Kondo A, Shigechi H, Abe M, Uyama K, Matsumoto T, Takahashi S, Ueda M, Tanaka A, Kishimoto M, Fukuda H
Department of Chemical Science and Engineering, Faculty of Engineering, Kobe University, Nadaku, Japan.
Appl Microbiol Biotechnol. 2002 Mar;58(3):291-6. doi: 10.1007/s00253-001-0900-9. Epub 2002 Jan 12.
A Strain of host yeast YF207, which is a tryptophan auxotroph and shows strong flocculation ability, was obtained from SaccharomYces diastaticus ATCC60712 and S. cerevisiae W303-1B by tetrad analysis. The plasmid pGA11, which is a multicopy plasmid for cell-surface expression of the Rhyzopus oryzae glucoamylase/alpha-agglutinin fusion protein, was then introduced into this flocculent yeast strain (YF207/pGA11). Yeast YF207/pGA11 grew rapidly under aerobic condition (dissolved oxygen 2.0 ppm), using soluble starch. The harvested cells were used for batch fermentation of soluble starch to ethanol under anaerobic condition and showed high ethanol production rates (0.71 g h(-1) l(-1)) without a time lag, because glucoamylase was immobilized on the yeast cell surface. During repeated utilization of cells for fermentation, YF207/pGA11 maintained high ethanol production rates over 300 h. Moreover, in fed-batch fermentation with YF207/pGA11 for approximately 120 h, the ethanol concentration reached up to 50 g l(-1). In conclusion, flocculent yeast cells displaying cell-surface glucoamylase are considered to be very effective for the direct fermentation of soluble starch to ethanol.
通过四分体分析从糖化酵母ATCC60712和酿酒酵母W303 - 1B中获得了一株宿主酵母YF207,它是色氨酸营养缺陷型,具有很强的絮凝能力。然后将质粒pGA11导入该絮凝酵母菌株(YF207/pGA11),pGA11是一种用于米根霉葡糖淀粉酶/α - 凝集素融合蛋白细胞表面表达的多拷贝质粒。酵母YF207/pGA11在有氧条件下(溶解氧2.0 ppm)利用可溶性淀粉快速生长。收获的细胞用于在厌氧条件下将可溶性淀粉分批发酵生产乙醇,并且由于葡糖淀粉酶固定在酵母细胞表面,显示出高乙醇产率(0.71 g h(-1) l(-1))且无时间延迟。在细胞重复用于发酵的过程中,YF207/pGA11在300小时内保持高乙醇产率。此外,在使用YF207/pGA11进行约120小时的补料分批发酵中,乙醇浓度达到50 g l(-1)。总之,展示细胞表面葡糖淀粉酶的絮凝酵母细胞被认为对于将可溶性淀粉直接发酵为乙醇非常有效。