School of Food and Biological Engineering, Jiangsu University, 301 Xuefu Road, Zhenjiang, Jiangsu, 212013, China.
College of Biosciences and Biotechnology, Shenyang Agricultural University, 120 Dongling Road, Shenyang, Liaoning, 110161, China.
Appl Biochem Biotechnol. 2022 Jul;194(7):3119-3135. doi: 10.1007/s12010-022-03910-y. Epub 2022 Mar 26.
-Arabitol is an important functional sugar alcohol, which can be used in the preparation of foods, chemicals, and medicines. Despite biological production of -arabitol from low-cost substrates has recently been the focus of research, low yield of this technology has limited its large-scale exploitation. Optimization of this bioprocess could be a promising option to improve the yield of -arabitol. In this study, one-factor-at-a-time (OFAT) strategy and Box-Behnken design (BBD) were used to increase -arabitol production by Metschnikowia reukaufii CICC 31,858 through optimizing the fermentation conditions and medium composition. The OFAT optimization provided the optimal conditions for temperature, agitation speed, and fermentation time of 30℃, 220 rpm, and 6 days, respectively. Likewise, the optimum concentrations of peptone, ammonium sulfate, KHPO, MgSO·7HO, and fumaric acid in the fermentation medium were (g/L) 7.5, 1, 2, 0.5, and 7.5, respectively. Under these optimum conditions, 80.43 g/L of -arabitol was produced from 200 g/L of glucose, with a productivity of 0.56 g/L/h. The BBD optimization with three important components of fermentation medium (KHPO, MgSO·7HO, and fumaric acid) showed that the predicted titer of -arabitol varied from 47.21 to 89.27 g/L, and the actual titer of -arabitol ranged from 47.36 to 89.83 g/L. The optimum concentrations (g/L) of KHPO, MgSO·7HO, and fumaric acid in the fermentation medium were found to be 1.0, 0.5, and 4.7 g/L, respectively. Under the optimum conditions, 92.45 g/L of -arabitol was finally produced with the yield and productivity of 0.46 g/g and 0.64 g/L/h, respectively.
阿拉伯糖醇是一种重要的功能糖醇,可用于食品、化工和医药的制备。尽管最近生物法利用低成本底物生产阿拉伯糖醇已成为研究热点,但该技术的低产率限制了其大规模开发。优化该生物过程可能是提高阿拉伯糖醇产量的一个有前途的选择。在这项研究中,通过优化发酵条件和培养基组成,使用单因素实验(OFAT)策略和 Box-Behnken 设计(BBD)来提高米氏毕赤酵母 CICC 31,858 生产阿拉伯糖醇的产量。OFAT 优化提供了最佳的温度、搅拌速度和发酵时间条件,分别为 30℃、220rpm 和 6 天。同样,发酵培养基中蛋白胨、硫酸铵、KHPO、MgSO·7HO 和富马酸的最佳浓度(g/L)分别为 7.5、1、2、0.5 和 7.5。在这些最佳条件下,从 200g/L 葡萄糖中生产出 80.43g/L 的阿拉伯糖醇,产率为 0.56g/L/h。BBD 优化了发酵培养基中三个重要成分(KHPO、MgSO·7HO 和富马酸),结果表明阿拉伯糖醇的预测产量在 47.21 至 89.27g/L 之间变化,实际产量在 47.36 至 89.83g/L 之间变化。发酵培养基中 KHPO、MgSO·7HO 和富马酸的最佳浓度(g/L)分别为 1.0、0.5 和 4.7。在最佳条件下,最终生产出 92.45g/L 的阿拉伯糖醇,产率和生产率分别为 0.46g/g 和 0.64g/L/h。