A unified and simple medium for growing model methanogens

Apart from their archetypic use in anaerobic digestion (AD) methanogenic archaea are targeted for a wide range of applications. Using different methanogenic archaea for one specific application requires the optimization of culture media to enable the growth of different strains under identical envir...

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Veröffentlicht in:Frontiers in microbiology 2023-01, Vol.13, p.1046260-1046260
Hauptverfasser: Dzofou Ngoumelah, Daniel, Harnisch, Falk, Sulheim, Snorre, Heggeset, Tonje Marita Bjerkan, Aune, Ingvild Haugnes, Wentzel, Alexander, Kretzschmar, Jörg
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Sprache:eng
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Zusammenfassung:Apart from their archetypic use in anaerobic digestion (AD) methanogenic archaea are targeted for a wide range of applications. Using different methanogenic archaea for one specific application requires the optimization of culture media to enable the growth of different strains under identical environmental conditions, e.g., in microbial electrochemical technologies (MET) for (bio)electromethanation. Here we present a new culture medium (BFS01) adapted from the DSM-120 medium by omitting resazurin, yeast extract, casitone, and using a low salt concentration, that was optimized for , and . The aim was to provide a medium for follow-up co-culture studies using specific methanogens and spp. dominated biofilm anodes. All three methanogens showed growth and activity in the BFS01 medium. This was demonstrated by estimating the specific growth rates ( ) and doubling times ( ) of each methanogen. The and based on methane accumulation in the headspace showed values consistent with literature values for and . However, and based on methane accumulation in the headspace differed from literature data for but still allowed sufficient growth. The lowered salt concentration and the omission of chemically complex organic components in the medium may have led to the observed deviation from and for as well as the changed morphology. 16S rRNA gene-based amplicon sequencing and whole genome nanopore sequencing further confirmed purity and species identity.
ISSN:1664-302X
1664-302X
DOI:10.3389/fmicb.2022.1046260