Metabolic pathway analysis of Scheffersomyces (Pichia) stipitis: effect of oxygen availability on ethanol synthesis and flux distributions
暂无分享,去创建一个
[1] S. Mussatto,et al. Brazilian Journal of Chemical Engineering ETHANOL PRODUCTION FROM XYLOSE BY Pichia stipitis NRRL Y-7124 IN A STIRRED TANK BIOREACTOR , 2011 .
[2] Diethard Mattanovich,et al. Macromolecular and elemental composition analysis and extracellular metabolite balances of Pichia pastoris growing at different oxygen levels , 2009, Microbial cell factories.
[3] Yves Van de Peer,et al. Genome sequence of the recombinant protein production host Pichia pastoris , 2009, Nature Biotechnology.
[4] E. Leitner,et al. Lipid analysis of mitochondrial membranes from the yeast Pichia pastoris. , 2009, Biochimica et biophysica acta.
[5] Frank K. Agbogbo,et al. Fermentation of Acid-pretreated Corn Stover to Ethanol Without Detoxification Using Pichia stipitis , 2008, Applied biochemistry and biotechnology.
[6] T. Jeffries. Engineering the Pichia stipitis genome for fermentation of hemicellulose hydrolysates , 2008 .
[7] Frank K. Agbogbo,et al. Fermentation of glucose/xylose mixtures using Pichia stipitis , 2006 .
[8] Stefan Schuster,et al. Systems biology Metatool 5.0: fast and flexible elementary modes analysis , 2006 .
[9] Christoph Wittmann,et al. Metabolic pathway analysis for rational design of L-methionine production by Escherichia coli and Corynebacterium glutamicum. , 2006, Metabolic engineering.
[10] T. Jeffries,et al. Sh ble and Cre adapted for functional genomics and metabolic engineering of Pichia stipitis , 2006 .
[11] Alexander Steinbüchel,et al. Optimization of cyanophycin production in recombinant strains of Pseudomonas putida and Ralstonia eutropha employing elementary mode analysis and statistical experimental design , 2006, Biotechnology and bioengineering.
[12] Yan Lin,et al. Ethanol fermentation from biomass resources: current state and prospects , 2006, Applied Microbiology and Biotechnology.
[13] Jay J. Cheng,et al. Dilute acid pretreatment of rye straw and bermudagrass for ethanol production. , 2005, Bioresource technology.
[14] C. Ayyanna,et al. Optimization of medium constituents and fermentation conditions for the production of ethanol from palmyra jaggery using response surface methodology , 2005 .
[15] A. M. Giulietti,et al. Influence of oxygen transfer rate and media composition on fermentation ofd-xylose byPichia stipitis NRRL Y-7124 , 1991, Journal of Industrial Microbiology.
[16] M. Rizzi,et al. Xylose fermentation by yeasts , 1988, Biotechnology Letters.
[17] V. Passoth,et al. Aerobic induction of respiro-fermentative growth by decreasing oxygen tensions in the respiratory yeast Pichia stipitis , 2005, Applied Microbiology and Biotechnology.
[18] B. Hahn-Hägerdal,et al. Analysis of the hypoxia‐induced ADH2 promoter of the respiratory yeast Pichia stipitis reveals a new mechanism for sensing of oxygen limitation in yeast , 2003, Yeast.
[19] T. Jeffries,et al. Molecular Cloning of XYL3 (d-Xylulokinase) from Pichia stipitis and Characterization of Its Physiological Function , 2002, Applied and Environmental Microbiology.
[20] J N Nigam,et al. Ethanol production from wheat straw hemicellulose hydrolysate by Pichia stipitis. , 2001, Journal of biotechnology.
[21] B. Palsson,et al. Theory for the systemic definition of metabolic pathways and their use in interpreting metabolic function from a pathway-oriented perspective. , 2000, Journal of theoretical biology.
[22] T. Jeffries,et al. Transcriptional Control of ADH Genes in the Xylose-Fermenting Yeast Pichia stipitis , 1999, Applied and Environmental Microbiology.
[23] V. Passoth,et al. Molecular cloning of alcohol dehydrogenase genes of the yeast Pichia stipitis and identification of the fermentative ADH , 1998, Yeast.
[24] M. Taniguchi,et al. Ethanol production from a mixture of glucose and xylose by co-culture of Pichia stipitis and a respiratory-deficient mutant of Saccharomyces cerevisiae. , 1997 .
[25] J. Liao,et al. Pathway analysis, engineering, and physiological considerations for redirecting central metabolism. , 1996, Biotechnology and bioengineering.
[26] W. D. Murray,et al. Bioconversion of forest products industry waste cellulosics to fuel ethanol: a review. , 1996 .
[27] V. Passoth,et al. Peculiarities of the regulation of fermentation and respiration in the crabtree-negative, xylose-fermenting yeast Pichia stipitis. , 1996, Applied biochemistry and biotechnology.
[28] H. F. Castro,et al. Influence of oxygen on ethanol and xylitol production by xylose fermenting yeasts. , 1994 .
[29] Helena Jeppsson,et al. The effect of oxygenation on glucose fermentation with pichia stipitis , 1992 .
[30] F. Kargı,et al. Bioprocess Engineering: Basic Concepts , 1991 .
[31] B. Hahn-Hägerdal,et al. Effect of Oxygenation on Xylose Fermentation by Pichia stipitis , 1990, Applied and environmental microbiology.
[32] M. Rizzi,et al. Xylose fermentation by yeasts. 5. Use of ATP balances for modeling oxygen‐limited growth and fermentation of yeast Pichia stipitis with xylose as carbon source , 1989, Biotechnology and bioengineering.
[33] W. Donachie,et al. Growth of the Bacterial Cell , 1970, Nature.