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MiDAS 5: Global diversity of bacteria and archaea in anaerobic digesters

  • Morten Kam Dahl Dueholm
  • , Kasper Skytte Andersen
  • , Anne Kirstine C. Korntved
  • , Vibeke Rudkjøbing
  • , Madalena Alves
  • , Yadira Bajón-Fernández
  • , Damien Batstone
  • , Caitlyn Butler
  • , Mercedes Cecilia Cruz
  • , Åsa Davidsson
  • , Leonardo Erijman
  • , Christof Holliger
  • , Konrad Koch
  • , Norbert Kreuzinger
  • , Changsoo Lee
  • , Gerasimos Lyberatos
  • , Srikanth Mutnuri
  • , Vincent O’Flaherty
  • , Piotr Oleskowicz-Popiel
  • , Dana Pokorna
  • Veronica Rajal, Michael Recktenwald, Jorge Rodríguez, Pascal E. Saikaly, Nick Tooker, Julia Vierheilig, Jo De Vrieze, Christian Wurzbacher, Per Halkjær Nielsen
    • Aalborg University
    • University of Minho
    • Cranfield University
    • The University of Queensland
    • CONICET
    • Lund University
    • Universidad de Buenos Aires
    • EPFL CDM MTEI RAO
    • Technische Universität München
    • Vienna University of Technology (TU Wien)
    • Ulsan National Institute of Science and Technology
    • National Technical University of Athens
    • Birla Institute of Technology and Science, Pilani
    • National University of Ireland
    • Poznan University of Technology
    • Department of Chemical Engineering
    • King Abdullah University of Science and Technology
    • Ghent University

    Research output: Contribution to journalArticlepeer-review

    77 Scopus citations

    Abstract

    Anaerobic digestion of organic waste into methane and carbon dioxide (biogas) is carried out by complex microbial communities. Here, we use full-length 16S rRNA gene sequencing of 285 full-scale anaerobic digesters (ADs) to expand our knowledge about diversity and function of the bacteria and archaea in ADs worldwide. The sequences are processed into full-length 16S rRNA amplicon sequence variants (FL-ASVs) and are used to expand the MiDAS 4 database for bacteria and archaea in wastewater treatment systems, creating MiDAS 5. The expansion of the MiDAS database increases the coverage for bacteria and archaea in ADs worldwide, leading to improved genus- and species-level classification. Using MiDAS 5, we carry out an amplicon-based, global-scale microbial community profiling of the sampled ADs using three common sets of primers targeting different regions of the 16S rRNA gene in bacteria and/or archaea. We reveal how environmental conditions and biogeography shape the AD microbiota. We also identify core and conditionally rare or abundant taxa, encompassing 692 genera and 1013 species. These represent 84–99% and 18–61% of the accumulated read abundance, respectively, across samples depending on the amplicon primers used. Finally, we examine the global diversity of functional groups with known importance for the anaerobic digestion process.

    Original languageBritish English
    Article number5361
    JournalNature Communications
    Volume15
    Issue number1
    DOIs
    StatePublished - Dec 2024

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 6 - Clean Water and Sanitation
      SDG 6 Clean Water and Sanitation

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