Searched for: +
(1 - 3 of 3)
document
Oud, B. (author), Guadalupe-Medina, V. (author), Nijkamp, J.F. (author), De Ridder, D. (author), Pronk, J.T. (author), Van Maris, A.J.A. (author), Daran, J.G. (author)
Laboratory evolution of the yeast Saccharomyces cerevisiae in bioreactor batch cultures yielded variants that grow as multicellular, fast-sedimenting clusters. Knowledge of the molecular basis of this phenomenon may contribute to the understanding of natural evolution of multicellularity and to manipulating cell sedimentation in laboratory and...
journal article 2013
document
Guadalupe-Medina, V. (author), Metz, B. (author), Oud, B. (author), Van der Graaf, C.M. (author), Pronk, J.T. (author), Van Maris, A.J.A. (author)
Glycerol production by Saccharomyces cerevisiae, which is required for redox-cofactor balancing in anaerobic cultures, causes yield reduction in industrial bioethanol production. Recently, glycerol formation in anaerobic S.?cerevisiae cultures was eliminated by expressing Escherichia coli (acetylating) acetaldehyde dehydrogenase (encoded by mhpF...
journal article 2013
document
Oud, B. (author), Flores, C.L. (author), Gancedo, C. (author), Zhang, X. (author), Trueheart, J. (author), Daran, J.M. (author), Pronk, J.T. (author), Van Maris, A.J.A. (author)
Background Pyruvate-decarboxylase negative (Pdc-) strains of Saccharomyces cerevisiae combine the robustness and high glycolytic capacity of this yeast with the absence of alcoholic fermentation. This makes Pdc-S. cerevisiae an interesting platform for efficient conversion of glucose towards pyruvate-derived products without formation of ethanol...
journal article 2012