Genetically modified yeast species, and fermentation processes using genetically modified yeast
Yeast cells are transformed with an exogenous xylose isomerase gene. Additional genetic modifications enhance the ability of the transformed cells to ferment xylose to ethanol or other desired fermentation products. Those modifications include deletion of non-specific or specific aldose reductase gene(s), deletion of xylitol dehydrogenase gene(s) and/or overexpression of xylulokinase.
1. A fermentation process in which a genetically modified yeast cell having a genome and a functional, exogenous xylose isomerase gene which encodes a xylose isomerase enzyme that is at least 90% homologous to SEQ. ID. NO. 59, wherein the exogenous xylose isomerase gene is operatively linked to promoter and terminator sequences that are functional in the yeast cell, and the modified yeast cell further has a deletion or disruption of a native gene that produces an enzyme that catalyzes the conversion of xylose to xylitol is cultured under fermentation conditions in a fermentation broth that includes a pentose sugar, wherein the fermentation process includes a growth phase and a production phase, and during the production phase the concentration of cells in the fermentation broth is in the range of 3 to 10 g dry cells/liter of fermentation broth.
2. A fermentation process of claim 1 wherein ethanol is produced as a major fermentation product.
3. A fermentation process of claim 1 wherein lactate is produced as a major fermentation product.
4. The fermentation process of any of claim 1 in which the pentose sugar includes xylose.
5. The fermentation process of claim 1 in which the fermentation broth further includes a hexose sugar.
6. The fermentation process of claim 1 which is an anaerobic fermentation.
7. The fermentation process of claim 1 wherein the final concentration of the fermentation product is at least 14 g/L.