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首页> 外文期刊>Journal of Microbiological Methods >Statistical optimization of process parameters for inulinase production from Tithonia weed by Arthrobacter mysorens strain no.1
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Statistical optimization of process parameters for inulinase production from Tithonia weed by Arthrobacter mysorens strain no.1

机译:肌腱菌染发酵母菌菌菌株的菊粉酶生产工艺参数统计优化No.1

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摘要

Tithonia rotundifolia is an easily available and abundant inulin rich weed reported to be competitive and allelopathic. This weed inulin is hydrolyzed by inulinase into fructose. Response surface methodology was employed to optimize culture conditions for the inulinase production from Arthrobacter mysorens strain no.1 isolated from rhizospheric area of Tithonia weed. Initially, Plackett-Burman design was used for screening 11 nutritional parameters for inulinase production including inulin containing weeds as cost effective substrate. The experiment shows that amongst the 11 parameters studied, K2HPO4, Inulin, Agave sisalana extract and Tithonia rotundifolia were the most significant variables for inulinase production. Quantitative effects of these 4 factors were further investigated using Box Behnken design. The medium having 0.27% K2HPO4, 2.54% Inulin, 6.57% Agave sisalana extract and 7.27% Tithonia rotundifolia extract were found to be optimum for maximum inulinase production. The optimization strategies used showed 2.12 fold increase in inulinase yield (1669.45 EU/ml) compared to non-optimized medium (787 EU/ml). Fructose produced by the action of inulinase was further confirmed by spectrophotometer, osazone, HPTLC and FTIR methods. Thus Tithonia rotundifolia can be used as an eco-friendly, economically feasible and promising alternative substrate for commercial inulinase production yielding fructose from Arthrobacter mysorens strain no.1.
机译:Tithonia Rotundifolia是一种易用的,丰富的菊粉富含杂草,据报道竞争和异教徒。这种杂草菊粉通过硫酸氨基酶水解成果糖。采用响应面方法,优化从杂草脱发区域中分离的关节杆菌菌株No.1的含氨基酶生产的培养条件。最初,Plackett-Burman设计用于筛选氨基蛋白酶生产的11个营养参数,包括含有肽作为成本有效基质的菊粉。该实验表明,在研究的11个参数中,K2HPO4,菊粉,龙舌兰Sisalana提取物和Tithonia Rotundifolia是氨基硫酶生产的最显着变量。使用Box Behnken设计进一步调查了这4个因素的定量效果。发现具有0.27%K 2 HPO 4,2.54%菊粉的介质,6.57%龙舌兰Sisalana提取物和7.27%的Tithonia圆形玉米提取物是最大的最大氨基硫酶生产的最佳选择。与未优化培养基(787 EU / mL)相比,所用优化策略显示菊粉酶产率(1669.45 EU / mL)增加2.12倍。通过分光光度计,奥沙西酮,HPTLC和FTIR方法进一步证实通过菊粉酶的作用产生的果糖。因此,Tithonia圆润可用作生态友好,经济上可行和有前途和有前途的替代衬底,用于商业氨基蛋白酶产量,其来自Arthrobacter Mysorens菌株No.1的果糖。

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