Subpopulation-specific gene expression in uncovers distinct metabolic adaptations to wine fermentation.

Curr Res Food Sci

Department of Genetics, Physiology and Microbiology, Unit of Microbiology, Faculty of Biological Sciences, Complutense University of Madrid, 28040, Madrid, Spain.

Published: December 2024

AI Article Synopsis

  • This study investigated gene expression in 23 yeast strains across six subpopulations to understand how winemaking conditions and anthropization influence traits like lactic acid production.
  • The analysis showed that different strains have unique transcriptomic profiles linked to fermentation processes, highlighting how anthropized environments lead to metabolic specialization.
  • Findings suggest that understanding these gene expression differences can optimize biological acidification and enhance specific traits needed in modern winemaking, such as improved production of lactic acid and other important metabolites.

Article Abstract

Gene expression is the first step in translating genetic information into quantifiable traits. This study analysed gene expression in 23 strains across six subpopulations of , shaped by anthropization, under winemaking conditions to understand the impact of adaptation on transcriptomic profiles and fermentative performance, particularly regarding lactic acid production. Understanding the gene expression differences linked to lactic acid production could allow a more rational address of biological acidification while optimizing yeast-specific nutritional requirements during fermentation. By sequencing mRNA during exponential growth and fermentation in synthetic grape must, we identified unique expression patterns linked to the strains originated from wine-related environments. Global expression analysis revealed that anthropized subpopulations, particularly Europe/Domestic-2 and Europe-Mix, exhibited distinct gene expression profiles related to fermentation processes such as glycolysis and pyruvate metabolism. These processes were differentially expressed, along with other important biological processes during fermentation, such as nitrogen and fatty acid metabolism. This study highlights that anthropization has driven metabolic specialization in , enhancing traits like lactic acid production, which is a trait of interest in modern winemaking. Correlation analysis further linked lactic acid dehydrogenase genes with key metabolic pathways, indicating adaptive gene expression regulation. Additionally, differences in other metabolites of oenological interest as glycerol or aroma compounds production are highlighted. Here, we provide insights into the evolutionary processes shaping the transcriptomic diversity of , emphasizing the impact of winemaking environments on driving specific metabolic adaptations, including lactic acid production.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11699796PMC
http://dx.doi.org/10.1016/j.crfs.2024.100954DOI Listing

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