尼日尔曲霉以麦麸为潜在固体底物进行不含纤维素酶的内切木聚糖酶超合成的动力学。

IF 3.5 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Sikander Ali, Pakeeza Noor, Muhammad Usman Ahmad, Qaiser Farid Khan, Kaynat William, Iram Liaqat, Tawaf Ali Shah, Abdulaziz Abdullah Alsahli, Youssouf Ali Younous, Mohammed Bourhia
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引用次数: 0

摘要

本研究涉及黑曲霉 ISL-9 以麦麸为固体底物生产不含纤维素酶的内切酶。内切酶是在固态发酵条件下生产的。为提高酶的产量,对各种生长参数进行了优化。基质水平为 15 克是最佳选择,因为它为真菌提供了均衡的通气和营养。在调查的六种水分含量中,水分含量 5 (MC5) 得到了优化(克/升:麦芽提取物,10;(NH4)2HPO4,2.5;尿素,1.0),发现 10 毫升 MC5 能产生最高的内聚氧乙烯醚酶。pH 值和培养时间分别优化为 6.2 和 48 小时。接种量为 2 mL(1.4 × 106 个孢子/mL)时,酶产量最高。在对这些生长参数进行优化后,内切酶活性明显提高,达到 21.87 U/g 。观察到的羧甲基纤维素酶(CMCase)活性微乎其微,表明产生的是不含纤维素酶的内切酶。值得注意的是,在优化条件下,内切酶活性提高了 1.4 倍(p ≤ 0.05)。此外,还研究了在固态发酵(SSF)条件下提高黑曲霉 ISL-9 生产内含木糖酶的动力学参数的总体比较。在 48、72 和 96 小时培养时间内观察了 MC1 和 MC5 的不同动力学变量,包括特定生长速率、产物产量系数、体积速率和特定速率。在动力学参数中,产物形成的体积速率常数(Qp)的结果最为显著,72 小时培养期的 Qp 为最佳值(1.89 U/h),48 小时培养期的 Qp 值也很高,为 1.68 U/h。因此,该研究展示了一种具有成本效益和环境可持续性的木聚糖酶生产工艺,并展示了成功的工业应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetics of cellulase-free endo xylanase hyper-synthesis by Aspergillus Niger using wheat bran as a potential solid substrate.

The present study deals with the production of cellulase-free endoxylanase by Aspergillus niger ISL-9 using wheat bran as a solid substrate. Endoxylanase was produced under a solid-state fermentation. Various growth parameters were optimized for the improved production of the enzyme. The Substrate level of 15 g was optimized as it provided the fungus with balanced aeration and nutrition. Among the six moisture contents investigated, Moisture Content 5 (MC5) was optimized (g/l: malt extract, 10; (NH4)2HPO4, 2.5; urea, 1.0) and 10 mL of MC5 was found to give the highest production of endoxylanase. The pH and time of incubation were optimized to 6.2 and 48 h respectively. The Inoculum size of 2 mL (1.4 × 106 spores/mL) gave the maximum enzyme production. After optimization of these growth parameters, a significantly high endoxylanase activity of 21.87 U/g was achieved. Very negligible Carboxymethylcellulase (CMCase) activity was observed indicating the production of cellulase-free endoxylanase. The notable finding is that the endoxylanase activity was increased by 1.4-fold under optimized conditions (p ≤ 0.05). The overall comparison of kinetic parameters for enhanced production of endoxylanase by A. niger ISL-9 under Solid State Fermentation (SSF) was also studied. Different kinetic variables which included specific growth rate, product yield coefficients, volumetric rates and specific rates were observed at 48, 72 and 96 h incubation time and were compared for MC1 and MC5. Among the kinetic parameters, the most significant result was obtained with volumetric rate constant for product formation (Qp) that was found to be optimum (1.89 U/h) at 72 h incubation period and a high value of Qp i.e.1.68 U/h was also observed at 48 h incubation period. Thus, the study demonstrates a cost-effective and environmentally sustainable process for xylanase production and exhibits scope towards successful industrial applications.

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来源期刊
BMC Biotechnology
BMC Biotechnology 工程技术-生物工程与应用微生物
CiteScore
6.60
自引率
0.00%
发文量
34
审稿时长
2 months
期刊介绍: BMC Biotechnology is an open access, peer-reviewed journal that considers articles on the manipulation of biological macromolecules or organisms for use in experimental procedures, cellular and tissue engineering or in the pharmaceutical, agricultural biotechnology and allied industries.
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