Tanimura Ayumi, Kikukawa Minako, Yamaguchi Shino, Kishino Shigenobu, Ogawa Jun, Shima Jun
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Kitashirakawa Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.
Research Division of Microbial Sciences, Kyoto University, Kitashirakawa Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.
Sci Rep. 2015 Apr 22;5:9593. doi: 10.1038/srep09593.
Consolidated bioprocessing (CBP), which integrates enzyme production, saccharification and fermentation into a one-step process, is a promising strategy for cost-effective ethanol production from starchy biomass. To gain insights into starch-based ethanol production using CBP, an extensive screening was undertaken to identify naturally occurring yeasts that produce ethanol without the addition of any amylases. Three yeast strains were capable of producing a significant amount of ethanol. Quantitative assays revealed that Scheffersomyces shehatae JCM 18690 was the strain showing the highest ethanol production ability. This strain was able to utilize starch directly, and the ethanol concentration reached 9.21 g/L. We attribute the ethanol-producing ability of this strain to the high levels of glucoamylase activity, fermentation potential and ethanol stress tolerance. This study strongly suggests the possibility of starch-based ethanol production by consolidated bioprocessing using natural yeasts such as S. shehatae JCM 18690.
整合生物加工(CBP)将酶生产、糖化和发酵整合为一步工艺,是从淀粉质生物质中经济高效生产乙醇的一种有前景的策略。为深入了解使用CBP进行基于淀粉的乙醇生产,进行了广泛筛选以鉴定无需添加任何淀粉酶即可生产乙醇的天然酵母。三株酵母菌株能够产生大量乙醇。定量分析表明,嗜鞣管囊酵母JCM 18690是乙醇生产能力最高的菌株。该菌株能够直接利用淀粉,乙醇浓度达到9.21 g/L。我们将该菌株的乙醇生产能力归因于高水平的糖化酶活性、发酵潜力和乙醇胁迫耐受性。本研究有力地表明了使用嗜鞣管囊酵母JCM 18690等天然酵母通过整合生物加工进行基于淀粉的乙醇生产的可能性。