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Bioethanol production by a flocculent hybrid, CHFY0321 obtained by protoplast fusion between Saccharomyces cerevisiae and Saccharomyces bayanus

机译:絮凝杂种CHFY0321的生物乙醇生产,通过酿酒酵母和巴氏酵母之间的原生质体融合获得

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摘要

Fusion hybrid yeast, CHFY0321, was obtained by protoplast fusion between non-flocculent-high ethanol fermentative Saccharomyces cereuisiae CHY1011 and flocculent-low ethanol fermentative Saccharomyces bayanus KCCM12633. The hybrid yeast was used together with the parental strains to examine ethanol production in batch fermentation. Under the conditions tested, the fusion hybrid CHFY0321 flocculated to the highest degree and had the capacity to ferment well at pH 4.5 and 32 ℃. Simultaneous saccharification and fermentation for ethanol production was carried out using a cassava (Manihot esculenta) powder hydrolysate medium containing 19.5% (w v~1) total sugar in a 51 lab scale jar fermenter at 32 ℃ for 65 h with an agitation speed of 2 Hz. Under these conditions, CHFY0321 showed the highest flocculating ability and the best fermentation efficiency for ethanol production compared with those of the wild-type parent strains. CHFY0321 gave a final ethanol concentration of 89.8 ± 0.13 gl~1, a volumetric ethanol productivity of 1.38 ± 0.13 gl~1 h~1, and a theoretical yield of 94.2 ± 1.58%. These results suggest that CHFY0321 exhibited the fermentation characteristics of S. cereuisiae CHY1011 and the flocculent ability of S. bayanus KCCM12633. Therefore, the strong highly flocculent ethanol fermentative CHFY0321 has potential for improving biotechnological ethanol fermentation processes.
机译:通过非絮凝性高乙醇发酵的酿酒酵母CHY1011和絮凝剂低乙醇发酵性巴杨酵母KCCM12633之间的原生质体融合获得融合杂交酵母CHFY0321。杂种酵母与亲本菌株一起用于检查分批发酵中乙醇的产生。在测试条件下,融合杂交CHFY0321絮凝程度最高,在pH 4.5和32℃下具有良好的发酵能力。使用木糖(Manihot esculenta)粉状水解产物培养基同时糖化和发酵以生产乙醇,该培养基中的总糖含量为19.5%(wv〜1),在51实验室规模的罐式发酵罐中于32℃搅拌65 h,搅拌速度为2 Hz 。在这些条件下,与野生型亲本菌株相比,CHFY0321表现出最高的絮凝能力和最佳的乙醇生产发酵效率。 CHFY0321的最终乙醇浓度为89.8±0.13 gl〜1,体积乙醇生产率为1.38±0.13 gl〜1 h〜1,理论产率为94.2±1.58%。这些结果表明,CHFY0321具有酿酒酵母CHY1011的发酵特性和巴彦链霉菌KCCM12633的絮凝能力。因此,强的高度絮凝的乙醇发酵CHFY0321具有改善生物技术乙醇发酵工艺的潜力。

著录项

  • 来源
    《Biomass & bioenergy》 |2010年第8期|P.1232-1242|共11页
  • 作者单位

    Changhae Institute of Cassava and Ethanol Research, Changhae Ethanol Co., LTD, Palbok-Dong 829, Dukjin-Gu, Jeonju 561-203, South Korea;

    rnDepartment of Microbiology, Chungbuk National University, 410 Sungbong-Ro, Heungduk-Gu, Cheongju 361-763, South Korea;

    rnChanghae Institute of Cassava and Ethanol Research, Changhae Ethanol Co., LTD, Palbok-Dong 829, Dukjin-Gu, Jeonju 561-203, South Korea;

    rnChanghae Institute of Cassava and Ethanol Research, Changhae Ethanol Co., LTD, Palbok-Dong 829, Dukjin-Gu, Jeonju 561-203, South Korea;

    rnDepartment of Microbiology, Chungbuk National University, 410 Sungbong-Ro, Heungduk-Gu, Cheongju 361-763, South Korea;

    rnDepartment of Microbiology, Chungbuk National University, 410 Sungbong-Ro, Heungduk-Gu, Cheongju 361-763, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ethanol production; saccharomyces hybrids; protoplast fusion; flocculation; cassava (manihot escuienta);

    机译:乙醇生产;酿酒酵母杂种;原生质体融合絮凝木薯(manihot escuienta);

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