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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Nitrate boosts anaerobic ethanol production in an acetate-dependent manner in the yeast Dekkera bruxellensis
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Nitrate boosts anaerobic ethanol production in an acetate-dependent manner in the yeast Dekkera bruxellensis

机译:硝酸盐在酵母Dekkera Bruxellensis中以醋酸依赖性方式提高厌氧乙醇生产

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摘要

In the past few years, the yeast Dekkera bruxellensis has gained much of attention among the so-called non-conventional yeasts for its potential in the biotechnological scenario, especially in fermentative processes. This yeast has been regarded as an important competitor to Saccharomyces cerevisiae in bioethanol production plants in Brazil and several studies have reported its capacity to produce ethanol. However, our current knowledge concerning D. bruxellensis is restricted to its aerobic metabolism, most likely because wine and beer strains cannot grow in full anaerobiosis. Hence, the present work aimed to fulfil a gap regarding the lack of information on the physiology of Dekkera bruxellensis growing in the complete absence of oxygen and the relationship with assimilation of nitrate as nitrogen source. The ethanol strain GDB 248 was fully capable of growing anaerobically and produces ethanol at the same level of S. cerevisiae. The presence of nitrate in the medium increased this capacity. Moreover, nitrate is consumed faster than ammonium and this increased rate coincided with a higher speed of glucose consumption. The profile of gene expression helped us to figure out that even in anaerobiosis, the presence of nitrate drives the yeast cells to an oxidative metabolism that ultimately incremented both biomass and ethanol production. These results finally provide the clues to explain most of the success of this yeast in industrial processes of ethanol production.
机译:在过去的几年里,酵母Dekkera Bruxellensis在所谓的非常规酵母中获得了大部分注意力,以其在生物技术场景中的潜力,特别是在发酵过程中。该酵母被认为是巴西生物乙醇生产植物中酿酒酵母的重要竞争者,几项研究报告了其生产乙醇的能力。然而,我们目前关于D.Bruxellensis的知识仅限于其有氧代谢,最有可能因为葡萄酒和啤酒菌株不能在全厌氧中生长。因此,目前的作品旨在满足缺乏关于缺乏氧气生长的信息的差距,以及与硝酸盐的同化氮素作为氮源的关系。乙醇菌株GDB 248完全能够在同一水平的S.酿酒酵母中产生厌氧并产生乙醇。培养基中存在硝酸盐的存在增加了这种能力。此外,硝酸盐比铵耗材快,并且这种增加的速率与较高的葡萄糖消耗速度一致。基因表达的谱有助于我们弄清楚即使在厌氧症中,硝酸盐的存在将酵母细胞驱动到最终递增生物质和乙醇生产的氧化代谢。这些结果最终提供了解释该酵母在乙醇生产工业过程中这种酵母的大部分成功的线索。

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