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培养基成分和生长条件对黑曲霉C-6产β-葡萄糖苷酶的影响

Effect of media composition and growth conditions on production of beta-glucosidase by Aspergillus niger C-6.

作者信息

García-Kirchner O, Segura-Granados M, Rodríguez-Pascual P

机构信息

Departamentos de Bioprocesos y Biologia de la Unidad Profesional Interdisciplinaria de Biotecnologia, Instituto Politecnico Nacional (UPIBI/IPN), Av. Acueducto s/n. Col. Barrio La Laguna, Ticoman, Mexico, 07340, D. F. Mexico.

出版信息

Appl Biochem Biotechnol. 2005 Spring;121-124:347-59.

Abstract

The hydrolytic activity of fungal originated beta-glucosidase is exploited in several biotechnological processes to increase the rate and extent of saccharification of several cellulosic materials by hydrolyzing the cellobiose which inhibits cellulases. In a previous presentation, we reported the screening and liquid fermentation with Aspergillus niger, strain C-6 for beta-glucosidase production at shake flask cultures in a basal culture medium with mineral salts, corn syrup liquor, and different waste lignocellulosic materials as the sole carbon source obtaining the maximum enzymatic activity after 5-6 d of 8.5 IU/mL using native sugar cane bagasse. In this work we describe the evaluation of fermentation conditions: growth temperature, medium composition, and pH, also the agitation and aeration effects for beta-glucosidase production under submerged culture using a culture media with corn syrup liquor (CSL) and native sugar cane bagasse pith as the sole carbon source in a laboratory fermenter. The maximum enzyme titer of 7.2 IU/mL was obtained within 3 d of fermentation. This indicates that beta-glucosidase productivity by Aspergillus niger C-6 is function of culture conditions, principally temperature, pH, culture medium conditions, and the oxygen supply given in the bioreactor. Results obtained suggest that this strain is a potential microorganism that can reach a major level of enzyme production and also for enzyme characterization.

摘要

真菌来源的β-葡萄糖苷酶的水解活性在多个生物技术过程中得到应用,通过水解抑制纤维素酶的纤维二糖来提高几种纤维素材料的糖化速率和程度。在之前的一次报告中,我们报道了在含有矿物盐、玉米糖浆液和不同废弃木质纤维素材料作为唯一碳源的基础培养基中,利用黑曲霉C-6菌株在摇瓶培养中进行β-葡萄糖苷酶生产的筛选和液体发酵,使用天然甘蔗渣在5-6天后获得了8.5 IU/mL的最大酶活性。在这项工作中,我们描述了发酵条件的评估:生长温度、培养基组成和pH值,以及在实验室发酵罐中使用含有玉米糖浆液(CSL)和天然甘蔗渣髓作为唯一碳源的培养基进行深层培养时,搅拌和通气对β-葡萄糖苷酶生产的影响。在发酵3天内获得了7.2 IU/mL的最大酶活力。这表明黑曲霉C-6产生β-葡萄糖苷酶的能力是培养条件的函数,主要是温度、pH值、培养基条件以及生物反应器中的氧气供应。所得结果表明,该菌株是一种潜在的微生物,能够达到更高水平的酶产量,也可用于酶的表征。

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