Moktaduzzaman Md, Galafassi Silvia, Capusoni Claudia, Vigentini Ileana, Ling Zhihao, Piškur Jure, Compagno Concetta
Department of Food, Environmental and Nutritional Sciences, University of Milan, Via G. Celoria 2, 20133, Italy.
Department of Biology, Lund University, Box 117, 221 00 Lund, Sweden.
FEMS Yeast Res. 2015 Mar;15(2). doi: 10.1093/femsyr/fou009.
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.
布鲁塞尔德克酵母和酿酒酵母被认为是两个系统发育关系较远的亲缘物种,但它们具有一些与工业相关的共同特征,例如在有氧条件下产生乙醇的能力(克拉布特里效应)、对乙醇和酸的高耐受性以及无氧生长的能力。除了具有巨大的适应性外,与酿酒酵母相比,布鲁塞尔德克酵母在碳源和氮源的利用方面表现出更广泛的范围。为了更好地表征其碳源代谢和调控,研究了布鲁塞尔德克酵母CBS 2499中半乳糖的利用情况以及葡萄糖在糖代谢中所起的作用。结果表明,与能够发酵半乳糖的酿酒酵母不同,在这种酵母中半乳糖是一种不可发酵的碳源。特别是,其代谢受氮源影响。有趣的是,布鲁塞尔德克酵母CBS 2499表现出“短期克拉布特里效应”,并且参与半乳糖利用和呼吸代谢的基因表达受到葡萄糖的抑制,这与酿酒酵母中的情况类似。