Biotransformation of glycerol to d-glyceric acid by Acetobacter tropicalis

被引:55
作者
Habe, Hiroshi [1 ]
Fukuoka, Tokuma [1 ]
Kitamoto, Dai [1 ]
Sakaki, Keiji [1 ]
机构
[1] Natl Inst Adv Ind Sci & Technol, Res Inst Innovat Sustainable Chem, Tsukuba, Ibaraki 3058565, Japan
关键词
Glycerol use; D-glyceric acid; Acetic acid bacteria; Acetobacter sp; Gluconacetobacter sp; MICROBIAL-PRODUCTION; SELECTIVE OXIDATION; DIHYDROXYACETONE; CONVERSION; OXYDANS;
D O I
10.1007/s00253-008-1737-2
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Bacterial strains capable of converting glycerol to glyceric acid (GA) were screened among the genera Acetobacter and Gluconacetobacter. Most of the tested Acetobacter and Gluconacetobacter strains could produce 1.8 to 9.3 g/l GA from 10% (v/v) glycerol when intact cells were used as the enzyme source. Acetobacter tropicalis NBRC16470 was the best GA producer and was therefore further investigated. Based on the results of high-performance liquid chromatography analysis and specific rotation, the enantiomeric composition of the produced GA was d-glyceric acid (d-GA). The productivity of d-GA was enhanced with the addition of both 15% (v/v) glycerol and 20 g/l yeast extract. Under these optimized conditions, A. tropicalis NBRC16470 produced 22.7 g/l d-GA from 200 g/l glycerol during 4 days of incubation in a jar fermentor.
引用
收藏
页码:1033 / 1039
页数:7
相关论文
共 18 条
[1]   CRYSTALLIZATION AND PROPERTIES OF NADP-DEPENDENT ALDEHYDE DEHYDROGENASE FROM GLUCONOBACTER-MELANOGENUS [J].
ADACHI, O ;
MATSUSHITA, K ;
SHINAGAWA, E ;
AMEYAMA, M .
AGRICULTURAL AND BIOLOGICAL CHEMISTRY, 1980, 44 (01) :155-164
[2]   Selective oxidation of glycerol with oxygen using mono and bimetallic catalysts based on Au, Pd and Pt metals [J].
Bianchi, CL ;
Canton, P ;
Dimitratos, N ;
Porta, F ;
Prati, L .
CATALYSIS TODAY, 2005, 102 :203-212
[3]   Microbial production of 1,3-propanediol [J].
Biebl, H ;
Menzel, K ;
Zeng, AP ;
Deckwer, WD .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 1999, 52 (03) :289-297
[4]  
CLARET C, 1994, APPL MICROBIOL BIOT, V41, P359, DOI 10.1007/BF00221232
[5]   Acceleration of ethanol and acetaldehyde oxidation by D-glycerate in rats [J].
Eriksson, C. J. Peter ;
Saarenma, Tuomas P. S. ;
Bykov, Igor L. ;
Heino, Pekka U. .
METABOLISM-CLINICAL AND EXPERIMENTAL, 2007, 56 (07) :895-898
[6]   Biotransformation of glycerol to dihydroxyacetone by recombinant Gluconobacter oxydans DSM 2343 [J].
Gaetgens, Cornelia ;
Degner, Ursula ;
Bringer-Meyer, Stephanie ;
Herrmann, Ute .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2007, 76 (03) :553-559
[7]   CHEMOSELECTIVE CATALYTIC-OXIDATION OF GLYCEROL WITH AIR ON PLATINUM METALS [J].
GARCIA, R ;
BESSON, M ;
GALLEZOT, P .
APPLIED CATALYSIS A-GENERAL, 1995, 127 (1-2) :165-176
[8]   Optimization of the microbial synthesis of dihydroxyacetone from glycerol with Gluconobacter oxydans [J].
Hekmat, D ;
Bauer, R ;
Fricke, J .
BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2003, 26 (02) :109-116
[9]   Principles of biorefineries [J].
Kamm, B ;
Kamm, M .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2004, 64 (02) :137-145
[10]   RESPIRATORY CHAINS AND BIOENERGETICS OF ACETIC-ACID BACTERIA [J].
MATSUSHITA, K ;
TOYAMA, H ;
ADACHI, O .
ADVANCES IN MICROBIAL PHYSIOLOGY, VOL 36, 1994, 36 :247-301