Methanothermobacter thermautotrophicus
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Methanothermobacter Thermautotrophicus. The genomes of the two model methanogens differ substantially in protein coding sequences in insertion sequence IS-like elements and in clustered. The Archaea typically use hydrogen as an electron donor with carbon dioxide as an electron acceptor to yield methane or with sulfate as an electron acceptor to yield sulfide. Braun Biotech International GmbH Melsungen Germany equipped with a gas-mixing device for the controlled gas supply pH Ingold. Wasserfallen A Nolling J Pfister P Reeve J Conway de Macario E.
A Eukaryote Without A Mitochondrial Organelle Current Biology Mitochondrial Mitochondria Epigenetics From za.pinterest.com
Methanothermobacter thermautotrophicus to Upgrade Digester Biogas by CO 2-to-CH 4 Conversion with H 2 MatthewRMartin 1 JeffreyJFornero 1 RebeccaStark 1 LaurensMets 2 andLargusTAngenent 3 Electrochaea LLC N. Methanothermobacter thermautotrophicus strain ΔH M. Nov Methanothermobacter wolfeii comb. Wasserfallen A Nolling J Pfister P Reeve J Conway de Macario E. Louis MO USA e University of Chicago E. Wasserfallen A et al.
Nov Methanothermobacter wolfeii comb.
Nov Methanothermobacter wolfeii comb. Wasserfallen A et al. Louis MO USA e University of Chicago E. And methanogenic archaea such as Methanothermobacter thermautotrophicus reduce carbon dioxide to acetate and methane respectively. The genomes of the two model methanogens differ substantially in protein coding sequences in insertion sequence IS-like elements and in clustered. In this study Methanothermobacter thermautotrophicus an obligate thermophilic methanogen was used to reduce hexavalent chromium.
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It was formerly referred to as Methanobacterium thermoformicicum belonging to. The sulfate-reducing bacterium Desulfomicrobium thermophilum and the sulfate-reducing archaeon Archaeoglobus fulgidus were. Thermautotrophicus formerly Methanobacterium thermoautotrophicum strain ΔH DSM 1053 was grown in a 3-liter fermentor MBR. The genome of Methanothermobacter thermautotrophicus as a hitherto unique case is apparently devoid of genes coding for general uracil DNA glycosylases the universal mediators of base excision repair following hydrolytic deamination of DNA cytosine residues. Wasserfallen A Nolling J Pfister P Reeve J Conway de Macario E.
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