Production and action pattern of inulinase from Aspergillus Niger-245: hydrolysis of inulin from several sources

V. Cruz, J. Belote, Márcia Zilioli Belline, R. Cruz
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引用次数: 48

Abstract

A strain of Aspergillus niger isolated from soil samples showed great capacity to produce extracellular inulinase. Although the enzyme has been synthesized in presence of monosaccharides, sucrose and sugar cane molasse, the productivity was significantly higher (p<0.05) when the microorganism was inoculated in media formulated with dahlia extract and pure inulin, as carbon sources. With regard to the nitrogen source, the best results were obtained with casein and other sources of proteic nitrogen, comparatively to the mineral nitrogen. However, statistic significance (p<0.01) only was found between the productivity obtained in the medium prepared with casein and ammonium sulphate. The optimum pH of the purified enzyme for inulin hydrolysis was found between 4.0 and 4.5 and the optimun temperature at 60oC. When treated by 30 minutes in this temperature no loss of activity was observed. The enzyme showed capacity to hydrolyse sucrose, raffinose and inulin from which it liberated only fructose units showing, therefore, an exo-action mechanism. Acting on inulins from several sources, the enzyme showed larger hydrolysis speed on the polissaccharide from chicory (Cichorium intibus), comparatively, to the inulins from dahlia (Dahlia pinnata) and Jerusalem artichoke (Helianthus tuberosus) roots.
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黑曲霉-245菊粉酶的生产和作用模式:几种来源菊粉的水解
从土壤样品中分离出的一株黑曲霉具有很强的胞外菊粉酶生产能力。虽然该酶在单糖、蔗糖和甘蔗糖蜜的存在下合成,但在以大丽花提取物和纯菊粉为碳源的培养基中接种时,其产率显著提高(p<0.05)。在氮源方面,酪蛋白和其他蛋白质氮源的效果最好,而矿物氮源的效果最好。而酪蛋白培养基与硫酸铵培养基的产率差异有统计学意义(p<0.01)。所得酶解菊粉的最佳pH值为4.0 ~ 4.5,最佳温度为60℃。在此温度下处理30分钟后,未观察到活性丧失。该酶显示出水解蔗糖、棉子糖和菊糖的能力,从中它只释放果糖单位,因此显示出一种外显作用机制。该酶对多种来源的菊粉均有较好的水解作用,对菊苣多糖的水解速度较快,对大丽花和菊芋根菊粉的水解速度较慢。
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