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Galactose utilization sheds new light on sugar metabolism in the sequenced strain Dekkera bruxellensis CBS 2499

机译:半乳糖利用在测序的菌株Dekkera Bruxellensis CBS 2499中脱糖糖代谢的新光

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摘要

Dekkera bruxellensis and Saccharomyces cerevisiae are considered two phylogenetically distant relatives, but they share several industrial relevant traits such as the ability to produce ethanol under aerobic conditions (Crabtree effect), high tolerance towards ethanol and acids, and ability to grow without oxygen. Beside a huge adaptability, D. bruxellensis exhibits a broader spectrum in utilization of carbon and nitrogen sources in comparison to S. cerevisiae. With the aim to better characterize its carbon source metabolism and regulation, the usage of galactose and the role that glucose plays on sugar metabolism were investigated in D. bruxellensis CBS 2499. The results indicate that in this yeast galactose is a non-fermentable carbon source, in contrast to S. cerevisiae that can ferment it. In particular, its metabolism is affected by the nitrogen source. Interestingly, D. bruxellensis CBS 2499 exhibits the 'short-term Crabtree effect', and the expression of genes involved in galactose utilization and in respiratory metabolism is repressed by glucose, similarly to what occurs in S. cerevisiae.
机译:Dekkera Bruxellensis和Saccharomyces Cerevisiae被认为是两个系统到遥远的亲属,但它们分享了几种工业相关性状,例如在有氧条件下生产乙醇的能力(Crabtree效应),对乙醇和酸的高耐受性,以及没有氧气生长的能力。除了巨大的适应性之外,D.Bruxellensis与S.酿酒岛相比,Bruxellensis在利用碳和氮源的利用率上表现出更广泛的光谱。旨在更好地表征其碳源新陈代谢和调节,在D.Bruxellensis CBS 2499中研究了半乳糖的使用和葡萄糖在糖代谢上的作用。结果表明,在该酵母半乳糖中是一种不发酵的碳源与可以发酵它的酿酒岛对比。特别是,其新陈代谢受氮源的影响。有趣的是,Bruxellensis CBS 2499表现出“短期Crabtree效应”,并且通过葡萄糖抑制了参与半乳糖利用和呼吸代谢的基因的表达,类似于S.Cerevisiae的发生。

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