Dien B S, Nichols N N, Bothast R J
Fermentation Biotechnology Research Unit, National Center for Agricultural Utilization Research, USDA, Agricultural Research Service, 1815 North University Street, Peoria, IL 61604, USA.
J Ind Microbiol Biotechnol. 2002 Nov;29(5):221-7. doi: 10.1038/sj.jim.7000299.
Conversion of lignocellulose to lactic acid requires strains capable of fermenting sugar mixtures of glucose and xylose. Recombinant Escherichia coli strains were engineered to selectively produce L-lactic acid and then used to ferment sugar mixtures. Three of these strains were catabolite repression mutants (ptsG(-)) that have the ability to simultaneously ferment glucose and xylose. The best results were obtained for ptsG(-) strain FBR19. FBR19 cultures had a yield of 0.77 (g lactic acid/g added sugar) when used to ferment a 100 g/l total equal mixture of glucose and xylose. The strain also consumed 75% of the xylose. In comparison, the ptsG(+) strains had yields of 0.47-0.48 g/g and consumed 18-22% of the xylose. FBR19 was subsequently used to ferment a variety of glucose (0-40 g/l) and xylose (40 g/l) mixtures. The lactic acid yields ranged from 0.74 to 1.00 g/g. Further experiments were conducted to discover the mechanism leading to the poor yields for ptsG(+) strains. Xylose isomerase (XI) activity, a marker for induction of xylose metabolism, was monitored for FBR19 and a ptsG(+) control during fermentations of a sugar mixture. Crude protein extracts prepared from FBR19 had 10-12 times the specific XI activity of comparable samples from ptsG(+) strains. Therefore, higher expression of xylose metabolic genes in the ptsG(-) strain may be responsible for superior conversion of xylose to product compared to the ptsG(+) fermentations.
将木质纤维素转化为乳酸需要能够发酵葡萄糖和木糖混合糖的菌株。构建了重组大肠杆菌菌株以选择性地生产L-乳酸,然后用于发酵混合糖。其中三株是分解代谢物阻遏突变体(ptsG(-)),它们有能力同时发酵葡萄糖和木糖。ptsG(-)菌株FBR19取得了最佳结果。当FBR19培养物用于发酵100 g/l的葡萄糖和木糖等量混合糖时,乳酸产量为0.77(g乳酸/g添加糖)。该菌株还消耗了75%的木糖。相比之下,ptsG(+)菌株的产量为0.47 - 0.48 g/g,消耗了18 - 22%的木糖。随后,FBR19被用于发酵各种葡萄糖(0 - 40 g/l)和木糖(40 g/l)的混合物。乳酸产量在0.74至1.00 g/g之间。进行了进一步的实验以发现导致ptsG(+)菌株产量低的机制。在糖混合物发酵过程中,监测了FBR19和ptsG(+)对照的木糖异构酶(XI)活性,这是木糖代谢诱导的一个指标。从FBR19制备的粗蛋白提取物的比XI活性是ptsG(+)菌株可比样品的10 - 12倍。因此,与ptsG(+)发酵相比,ptsG(-)菌株中木糖代谢基因的更高表达可能是木糖向产物转化更优的原因。