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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >alpha-amylase production from catabolite derepressed Bacillus subtilis KCC103 utilizing sugarcane bagasse hydrolysate
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alpha-amylase production from catabolite derepressed Bacillus subtilis KCC103 utilizing sugarcane bagasse hydrolysate

机译:利用甘蔗渣水解物从分解代谢物抑制的枯草芽孢杆菌KCC103生产α-淀粉酶

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A catabolite derepressed Bacillus subtilis strain KCC103 was used to produce a-amylase in medium containing sugarcane bagasse hydrolysate (SBH). Addition of SBH (1% reducing sugar (w/v)) to the nutrient medium supported maximum alpha-amylase production of 67.4 U ml(-1). HPLC analysis of SBH showed the presence of glucose, xylose and arabinose in the ratio of 0.9:1.0:0.16 (w/w/w). In SBH-medium glucose and xylose were consumed completely while arabinose remained unutilized. Uptake rate of glucose was 2-folds higher than xylose but rate of alpha-amylase production with xylose was 1.5-folds higher than glucose. Arabinose had no effect on growth and a-amylase synthesis. Further, alpha-amylase production in SBH-medium was enhanced to 144.5 U ml(-1) (2.2-fold) by response surface methodology where the levels of SBH, and other media components were varied. The modified medium consisted of (in g l(-1)) SBH: 24; peptone: 17.43; yeast extract: 1.32 and beef extract: 1.82. High level of SBH showed no significant inhibition of alpha-amylase synthesis. The derepressed strain KCC103 is useful to produce alpha-amylase economically in short time (30-36 h). (C) 2007 Elsevier Ltd. All rights reserved.
机译:使用分解代谢产物抑制的枯草芽孢杆菌菌株KCC103在含有甘蔗渣水解液(SBH)的培养基中产生α-淀粉酶。在营养培养基中添加SBH(1%还原糖(w / v))可支持67.4 U ml(-1)的最大α-淀粉酶产量。 SBH的HPLC分析表明,葡萄糖,木糖和阿拉伯糖的存在比例为0.9:1.0:0.16(w / w / w)。在SBH中,葡萄糖和木糖被完全消耗掉,而阿拉伯糖仍未使用。葡萄糖的吸收速率是木糖的2倍,但是木糖产生的α-淀粉酶的速率是葡萄糖的1.5倍。阿拉伯糖对生长和α-淀粉酶合成没有影响。此外,通过SBH和其他培养基成分水平变化的响应面方法,SBH-培养基中的α-淀粉酶产量提高到了144.5 U ml(-1)(2.2倍)。改良的培养基由(在g l(-1)中)SBH组成:24;蛋白ept:17.43;酵母提取物:1.32,牛肉提取物:1.82。高水平的SBH没有明显抑制α-淀粉酶的合成。解除抑制的菌株KCC103可用于在短时间内(30-36小时)经济地生产α-淀粉酶。 (C)2007 Elsevier Ltd.保留所有权利。

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