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Genomic and transcriptomic analysis of a coniferyl aldehyde-resistant Saccharomyces cerevisiae strain obtained by evolutionary engineering

机译:进化工程获得的对醛醛酿酒酵母菌菌株的基因组和转录组分析

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摘要

Phenolic inhibitors in lignocellulosic hydrolysates interfere with the performance of fermenting microorganisms. Among these, coniferyl aldehyde is one of the most toxic inhibitors. In this study, genetically stable Saccharomyces cerevisiae mutants with high coniferyl aldehyde resistance were successfully obtained for the first time by using an evolutionary engineering strategy, based on the systematic application of increasing coniferyl aldehyde stress in batch cultures. Among the selected coniferyl aldehyde-resistant mutants, the highly resistant strain called BH13 was also cross-resistant to other phenolic inhibitors, vanillin, ferulic acid and 4-hydroxybenzaldehyde. In the presence of 1.2 mM coniferyl aldehyde stress, BH13 had a significantly reduced lag phase, which was less than 3 h and only about 25% of that of the reference strain and converted coniferyl aldehyde faster. Additionally, there was no reduction in its growth rate, either. Comparative transcriptomic analysis of a highly coniferyl aldehyde-resistant mutant revealed upregulation of the genes involved in energy pathways, response to oxidative stress and oxidoreductase activity in the mutant strain BH13, already under non-stress conditions. Transcripts associated with pleiotropic drug resistance were also identified as upregulated. Genome re-sequencing data generally supported transcriptomic results and identified gene targets that may have a potential role in coniferyl aldehyde resistance.
机译:木质纤维素水解产物中的酚醛抑制剂干扰发酵微生物的性能。其中,Coniferyl醛是最有毒的抑制剂之一。在这项研究中,通过使用进化工程策略,通过使用进化工程策略来成功地获得具有高圆锥醛抗性的基因稳定的酿酒酵母突变体,基于在分批培养物中增加Coniferyl醛胁迫的系统应用,首次获得了高分子醛抗性。在所选择的果实醛醛突变体中,称为BH13的高抗性菌株也对其他酚醛抑制剂,香草素,阿魏酸和4-羟基苯甲醛交叉。在1.2mm的醛醛胁迫下,BH13具有显着减少的滞后阶段,其滞后阶段小于3小时,仅为参考菌株的约25%,转化的果实醛较快。此外,其增长率也没有降低。对高度征收的醛抗突变体的比较转录组分析显示了在突变菌株BH13中致氧化应激和氧化反应酶活性的基因的上调,已经在非应激条件下。还鉴定了与脂肪耐药性相关的转录物也被鉴定为上调。基因组重新测序数据通常支持转录组结果,并鉴定可能具有在Coniferyl醛抗性中具有潜在作用的基因靶标。

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