首页> 美国卫生研究院文献>Frontiers in Bioengineering and Biotechnology >Isolation and Characterization of the Stress-Tolerant Candida tropicalis YHJ1 and Evaluation of Its Xylose Reductase for Xylitol Production From Acid Pre-treatment Wastewater
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Isolation and Characterization of the Stress-Tolerant Candida tropicalis YHJ1 and Evaluation of Its Xylose Reductase for Xylitol Production From Acid Pre-treatment Wastewater

机译:酸预处理废水中耐逆性热带假丝酵母YHJ1的分离鉴定及其木糖还原酶的评价

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摘要

A stress-tolerant yeast was isolated from honey using acid hydrolysate generated from sequential acid-/alkali-pretreatment of empty palm fruit bunch fiber (EPFBF). The isolated yeast was identified molecularly, taxonomically, and morphologically as Candida tropicalis YHJ1, and analyzed for application in xylitol production. The isolated yeast showed stress tolerance toward various chemical reagents and could grow with up to 600 g/L xylose in the culture medium. This yeast also had a broad carbohydrate utilization spectrum, and its xylitol yield was greatest in medium supplemented with xylose as the sole carbon source. In batch fermentation for xylitol production, the yeast could convert xylose prepared from acidic EPFBF pretreatment wastewater into xylitol. Interestingly, C. tropicalis YHJ1 xylose reductase, containing a Ser279 residue, exhibited more effective xylitol conversion compared to orthologous Candida enzymes containing Leu279 or Asn279; this improvement was associated with NADPH binding, as predicted through homologous structure modeling and enzyme kinetic analysis. Taken together, these results show a novel stress-tolerant yeast strain that may be applicable to xylitol production from toxic lignocellulosic byproducts.
机译:使用对空棕榈果束纤维(EPFBF)进行顺序酸/碱预处理产生的酸水解物,从蜂蜜中分离出耐胁迫的酵母。分离的酵母在分子学,分类学和形态学上被鉴定为热带念珠菌YHJ1,并分析了其在木糖醇生产中的应用。分离出的酵母对各种化学试剂表现出抗逆性,并且可以在培养基中以高达600 g / L的木糖生长。该酵母还具有广泛的碳水化合物利用光谱,并且在补充有木糖作为唯一碳源的培养基中,其木糖醇产量最高。在分批发酵生产木糖醇的过程中,酵母可以将酸性EPFBF预处理废水制得的木糖转化为木糖醇。有趣的是,与含有Leu279或Asn279的直系同源念珠菌酶相比,含有Ser279残基的热带假丝酵母YHJ1木糖还原酶表现出更有效的木糖醇转化能力。如同源结构建模和酶动力学分析所预测,这种改善与NADPH结合有关。综上所述,这些结果显示了一种新颖的耐压力酵母菌株,其可适用于由有毒木质纤维素副产物生产木糖醇。

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