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Rapid development of xylanase assay conditions using Taguchi methodology

机译:使用Taguchi方法快速开发木聚糖酶测定条件

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摘要

The present investigation is mainly concerned with the rapid development of extracellular xylanase assay conditions by using Taguchi methodology. The extracellular xylanase was produced from Aspergillus niger (KP874W2.1), a new strain isolated from asoil sample of the Baramura forest, Tripura West, India. Four physical parameters including temperature, pH, buffer concentration and incubation time were considered as key factors for xylanase activity and were optimized using Taguchi robust design methodology for enhanced xylanase activity. The main effect, interaction effects and optimal levels of the process factors were determined using signal-to-noise (S/N) ratio. The Taguchi method recommends the use of S/N ratio to measure quality characteristics. Based on analysis of the S/N ratio, optimal levels of the process factors were determined. Analysis of variance (ANOVA) was performed to evaluate statistically significant process factors. ANOVA results showed that temperature contributed the maximumimpact (62.58%) on xylanase activity, followed by pH (22.69%), buffer concentration (9.55%) and incubation time (5.16%). Predicted results showed that enhanced xylanase activity (81.47%) can be achieved with pH 2, temperature 50°C, buffer concentration50 Mm and incubation time 10 min.
机译:本研究主要涉及通过使用Taguchi方法快速发展细胞外木聚糖酶测定条件。细胞外木聚糖酶是从黑曲霉(KP874W2.1)生产的,黑曲霉是一种新菌株,是从印度Tripura West的Baramura森林的土壤样品中分离出来的。包括温度,pH,缓冲液浓度和孵育时间在内的四个物理参数被认为是木聚糖酶活性的关键因素,并使用Taguchi健壮的设计方法对木聚糖酶活性进行了优化。使用信噪比(S / N)确定主要影响,相互作用影响和过程因子的最佳水平。 Taguchi方法建议使用信噪比来测量质量特征。基于信噪比的分析,确定了最佳工艺因素水平。进行方差分析(ANOVA)以评估统计上重要的过程因素。方差分析结果表明,温度对木聚糖酶活性的影响最大(62.58%),其次是pH(22.69%),缓冲液浓度(9.55%)和孵育时间(5.16%)。预测结果表明,在pH 2,温度50°C,缓冲液浓度50 Mm和温育时间10分钟的条件下,木聚糖酶活性可以提高(81.47%)。

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