Marsit Souhir, Sanchez Isabelle, Galeote Virginie, Dequin Sylvie
INRA, UMR1083 Sciences pour l'Oenology, Montpellier, France.
Environ Microbiol. 2016 Apr;18(4):1148-61. doi: 10.1111/1462-2920.13117. Epub 2016 Jan 27.
In the past decade, horizontal gene transfer (HGT) has emerged as a major evolutionary process that has shaped the genome of Saccharomyces cerevisiae wine yeasts. We recently showed that a large Torulaspora microellipsoides genomic island carrying two oligopeptide transporters encoded by FOT genes increases the fitness of wine yeast during fermentation of grape must. However, the impact of these genes on the metabolic network of S. cerevisiae remained uncharacterized. Here we show that Fot-mediated peptide uptake substantially affects the glutamate node and the NADPH/NADP(+) balance, resulting in the delayed uptake of free amino acids and altered profiles of metabolites and volatile compounds. Transcriptome analysis revealed that cells using a higher amount of oligopeptides from grape must are less stressed and display substantial variation in the expression of genes in the central pathways of carbon and nitrogen metabolism, amino acid and protein biosynthesis, and the oxidative stress response. These regulations shed light on the molecular and metabolic mechanisms involved in the higher performance and fitness conferred by the HGT-acquired FOT genes, pinpointing metabolic effects that can positively affect the organoleptic balance of wines.
在过去十年中,水平基因转移(HGT)已成为塑造酿酒酵母葡萄酒酵母基因组的一个主要进化过程。我们最近发现,一个携带由FOT基因编码的两个寡肽转运蛋白的巨大椭圆球拟酵母基因组岛,在葡萄汁发酵过程中提高了葡萄酒酵母的适应性。然而,这些基因对酿酒酵母代谢网络的影响仍未得到表征。在这里,我们表明Fot介导的肽摄取显著影响谷氨酸节点和NADPH/NADP(+)平衡,导致游离氨基酸摄取延迟以及代谢物和挥发性化合物谱的改变。转录组分析表明,使用来自葡萄汁中更多寡肽的细胞压力较小,并且在碳氮代谢、氨基酸和蛋白质生物合成以及氧化应激反应的中心途径中的基因表达存在显著差异。这些调控揭示了HGT获得的FOT基因赋予更高性能和适应性所涉及的分子和代谢机制,确定了可以积极影响葡萄酒感官平衡的代谢效应。