Efficient Production of l -Lactic Acid from Xylose by Pichia stipitis
- 1 January 2007
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 73 (1) , 117-123
- https://doi.org/10.1128/aem.01311-06
Abstract
Microbial conversion of renewable raw materials to useful products is an important objective in industrial biotechnology. Pichia stipitis , a yeast that naturally ferments xylose, was genetically engineered for l -(+)-lactate production. We constructed a P. stipitis strain that expressed the l -lactate dehydrogenase (LDH) from Lactobacillus helveticus under the control of the P. stipitis fermentative ADH1 promoter. Xylose, glucose, or a mixture of the two sugars was used as the carbon source for lactate production. The constructed P. stipitis strain produced a higher level of lactate and a higher yield on xylose than on glucose. Lactate accumulated as the main product in xylose-containing medium, with 58 g/liter lactate produced from 100 g/liter xylose. Relatively efficient lactate production also occurred on glucose medium, with 41 g/liter lactate produced from 94 g/liter glucose. In the presence of both sugars, xylose and glucose were consumed simultaneously and converted predominantly to lactate. Lactate was produced at the expense of ethanol, whose production decreased to ∼15 to 30% of the wild-type level on xylose-containing medium and to 70 to 80% of the wild-type level on glucose-containing medium. Thus, LDH competed efficiently with the ethanol pathway for pyruvate, even though the pathway from pyruvate to ethanol was intact. Our results show, for the first time, that lactate production from xylose by a yeast species is feasible and efficient. This is encouraging for further development of yeast-based bioprocesses to produce lactate from lignocellulosic raw material.Keywords
This publication has 72 references indexed in Scilit:
- Genetically Engineered Wine Yeast Produces a High Concentration of l -Lactic Acid of Extremely High Optical PurityApplied and Environmental Microbiology, 2005
- Polylactic Acid TechnologyPublished by Taylor & Francis ,2005
- Homofermentative Lactate Production Cannot Sustain Anaerobic Growth of Engineered Saccharomyces cerevisiae : Possible Consequence of Energy-Dependent Lactate ExportApplied and Environmental Microbiology, 2004
- Lactobacillus reuteriCRL1098 Produces CobalaminJournal of Bacteriology, 2003
- A ten-minute DNA preparation from yeast efficiently releases autonomous plasmids for transformaion of Escherichia coliPublished by Elsevier ,2003
- Molecular Cloning of XYL3 ( d -Xylulokinase) from Pichia stipitis and Characterization of Its Physiological FunctionApplied and Environmental Microbiology, 2002
- Efficient Homolactic Fermentation by Kluyveromyces lactis Strains Defective in Pyruvate Utilization and Transformed with the Heterologous LDH GeneApplied and Environmental Microbiology, 2001
- Efficient Production of L-(+)-Lactic Acid Using Mycelial Cotton-like Flocs of Rhizopus oryzae in an Air-Lift BioreactorBiotechnology Progress, 1998
- Peculiarities of the regulation of fermentation and respiration in the crabtree-negative, xylose-fermenting yeastPichia stipitisApplied Biochemistry and Biotechnology, 1996
- Improved method for high efficiency transformation of intact yeast cellsNucleic Acids Research, 1992