Yegin Sirma
a Department of Food Engineering , Ege University , Izmir , Turkey.
Prep Biochem Biotechnol. 2017 May 28;47(5):441-449. doi: 10.1080/10826068.2016.1224245. Epub 2016 Aug 18.
Statistical optimization of the factors affecting xylanase production by Aureobasidium pullulans NRRL Y-2311-1 on globe artichoke stem was performed for the first time. The optimization strategies used resulted in almost six-fold enhancement of xylanase production (66.48 U/ml). Biochemical and thermal characterization of the crude xylanase preparation was performed to elucidate its feasibility for different industrial applications. The optimum conditions for xylanase activity were pH 4.0 and 30-50°C. The enzyme was very stable over a wide pH range of 3.0-8.0. The thermal stability studies revealed an inactivation energy of 183 kJ/mol. Thermodynamic parameters (enthalpy, entropy, and Gibbs free energy) for thermal inactivation were also determined. Primary application of the crude xylanase preparation in saccharification of corn cob subjected to different pretreatment techniques has been evaluated. The crude xylanase preparation was very promising for saccharification of corn cob pretreated with aqueous ammonia. The maximum yield of reducing sugar was 357 mg/g dry substrate, which revealed that the crude xylanase from A. pullulans could be a very good alternative in saccharification of lignocellulosic biomass for biological fuel generation. This study also provides a basis for further exploitation of globe artichoke by-products in microbial production of several other industrially significant metabolites.
首次对影响出芽短梗霉NRRL Y - 2311 - 1在洋蓟茎上产木聚糖酶的因素进行了统计优化。所采用的优化策略使木聚糖酶产量提高了近六倍(66.48 U/ml)。对粗木聚糖酶制剂进行了生化和热学特性分析,以阐明其在不同工业应用中的可行性。木聚糖酶活性的最佳条件为pH 4.0和30 - 50°C。该酶在3.0 - 8.0的宽pH范围内非常稳定。热稳定性研究表明其失活能为183 kJ/mol。还测定了热失活的热力学参数(焓、熵和吉布斯自由能)。评估了粗木聚糖酶制剂在对经过不同预处理技术的玉米芯进行糖化中的初步应用。粗木聚糖酶制剂在氨水处理的玉米芯糖化方面很有前景。还原糖的最大产量为357 mg/g干底物,这表明来自出芽短梗霉的粗木聚糖酶在木质纤维素生物质糖化以生产生物燃料方面可能是一个很好的选择。本研究还为进一步利用洋蓟副产品微生物生产其他几种具有工业重要性的代谢物提供了基础。