...
首页> 外文期刊>Applied Microbiology and Biotechnology >Two-step production of D-lactate from mixed sugars by growing and resting cells of metabolically engineered Lactobacillus plantarum
【24h】

Two-step production of D-lactate from mixed sugars by growing and resting cells of metabolically engineered Lactobacillus plantarum

机译:通过代谢工程改造的植物乳杆菌的细胞生长和静息,由混合糖分两步生产D-乳酸

获取原文
获取原文并翻译 | 示例
           

摘要

To develop cost-effective systems for D-lactate production, here, the effect of high-cell density cultivation of metabolically engineered Lactobacillus plantarum on D-lactate production was evaluated. A xylose-assimilating strain of L. plantarum was anaerobically cultured with mixed sugars (glucose and xylose) as substrates. Compared to undiluted nutrient-rich de Man, Rogosa, and Sharpe (MRS) medium, D-lactate production by cultivating in 10-fold diluted MRS (0.1 MRS) medium or normal saline solution was 89.7 and 81.3 %, respectively. Notably, the xylose consumption rate was comparable in the three cultures, whereas the glucose consumption rate decreased by 18.3 and 26.1 % in 0.1 MRS medium and normal saline solution, respectively, resulting in a reduction of the D-lactate production rate. The D-lactate productivity in high-cell density cultivation was proportional to the initial cell concentrations. The use of a two-step cultivation process involving growing and resting cells in a single bioreactor revealed that the ratio of the glucose and xylose consumption rates (based on grams consumed) in resting cell conditions was 1.88, whereas that in growing conditions was 2.58. Cultivation of L. plantarum in growing conditions for 24 h produced 73.2 g/l D-lactate with the yield of 0.90 g/g, whereas cells cultivation under resting cell conditions in a saline solution for 24 h produced 68.7 g/l D-lactate with the yield of 0.93 g/g. In total, 141.9 g/l D-lactate was produced after 48 h cultivation, a value that represents the highest reported concentration of D-lactate produced from mixed sugars to date. Our findings contribute to the cost-effective, large-scale production of D-lactate.
机译:为了开发生产D-乳酸的经济有效的系统,在这里,评估了代谢工程改造的植物乳杆菌的高细胞密度培养对D-乳酸生产的影响。用混合糖(葡萄糖和木糖)作为底物,厌氧培养植物乳杆菌的木糖同化菌株。与未稀释的富含营养的De Man,Rogosa和Sharpe(MRS)培养基相比,通过在10倍稀释的MRS(0.1 MRS)培养基或生理盐水溶液中培养,D-乳酸的产量分别为89.7%和81.3%。值得注意的是,三种培养物中的木糖消耗率相当,而在0.1 MRS培养基和生理盐水溶液中,葡萄糖消耗率分别降低了18.3%和26.1%,从而导致D-乳酸生成率降低。高细胞密度培养中的D-乳酸生产率与初始细胞浓度成正比。使用在单个生物反应器中生长和静止细胞的两步培养过程表明,静止细胞条件下葡萄糖和木糖消耗速率(基于消耗的克数)之比为1.88,而在生长条件下为2.58。在生长条件下培养植物乳杆菌24小时可产生73.2 g / l的D-乳酸,产量为0.90 g / g,而在静息细胞条件下在盐水溶液中培养24小时的细胞可产生68.7 g / l的D-乳酸。产量为0.93 g / g。总计在48小时培养后产生141.9 g / l D-乳酸,该值代表迄今为止报道的由混合糖生产的D-乳酸的最高浓度。我们的发现有助于D-乳酸的经济有效的大规模生产。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号