生物燃料.生物燃料. 在酵母菌中设计酒精耐受性
Felix H Lam1, Adel Ghaderi2, Gerald R Fink3
1Department of Chemical Engineering, Massachusetts Institute of Technology (MIT), Cambridge, MA, USA. Whitehead Institute for Biomedical Research, Cambridge, MA, USA.
概括
加强酵母膜梯度可以提高乙醇耐受性和生物乙醇生产. 这涉及增加细胞外和pH值,改善酵母活力和工业条件下的发酵.
科学领域:
- 生物化学 生物化学
- 微生物学 微生物学
- 生物技术是生物技术.
背景情况:
- 在Saccharomyces cerevisiae中乙醇毒性阻碍了工业生物乙醇生产.
- 提高酵母对乙醇的耐受性对于高效的生物燃料合成至关重要.
研究的目的:
- 调查是否加强电化学膜梯度可以提高酵母酒精耐受性.
- 确定这种机制是否可以改善工业环境中的乙醇发酵.
主要方法:
- 操纵细胞外和pH水平以支持膜梯度.
- 在工业条件下评估各种酵母菌株的乙醇耐受性和发酵性能.
- 评估种群生存能力和每个细胞的产量.
主要成果:
- 提高细胞外和pH值显著增加了酵母对乙醇和其他酒精的耐受性.
- 增强的耐受性导致商业和实验室菌株的乙醇发酵得到改善,其中包括一个酶发酵菌株.
- 发酵的改善主要是由于增加了种群生存能力,而不是每个细胞的生产.
结论:
- 加强和质子电化学梯度是提高酵母酒精耐受性的关键机制.
- 这种物理化学方法,适合生物增强,提供了一个可行的策略,以促进生物乙醇生产.
- 准膜梯度稳定性可以克服工业发酵中乙醇毒性的限制.
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