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评估野生酵母用于生物乙醇生产的潜力。

Assessing the potential of wild yeasts for bioethanol production.

作者信息

Ruyters Stefan, Mukherjee Vaskar, Verstrepen Kevin J, Thevelein Johan M, Willems Kris A, Lievens Bart

机构信息

Laboratory for Process Microbial Ecology and Bioinspirational Management, Department of Microbial and Molecular Systems (M2S), Cluster for Bioengineering Technology (CBeT), KU Leuven, Campus De Nayer, Fortsesteenweg 30A, 2860, Sint-Katelijne-Waver, Belgium,

出版信息

J Ind Microbiol Biotechnol. 2015 Jan;42(1):39-48. doi: 10.1007/s10295-014-1544-y. Epub 2014 Nov 21.

Abstract

Bioethanol fermentations expose yeasts to a new, complex and challenging fermentation medium with specific inhibitors and sugar mixtures depending on the type of carbon source. It is, therefore, suggested that the natural diversity of yeasts should be further exploited in order to find yeasts with good ethanol yield in stressed fermentation media. In this study, we screened more than 50 yeast isolates of which we selected five isolates with promising features. The species Candida bombi, Wickerhamomyces anomalus and Torulaspora delbrueckii showed better osmo- and hydroxymethylfurfural tolerance than Saccharomyces cerevisiae. However, S. cerevisiae isolates had the highest ethanol yield in fermentation experiments mimicking high gravity fermentations (25 % glucose) and artificial lignocellulose hydrolysates (with a myriad of inhibitors). Interestingly, among two tested S. cerevisiae strains, a wild strain isolated from an oak tree performed better than Ethanol Red, a S. cerevisiae strain which is currently commonly used in industrial bioethanol fermentations. Additionally, a W. anomalus strain isolated from sugar beet thick juice was found to have a comparable ethanol yield, but needed longer fermentation time. Other non-Saccharomyces yeasts yielded lower ethanol amounts.

摘要

生物乙醇发酵使酵母暴露于一种新的、复杂且具有挑战性的发酵培养基中,该培养基含有特定的抑制剂和取决于碳源类型的糖混合物。因此,有人建议应进一步利用酵母的自然多样性,以便在压力发酵培养基中找到乙醇产量高的酵母。在本研究中,我们筛选了50多种酵母分离株,从中选择了5种具有良好特性的分离株。相较于酿酒酵母,熊蜂假丝酵母、异常威克汉姆酵母和德巴利酵母表现出更好的渗透压耐受性和对羟甲基糠醛的耐受性。然而,在模拟高浓度发酵(25%葡萄糖)和人工木质纤维素水解产物(含有多种抑制剂)的发酵实验中,酿酒酵母分离株的乙醇产量最高。有趣的是,在两种测试的酿酒酵母菌株中,从一棵橡树上分离出的野生菌株比乙醇红(一种目前常用于工业生物乙醇发酵的酿酒酵母菌株)表现更好。此外,从甜菜浓汁中分离出的一株异常威克汉姆酵母菌株的乙醇产量与之相当,但发酵时间更长。其他非酿酒酵母产生的乙醇量较低。

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