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布鲁塞尔德克酵母中乙酸代谢的初步研究:改善乙醇发酵的几个关键因素

First aspects on acetate metabolism in the yeast Dekkera bruxellensis: a few keys for improving ethanol fermentation.

作者信息

Teles Gilberto Henrique, da Silva Jackeline Maria, Mendonça Allyson Andrade, de Morais Junior Marcos Antonio, de Barros Pita Will

机构信息

Interdepartmental Research Group in Metabolic Engineering, Federal University of Pernambuco, Recife, PE, 50760-901, Brazil.

Department of Genetics, Federal University of Pernambuco, Recife, PE, 50760-901, Brazil.

出版信息

Yeast. 2018 Oct;35(10):577-584. doi: 10.1002/yea.3348. Epub 2018 Aug 29.

Abstract

Dekkera bruxellensis is continuously changing its status in fermentation processes, ranging from a contaminant or spoiling yeast to a microorganism with potential to produce metabolites of biotechnological interest. In spite of that, several major aspects of its physiology are still poorly understood. As an acetogenic yeast, minimal oxygen concentrations are able to drive glucose assimilation to oxidative metabolism, in order to produce biomass and acetate, with consequent low yield in ethanol. In the present study, we used disulfiram to inhibit acetaldehyde dehydrogenase activity to evaluate the influence of cytosolic acetate on cell metabolism. D. bruxellensis was more tolerant to disulfiram than Saccharomyces cerevisiae and the use of different carbon sources revealed that the former yeast might be able to export acetate (or acetyl-CoA) from mitochondria to cytoplasm. Fermentation assays showed that acetaldehyde dehydrogenase inhibition re-oriented yeast central metabolism to increase ethanol production and decrease biomass formation. However, glucose uptake was reduced, which ultimately represents economical loss to the fermentation process. This might be the major challenge for future metabolic engineering enterprises on this yeast.

摘要

布鲁塞尔德克酵母在发酵过程中的地位不断变化,从污染物或败坏酵母转变为具有生产具有生物技术意义的代谢物潜力的微生物。尽管如此,其生理学的几个主要方面仍知之甚少。作为一种产乙酸酵母,最低氧浓度能够驱动葡萄糖同化进入氧化代谢,以产生生物量和乙酸盐,从而导致乙醇产量较低。在本研究中,我们使用双硫仑抑制乙醛脱氢酶活性,以评估胞质乙酸盐对细胞代谢的影响。与酿酒酵母相比,布鲁塞尔德克酵母对双硫仑的耐受性更强,使用不同碳源表明,前一种酵母可能能够将乙酸盐(或乙酰辅酶A)从线粒体输出到细胞质中。发酵试验表明,乙醛脱氢酶抑制作用使酵母中心代谢重新定向,以增加乙醇产量并减少生物量形成。然而,葡萄糖摄取减少,这最终对发酵过程造成经济损失。这可能是未来对这种酵母进行代谢工程改造面临的主要挑战。

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