4.7 Article

Isolation and characterization of novel 1,3-propanediol-producing Lactobacillus panis PM1 from bioethanol thin stillage

期刊

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
卷 97, 期 1, 页码 417-428

出版社

SPRINGER
DOI: 10.1007/s00253-012-4386-4

关键词

Glycerol; Biofuel waste; Value-added product; Fermentation; Glucose metabolism; NADH recycling

资金

  1. Saskatchewan Agriculture Development Fund
  2. Agricultural Bioproducts Innovation Program of Agriculture
  3. Agri-Food Canada

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Conversion of glycerol to 1,3-propanediol (1,3-PDO) is an attractive option to increase the economic efficiency of the biofuel industry. A bacterial strain that produced 1,3-PDO in the presence of glycerol was isolated from thin stillage, the fermentation residue of bioethanol production. This 1,3-PDO-producing organism was identified as Lactobacillus panis through biochemical characteristics and by 16S rRNA sequencing. Characterization of the L. panis strain hereafter designated as PM1 revealed it was an aerotolerant acidophilic anaerobe able to grow over a wide range of temperatures; tolerant to high concentrations of sodium chloride, ethanol, acetic acid, and lactic acid; and resistant to many common antibiotics. L. panis PM1 could utilize glucose, lactose, galactose, maltose, xylose, and arabinose, but could not grow on sucrose or fructose. Production of 1,3-PDO by L. panis PM1 occurred only when glucose was available as the carbon source in the absence of oxygen. These metabolic characteristics strongly suggested NADH recycling for glucose metabolism is achieved through 1,3-PDO production by this strain. These characteristics classified L. panis PM1 within the group III heterofermentative lactic acid bacteria, which includes the well-characterized 1,3-PDO-producing strain, Lactobacillus reuteri. Metabolite production profiles showed that L. panis PM1 produced considerable amounts of succinic acid (similar to 11-12 mM) from normal MRS medium, which distinguishes this strain from L. reuteri strains.

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