Ruiz Rodríguez Luciana G, Aller Kadri, Bru Elena, De Vuyst Luc, Hébert Elvira M, Mozzi Fernanda
Centro de Referencia para Lactobacilos (CERELA-CONICET), Chacabuco 145, T4000, Tucumán, Argentina.
Center for Food and Fermentation Technologies, Akadeemia tee 15A, 12618, Tallinn, Estonia.
Appl Microbiol Biotechnol. 2017 Aug;101(15):6165-6177. doi: 10.1007/s00253-017-8395-1. Epub 2017 Jul 3.
Mannitol is a natural low-calorie sugar alcohol produced by certain (micro)organisms applicable in foods for diabetics due to its zero glycemic index. In this work, we evaluated mannitol production and yield by the fruit origin strain Fructobacillus tropaeoli CRL 2034 using response surface methodology with central composite design (CCD) as optimization strategy. The effect of the total saccharide (glucose + fructose, 1:2) content (TSC) in the medium (75, 100, 150, 200, and 225 g/l) and stirring (S; 50, 100, 200, 300 and 350 rpm) on mannitol production and yield by this strain was evaluated by using a 2 full-factorial CCD with 4 axial points (α = 1.5) and four replications of the center point, leading to 12 random experimental runs. Fermentations were carried out at 30 °C and pH 5.0 for 24 h. Minitab-15 software was used for experimental design and data analyses. The multiple response prediction analysis established 165 g/l of TSC and 200 rpm of S as optimal culture conditions to reach 85.03 g/l [95% CI (78.68, 91.39)] of mannitol and a yield of 82.02% [95% CI (71.98, 92.06)]. Finally, a validation experiment was conducted at the predicted optimum levels. The results obtained were 81.91 g/l of mannitol with a yield of 77.47% in outstanding agreement with the expected values. The mannitol 2-dehydrogenase enzyme activity was determined with 4.6-4.9 U/mg as the highest value found. To conclude, F. tropaeoli CRL 2034 produced high amounts of high-quality mannitol from fructose, being an excellent candidate for this polyol production.
甘露醇是一种天然的低热量糖醇,由某些(微)生物产生,因其血糖指数为零,可用于糖尿病患者的食品中。在本研究中,我们以中心复合设计(CCD)的响应面法作为优化策略,评估了水果源菌株罗勒果糖杆菌CRL 2034的甘露醇产量和产率。通过使用具有4个轴向点(α = 1.5)和中心点4次重复的2全因子CCD,评估了培养基中总糖(葡萄糖+果糖,1:2)含量(TSC)(75、100、150、200和225 g/l)和搅拌(S;50、100、200、300和350 rpm)对该菌株甘露醇产量和产率的影响,从而进行12次随机实验运行。在30°C和pH 5.0条件下进行24小时发酵。使用Minitab-15软件进行实验设计和数据分析。多响应预测分析确定165 g/l的TSC和200 rpm的S为最佳培养条件,以达到85.03 g/l [95%置信区间(78.68,91.39)]的甘露醇和82.02% [95%置信区间(71.98,92.06)]的产率。最后,在预测的最佳水平进行了验证实验。得到的结果是81.91 g/l的甘露醇,产率为77.47%,与预期值非常吻合。测定的甘露醇2-脱氢酶酶活性最高值为4.6-4.9 U/mg。总之,罗勒果糖杆菌CRL 2034能从果糖中大量生产高质量的甘露醇,是生产这种多元醇的优秀候选菌株。