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嗜盐曲霉在液体深层发酵条件下组成型生产胞外葡萄糖异构酶。

Constitutive production of extracellular glucose isomerase by an osmophillic Aspergillus sp. under submerged conditions.

机构信息

PG Department of Microbiology, PSGVP Mandal's, S I Patil Arts, G B Patel Science and STSKVS Commerce College, Shahada, 425409 India.

出版信息

J Food Sci Technol. 2010 Oct;47(5):496-500. doi: 10.1007/s13197-010-0084-3. Epub 2010 Oct 19.

Abstract

We report constitutive production of glucose isomerase (GI) under submerged growth of Aspergillus sp. in glucose phosphate broth (GPB). The fungus produced significant quantities of extracellular GI in GPB without supplementing the inducer (xylose). The maximum biomass (872 mg) and highest level of GI (1126 U) were obtained in 42 h at 30 °C and 120 rpm. Equal level of biomass and enzyme were produced in GPB with glucose and xylose, but the amount of biomass and enzyme was drastically reduced when the fungus was grown on other carbon sources. Optimum biomass, enzyme units and enzyme activity were obtained with 40 and 1 g/l of glucose, respectively. Growth of Aspergillus sp. and enzyme synthesis even at high glucose concentration (60 g/l) indicated the osmophillic nature of the fungus. Increasing the glucose concentration above 1 and 40 g/l did not support the growth and enzyme activity. Among various organic and inorganic nitrogen sources used, yeast extract, peptone and NH4SO4 gave the best biomass and enzyme yields. Addition of Mg(2+) and Mn(2+) in GPB significantly enhanced the enzyme production. Under optimized conditions in modified GPB, the yield of biomass and synthesis and activity of GI were significantly enhanced.

摘要

我们报告了在葡萄糖磷酸盐肉汤(GPB)中,在葡萄糖条件下,曲霉属(Aspergillus sp.)的异淀粉酶(GI)持续生产。在没有添加诱导剂(木糖)的情况下,真菌在 GPB 中产生了大量的细胞外 GI。在 30°C 和 120rpm 下,42 小时内获得了最大生物量(872mg)和最高水平的 GI(1126U)。在 GPB 中,葡萄糖和木糖都可以产生等量的生物量和酶,但当真菌在其他碳源上生长时,生物量和酶的量会大幅减少。最佳生物量、酶单位和酶活性分别在 40 和 1g/L 的葡萄糖下获得。即使在高葡萄糖浓度(60g/L)下,曲霉属(Aspergillus sp.)的生长和酶合成表明真菌具有嗜渗性。将葡萄糖浓度提高到 1 和 40g/L 以上,既不支持生长,也不支持酶活性。在使用的各种有机和无机氮源中,酵母提取物、蛋白胨和(NH4)2SO4 给出了最佳的生物量和酶产量。在 GPB 中添加 Mg2+和 Mn2+可显著提高酶产量。在改良的 GPB 中优化条件下,生物量、GI 的合成和活性的产率显著提高。

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