Suppr超能文献

黑曲霉 A42 生产菊粉酶的碳源评价及其特性研究。

Evaluation of carbon sources for the production of inulinase by Aspergillus niger A42 and its characterization.

机构信息

Department of Food Engineering, Akdeniz University, 07058, Antalya, Turkey.

出版信息

Bioprocess Biosyst Eng. 2019 Dec;42(12):1993-2005. doi: 10.1007/s00449-019-02192-9. Epub 2019 Aug 15.

Abstract

Inulinases are used for the production of high-fructose syrup and fructooligosaccharides, and are widely utilized in food and pharmaceutical industries. In this study, different carbon sources were screened for inulinase production by Aspergillus niger in shake flask fermentation. Optimum working conditions of the enzyme were determined. Additionally, some properties of produced enzyme were determined [activation (E)/inactivation (E) energies, Q value, inactivation rate constant (k), half-life (t), D value, Z value, enthalpy (ΔH), free energy (ΔG), and entropy (ΔS)]. Results showed that sugar beet molasses (SBM) was the best in the production of inulinase, which gave 383.73 U/mL activity at 30 °C, 200 rpm and initial pH 5.0 for 10 days with 2% (v/v) of the prepared spore solution. Optimum working conditions were 4.8 pH, 60 °C, and 10 min, which yielded 604.23 U/mL, 1.09 inulinase/sucrase ratio, and 2924.39 U/mg. Additionally, E and E of inulinase reaction were 37.30 and 112.86 kJ/mol, respectively. Beyond 60 °C, Q values of inulinase dropped below one. At 70 and 80 °C, t of inulinase was 33.6 and 7.2 min; therefore, inulinase is unstable at high temperatures, respectively. Additionally, t, D, ΔH, ΔG values of inulinase decreased with the increase in temperature. Z values of inulinase were 7.21 °C. Negative values of ΔS showed that enzymes underwent a significant process of aggregation during denaturation. Consequently, SBM is a promising carbon source for inulinase production by A. niger. Also, this is the first report on the determination of some properties of A. niger A42 (ATCC 204,447) inulinase.

摘要

菊粉酶被用于生产高果糖浆和果寡糖,广泛应用于食品和制药工业。在这项研究中,通过摇瓶发酵筛选了黑曲霉产生菊粉酶的不同碳源。确定了酶的最佳工作条件。此外,还测定了所产生酶的一些性质[激活(E)/失活(E)能、Q 值、失活速率常数(k)、半衰期(t)、D 值、Z 值、焓(ΔH)、自由能(ΔG)和熵(ΔS)]。结果表明,糖蜜是生产菊粉酶的最佳碳源,在 30°C、200rpm 和初始 pH5.0 下,用 2%(v/v)制备的孢子溶液发酵 10 天,可获得 383.73 U/mL 的酶活。最佳工作条件为 pH4.8、60°C 和 10min,可获得 604.23 U/mL 的酶活、1.09 的菊粉酶/蔗糖比和 2924.39 U/mg。此外,菊粉酶反应的 E 和 E 分别为 37.30 和 112.86 kJ/mol。超过 60°C 后,菊粉酶的 Q 值降至 1 以下。在 70 和 80°C 下,菊粉酶的 t 分别为 33.6 和 7.2 min;因此,菊粉酶在高温下不稳定。此外,菊粉酶的 t、D、ΔH、ΔG 值随温度的升高而降低。菊粉酶的 Z 值为 7.21°C。ΔS 的负值表明,酶在变性过程中经历了显著的聚集过程。因此,糖蜜是黑曲霉生产菊粉酶的有前途的碳源。此外,这是首次报道黑曲霉 A42(ATCC 204,447)菊粉酶的一些性质。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验