In recent years, interspecific hybridization and introgression are increasingly recognized as significant events in the evolution of Saccharomyces yeasts. These mechanisms have probably been involved in the origin of novel yeast genotypes and phenotypes, which in due course were to colonize and predominate in the new fermentative environments created by human manipulation. The particular conditions in which hybrids arose are still unknown, as well as the number of possible hybridization events that generated the whole set of natural hybrids described in the literature during recent years. In this study, we could infer at least six different hybridization events that originated a set of 26 S. cerevisiae x S. kudriavzevii hybrids isolated fro...
Evolution and genome stabilization have mostly been studied on the Saccharomyces hybrids isolated fr...
Wine yeast have been exposed to harsh conditions for millennia, which have led to adaptive evolution...
With the explosion of genome sequencing technologies, mechanisms such as aneuploidy, polyploidy, and...
In recent years, interspecific hybridization and introgression are increasingly recognized as signif...
In recent years, interspecific hybridization and introgression are increasingly recognized as signif...
In recent years, interspecific hybridization and introgression are increasingly recognized as signif...
Abstract Background Interspecific hybrids between S. cerevisiae × S. kudriavzevii have frequently be...
The hybrid nature of lager-brewing yeast strains has been known for 25 years; however, yeast hybrids...
BackgroundInterspecific hybrids between S. cerevisiae × S. kudriavzevii have frequently been detecte...
The vast majority of wine fermentations are performed principally by Saccharomyces cerevisiae. Howev...
Saccharomyces cerevisiae and related species, the main workhorses of wine fermentation, have been ex...
New double- and triple-hybrid Saccharomyces yeasts were characterized using PCR-restriction fragment...
Recently, a new type of hybrid resulting from the hybridization between Saccharomyces cerevisiae and...
Evolution and genome stabilization have mostly been studied on the Saccharomyces hybrids isolated fr...
Wine fermentation and innovation have focused mostly on Saccharomyces cerevisiae strains. However, r...
Evolution and genome stabilization have mostly been studied on the Saccharomyces hybrids isolated fr...
Wine yeast have been exposed to harsh conditions for millennia, which have led to adaptive evolution...
With the explosion of genome sequencing technologies, mechanisms such as aneuploidy, polyploidy, and...
In recent years, interspecific hybridization and introgression are increasingly recognized as signif...
In recent years, interspecific hybridization and introgression are increasingly recognized as signif...
In recent years, interspecific hybridization and introgression are increasingly recognized as signif...
Abstract Background Interspecific hybrids between S. cerevisiae × S. kudriavzevii have frequently be...
The hybrid nature of lager-brewing yeast strains has been known for 25 years; however, yeast hybrids...
BackgroundInterspecific hybrids between S. cerevisiae × S. kudriavzevii have frequently been detecte...
The vast majority of wine fermentations are performed principally by Saccharomyces cerevisiae. Howev...
Saccharomyces cerevisiae and related species, the main workhorses of wine fermentation, have been ex...
New double- and triple-hybrid Saccharomyces yeasts were characterized using PCR-restriction fragment...
Recently, a new type of hybrid resulting from the hybridization between Saccharomyces cerevisiae and...
Evolution and genome stabilization have mostly been studied on the Saccharomyces hybrids isolated fr...
Wine fermentation and innovation have focused mostly on Saccharomyces cerevisiae strains. However, r...
Evolution and genome stabilization have mostly been studied on the Saccharomyces hybrids isolated fr...
Wine yeast have been exposed to harsh conditions for millennia, which have led to adaptive evolution...
With the explosion of genome sequencing technologies, mechanisms such as aneuploidy, polyploidy, and...