| Literature DB >> 25278608 |
Luis Caspeta1, Yun Chen1, Payam Ghiaci2, Amir Feizi1, Steen Buskov3, Björn M Hallström4, Dina Petranovic5, Jens Nielsen6.
Abstract
Ethanol production for use as a biofuel is mainly achieved through simultaneous saccharification and fermentation by yeast. Operating at ≥40°C would be beneficial in terms of increasing efficiency of the process and reducing costs, but yeast does not grow efficiently at those temperatures. We used adaptive laboratory evolution to select yeast strains with improved growth and ethanol production at ≥40°C. Sequencing of the whole genome, genome-wide gene expression, and metabolic-flux analyses revealed a change in sterol composition, from ergosterol to fecosterol, caused by mutations in the C-5 sterol desaturase gene, and increased expression of genes involved in sterol biosynthesis. Additionally, large chromosome III rearrangements and mutations in genes associated with DNA damage and respiration were found, but contributed less to the thermotolerant phenotype.Entities:
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Year: 2014 PMID: 25278608 DOI: 10.1126/science.1258137
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728