Transcriptome analysis reveals multiple targets of erythritol-related transcription factor EUF1 in unconventional yeast Yarrowia lipolytica

Author:

Rzechonek Dorota Alicja1,Szczepańczyk Mateusz1,Borodina Irina2,Neuvéglise Cecile3,Mirończuk Aleksandra Maria1

Affiliation:

1. Wrocław University of Environmental and Life Sciences

2. Technical University of Denmark

3. INRAE, Institut Agro, SPO, University Montpellier

Abstract

Abstract Background Erythritol is a four-carbon polyol with an unclear role in metabolism of some unconventional yeasts. Its production has been linked to the osmotic stress response, but the mechanism of stress protection remains unclear. Additionally, erythritol can be used as a carbon source. In the yeast Yarrowia lipolytica, its assimilation is activated by the transcription factor Euf1. The study investigates whether this factor can link erythritol to other processes in the cell. Results The research was performed on two closely related strains of Y. lipolytica: MK1 and K1, where strain K1 has no functional Euf1. Cultures were carried out in erythrol-containing and erythrol-free media. Transcriptome analysis revealed the effect of Euf1 on the regulation of more than 150 genes. Some of these could be easily connected with different aspects of erythritol assimilation, such as: utilization pathway, a new potential isoform of transketolase, or polyol transporters. However, many of the upregulated genes have never been linked to metabolism of erythritol. The most prominent examples are the degradation pathway of branched-chain amino acids and the glyoxylate cycle. The high transcription of genes affected by Euf1 is still dependent on the erythritol concentration in the medium. Moreover, almost all up-regulated genes have an ATGCA motif in the promoter sequence. Conclusions These findings are particularly relevant given the increasing use of erythritol-induced promoters in genetic engineering of Y. lipolytica. Moreover, use of this yeast in biotechnological processes often takes place under osmotic stress conditions. Erythritol might be produce as a by-product, thus better understanding of its influence on cell metabolism could facilitate processes optimization.

Publisher

Research Square Platform LLC

Reference49 articles.

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3. Yarrowia lipolytica: more than an oleaginous workhorse;Miller KK;Appl Microbiol Biotechnol,2019

4. In-depth analysis of erythrose reductase homologs in Yarrowia lipolytica;Szczepańczyk M;Sci Rep 2023,2023

5. Rzechonek DA, Day AM, Quinn J, Mirończuk AM. Influence of ylHog1 MAPK kinase on Yarrowia lipolytica stress response and erythritol production. Sci Rep. 2018/10/05. 2018;8(1):14735.

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