Olaf Kruse

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Bielefeld University
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Germany

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Recent Grants

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MERIT: MicroalgaE as Renewable Innovative green cell facTories

Open Date: 2018-08-01

Close Date: 2021-08-01

Grant: Close

Cluster Industrial Biotechnology (CLIB) Kompetenzzentrum Biotechnologie (CKB)

Open Date: 2018-05-01

Close Date: 2021-05-01

Grant: Close

Elucidating the regulatory network of light harvesting in photoheterotrophic microalgae

Open Date: 2016-01-01

Close Date: 2020-12-31

Grant: Close

PHOTOFUEL

Open Date: 2015-07-01

Close Date: 2020-06-01

Grant: Close

Alkaline bioconversions for biofuel production from sunlight

Open Date: 2012-01-01

Close Date: 2016-12-31

Articles (11)

Microbial Diversity and Community Structure of Wastewater-Driven Microalgal Biofilms

Dwindling water sources increase the need for efficient wastewater treatment. Solar-driven algal turf scrubber (ATS) system may remediate wastewater by supporting the development and growth of periphytic microbiomes that function and interact in a highly dynamic manner through symbiotic interactions. Using ITS and 16S rRNA gene amplicon sequencing, we profiled the microbial communities of four microbial biofilms from ATS systems operated with municipal wastewater (mWW), diluted cattle and pig manure (CattleM and PigM), and biogas plant effluent supernatant (BGE) in comparison to the initial inocula and the respective wastewater substrates. The wastewater-driven biofilms differed significantly in their biodiversity and structure, exhibiting an inocula-independent but substrate-dependent establishment of the microbial communities. The prokaryotic communities were comparable among themselves and with other microbiomes of aquatic environments and were dominated by metabolically flexible prokaryotes such as nitrifiers, polyphosphate-accumulating and algicide-producing microorganisms, and anoxygenic photoautotrophs. Striking differences occurred in eukaryotic communities: While the mWW biofilm was characterized by high biodiversity and many filamentous (benthic) microalgae, the agricultural wastewater-fed biofilms consisted of less diverse communities with few benthic taxa mainly inhabited by unicellular chlorophytes and saprophytes/parasites. This study advances our understanding of the microbiome structure and function within the ATS-based wastewater treatment process.

Year:

2023

Collaborators (8)

Robert Freudenberg

Bielefeld University

GERMANY

Holger Klose

Head of Research "Alternative Biomass"

Forschungszentrum Jülich

GERMANY

Roesch Christine

Head of the research group "Sustainable Bioeconomy"

Karlsruhe Institute of Technology

GERMANY

Bernd Weisshaar

Professor, Chair of Genetics & Genomics of Plants

Bielefeld University

GERMANY

Liam Elbourne

Macquarie University

AUSTRALIA

Klaus Hellgardt

Lecturer and Senior Lecturer

Loughborough University

UNITED KINGDOM

Thomas Baier

Universität Bielefeld Fakultät für Biologie

GERMANY

Kyle J. Lauersen

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SAUDI ARABIA
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