrient-rich deep waters and high incident light at the sea surface. However, biotic and abiotic factors can mod- ify surface production and related biogeochemical processes. Determining these factors is important because EBUS are considered hotspots of climate change, and reliable predic- tions of their future functioning requires understanding of the mechanisms driving the biogeochemical cycles therein. In this field experiment, we used in situ mesocosms as tools to improve our mechanistic understanding of processes con- trolling…

KOSMOS_2017Binary ObjectMesocosm experimentClimate - Biogeochemistry Interactions in the Tropical Ocean (SFB754)Climate Biogeochemistry Interactions in the Tropical Ocean SFB754BiogeochemistryBinary Object Media TypeNatural SciencesBinary Object (File Size)Binary Object File SizeBiospheric SciencesGeosciencesBinary Object (Media Type)
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