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PMID: 15917621 Published · ppublish English Comparative Study Evaluation Study Journal Article

Enhanced biotransformation of furfural and hydroxymethylfurfural by newly developed ethanologenic yeast strains.

Applied biochemistry and biotechnology ·Vol. 121-124 ·2005-00-00 ·Pages 451-60

Liu ZL, Slininger PJ, Gorsich SW

Abstract

Furfural and hydroxymethylfurfural (HMF) are representative inhibitors among many inhibitive compounds derived from biomass degradation and saccharification for bioethanol fermentation. Most yeasts, including industrial strains, are susceptible to these inhibitory compounds, especially when multiple inhibitors are present. Additional detoxification steps add cost and complexity to the process and generate additional waste products. To promote efficient bioethanol production, we studied the mechanisms of stress tolerance, particularly to fermentation inhibitors such as furfural and HMF. We recently reported a metabolite of 2,5-bis-hydroxymethylfuran as a conversion product of HMF and characterized a dose-dependent response of ethanologenic yeasts to inhibitors. In this study, we present newly adapted strains that demonstrated higher levels of tolerance to furfural and HMF. Saccharomyces cerevisiae 307-12H60 and 307-12H120 and Pichia stipitis 307 10H60 showed enhanced biotransformation ability to reduce HMF to 2,5-bis-hydroxymethylfuran at 30 and 60 mM, and S. cerevisiae 307-12-F40 converted furfural into furfuryl alcohol at significantly higher rates compared to the parental strains. Strains of S. cerevisiae converted 100% of HMF at 60 mM and S. cerevisiae 307-12-F40 converted 100% of furfural into furfuryl alcohol at 30 mM. The results of this study suggest a possible in situ detoxification of the inhibitors by using more inhibitor-tolerant yeast strains for bioethanol fermentation. The development of such tolerant strains provided a basis and useful materials for further studies on the mechanisms of stress tolerance.

MeSH Terms
Biotransformation Cell Proliferation/drug effects Dose-Response Relationship, Drug Drug Tolerance Ethanol/metabolism Furaldehyde/analogs & derivatives,pharmacokinetics,pharmacology Furans/metabolism Glucose/metabolism Pichia/classification,drug effects,growth & development,metabolism Saccharomyces cerevisiae/classification,drug effects,growth & development,metabolism Species Specificity
Chemicals
Furans Ethanol 5-hydroxymethylfurfural furfuryl alcohol Furaldehyde Glucose
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Liu Z Lewis
National Center for Agricultural Utilization Research USDA-ARS, 1815 North University Street, Peoria, IL 61604, USA.
Slininger Patricia J
Gorsich Steve W
Article Info
Journal
Applied biochemistry and biotechnology
Abbr.
Appl Biochem Biotechnol
ISSN
0273-2289
Published
2005-00-00
Pages
451-60
Language
English
Region
United States
NLM ID
8208561
Subset
IM
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