0000000000331172

AUTHOR

Izabela Mujakić

0000-0001-5602-7331

showing 2 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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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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