Bioprocessing and Renewable Energy Laboratory, Department of Grain Science and Industry, Kansas State University, Manhattan, KS, USA.
Department of Chemical Engineering, Kansas State University, Manhattan, KS, USA.
Appl Microbiol Biotechnol. 2016 Jan;100(1):279-88. doi: 10.1007/s00253-015-7016-0. Epub 2015 Oct 3.
D-lactic acid is used as a monomer in the production of poly-D-lactic acid (PDLA), which is used to form heat-resistant stereocomplex poly-lactic acid. To produce cost-effective D-lactic acid by using all sugars derived from biomass efficiently, xylose-assimilating genes encoding xylose isomerase and xylulokinase were cloned into an L-lactate-deficient strain, Lactobacillus plantarum. The resulting recombinant strain, namely L. plantarum NCIMB 8826 ∆ldhL1-pLEM-xylAB, was able to produce D-lactic acid (at optical purity >99 %) from xylose at a yield of 0.53 g g(-1). Simultaneous utilization of glucose and xylose to produce D-lactic acid was also achieved by this strain, and 47.2 g L(-1) of D-lactic acid was produced from 37.5 g L(-1) glucose and 19.7 g L(-1) xylose. Corn stover and soybean meal extract (SBME) were evaluated as cost-effective medium components for D-lactic acid production. Optimization of medium composition using response surface methodology resulted in 30 % reduction in enzyme loading and 70 % reduction in peptone concentration. In addition, we successfully demonstrated D-lactic acid fermentation from corn stover and SBME in a fed-batch fermentation, which yielded 61.4 g L(-1) D-lactic acid with an overall yield of 0.77 g g(-1). All these approaches are geared to attaining high D-lactic acid production from biomass sugars to produce low-cost, highly thermostable biodegradable plastics.
D-乳酸可用作生产聚 D-乳酸(PDLA)的单体,后者用于形成耐热性立体复合物聚乳酸。为了从生物质衍生的所有糖中高效生产具有成本效益的 D-乳酸,将编码木糖异构酶和木酮糖激酶的木糖同化基因克隆到 L-乳酸缺乏型菌株植物乳杆菌中。所得重组菌株,即 L. plantarum NCIMB 8826 ∆ldhL1-pLEM-xylAB,能够从木糖生产光学纯度>99%的 D-乳酸,产率为 0.53 g g(-1)。该菌株还能够同时利用葡萄糖和木糖生产 D-乳酸,从 37.5 g L(-1)葡萄糖和 19.7 g L(-1)木糖生产 47.2 g L(-1)的 D-乳酸。玉米秸秆和大豆粉提取物(SBME)被评估为生产 D-乳酸的具有成本效益的培养基成分。使用响应面法对培养基组成进行优化,导致酶用量减少 30%,蛋白胨浓度减少 70%。此外,我们成功地在分批补料发酵中从玉米秸秆和 SBME 发酵生产 D-乳酸,产率为 61.4 g L(-1),总产率为 0.77 g g(-1)。所有这些方法都旨在从生物质糖中获得高产 D-乳酸,以生产低成本、高耐热性可生物降解塑料。