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糠醛和葡萄糖可增强大花假丝酵母TISTR 5663将木糖转化为木糖醇的能力。

Furfural and glucose can enhance conversion of xylose to xylitol by Candida magnoliae TISTR 5663.

作者信息

Wannawilai Siwaporn, Lee Wen-Chien, Chisti Yusuf, Sirisansaneeyakul Sarote

机构信息

Department of Biotechnology, Faculty of Agro-Industry, Kasetsart University, Bangkok 10900, Thailand; Center for Advanced Studies in Tropical Natural Resources (CASTNAR), National Research University-Kasetsart University (NRU-KU), Kasetsart University, Bangkok 10900, Thailand.

Department of Chemical Engineering, National Chung Cheng University, Minhsiung 621, Taiwan.

出版信息

J Biotechnol. 2017 Jan 10;241:147-157. doi: 10.1016/j.jbiotec.2016.11.022. Epub 2016 Nov 27.

DOI:10.1016/j.jbiotec.2016.11.022
PMID:27899337
Abstract

Xylitol production from xylose by the yeast Candida magnoliae TISTR 5663 was enhanced by supplementing the fermentation medium with furfural (300mg/L) and glucose (3g/L with an initial mass ratio of glucose to xylose of 1:10) together under oxygen limiting conditions. In the presence of furfural and glucose, the final concentration of xylitol was unaffected relative to control cultures but the xylitol yield on xylose increased by about 5%. Supplementation of the culture medium with glucose alone at an initial concentration of 3g/L, stimulated the volumetric and specific rates of xylose consumption and the rate of xylitol production from xylose. In a culture medium containing 30g/L xylose, 300mg/L furfural and 3g/L glucose, the volumetric production rate of xylitol was 1.04g/L h and the specific production rate was 0.169g/g h. In the absence of furfural and glucose, the volumetric production rate of xylitol was ∼35% lower and the specific production rate was nearly 30% lower. In view of these results, xylose-containing lignocellulosic hydrolysates contaminated with furfural can be effectively used for producing xylitol by fermentation so long as the glucose-to-xylose mass ratio in the hydrolysate does not exceed 1:10 and the furfural concentration is ≤300mg/L.

摘要

在限氧条件下,通过向发酵培养基中同时添加糠醛(300mg/L)和葡萄糖(3g/L,葡萄糖与木糖的初始质量比为1:10),可提高大花假丝酵母TISTR 5663从木糖生产木糖醇的产量。在糠醛和葡萄糖存在的情况下,木糖醇的最终浓度相对于对照培养物没有受到影响,但木糖上的木糖醇产率提高了约5%。仅以3g/L的初始浓度向培养基中添加葡萄糖,可刺激木糖消耗的体积速率和比速率以及木糖生产木糖醇的速率。在含有30g/L木糖、300mg/L糠醛和3g/L葡萄糖的培养基中,木糖醇的体积生产率为1.04g/L·h,比生产率为0.169g/g·h。在不存在糠醛和葡萄糖的情况下,木糖醇的体积生产率低约35%,比生产率低近30%。鉴于这些结果,只要水解产物中葡萄糖与木糖的质量比不超过1:10且糠醛浓度≤300mg/L,被糠醛污染的含木糖木质纤维素水解产物就可有效地用于通过发酵生产木糖醇。

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