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工程酵母中用于角鲨烯生产改良的适应性进化及其全基因组分析。

Adaptive evolution of engineered yeast for squalene production improvement and its genome-wide analysis.

机构信息

Microbiology and Fermentation Technology Department, CSIR-Central Food Technological Research Institute, Mysuru, India.

AcSIR-Academy of Scientific & Innovative Research, Ghaziabad, Uttar Pradesh, 201002, India.

出版信息

Yeast. 2021 Jul;38(7):424-437. doi: 10.1002/yea.3559. Epub 2021 Mar 15.

Abstract

In the present study, the adaptive evolution of a metabolically engineered Saccharomyces cerevisiae strain in the presence of an enzyme inhibitor terbinafine for enhanced squalene accumulation via serial transfer leads to the development of robust strains. After adaptation for nearly 1500 h, a strain with higher squalene production efficiency was identified at a specific growth rate of 0.28 h with a final squalene titer of 193 mg/L, which is 16.5-fold higher than the BY4741 and 3-fold higher over the metabolically engineered SK22 strain. Whole-genome sequencing comparison between the reference strain and the evolved variant SK23 has led to the identification of 462 single-nucleotide variants (SNVs) between both strains, with 102 SNVs affecting metabolism-related genes. It was also established that F420I mutation of ERG1 in S. cerevisiae improves squalene synthesis. Further, the effect of increased squalene on lipid droplet and neutral lipid pattern in the evolved mutant strains was investigated by fluorescent techniques proving that the neutral lipid content and clustering of lipid droplets increase with an increase in squalene.

摘要

在本研究中,通过连续传代,在存在酶抑制剂特比萘芬的情况下,对代谢工程化的酿酒酵母菌株进行适应性进化,以提高角鲨烯的积累,从而产生了具有强大功能的菌株。经过近 1500 小时的适应,在特定生长速率为 0.28 h 时,确定了一种具有更高角鲨烯生产效率的菌株,最终角鲨烯产量为 193 mg/L,比 BY4741 高 16.5 倍,比代谢工程化的 SK22 菌株高 3 倍。参考菌株和进化变体 SK23 之间的全基因组测序比较导致在两个菌株之间鉴定出 462 个单核苷酸变异 (SNV),其中 102 个 SNV 影响代谢相关基因。还确定了酿酒酵母 ERG1 中的 F420I 突变可改善角鲨烯的合成。此外,通过荧光技术研究了增加的角鲨烯对进化突变菌株中脂滴和中性脂质模式的影响,证明中性脂质含量和脂滴的聚集随角鲨烯的增加而增加。

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