Title of article
Identification of Sc-type ILV6 as a target to reduce diacetyl formation in lager brewersʹ yeast
Author/Authors
Duong، نويسنده , , C.T. and Strack، نويسنده , , L. and Futschik، نويسنده , , M. and Katou، نويسنده , , Y. and Nakao، نويسنده , , Y. and Fujimura، نويسنده , , T. and Shirahige، نويسنده , , K. and Kodama، نويسنده , , Y. and Nevoigt، نويسنده , , E.، نويسنده ,
Issue Information
دوماهنامه با شماره پیاپی سال 2011
Pages
10
From page
638
To page
647
Abstract
Diacetyl causes an unwanted buttery off-flavor in lager beer. It is spontaneously generated from α-acetolactate, an intermediate of yeastʹs valine biosynthesis released during the main beer fermentation. Green lager beer has to undergo a maturation process lasting two to three weeks in order to reduce the diacetyl level below its taste-threshold. Therefore, a reduction of yeastʹs α-acetolactate/diacetyl formation without negatively affecting other brewing relevant traits has been a long-term demand of brewing industry. Previous attempts to reduce diacetyl production by either traditional approaches or rational genetic engineering had different shortcomings. Here, three lager yeast strains with marked differences in diacetyl production were studied with regard to gene copy numbers as well as mRNA abundances under conditions relevant to industrial brewing. Evaluation of data for the genes directly involved in the valine biosynthetic pathway revealed a low expression level of Sc-ILV6 as a potential molecular determinant for low diacetyl formation. This hypothesis was verified by disrupting the two copies of Sc-ILV6 in a commercially used lager brewersʹ yeast strain, which resulted in 65% reduction of diacetyl concentration in green beer. The Sc-ILV6 deletions did not have any perceptible impact on beer taste. To our knowledge, this has been the first study exploiting natural diversity of lager brewersʹ yeast strains for strain optimization.
Keywords
ILV6 , Saccharomyces , Lager brewersי yeast , diacetyl , transcriptome , GENOME , Proteome
Journal title
Metabolic Engineering
Serial Year
2011
Journal title
Metabolic Engineering
Record number
1429225
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