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Anaerobic conversion of lactic acid to acetic acid and 1,2-propanediol by Lactobacillus buchneri

S J W H Oude Elferink, Janneke Krooneman, J C Gottschal, S F Spoelstra, F Faber, F Driehuis

Onderzoeksoutput: ArticleAcademicpeer review

Samenvatting

The degradation of lactic acid under anoxic conditions was studied in several strains of Lactobacillus buchneri and in close relatives such as Lactobacillus parabuchneri, Lactobacillus kefir, and Lactobacillus hilgardii. Of these lactobacilli, L. buchneri and L. parabuchneri were able to degrade lactic acid under anoxic conditions, without requiring an external electron acceptor. Each mole of lactic acid was converted into approximately 0.5 mol of acetic acid, 0.5 mol of 1,2-propanediol, and traces of ethanol. Based on stoichiometry studies and the high levels of NAD-linked 1,2-propanediol-dependent oxidoreductase (530 to 790 nmol min−1 mg of protein−1), a novel pathway for anaerobic lactic acid degradation is proposed. The anaerobic degradation of lactic acid by L. buchneri does not support cell growth and is pH dependent. Acidic conditions are needed to induce the lactic-acid-degrading capacity of the cells and to maintain the lactic-acid-degrading activity. At a pH above 5.8 hardly any lactic acid degradation was observed. The exact function of anaerobic lactic acid degradation by L. buchneri is not certain, but some results indicate that it plays a role in maintaining cell viability.
Originele taal-2English
Pagina's (van-tot)125-132
Aantal pagina's8
TijdschriftApplied and Environmental Microbiology
Volume67
Nummer van het tijdschrift1
DOI's
StatusPublished - 1 jan. 2001

Duurzame ontwikkelingsdoelstellingen van de VN

Deze output draagt bij aan de volgende duurzame ontwikkelingsdoelstelling(en)

  1. SDG 07 – Betaalbare en schone energie
    SDG 07 – Betaalbare en schone energie
  2. SDG 09 – Industrie, innovatie en infrastructuur
    SDG 09 – Industrie, innovatie en infrastructuur

Keywords

  • melkzuur
  • anaërobiose
  • milieu
  • biologische afbraak
  • cultuur media
  • azijnzuur
  • concentratie waterstofionen
  • lactobacillen
  • zonder dehydrogenase
  • temperatuur
  • metabolisme
  • groei
  • ontwikkeling
  • propyleenglycol

Research Focus Areas Hanze University of Applied Sciences

  • Energie

Research Focus Areas Research Centre or Centre of Expertise

  • Hernieuwbare brandstoffen en duurzame gassen

Publinova thema's

  • Techniek

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