Literature DB >> 25084862

Lager yeast comes of age.

Jürgen Wendland1.   

Abstract

Alcoholic fermentations have accompanied human civilizations throughout our history. Lager yeasts have a several-century-long tradition of providing fresh beer with clean taste. The yeast strains used for lager beer fermentation have long been recognized as hybrids between two Saccharomyces species. We summarize the initial findings on this hybrid nature, the genomics/transcriptomics of lager yeasts, and established targets of strain improvements. Next-generation sequencing has provided fast access to yeast genomes. Its use in population genomics has uncovered many more hybridization events within Saccharomyces species, so that lager yeast hybrids are no longer the exception from the rule. These findings have led us to propose network evolution within Saccharomyces species. This "web of life" recognizes the ability of closely related species to exchange DNA and thus drain from a combined gene pool rather than be limited to a gene pool restricted by speciation. Within the domesticated lager yeasts, two groups, the Saaz and Frohberg groups, can be distinguished based on fermentation characteristics. Recent evidence suggests that these groups share an evolutionary history. We thus propose to refer to the Saaz group as Saccharomyces carlsbergensis and to the Frohberg group as Saccharomyces pastorianus based on their distinct genomes. New insight into the hybrid nature of lager yeast will provide novel directions for future strain improvement.
Copyright © 2014, American Society for Microbiology. All Rights Reserved.

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Year:  2014        PMID: 25084862      PMCID: PMC4187645          DOI: 10.1128/EC.00134-14

Source DB:  PubMed          Journal:  Eukaryot Cell        ISSN: 1535-9786


  120 in total

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5.  Molecular analysis of maltotriose active transport and fermentation by Saccharomyces cerevisiae reveals a determinant role for the AGT1 permease.

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Review 7.  The glucoamylase multigene family in Saccharomyces cerevisiae var. diastaticus: an overview.

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  15 in total

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Review 2.  The genomics of microbial domestication in the fermented food environment.

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Review 4.  Industrial Relevance of Chromosomal Copy Number Variation in Saccharomyces Yeasts.

Authors:  Arthur R Gorter de Vries; Jack T Pronk; Jean-Marc G Daran
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5.  Chromosomal Copy Number Variation in Saccharomyces pastorianus Is Evidence for Extensive Genome Dynamics in Industrial Lager Brewing Strains.

Authors:  M van den Broek; I Bolat; J F Nijkamp; E Ramos; M A H Luttik; F Koopman; J M Geertman; D de Ridder; J T Pronk; J-M Daran
Journal:  Appl Environ Microbiol       Date:  2015-07-06       Impact factor: 4.792

6.  The Genome Sequence of Saccharomyces eubayanus and the Domestication of Lager-Brewing Yeasts.

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Authors:  David Peris; Quinn K Langdon; Ryan V Moriarty; Kayla Sylvester; Martin Bontrager; Guillaume Charron; Jean-Baptiste Leducq; Christian R Landry; Diego Libkind; Chris Todd Hittinger
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9.  Ploidy Variation in Kluyveromyces marxianus Separates Dairy and Non-dairy Isolates.

Authors:  Raúl A Ortiz-Merino; Javier A Varela; Aisling Y Coughlan; Hisashi Hoshida; Wendel B da Silveira; Caroline Wilde; Niels G A Kuijpers; Jan-Maarten Geertman; Kenneth H Wolfe; John P Morrissey
Journal:  Front Genet       Date:  2018-03-21       Impact factor: 4.599

10.  Evolutionary restoration of fertility in an interspecies hybrid yeast, by whole-genome duplication after a failed mating-type switch.

Authors:  Raúl A Ortiz-Merino; Nurzhan Kuanyshev; Stephanie Braun-Galleani; Kevin P Byrne; Danilo Porro; Paola Branduardi; Kenneth H Wolfe
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