利用农业废弃物深层发酵的响应面法对嗜热烟曲霉BT-4的果胶酶进行统计优化。

IF 3.5 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY BMC Biotechnology Pub Date : 2025-01-04 DOI:10.1186/s12896-024-00942-6
Imran Ali, Roheena Abdullah, Sana Saqib, Kinza Nisar, Afshan Kaleem, Mehwish Iqtedar, Irfana Iqbal, Xiaoming Chen
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引用次数: 0

摘要

背景:本研究分离了产果胶酶的嗜热菌株。根据菌株形态和18s rDNA分析,鉴定菌株4为烟曲霉BT-4。利用该菌株筛选各种发酵培养基以提高果胶酶的产量。果胶酶是具有重要工业应用的关键酶,特别是在食品和纺织工业中。确定高效的果胶酶生产者并优化其生产工艺对于改善工业应用至关重要。结果:在M5培养基中,1%葡萄柚皮的果胶酶产量最高。摇瓶动力学表明,72h培养后,比速率常数(qp)、比生长率(µ)、产物产率系数(Yp/x)、产物生成体积率(qp)和生物量生成(Qx)均达到最高值。此外,通过响应面法(RSM)优化发酵组分可使果胶酶产量提高50%,显示了因子和中心复合设计在微调参数方面的有效性。农业废弃物(葡萄柚皮)的使用大大降低了生产成本,提供了一种经济上可行的基质替代品。通过硫酸铵沉淀、凝胶过滤和离子交换层析纯化果胶酶,得到2.3倍的纯化。经测定,纯化酶分子量为48 kDa。酶动力学,使用Lineweaver-Burk图在不同果胶浓度下测定,显示Vmax为32.7 UmL- 1, Km为0.3 mg mL- 1。热力学参数包括活化能(Ea)、焓(ΔH)和熵(ΔS)分别为41.74、39.53和46.9 kJmol- 1。结论:本研究成功分离并鉴定了烟曲霉BT-4是一种强效的嗜热果胶酶产生菌。在M5培养基中添加1%葡萄柚皮,优化发酵工艺,显著提高了果胶酶的产量。将葡萄柚皮作为农业废弃物用于生产果胶酶,通过消除对昂贵原材料的需求和利用低成本、可持续和当地可获得的底物来降低成本。这种方法还可以最大限度地减少废物处理费用,使过程更加经济。该酶得到了有效的纯化,并对其动力学和热力学性质进行了全面表征,揭示了其工业应用潜力。生产动力学和优化策略的综合分析为扩大果胶酶生产提供了坚实的基础,有助于提高效率和成本效益的工业过程。
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Statistical optimization of pectinases from thermophilic Aspergillus fumigatus BT-4 employing response surface methodology through submerged fermentation using agricultural wastes.

Background: In this study, thermophilic pectinase-producing strains were isolated. Among all the isolates, strain No. 4 was identified as Aspergillus fumigatus BT-4 based on its morphology and 18 S rDNA analysis. This strain was employed to screen various fermentation media to enhance pectinase production. Pectinases are crucial enzymes with significant industrial applications, particularly in the food and textile industries. Identifying efficient pectinase producers and optimizing their production processes are essential for improving industrial applications.

Results: Maximum pectinase production was observed using 1% grapefruit peel in M5 media. Shake flask kinetics demonstrated the highest values of specific rate constant (qp), specific growth rate (µ), product yield coefficient (Yp/x), volumetric rate of product formation (Qp), and biomass formation (Qx) after 72 h of incubation. Furthermore, Optimization of fermentation components via Response Surface Methodology (RSM) improved pectinase production by 50%, showcasing the effectiveness of factorial and central composite designs in fine-tuning parameters. The use of agricultural waste (grapefruit peel) significantly reduced production costs, offering an economically viable substrate alternative. The pectinase enzyme was purified through ammonium sulfate precipitation, gel filtration, and ion-exchange chromatography, resulting in a 2.3-fold purification. The molecular weight of the purified enzyme was determined to be 48 kDa. Enzyme kinetics, determined using a Lineweaver-Burk plot at various pectin concentrations, showed a Vmax of 32.7 UmL- 1 and a Km of 0.3 mg mL- 1. Thermodynamic parameters, including activation energy (Ea), enthalpy (ΔH), and entropy (ΔS), were measured at 41.74 kJmol- 1, 39.53 kJmol- 1, and 46.9 kJmol- 1, respectively.

Conclusions: The study successfully isolated and identified Aspergillus fumigatus BT-4 as a potent thermophilic pectinase producer. Optimization of the fermentation process using 1% grapefruit peel in M5 media significantly enhanced pectinase production. Using grapefruit peel as an agricultural waste in pectinase production reduces costs by eliminating the need for expensive raw materials and utilizing a low-cost, sustainable, and locally available substrate. This approach also minimizes waste disposal expenses, making the process more economical. The enzyme was effectively purified, and its kinetic and thermodynamic properties were thoroughly characterized, revealing its potential for industrial applications. The comprehensive analysis of production kinetics and optimization strategies provides a robust foundation for scaling up pectinase production, contributing to more efficient and cost-effective industrial processes.

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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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