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Optimizing fermentation conditions for fructosyltransferase enzyme production by Lactobacillus plantarum

机译:优化植物乳杆菌生产果糖基转移酶的发酵条件

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Enzymatic production of fructooligosaccharides (FOS) from sucrose using β-D fructosyltransferase is commonly employed in commercial scale. FOS are low calorie sweetners with prebiotic property widely used as functional food material. In the present study, a strain of Lactobacillus plantarum (LABF 16) was found to produce bioactive oligosugars such as kestose and nystose exhibiting fructosyltransferase (FTase) enzyme activity. Further maximization of FTase production by the particular isolate was also attempted. The fermentation parameters viz., pH, temperature and sucrose concentration, which was found to influence the fructosyltransferase yield, were optimized by response surface methodology. The optimized conditions for the FTase production were pH 6.33, temperature of 32°C, sucrose concentration of 20.74 g/l, which resulted in an enzymatic activity of 129.62 U/ml/min.
机译:使用β-D果糖基转移酶从蔗糖中酶促生产低聚果糖(FOS)通常用于商业规模。 FOS是低卡路里的甜味剂,具有益生元特性,被广泛用作功能性食品原料。在本研究中,发现了一种植物乳杆菌(LABF 16)菌株可产生具有果糖基转移酶(FTase)酶活性的生物活性寡糖,如硬脂糖和菊糖。还试图通过特定分离物进一步最大化FTase产生。通过响应面法优化了发酵参数,即pH,温度和蔗糖浓度,这些参数影响了果糖基转移酶的产量。 FTase生产的最适条件为pH 6.33,温度32°C,蔗糖浓度为20.74 g / l,其酶活性为129.62 U / ml / min。

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