High-Level Production of the Low-Calorie Sugar Sorbitol by Lactobacillus plantarum through Metabolic Engineering
暂无分享,去创建一个
Pascal Hols | Philippe Goffin | Michiel Kleerebezem | Victor Ladero | Jeroen Hugenholtz | Eddy J. Smid | M. Kleerebezem | A. Ramos | J. Hugenholtz | E. Smid | P. Goffin | P. Hols | V. Ladero | A. Schanck | Anne Wiersma | Ana Ramos | Anne Wiersma | André Schanck
[1] H. Blom,et al. Transformation of Lactobacillus strains used in meat and vegetable fermentations , 1992 .
[2] Pascal Hols,et al. Metabolic engineering of lactic acid bacteria for the production of nutraceuticals , 2002, Antonie van Leeuwenhoek.
[3] P. Ramos,et al. Substrates and lactic acid bacteria. , 1993 .
[4] A. Coker,et al. Lactobacilli in human dental caries and saliva. , 2001, Microbios.
[5] C. Hayes,et al. The effect of non-cariogenic sweeteners on the prevention of dental caries: a review of the evidence. , 2001, Journal of dental education.
[6] M. M. Bradford. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. , 1976, Analytical biochemistry.
[7] J. Richardson,et al. Knockout of the two ldh genes has a major impact on peptidoglycan precursor synthesis in Lactobacillus plantarum , 1996, Journal of bacteriology.
[8] M. Silveira,et al. Sorbitol can be produced not only chemically but also biotechnologically , 2004, Applied biochemistry and biotechnology.
[9] Michiel Kleerebezem,et al. Metabolic engineering of lactic acid bacteria, the combined approach: kinetic modelling, metabolic control and experimental analysis. , 2002, Microbiology.
[10] Michiel Kleerebezem,et al. Biodiversity-Based Identification and Functional Characterization of the Mannose-Specific Adhesin of Lactobacillus plantarum , 2005, Journal of bacteriology.
[11] Pascal Hols,et al. Lactate Racemization as a Rescue Pathway for Supplying d-Lactate to the Cell Wall Biosynthesis Machinery in Lactobacillus plantarum , 2005, Journal of bacteriology.
[12] G. Pérez-Martínez,et al. Sorbitol synthesis by an engineered Lactobacillus casei strain expressing a sorbitol-6-phosphate dehydrogenase gene within the lactose operon. , 2005, FEMS microbiology letters.
[13] Susan Budavari,et al. The Merck index , 1998 .
[14] Ana Rute Neves,et al. Catabolism of mannitol in Lactococcus lactis MG1363 and a mutant defective in lactate dehydrogenase. , 2002, Microbiology.
[15] Susan Budavari,et al. The Merck index : an encyclopedia of chemicals, drugs, and biologicals , 1983 .
[16] M. Kleerebezem,et al. Complete genome sequence of Lactobacillus plantarum WCFS1 , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[17] S. Condon,et al. Correlation of oxygen utilization and hydrogen peroxide accumulation with oxygen induced enzymes in Lactobacillus plantarum cultures , 1984, Archives of Microbiology.
[18] Christian Solem,et al. Experimental determination of control of glycolysis in Lactococcus lactis , 2002, Antonie van Leeuwenhoek.
[19] J. Sambrook,et al. Molecular Cloning: A Laboratory Manual , 2001 .
[20] H. Bohnert,et al. Expression of a bacterial mtlD gene in transgenic tobacco leads to production and accumulation of mannitol. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[21] Jeroen Hugenholtz,et al. Citrate Fermentation by Lactococcus and Leuconostoc spp , 1991, Applied and environmental microbiology.
[22] G. Pérez-Martínez,et al. Cross-talk between the L-sorbose and D-sorbitol (D-glucitol) metabolic pathways in Lactobacillus casei. , 2002, Microbiology.
[23] C. Lefebvre,et al. Study of Different Crystalline forms of Mannitol: Comparative Behaviour under Compression , 1987 .
[24] W. D. de Vos,et al. Overproduction of Heterologous Mannitol 1-Phosphatase: a Key Factor for Engineering Mannitol Production by Lactococcus lactis , 2005, Applied and Environmental Microbiology.
[25] Ana Rute Neves,et al. Engineering Lactococcus lactis for Production of Mannitol: High Yields from Food-Grade Strains Deficient in Lactate Dehydrogenase and the Mannitol Transport System , 2004, Applied and Environmental Microbiology.
[26] W. Hammes,et al. Lactic acid bacteria in meat fermentation , 1990 .
[27] M. Kleerebezem,et al. Major Role of NAD-Dependent Lactate Dehydrogenases in Aerobic Lactate Utilization in Lactobacillus plantarum during Early Stationary Phase , 2004, Journal of bacteriology.
[28] R. Jonas,et al. The biotechnological production of sorbitol , 2002, Applied Microbiology and Biotechnology.
[29] Jeroen Hugenholtz,et al. Mannitol production by lactic acid bacteria: a review , 2002 .
[30] H. P. Fleming,et al. ApplicationMicrobial ecology of fermenting plant materials , 1987 .
[31] H. P. Fleming,et al. Microbial ecology of fermenting plant materials , 1987 .
[32] M. Chakravorty. Metabolism of mannitol and induction of mannitol 1-phosphate dehydrogenase in Lactobacillus plantarum , 1964, Journal of bacteriology.
[33] G. Pérez-Martínez,et al. Genetics of l-Sorbose Transport and Metabolism in Lactobacillus casei , 2000, Journal of bacteriology.
[34] M. Kleerebezem,et al. In vivo nuclear magnetic resonance studies of glycolytic kinetics in Lactococcus lactis. , 1999, Biotechnology and bioengineering.
[35] Seppo Salminen,et al. Lactic Acid Bacteria , 2004 .
[36] M. Kleerebezem,et al. Acetate Utilization in Lactococcus lactis Deficient in Lactate Dehydrogenase: a Rescue Pathway for Maintaining Redox Balance , 1999, Journal of bacteriology.
[37] A. Schanck,et al. 13C nuclear magnetic resonance analysis of glucose and citrate end products in an ldhL-ldhD double-knockout strain of Lactobacillus plantarum , 1996, Journal of bacteriology.
[38] B. Wong,et al. Expression of bacterial mtlD in Saccharomyces cerevisiae results in mannitol synthesis and protects a glycerol-defective mutant from high-salt and oxidative stress , 1997, Journal of bacteriology.
[39] J. D. da Costa,et al. Bioconversion of glucose and fructose to sorbitol and gluconic acid by untreated cells of Zymomonas mobilis. , 1999, Journal of biotechnology.
[40] J. Hugenholtz,et al. Metabolic Engineering of Mannitol Production in Lactococcus lactis: Influence of Overexpression of Mannitol 1-Phosphate Dehydrogenase in Different Genetic Backgrounds , 2004, Applied and Environmental Microbiology.
[41] J S Almeida,et al. Metabolic characterization of Lactococcus lactis deficient in lactate dehydrogenase using in vivo 13C-NMR. , 2000, European journal of biochemistry.
[42] S. Godtfredsen,et al. Ullmann ' s Encyclopedia of Industrial Chemistry , 2017 .