Department of Biochemistry and Biotechnology, Centre of Exact Science, Londrina State University, Highway Celso Garcia Cid-Pr 445 Km 380-University campus, Mailbox 10.011, Londrina, PR, 86057-970, Brazil.
Appl Biochem Biotechnol. 2018 Mar;184(3):838-851. doi: 10.1007/s12010-017-2587-0. Epub 2017 Sep 4.
Fructooligosaccharides and levan have a wide range of applications in the food industry due to their physiological and functional properties. The enzymatic synthesis of these molecules exhibits great advantages when compared with microbial fermentation. In this study, the production of levansucrase from Bacillus subtilis natto and its utilization in fructooligosaccharides and levan syntheses using different reaction conditions were described. The best condition for levansucrase production was 420.7 g L of sucrose at pH 7.0, which reached 23.9 U ml of transfructosylation activity. In a bioreactor, the highest production of fructooligosaccharides was 41.3 g L using a medium containing 350 g L sucrose at 35 °C for 36 h. The enzymatic synthesis of levan resulted in 86.9 g L when conditions similar to those used for fructooligosaccharides synthesis were applied. These results indicate that the levansucrase from B. subtilis natto could be applied for the co-production of fructooligosaccharides and levan, which are biomolecules that have health benefits and are used successfully in the food industry.
果寡糖和低聚异麦芽糖由于其生理和功能特性,在食品工业中有广泛的应用。与微生物发酵相比,这些分子的酶合成具有很大的优势。本研究描述了纳豆芽孢杆菌来源的蔗糖酶的生产及其在不同反应条件下用于果寡糖和低聚异麦芽糖合成的应用。蔗糖酶生产的最佳条件为 pH 7.0 时 420.7 g/L 的蔗糖,其转果糖基活性达到 23.9 U/ml。在生物反应器中,当 35°C 下使用含有 350 g/L 蔗糖的培养基培养 36 h 时,果寡糖的最高产量为 41.3 g/L。当采用与合成果寡糖相似的条件进行低聚异麦芽糖的酶合成时,其产量达到 86.9 g/L。这些结果表明,纳豆芽孢杆菌来源的蔗糖酶可用于同时生产具有健康益处并成功应用于食品工业的生物分子果寡糖和低聚异麦芽糖。