Bioconversion of mustard oil cake for production of lipase, optimization and direct immobilization from solid-state fermentation extract.

IF 1.9 4区 生物学 Q3 BIOCHEMICAL RESEARCH METHODS Preparative Biochemistry & Biotechnology Pub Date : 2025-01-01 Epub Date: 2025-01-28 DOI:10.1080/10826068.2025.2453729
Bhim Singh, Asim Kumar Jana, Mithu Maiti Jana
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Abstract

Fungal lipases are the leading industrial biocatalyst due to their broad applications, but high cost limits their commercial usage. The low-cost agri-residues substrates can reduce the cost of lipase production. However, the compatibility of agri-residue with fungal species, recovery process of lipase and stability of the enzyme are crucial steps. The aim of the present work was optimization of lipase production from a suitable combination of fungal culture with a locally available vegetable oilseed cake (mustard/groundnut/almond/cottonseed) in solid-state fermentation process and its direct immobilization. The enzyme produced using selected combination of Rhizopus oryzae and mustard oilseed cake was optimized by Plackett-Burman design, one-factor-at-a-time and central composite design (CCD). The highest enzyme activity of 25.08 U/gds was obtained by CCD at urea 2.11% w/w, inoculum size 1.18% v/w, and moisture content 69.99% w/w. The crude enzyme from the extract was immobilized on functionalized magnetic nanoparticles with the results of protein loading 68.88 ± 3.54 µg/mg of MNPs and activity recovery of 60.33 ± 3.03%. This study can be helpful to explore the suitability of locally available agri-residue for production of lipase and utilization of enzyme in different industrial applications.

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芥子油饼生物转化生产脂肪酶、优化和直接固定固态发酵提取物。
真菌脂肪酶因其广泛的应用而成为工业生物催化剂的主导,但高昂的成本限制了其商业应用。低成本的农业残留物底物可以降低脂肪酶的生产成本。然而,农用秸秆与真菌的相容性、脂肪酶的恢复过程和酶的稳定性是至关重要的步骤。本研究的目的是优化真菌培养与当地蔬菜油籽饼(芥菜/花生/杏仁/棉籽)在固态发酵过程中生产脂肪酶的合适组合及其直接固定化。采用Plackett-Burman设计、单因素单次设计和中心复合设计(CCD)对米根霉与芥菜油籽饼组合产酶进行优化。在尿素2.11% w/w、接种量1.18% v/w、水分含量69.99% w/w条件下,CCD酶活最高,为25.08 U/gds。将提取的粗酶固定在功能化磁性纳米颗粒上,MNPs的蛋白载量为68.88±3.54µg/mg,活性回收率为60.33±3.03%。该研究有助于探索当地可利用的农业秸秆生产脂肪酶的适宜性,以及脂肪酶在不同工业应用中的利用。
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来源期刊
Preparative Biochemistry & Biotechnology
Preparative Biochemistry & Biotechnology 工程技术-生化研究方法
CiteScore
4.90
自引率
3.40%
发文量
98
审稿时长
2 months
期刊介绍: Preparative Biochemistry & Biotechnology is an international forum for rapid dissemination of high quality research results dealing with all aspects of preparative techniques in biochemistry, biotechnology and other life science disciplines.
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