首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Overexpression of Endogenous Xylose Reductase Enhanced Xylitol Productivity at 40 degrees C by Thermotolerant Yeast Kluyveromyces marxianus
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Overexpression of Endogenous Xylose Reductase Enhanced Xylitol Productivity at 40 degrees C by Thermotolerant Yeast Kluyveromyces marxianus

机译:内源性木糖还原酶的过度表达通过热调味酵母klu yveromyces Marxianus在40℃下增强木糖醇生产率

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摘要

Xylitol is a valuable substance utilized by food and biochemical industries. NAD(P)H-dependent xylose reductase (XR)-encoded by the yeast KmXYL1 gene-is the key enzyme which facilitates reduction of xylose to xylitol. Multi-copy integration of a mutant KmXYL1 (mKmXYL1) gene was carried out using thermotolerant yeast Kluyveromyces marxianus KCTC17555 Delta URA3, in order to enhance xylitol production. After multi-copy integration, the highest xylitol producing strain was isolated and named K. marxianus 17555-JBP2. This strain exhibited 440% higher xylitol production than the parental strain at 30 degrees C. Due to a multi-copy integration of the mKmXYL1 gene, various additional differences between K. marxianus 17555-JBP2 and the parental strain were observed, including a 66% increase in NAD(P)H-dependent XR activity at high temperature (45 degrees C). Quantitative real-time PCR and transcriptome analysis demonstrated that, relative to the parent strain, K. marxianus 17555-JBP2 exhibited two more copies of mKmXY1 genes and a 9.63-fold elevation in transcription of NAD(P)H-dependent XR. After optimization of bioreactor fermentation conditions (agitation speed), high-temperature (40 degrees C) xylitol productivity of K. marxianus 17555-JBP2 exhibited an 81% improvement relative to the parental strain. In this study, we demonstrated that the overexpression of endogenous XR could enhance xylitol productivity at 40 degrees C by thermotolerant K. marxianus.
机译:木糖醇是食品和生物化学行业使用的宝贵物质。 NAD(P)依赖于酵母kmxyl1基因的H-依赖性木糖还原酶(XR) - 是促进木糖还原到木糖醇的关键酶。使用热恒温酵母Kluyveromyces Marxianus kctc17555δ3进行突变体kcxyl1(mkmxyl1)基因的多拷贝整合,以增强木糖醇生产。多拷贝整合后,将最高的木糖醇产生菌株分离,并命名为K.Marxianus 17555-JBP2。该菌株在30摄氏度下表现出比亲本菌株高440%。由于MKmxyl1基因的多拷贝整合,观察到K.Marxianus 17555-JBP2和亲本菌株之间的各种额外差异,包括66%高温(45℃)下的NAD(P)H依赖性XR活性增加。定量实时PCR和转录组分析证明,相对于亲本菌株K.Marxianus 17555-JBP2表现出两种MKMxY1基因的副本和NAD(P)H依赖性XR的转录中的9.63倍的升高。在优化生物反应器发酵条件(搅拌速度)后,高温(40℃)的K.Marxianus 17555-JBP2相对于亲本菌株表现出81%的改善。在这项研究中,我们证明了内源性XR的过表达可以通过热透热剂K.Marxianus以40℃提高木糖醇生产率。

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