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Volatile Aroma Compound Production Is Affected by Growth Rate in S. cerevisiae

Federico Visinoni, Penghan Zhang, Katherine A. Hollywood, Silvia Carlin, Urška Vrhovšek, James Winterburn, Daniela Delneri

2022Applied and Environmental Microbiology10 citationsDOIOpen Access PDF

Abstract

The production of fermentation beverages will need to quickly adapt to changes in both the climate and customer demands, requiring the development of new strains and processes. Breakthroughs in the field are hindered by the limited knowledge on the interplay between physiology and aroma compound production in yeast. No quantitative data on how growth rate affects aroma profile is available in the literature to guide optimization of the complex flavors in fermented beverages. In this study, we exploited the chemostat system, alongside with batch and fed-batch cultures, to compare volatile profiles at different growth rates. We identified the aromatic compounds affected by the different feeding profiles and nutrient limitations. Moreover, we uncovered the correlation between yeast growth, esters, and higher alcohols production. This study showcases the potential of the application of feeding profiles for the manipulation of aroma in the craft beverage industry.

Topics & Concepts

AromaProduction (economics)YeastFermentationFood scienceBiologyBiotechnologyBiochemical engineeringBiochemistryEngineeringEconomicsMacroeconomicsFermentation and Sensory AnalysisBiochemical and biochemical processesBiochemical Analysis and Sensing Techniques