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Potential of a Saccharomyces cerevisiae recombinant strain lacking ethanol and glycerol biosynthesis pathways in efficient anaerobic bioproduction

机译:缺乏乙醇和甘油生物合成途径的酿酒酵母重组菌株在高效厌氧生物生产中的潜力

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摘要

Saccharomyces cerevisiae shows high growth activity under low pH conditions and can be used for producing acidic chemicals such as organic acids as well as fuel ethanol. However, ethanol can also be a problematic by-product in the production of chemicals except for ethanol. We have reported that a stable low-ethanol production phenotype was achieved by disrupting 6 NADH-dependent alcohol dehydrogenase genes of S. cerevisiae. Moreover, the genes encoding the NADH-dependent glycerol biosynthesis enzymes were further disrupted because the ADH-disrupted recombinant strain showed high glycerol production to maintain intracellular redox balance. The recombinant strain incapable producing ethanol and glycerol could have the potential to be a host for producing metabolite(s) whose biosynthesis is coupled with NADH oxidation. Indeed, we successfully achieved almost 100% yield for L-lactate production using this recombinant strain as a host. In addition, the potential of our constructed recombinant strain for efficient bioproduction, particularly under anaerobic conditions, is also discussed.
机译:酿酒酵母在低pH条件下显示出高生长活性,可用于生产酸性化学品,如有机酸以及燃料乙醇。但是,除乙醇外,乙醇在化学药品生产中也可能是有问题的副产品。我们已经报道了通过破坏啤酒酵母的6种NADH依赖的醇脱氢酶基因可以实现稳定的低乙醇生产表型。而且,编码NADH依赖性甘油生物合成酶的基因被进一步破坏,因为破坏了ADH的重组菌株显示出高的甘油产量以维持细胞内氧化还原平衡。无法生产乙醇和甘油的重组菌株可能具有成为生产代谢产物的宿主的潜力,这些代谢产物的生物合成与NADH氧化相结合。实际上,使用该重组菌株作为宿主,我们成功地实现了L-乳酸生产的几乎100%的产率。此外,还讨论了我们构建的重组菌株在高效生物生产中的潜力,特别是在厌氧条件下。

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