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Production of pyruvate from mannitol by mannitol-assimilating pyruvate decarboxylase-negative Saccharomyces cerevisiae

机译:甘露醇同化丙酮酸脱羧酶阴性啤酒酵母由甘露醇生产丙酮酸

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摘要

Mannitol is contained in brown macroalgae up to 33% (w/w, dry weight), and thus is a promising carbon source for white biotechnology. However, Saccharomyces cerevisiae, a key cell factory, is generally regarded to be unable to assimilate mannitol for growth. We have recently succeeded in producing S. cerevisiae that can assimilate mannitol through spontaneous mutations of Tup1-Cyc8, each of which constitutes a general corepressor complex. In this study, we demonstrate production of pyruvate from mannitol using this mannitol-assimilating S. cerevisiae through deletions of all 3 pyruvate decarboxylase genes. The resultant mannitol-assimilating pyruvate decarboxylase-negative strain produced 0.86 g/L pyruvate without use of acetate after cultivation for 4 days, with an overall yield of 0.77 g of pyruvate per g of mannitol (the theoretical yield was 79%). Although acetate was not needed for growth of this strain in mannitol-containing medium, addition of acetate had a significant beneficial effect on production of pyruvate. This is the first report of production of a valuable compound (other than ethanol) from mannitol using S. cerevisiae, and is an initial platform from which the productivity of pyruvate from mannitol can be improved.
机译:甘露醇在褐色大型藻类中的含量高达33%(w / w,干重),因此是白色生物技术的有希望的碳源。然而,酿酒酵母是一种关键的细胞工厂,通常被认为无法吸收甘露醇来生长。我们最近成功地生产了酿酒酵母,该啤酒酵母可以通过Tup1-Cyc8的自发突变来吸收甘露醇,每个突变都构成了一个通用的presspressor复合物。在这项研究中,我们证明了使用甘露醇同化酿酒酵母通过删除所有3个丙酮酸脱羧酶基因,从甘露醇生产丙酮酸。培养4天后,所得甘露醇同化丙酮酸脱羧酶阴性菌株在不使用乙酸盐的情况下产生0.86 g / L丙酮酸,每克甘露醇总产量为0.77 g丙酮酸(理论收率为79%)。尽管该菌株在含甘露醇的培养基中生长不需要乙酸盐,但是添加乙酸盐对丙酮酸的产生具有显着的有益作用。这是首次使用酿酒酵母从甘露醇生产有价值的化合物(除乙醇以外的化合物)的报道,并且是可以提高甘露醇丙酮酸产率的最初平台。

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