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首页> 外文期刊>FEMS Microbiology Letters >Involvement of ergosterol in tolerance to vanillin, a potential inhibitor of bioethanol fermentation, in Saccharomyces cerevisiae
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Involvement of ergosterol in tolerance to vanillin, a potential inhibitor of bioethanol fermentation, in Saccharomyces cerevisiae

机译:麦角固醇对啤酒酵母中潜在的生物乙醇发酵抑制剂香草醛的耐受性

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A vanillin-tolerant strain of Saccharomyces cerevisiae was screened and its intracellular ergosterol levels were compared with several laboratory yeast strains to study the potential relationship between ergosterol content and vanillin tolerance. Saccharomyces cerevisiae NBRC1950 was selected as a vanillin-tolerant strain. Its ergosterol content was higher than those of the laboratory strains. The results of DNA microarray and quantitative reverse transcriptase-polymerase chain reaction analysis showed that five genes involved in ergosterol biosynthesis (ERG28, HMG1, MCR1, ERG5, and ERG7) were upregulated in NBRC 1950 compared with strain X2180, suggesting that high expression of genes involved in ergosterol biosynthesis may cause high ergosterol content in strain NBRC 1950. The S. cerevisiae HX strain, which was a high-ergosterol-containing strain derived from X2180, was more tolerant to vanillin than the parental strain, suggesting that high ergosterol content may, in part, be responsible for vanillin tolerance. These findings provide a biotechnological basis for the molecular engineering of S. cerevisiae with increased tolerance to vanillin.
机译:筛选出耐香草醛的酿酒酵母菌株,并将其细胞内麦角固醇水平与几种实验室酵母菌株进行比较,以研究麦角固醇含量与香草醛耐受性之间的潜在关系。选择酿酒酵母NBRC1950作为耐香草醛的菌株。其麦角固醇含量高于实验室菌株。 DNA微阵列和定量逆转录酶-聚合酶链反应分析的结果表明,与菌株X2180相比,NBRC 1950中五个涉及麦角固醇生物合成的基因(ERG28,HMG1,MCR1,ERG5和ERG7)上调,这表明该基因的高表达参与麦角固醇生物合成的细菌可能在NBRC 1950菌株中引起较高的麦角固醇含量。酿酒酵母HX菌株是源自X2180的含高麦角固醇的菌株,比亲本菌株对香兰素的耐受性更高,这表明高麦角固醇含量可能部分负责香草醛的耐受性。这些发现为酿酒酵母对香草醛的耐受性增加的分子工程学提供了生物技术基础。

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