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Multi-Omics Analysis of Fatty Alcohol Production in Engineered Yeasts Saccharomyces cerevisiae and Yarrowia lipolytica

机译:工程酵母,酿酒酵母和解脂耶氏酵母中脂肪醇产生的多组学分析

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摘要

Fatty alcohols are widely used in various applications within a diverse set of industries, such as the soap and detergent industry, the personal care, and cosmetics industry, as well as the food industry. The total world production of fatty alcohols is over 2 million tons with approximately equal parts derived from fossil oil and from plant oils or animal fats. Due to the environmental impact of these production methods, there is an interest in alternative methods for fatty alcohol production via microbial fermentation using cheap renewable feedstocks. In this study, we aimed to obtain a better understanding of how fatty alcohol biosynthesis impacts the host organism, baker’s yeast Saccharomyces cerevisiae or oleaginous yeast Yarrowia lipolytica. Producing and non-producing strains were compared in growth and nitrogen-depletion cultivation phases. The multi-omics analysis included physiological characterization, transcriptome analysis by RNAseq, 13Cmetabolic flux analysis, and intracellular metabolomics. Both species accumulated fatty alcohols under nitrogen-depletion conditions but not during growth. The fatty alcohol–producing Y. lipolytica strain had a higher fatty alcohol production rate than an analogous S. cerevisiae strain. Nitrogen-depletion phase was associated with lower glucose uptake rates and a decrease in the intracellular concentration of acetyl–CoA in both yeast species, as well as increased organic acid secretion rates in Y. lipolytica. Expression of the fatty alcohol–producing enzyme fatty acyl–CoA reductase alleviated the growth defect caused by deletion of hexadecenal dehydrogenase encoding genes (HFD1 and HFD4) in Y. lipolytica. RNAseq analysis showed that fatty alcohol production triggered a cell wall stress response in S. cerevisiae. RNAseq analysis also showed that both nitrogen-depletion and fatty alcohol production have substantial effects on the expression of transporter encoding genes in Y. lipolytica. In conclusion, through this multi-omics study, we uncovered some effects of fatty alcohol production on the host metabolism. This knowledge can be used as guidance for further strain improvement towards the production of fatty alcohols.
机译:脂肪醇广泛用于各种行业,例如肥皂和洗涤剂行业,个人护理和化妆品行业以及食品行业。世界范围内脂肪醇的总产量超过200万吨,其中大约等量的部分来自化石油以及植物油或动物脂肪。由于这些生产方法对环境的影响,人们对使用廉价的可再生原料通过微生物发酵生产脂肪醇的替代方法感兴趣。在这项研究中,我们旨在更好地了解脂肪醇的生物合成如何影响宿主生物,面包酵母,酿酒酵母或产油酵母解脂耶氏酵母。比较了生产菌株和非生产菌株在生长期和氮耗减的培养阶段。多元组学分析包括生理学表征,RNAseq转录组分析, 13 代谢通量分析和细胞内代谢组学。两种物种都在氮消耗条件下积累了脂肪醇,但在生长过程中却没有。产生脂肪醇的解脂耶氏酵母菌株比类似的酿酒酵母菌株具有更高的脂肪醇生产率。氮耗竭阶段与两种酵母中较低的葡萄糖摄取速率和乙酰-CoA的细胞内浓度降低以及解脂耶氏酵母中有机酸分泌速率增加相关。产生脂肪醇的酶脂肪酰基-CoA还原酶的表达减轻了解脂耶氏酵母中十六碳烯脱氢酶编码基因(HFD1和HFD4)缺失引起的生长缺陷。 RNAseq分析表明,脂肪醇的产生触发了酿酒酵母中的细胞壁应激反应。 RNAseq分析还显示,氮的消耗和脂肪醇的产生均对解脂耶氏酵母中转运蛋白编码基因的表达有实质性影响。总之,通过这项多组学研究,我们发现了脂肪醇生产对宿主代谢的某些影响。该知识可以用作进一步改善菌株生产脂肪醇的指导。

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