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Genotype-by-Environment-by-Environment Interactions in the Saccharomyces cerevisiae Transcriptomic Response to Alcohols and Anaerobiosis

机译:酿酒酵母转录组学对酒精和厌氧菌的基因型-环境-环境相互作用

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摘要

Next generation biofuels including longer-chain alcohols such as butanol are attractive as renewable, high-energy fuels. A barrier to microbial production of butanols is the increased toxicity compared to ethanol; however, the cellular targets and microbial defense mechanisms remain poorly understood, especially under anaerobic conditions used frequently in industry. Here we took a comparative approach to understand the response of Saccharomyces cerevisiae to 1-butanol, isobutanol, or ethanol, across three genetic backgrounds of varying tolerance in aerobic and anaerobic conditions. We find that strains have different growth properties and alcohol tolerances with and without oxygen availability, as well as unique and common responses to each of the three alcohols. Our results provide evidence for strain-by-alcohol-by-oxygen interactions that moderate how cells respond to alcohol stress.
机译:包括长链醇(例如丁醇)在内的下一代生物燃料作为可再生的高能燃料非常有吸引力。与乙醇相比,微生物生产丁醇的障碍是毒性增加。然而,细胞靶标和微生物防御机制仍然知之甚少,特别是在工业上经常使用的厌氧条件下。在这里,我们采用一种比较方法来了解酿酒酵母在有氧和无氧条件下不同耐受性的三种遗传背景下对1-丁醇,异丁醇或乙醇的反应。我们发现菌株在有氧和无氧的情况下具有不同的生长特性和酒精耐受性,以及对三种酒精中的每一种的独特且共同的反应。我们的结果提供了证据,证明了通过酒精与氧气之间的相互作用,可以缓和细胞对酒精胁迫的反应。

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