Liu Xiaoyan, Lv Jinshun, Xu Jiaxing, Xia Jun, He Aiyong, Zhang Tong, Li Xiangqian, Xu Jiming
Jiangsu Key Laboratory for Biomass-based Energy and Enzyme Technology Huaiyin Normal University Huaian P. R. China.
Jiangsu Provincial Engineering Laboratory for Biomass Conversion and Process Integration Huaiyin Institute of Technology Huaian P. R. China.
Eng Life Sci. 2018 Mar 1;18(6):344-352. doi: 10.1002/elsc.201700114. eCollection 2018 Jun.
Erythritol and citric acid could be produced from waste cooking oil (WCO) by under different medium conditions, and osmotic pressure together with pH were considered to be the critical factors in this process. High osmotic pressure (2.76 osmol/L) combined with low pH (pH 3.0) promoted the highest yield of erythritol (21.8 g/L) accompanied by low-producing citric acid (2.5 g/L). By contrast, the highest citric acid biosynthesis (12.6 g/L) was detected under a pH of 6.0 and an osmotic pressure of 0.75 osmol/L, when only 4.0 g/L of erythritol was yielded. Moreover, lipase activities in these two media were also detected, and pH 3.0-OP 2.76 was supposed to be more beneficial to lipase activity. Biochemical pathways involved in the biosynthesis of erythritol and citric acid were subsequently investigated, and the products yielded from WCO were assumed to be correlated with the activities of transketolase, erythrose reductase, citrate synthase, and glycerol kinase. However, RT-PCR analysis revealed that mRNA levels of these enzymes did not significantly differ, confirming that metabolic flux regulations of erythritol and citric acid mostly took place at the post-transcriptional level.
在不同的培养基条件下,可利用废弃食用油(WCO)生产赤藓糖醇和柠檬酸,渗透压和pH值被认为是该过程中的关键因素。高渗透压(2.76 osmol/L)与低pH值(pH 3.0)相结合可促进赤藓糖醇的最高产量(21.8 g/L),同时柠檬酸产量较低(2.5 g/L)。相比之下,在pH值为6.0和渗透压为0.75 osmol/L的条件下,检测到柠檬酸的最高生物合成量(12.6 g/L),此时仅产生4.0 g/L的赤藓糖醇。此外,还检测了这两种培养基中的脂肪酶活性,pH 3.0-OP 2.76被认为对脂肪酶活性更有利。随后研究了赤藓糖醇和柠檬酸生物合成所涉及的生化途径,推测从WCO产生的产物与转酮醇酶、赤藓糖还原酶、柠檬酸合酶和甘油激酶的活性相关。然而,RT-PCR分析表明这些酶的mRNA水平没有显著差异,证实赤藓糖醇和柠檬酸的代谢通量调节主要发生在转录后水平。