Improving xylitol production at elevated temperature with engineered Kluyveromyces marxianus through over-expressing transporters

Bioresour Technol. 2015 Jan:175:642-5. doi: 10.1016/j.biortech.2014.10.150. Epub 2014 Nov 4.

Abstract

Three transporter genes including Kluyveromyces marxianus aquaglyceroporin gene (KmFPS1), Candida intermedia glucose/xylose facilitator gene (CiGXF1) or glucose/xylose symporter gene (CiGXS1) were over-expressed in K. marxianus YZJ017 to improve xylitol production at elevated temperatures. The xylitol production of YZJ074 that harbored CiGXF1 was improved to 147.62g/L in Erlenmeyer flask at 42°C. In fermenter, 99.29 and 149.60g/L xylitol were produced from 99.55 and 151.91g/L xylose with productivity of 4.14 and 3.40g/L/h respectively at 42°C. Even at 45°C, YZJ074 could produce 101.30g/L xylitol from 101.41g/L xylose with productivity of 2.81g/L/h. Using fed-batch fermentation through repeatedly adding non-sterilized substrate directly, YZJ074 could produce 312.05g/L xylitol which is the highest yield reported to date. The engineered strains YZJ074 which can produce xylitol at elevated temperatures is an excellent foundation for xylitol bioconversion.

Keywords: CiGXF1; Elevated temperature; K. marxianus; Xylitol; Xylose.

MeSH terms

  • Batch Cell Culture Techniques
  • Bioreactors
  • Candida / genetics
  • Fermentation
  • Genetic Engineering / methods
  • Glucose / metabolism
  • Industrial Microbiology / instrumentation
  • Industrial Microbiology / methods*
  • Kluyveromyces / genetics*
  • Kluyveromyces / metabolism*
  • Monosaccharide Transport Proteins / genetics*
  • Monosaccharide Transport Proteins / metabolism
  • Recombinant Proteins / genetics
  • Recombinant Proteins / metabolism
  • Temperature
  • Xylitol / biosynthesis*
  • Xylose / metabolism

Substances

  • Monosaccharide Transport Proteins
  • Recombinant Proteins
  • Xylose
  • Glucose
  • Xylitol