The increased demand for clean, sustainable and renewable energy resources has driven the development of various microbial systems to produce biofuels. One of such systems is the ethanol-producing yeast. Although yeast produces ethanol naturally using its native pathways, production yield is low and requires improvement for commercial biofuel production. Moreover, ethanol is toxic to yeast and thus ethanol tolerance should be improved to further enhance ethanol production. In this study, we employed metabolomics-based strategy using 30 single-gene deleted yeast strains to construct multivariate models for ethanol tolerance and screen metabolites that relate to ethanol sensitivity/tolerance. The information obtained from this study can be used as an input for strain improvement via metabolic engineering.
CITATION STYLE
Hashim, Z., & Fukusaki, E. (2016). Metabolomics-based prediction models of yeast strains for screening of metabolites contributing to ethanol stress tolerance. In IOP Conference Series: Earth and Environmental Science (Vol. 36). Institute of Physics Publishing. https://doi.org/10.1088/1755-1315/36/1/012046
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