Enhancement of dihydroxyacetone production by a mutant of Gluconobacter oxydans

Biochemical Engineering Journal - Tập 49 - Trang 61-67 - 2010
Lijuan Ma1,2, Wenyu Lu1,3, Zhendong Xia1, Jianping Wen1,3
1Department of Biochemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, PR China
2Tianjin Institute of Industrial Biotechnology, Chinese of Academy of Science, Tianjin 300308, PR China
3Key Laboratory of Systems Bioengineering (Tianjin University), Ministry of Education, Tianjin 300072, PR China

Tài liệu tham khảo

Bicker, 2005, Catalytical conversion of carbohydrates in subcritical water: a new chemical process for lactic acid production, J. Mol. Catal. A: Chem., 239, 151, 10.1016/j.molcata.2005.06.017 Fesq, 2001, Dihydroxyacetone in a new formulation-a powerful therapeutic option in vitiligo, Dermatology, 203, 241, 10.1159/000051757 Brown, 2001, Skin pigmentation enhancers, J. Photochem. Photobiol. B: Biol., 63, 148, 10.1016/S1011-1344(01)00212-3 Mishra, 2008, Microbial production of dihydroxyacetone, Biotechnol. Adv., 26, 293, 10.1016/j.biotechadv.2008.02.001 Yamada, 1979, Fermentative production of dihydroxyacetone by acetobacter suboxydans ATCC 621, J. Ferment. Technol., 57, 215 Kato, 1986, Dihydroxyacetone production from methanol by a dihydroxyacetone kinase deficient mutant of Hansenula polymorpha, Appl. Microbiol. Biotechnol., 23, 180, 10.1007/BF00261910 Batzing, 1971, Biphasic growth of acetobacter suboxydans on a glycerol-limiting medium, J. Bacteriol., 108, 592, 10.1128/JB.108.1.592-595.1971 Wethmar, 1999, Semisynthetic culture medium for growth and dihydroxyacetone production by Gluconobacter oxydans, Biotechnol. Tech., 13, 283, 10.1023/A:1008978903231 Bauer, 2005, Study of the inhibitory effect of the product dihydroxyacetone on Gluconobacter oxydans in a semi-continuous two-stage repeated-fed-batch process, Bioprocess Biosyst. Eng., 5, 37, 10.1007/s00449-005-0009-0 Sommer, 1998, Production of dihydroxyacetone in a three phase fluidized bed reactor using Gluconobacter oxydans, Chem. Eng. Technol., 21, 144, 10.1002/(SICI)1521-4125(199802)21:2<144::AID-CEAT144>3.0.CO;2-8 Tkáč, 2001, Monitoring of dihydroxyacetone production during oxidation of glycerol by immobilized Gluconobacter oxydans cells with an enzyme biosensor, Enzyme Microb. Technol., 28, 383, 10.1016/S0141-0229(00)00328-8 Gätgens, 2007, Biotransformation of glycerol to dihydroxyacetone by recombinant Gluconobacter oxydans DSM 2343, Appl. Microbiol. Biotechnol., 76, 553, 10.1007/s00253-007-1003-z Bories, 1991, Kinetic study and optimization of the production of dihydroxyacetone from glycerol using Gluconobacter oxidans, Process Biochem., 26, 243, 10.1016/0032-9592(91)85006-A Hekmat, 2003, Optimization of the microbial synthesis of dihydroxyacetone from glycerol with Gluconobacter oxydans, Bioprocess Biosyst. Eng., 26, 109, 10.1007/s00449-003-0338-9 Bauer, 2006, Development of a transient segregated mathematical model of the semicontinuous microbial production process of dihydroxyacetone, Biotechnol. Prog., 22, 278, 10.1021/bp050342e Wei, 2007, Repeated use of immobilized Gluconobacter oxydans cells for conversion of glycerol to dihydroxyacetone, Prep. Biochem. Biotechnol., 37, 67, 10.1080/10826060601040954 Karu, 1994, Two different mechanisms of low-intensity laser photobiological effects on Escherichia coli, J. Photochem. Photobiol. B: Biol., 24, 155, 10.1016/1011-1344(94)07016-4 Logan, 1995, An investigation of the cytotoxic and mutagenic potential of low intensity laser irradiation in Friend erythroleukaemia cells, Mutat. Res., 347, 67, 10.1016/0165-7992(95)90072-1 Sorin, 2000, Biostimulation effects of the low energy laser radiation on the yeast cell suspensions, 758 Kohli, 2001, Induction of phr gene expression in E. coli strain KY706/pPL-1 by He–Ne laser (632.8nm) irradiation, J. Photochem. Photobiol. B: Biol., 60, 136, 10.1016/S1011-1344(01)00139-7 Lu, 2008, Effect of He–Ne laser irradiation on hydrogen production by Enterobacter aerogenes, Int. J. Hydrogen Energ., 33, 34, 10.1016/j.ijhydene.2007.09.010 Jiang, 2006, Mutant AFM 2 of Alcaligenes faecalis for phenol biodegradation using He–Ne laser irradiation, Chemosphere, 65, 1236, 10.1016/j.chemosphere.2006.04.011 Ruzheinikov, 2001, Glycerol dehydrogenase: structure, specificity, and mechanism of a family III polyol dehydrogenase, Structure, 9, 789, 10.1016/S0969-2126(01)00645-1 Claret, 1992, Glycerol inhibition of growth and dihydroxyacetone production by Gluconobacter oxydans, Curr. Microbiol., 25, 149, 10.1007/BF01571023 Claret, 1993, Inhibitory effect of dihydroxyacetone on Gluconobacter oxydans: Kinetic aspects and expression by mathematical equations, J. Ind. Microbiol., 11, 105, 10.1007/BF01583682 Nabe, 1979, Conversion of glycerol to dihydroxyacetone by immobilized whole cells of Acetobacter xylinum, Appl. Environ. Microbiol., 38, 1056, 10.1128/AEM.38.6.1056-1060.1979 Qi, 2004 X.F. Zhang, Studies on the conversion of glycerol to dihydroxyacetone by Gluconobacter oxydans, Master Thesis, University of Southwest of Jiaotong University, China, 2006.