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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Genomic reconstruction to improve bioethanol and ergosterol production of industrial yeast Saccharomyces cerevisiae
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Genomic reconstruction to improve bioethanol and ergosterol production of industrial yeast Saccharomyces cerevisiae

机译:基因组重建可改善工业酵母啤酒酵母的生物乙醇和麦角固醇的生产

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摘要

Baker's yeast (Saccharomyces cerevisiae) is the common yeast used in the fields of bread making, brewing, and bioethanol production. Growth rate, stress tolerance, ethanol titer, and byproducts yields are some of the most important agronomic traits of S. cerevisiae for industrial applications. Here, we developed a novel method of constructing S. cerevisiae strains for co-producing bioethanol and ergosterol. The genome of an industrial S. cerevisiae strain, ZTW1, was first reconstructed through treatment with an antimitotic drug followed by sporulation and hybridization. A total of 140 mutants were selected for ethanol fermentation testing, and a significant positive correlation between ergosterol content and ethanol production was observed. The highest performing mutant, ZG27, produced 7.9 % more ethanol and 43.2 % more ergosterol than ZTW1 at the end of fermentation. Chromosomal karyotyping and proteome analysis of ZG27 and ZTW1 suggested that this breeding strategy caused large-scale genome structural variations and global gene expression diversities in the mutants. Genetic manipulation further demonstrated that the altered expression activity of some genes (such as ERG1, ERG9, and ERG11) involved in ergosterol synthesis partly explained the trait improvement in ZG27.
机译:贝克酵母(Saccharomyces cerevisiae)是面包制造,酿造和生物乙醇生产领域中常用的酵母。生长速率,胁迫耐受性,乙醇滴度和副产物产量是工业上酿酒酵母最重要的一些农艺性状。在这里,我们开发了一种用于共同生产生物乙醇和麦角固醇的酿酒酵母菌株的新方法。首先通过使用抗有丝分裂药物处理,然后进行孢子形成和杂交,重建了工业酿酒酵母菌株ZTW1的基因组。总共选择了140个突变体用于乙醇发酵测试,并且观察到麦角固醇含量与乙醇产量之间存在显着的正相关。发酵结束时,性能最高的突变体ZG27比ZTW1多产生7.9%的乙醇和43.2%的麦角固醇。 ZG27和ZTW1的染色体核型分析和蛋白质组分析表明,这种育种策略在突变体中引起了大规模的基因组结构变异和整体基因表达多样性。遗传操作进一步证明,参与麦角固醇合成的某些基因(例如ERG1,ERG9和ERG11)表达活性的改变部分解释了ZG27的性状改善。

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