Sato Shun, Kitamoto Dai, Habe Hiroshi
Research Institute for Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology (AIST).
Present address: Environmental Management Research Institute, National Institute of Advanced Industrial Science and Technology (AIST).
J Oleo Sci. 2017 Jun 1;66(6):653-658. doi: 10.5650/jos.ess16236. Epub 2017 May 17.
Some acetic acid bacteria produce large amounts of glyceric acid (GA) from glycerol in culture broth. However, methanol, which is a major contaminant of raw glycerol derived from the biodiesel fuel industry, sharply decreases cell growth and GA production [AMB Express, 3, 20, 2013]. Thus, we evaluated the methylotrophic acetic acid bacterium Acidomonas methanolica NBRC104435 for its ability to produce GA from glycerol containing methanol. This strain accumulated GA in its culture broth when 1-3 wt% glycerol was available as a carbon source. We observed improved cell growth and GA accumulation when 1 vol% methanol was added to the 3-5 wt% glycerol medium. The maximum concentration of GA was 12.8 g/L in medium containing 3 wt% glycerol plus 1 vol% methanol. In addition, the enantiomeric excess (ee) of the GA produced was revealed to be 44%, indicating that this strain converted glycerol to d-GA with a lower enantioselectivity than other acetic acid bacteria, which had 70-99% ee.
一些醋酸菌可在培养液中由甘油大量产生甘油酸(GA)。然而,甲醇作为生物柴油燃料行业来源的粗甘油中的主要污染物,会显著降低细胞生长和GA产量[《AMB快报》,3,20,2013]。因此,我们评估了甲基营养型醋酸菌甲醇嗜酸单胞菌NBRC104435从含甲醇甘油中产生GA的能力。当有1 - 3 wt%甘油作为碳源时,该菌株在其培养液中积累了GA。当向3 - 5 wt%甘油培养基中添加1 vol%甲醇时,我们观察到细胞生长和GA积累有所改善。在含有3 wt%甘油加1 vol%甲醇的培养基中,GA的最大浓度为12.8 g/L。此外,所产生GA的对映体过量(ee)为44%,这表明该菌株将甘油转化为d - GA的对映选择性低于其他对映体过量为70 - 99%的醋酸菌。