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Production of endoxylanase with enhanced thermostability by a novel polyextremophilic Bacillus halodurans TSEV1 and its applicability in waste paper deinking

机译:新型嗜极端嗜热芽孢杆菌TSEV1生产具有增强的热稳定性的内切木聚糖酶及其在废纸脱墨中的应用

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The screening and selection of the culture variables followed by optimization using statistical approaches led to a 23-fold enhancement in thermo-alkali-stable xylanase production by the polyextremophilic Bacillus halodurans TSEV1. The optimization of crucial parameters involved in the extraction of xylanase from the bacterial bran led to a high enzyme recovery. The purified xylanase produced in submerged fermentation (SmF) and solid state fermentation (SSF) was visualized as a single band on SDS-PAGE with a molecular mass of 40 kDa. The SSF-xylanase is optimally active at 78 ℃ and pH 9.0 and stable in the pH range between 7.0 and 12.0 with a T(1/2) of 65 min at 90℃, which is higher than that of SmF-xylanase. The higher activation energy, enthalpy of deactivation (△H~*), free energy change of deactivation (△G~*) and T_(1/2) of SSF-xylanase than these of SmF xylanase further confirmed higher thermostability of the former than the latter. The combination of commercial cellulase and TSEV1 xylanase was highly effective in deinking of waste paper at alkaline pH and elevated temperatures.
机译:筛选和选择培养变量,然后使用统计方法进行优化,从而使嗜多芽嗜热芽孢杆菌TSEV1的热碱稳定木聚糖酶产量提高了23倍。从细菌麸皮提取木聚糖酶所涉及的关键参数的优化导致了高酶回收率。在SDS-PAGE上以40 kDa的分子量可视化为单条带,显示了在深层发酵(SmF)和固态发酵(SSF)中产生的纯化木聚糖酶。 SSF-木聚糖酶在78℃和pH 9.0时具有最佳活性,在7.0至12.0的pH范围内稳定,在90℃时的T(1/2)为65 min,高于SmF-木聚糖酶。 SSF-木聚糖酶的活化能,失活焓(△H〜*),失活自由能变化(△G〜*)和T_(1/2)均高于SmF木聚糖酶,进一步证实了前者的热稳定性高于SmF木聚糖酶。后者。商业纤维素酶和TSEV1木聚糖酶的组合在碱性pH和高温下对废纸脱墨非常有效。

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