Beer metabolomics: molecular details of the brewing process and the differential effects of late and dry hopping on yeast purine metabolism

Метаболомика пива: молекулярные детали процесса пивоварения и различия во влиянии позднего и сухого охмеления на пуриновый метаболизм дрожжей
Ann Spevacek, Katy H. Benson, Charles W. Bamforth, Carolyn M. Slupsky
2016-01-06

1H NMR metabolomicsbeer metabolomicsdry hoppinglate hoppingpurine metabolism
The flavour of beer is complex, based upon changes at the molecular level in the key raw materials, notably grain, hops and yeast, as well as during the process stages that comprise malting and brewing. As analytical techniques evolve in their sophistication and sensitivity, there are opportunities to delve ever more deeply into the fate of small molecules in brewing. To this end, 1H nuclear magnetic resonance (NMR) metabolomics was used to follow the progression of 76 metabolites in four different late or dry hopped beers (brewed in triplicate) at five time points throughout the brewing process. The majority of the metabolites identified, including sugars, amino acids and nucleotides, significantly decreased in concentration from the start of the boil to post-secondary fermentation, whereas energy-related and fatty acid associated metabolites significantly increased in concentration as wort nutrients were consumed by the yeast. Adenine was significantly higher in the dry hopped brews than in the late hopped brews after both primary (p = 2.1 × 10−6) and secondary (p = 2.7 × 10−9) fermentation, while 2′-deoxyadenosine (after primary, p = 1.1 × 10−2, after secondary, p = 3.2 × 10−5) and adenosine (after primary, p = 2.6 × 10−8; after secondary, p = 3.1 × 10−7)were significantly lower in the dry hopped beers at these time points. These results give molecular insight into the brewing process and the differential effects of hopping methods on yeast purine metabolism. Copyright © 2016 The Institute of Brewing & Distilling
1
1H NMR metabolomics tracked 76 metabolites across five brewing stages in triplicate late- and dry-hopped beers.
2
Dry hopping produced significantly higher adenine concentrations than late hopping after primary and secondary fermentation.
3
Dry-hopped beers contained significantly lower 2′-deoxyadenosine and adenosine concentrations than late-hopped beers after both fermentation stages, indicating differential effects on yeast purine metabolism.
4
Energy-related and fatty-acid-associated metabolites increased during fermentation, consistent with yeast metabolic activity and nutrient consumption.
5
Most sugars, amino acids, and nucleotides significantly decreased from the start of boiling through post-secondary fermentation as yeast consumed wort nutrients.

late- and dry-hopped beers throughout the brewing process

molecular metabolite dynamics and the differential effects of hopping method on yeast purine metabolism

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2016-01-06
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Ann Spevacek
Katy H. Benson
Charles W. Bamforth
Carolyn M. Slupsky
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