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转录组分析为嗜尸生孢酵母的乙醇应激反应带来了新的见解。

Transcriptome profiling brings new insights into the ethanol stress responses of Spathaspora passalidarum.

作者信息

Albuini Fernanda Matias, de Castro Alex Gazolla, Campos Valquíria Júnia, Ribeiro Lílian Emídio, Vidigal Pedro Marcus Pereira, de Oliveira Mendes Tiago Antônio, Fietto Luciano Gomes

机构信息

Departamento de Bioquímica e Biologia Molecular, Universidade Federal de Viçosa, Av. PH Rolfs s/n, Campus Universitário, Viçosa, MG, 36570-900, Brazil.

Departamento de Microbiologia, Universidade Federal de Viçosa, Av. PH Rolfs s/n, Campus Universitário, Viçosa, MG, 36570-900, Brazil.

出版信息

Appl Microbiol Biotechnol. 2023 Nov;107(21):6573-6589. doi: 10.1007/s00253-023-12730-x. Epub 2023 Sep 1.

Abstract

Spathaspora passalidarum is a xylose-fermenting microorganism promising for the fermentation of lignocellulosic hydrolysates. This yeast is more sensitive to ethanol than Saccharomyces cerevisiae for unclear reasons. An RNA-seq experiment was performed to identify transcriptional changes in S. passalidarum in response to ethanol and gain insights into this phenotype. The results showed the upregulation of genes associated with translation and the downregulation of genes encoding proteins involved in lipid metabolism, transporters, and enzymes from glycolysis and fermentation pathways. Our results also revealed that genes encoding heat-shock proteins and involved in antioxidant response were upregulated, whereas the osmotic stress response of S. passalidarum appears impaired under ethanol stress. A pseudohyphal morphology of S. passalidarum colonies was observed in response to ethanol stress, which suggests that ethanol induces a misperception of nitrogen availability in the environment. Changes in the yeast fatty acid profile were observed only after 12 h of ethanol exposure, coinciding with the recovery of the yeast xylose consumption ability. These findings suggest that the lack of fast membrane lipid adjustments, the halt in nutrient absorption and cellular metabolism, and the failure to induce the expression of osmotic stress-responsive genes are the main aspects underlying the low ethanol tolerance of S. passalidarum. KEY POINTS: • Ethanol stress halts Spathaspora passalidarum metabolism and fermentation • Genes encoding nutrient transporters showed downregulation under ethanol stress • Ethanol induces a pseudohyphal cell shape, suggesting a misperception of nutrients.

摘要

嗜木生斯帕塔酵母是一种具有木糖发酵能力的微生物,有望用于木质纤维素水解产物的发酵。出于不明原因,这种酵母比酿酒酵母对乙醇更敏感。进行了一项RNA测序实验,以确定嗜木生斯帕塔酵母对乙醇反应的转录变化,并深入了解这种表型。结果表明,与翻译相关的基因上调,而参与脂质代谢、转运蛋白以及糖酵解和发酵途径的酶的编码基因下调。我们的结果还表明,编码热休克蛋白和参与抗氧化反应的基因上调,而嗜木生斯帕塔酵母在乙醇胁迫下的渗透胁迫反应似乎受损。在乙醇胁迫下,观察到嗜木生斯帕塔酵母菌落呈现假菌丝形态,这表明乙醇会导致对环境中氮可用性的错误感知。仅在乙醇暴露12小时后才观察到酵母脂肪酸谱的变化,这与酵母木糖消耗能力的恢复相吻合。这些发现表明,缺乏快速的膜脂调整、营养吸收和细胞代谢的停止以及未能诱导渗透胁迫响应基因的表达是嗜木生斯帕塔酵母乙醇耐受性低的主要原因。要点:•乙醇胁迫会使嗜木生斯帕塔酵母的代谢和发酵停止•编码营养转运蛋白的基因在乙醇胁迫下表现出下调•乙醇诱导假菌丝细胞形态,表明对营养物质的错误感知

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