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利用马克斯克鲁维酵母IIPE453通过多次细胞循环进行木糖醇和乙醇发酵的木质纤维素糖管理

Lignocellulosic sugar management for xylitol and ethanol fermentation with multiple cell recycling by Kluyveromyces marxianus IIPE453.

作者信息

Dasgupta Diptarka, Ghosh Debashish, Bandhu Sheetal, Adhikari Dilip K

机构信息

Biotechnology Conversion Area, Bio Fuels Division, CSIR-Indian Institute of Petroleum, Mohkampur, Dehradun, Uttarakhand 248005, India; Academy of Scientific and Innovative research (AcSIR), India.

Biotechnology Conversion Area, Bio Fuels Division, CSIR-Indian Institute of Petroleum, Mohkampur, Dehradun, Uttarakhand 248005, India; Academy of Scientific and Innovative research (AcSIR), India.

出版信息

Microbiol Res. 2017 Jul;200:64-72. doi: 10.1016/j.micres.2017.04.002. Epub 2017 Apr 3.

Abstract

Optimum utilization of fermentable sugars from lignocellulosic biomass to deliver multiple products under biorefinery concept has been reported in this work. Alcohol fermentation has been carried out with multiple cell recycling of Kluyveromyces marxianus IIPE453. The yeast utilized xylose-rich fraction from acid and steam treated biomass for cell generation and xylitol production with an average yield of 0.315±0.01g/g while the entire glucose rich saccharified fraction had been fermented to ethanol with high productivity of 0.9±0.08g/L/h. A detailed insight into its genome illustrated the strain's complete set of genes associated with sugar transport and metabolism for high-temperature fermentation. A set flocculation proteins were identified that aided in high cell recovery in successive fermentation cycles to achieve alcohols with high productivity. We have brought biomass derived sugars, yeast cell biomass generation, and ethanol and xylitol fermentation in one platform and validated the overall material balance. 2kg sugarcane bagasse yielded 193.4g yeast cell, and with multiple times cell recycling generated 125.56g xylitol and 289.2g ethanol (366mL).

摘要

本研究报道了在生物炼制概念下,对木质纤维素生物质中的可发酵糖进行优化利用以生产多种产品的情况。利用马克斯克鲁维酵母IIPE453进行多次细胞循环的酒精发酵。该酵母利用酸处理和蒸汽处理生物质中富含木糖的部分进行细胞增殖和木糖醇生产,平均产量为0.315±0.01克/克,而整个富含葡萄糖的糖化部分则以0.9±0.08克/升/小时的高生产率发酵为乙醇。对其基因组的详细分析揭示了该菌株与高温发酵的糖运输和代谢相关的全套基因。鉴定出一组絮凝蛋白,有助于在连续发酵周期中实现高细胞回收率,从而实现高生产率的酒精生产。我们将生物质衍生糖、酵母细胞生物质增殖以及乙醇和木糖醇发酵整合到一个平台上,并验证了整体物料平衡。2千克甘蔗渣产生了193.4克酵母细胞,通过多次细胞循环产生了125.56克木糖醇和289.2克乙醇(366毫升)。

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