International audienceDimethyl sulfide (DMS) is a sulfur containing volatile that enhances general fruity aroma and imparts aromatic notes in wine. The most important precursor of DMS is S-methylmethionine (SMM), which is synthesized by grapes and can be metabolized by the yeast S. cerevisiae during wine fermentation. Precursor molecules left after fermentation are chemically converted to DMS during wine maturation, meaning that wine DMS levels are determined by the amount of remaining precursors at bottling.To elucidate SMM metabolism in yeast we performed quantitative trait locus (QTL) mapping using a population of 130 F2-segregants obtained from a cross between two wine yeast strains, and we detected one major QTL explaining almost 30% o...
Since the first vineyard was planted in Sydney more than 200 years ago, the Australian wine industry...
Yeasts have been largely explored as cell factories to produce substances for food and industrial bi...
<div><p>Quantitative genetics and QTL mapping are efficient strategies for deciphering the genetic p...
International audienceDimethyl sulfide (DMS) is a sulfur containing volatile that enhances general f...
Background: Wine yeasts can produce undesirable sulfur compounds during alcoholic fermentation, such...
Volatile thiols, particularly 4-mercapto-4-methylpentan-2-one (4MMP), make an important contribution...
Glutathione (GSH) production during wine fermentation is a desirable trait as it can limit must and ...
Saccharomyces cerevisiae is the main microorganism responsible for wine alcoholic fermentation. The ...
Background: The volatile metabolites produced by Saccharomyces cerevisiae during alcoholic fermentat...
© 2010 Federation of European Microbiological Societies. Published by Blackwell Publishing Ltd. All ...
Saccharomyces cerevisiae, a widespread yeast present both in the wild and in fermentative processes,...
Quantitative genetics and QTL mapping are efficient strategies for deciphering the genetic polymorph...
Wine aroma results from the combination of numerous volatile compounds, some produced by yeast and o...
Release of hydrogen sulfide by fermenting yeast is a potential problem in wine production, because o...
Background: Variation of gene expression can lead to phenotypic variation and have therefore been as...
Since the first vineyard was planted in Sydney more than 200 years ago, the Australian wine industry...
Yeasts have been largely explored as cell factories to produce substances for food and industrial bi...
<div><p>Quantitative genetics and QTL mapping are efficient strategies for deciphering the genetic p...
International audienceDimethyl sulfide (DMS) is a sulfur containing volatile that enhances general f...
Background: Wine yeasts can produce undesirable sulfur compounds during alcoholic fermentation, such...
Volatile thiols, particularly 4-mercapto-4-methylpentan-2-one (4MMP), make an important contribution...
Glutathione (GSH) production during wine fermentation is a desirable trait as it can limit must and ...
Saccharomyces cerevisiae is the main microorganism responsible for wine alcoholic fermentation. The ...
Background: The volatile metabolites produced by Saccharomyces cerevisiae during alcoholic fermentat...
© 2010 Federation of European Microbiological Societies. Published by Blackwell Publishing Ltd. All ...
Saccharomyces cerevisiae, a widespread yeast present both in the wild and in fermentative processes,...
Quantitative genetics and QTL mapping are efficient strategies for deciphering the genetic polymorph...
Wine aroma results from the combination of numerous volatile compounds, some produced by yeast and o...
Release of hydrogen sulfide by fermenting yeast is a potential problem in wine production, because o...
Background: Variation of gene expression can lead to phenotypic variation and have therefore been as...
Since the first vineyard was planted in Sydney more than 200 years ago, the Australian wine industry...
Yeasts have been largely explored as cell factories to produce substances for food and industrial bi...
<div><p>Quantitative genetics and QTL mapping are efficient strategies for deciphering the genetic p...