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Gorter de Vries, A.R. (author), Knibbe, E. (author), van Roosmalen, Roderick (author), van den Broek, M.A. (author), de la Torre, P. (author), O’Herne, Stephanie F. (author), Vijverberg, Pascal A. (author), el Masoudi, Anissa (author), Brouwers, N. (author), Pronk, J.T. (author), Daran, J.G. (author)
The lager-brewing yeast Saccharomyces pastorianus is a hybrid between S. cerevisiae and S. eubayanus with an exceptional degree of aneuploidy. While chromosome copy number variation (CCNV) is present in many industrial Saccharomyces strains and has been linked to various industrially-relevant traits, its impact on the brewing performance of S...
journal article 2020
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Gorter de Vries, A.R. (author)
Lager beer, also referred to as Pilsner, is the most popular alcoholic beverage in the world, with an annual consumption of almost 200 billion litres per year. To make lager beer, brewer’s wort is fermented with the yeast <i style="mso-bidi-font-style:normal"...
doctoral thesis 2019
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Brouwers, N. (author), Gorter de Vries, A.R. (author), van den Broek, M.A. (author), Weening, S.M. (author), Elink Schuurman, Tom D. (author), Kuijpers, Niels G.A. (author), Pronk, J.T. (author), Daran, J.G. (author)
Saccharomyces eubayanus is the non-S. cerevisiae parent of the lager-brewing hybrid S. pastorianus. In contrast to most S. cerevisiae and Frohberg-type S. pastorianus strains, S. eubayanus cannot utilize the α-tri-glucoside maltotriose, a major carbohydrate in brewer's wort. In Saccharomyces yeasts, utilization of maltotriose is encoded by...
journal article 2019
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Gorter de Vries, A.R. (author), Pronk, J.T. (author), Daran, J.G. (author)
The yeast Saccharomyces pastorianus is responsible for the annual worldwide production of almost 200 billion liters of lager-type beer. S. pastorianus is a hybrid of Saccharomyces cerevisiae and Saccharomyces eubayanus that has been studied for well over a century. Scientific interest in S. pastorianus intensified upon the discovery, in 2011,...
journal article 2019
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Salazar, A.N. (author), Gorter de Vries, A.R. (author), van den Broek, M.A. (author), Brouwers, N. (author), de la Torre, P. (author), Kuijpers, N.G.A. (author), Daran, J.G. (author), Abeel, T.E.P.M.F. (author)
Background: The lager brewing yeast, S. pastorianus, is a hybrid between S. cerevisiae and S. eubayanus with extensive chromosome aneuploidy. S. pastorianus is subdivided into Group 1 and Group 2 strains, where Group 2 strains have higher copy number and a larger degree of heterozygosity for S. cerevisiae chromosomes. As a result, Group 2...
journal article 2019
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Gorter de Vries, A.R. (author), Voskamp, Maaike (author), van Aalst, Aafke (author), Kristensen, L.H. (author), Jansen, Liset (author), Salazar, A.N. (author), van den Broek, M.A. (author), Brouwers, N. (author), Abeel, T.E.P.M.F. (author), Pronk, J.T. (author), Daran, J.G. (author)
Saccharomyces pastorianus lager-brewing yeasts are domesticated hybrids of S. cerevisiae x S. eubayanus that display extensive inter-strain chromosome copy number variation and chromosomal recombinations. It is unclear to what extent such genome rearrangements are intrinsic to the domestication of hybrid brewing yeasts and whether they...
journal article 2019
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Gorter de Vries, A.R. (author), Koster, C.C. (author), Weening, S.M. (author), Luttik, M.A.H. (author), Kuijpers, N.G.A. (author), Geertman, Jan Maarten A. (author), Pronk, J.T. (author), Daran, J.G. (author)
Interspecies hybrids of Saccharomyces species are found in a variety of industrial environments and often outperform their parental strains in industrial fermentation processes. Interspecies hybridization is therefore increasingly considered as an approach for improvement and diversification of yeast strains for industrial application....
journal article 2019
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Jürgens, H. (author), Varela, Javier A. (author), Gorter de Vries, A.R. (author), Perli, T. (author), Gast, V.J.M. (author), Gyurchev, N.Y. (author), Rajkumar, Arun S. (author), Mans, R. (author), Pronk, J.T. (author), Morrissey, John P. (author), Daran, J.G. (author)
While CRISPR-Cas9-mediated genome editing has transformed yeast research, current plasmids and cassettes for Cas9 and guide-RNA expression are species specific. CRISPR tools that function in multiple yeast species could contribute to the intensifying research on non-conventional yeasts. A plasmid carrying a pangenomic origin of replication...
journal article 2018
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Gorter de Vries, A.R. (author), Couwenberg, Lucas G.F. (author), van den Broek, M.A. (author), De La Torre Cortés, Pilar (author), ter Horst, J. (author), Pronk, J.T. (author), Daran, J.G. (author)
Targeted DNA double-strand breaks (DSBs) with CRISPR-Cas9 have revolutionized genetic modification by enabling efficient genome editing in a broad range of eukaryotic systems. Accurate gene editing is possible with near-perfect efficiency in haploid or (predominantly) homozygous genomes. However, genomes exhibiting polyploidy and/or high...
journal article 2018
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Gorter de Vries, A.R. (author), Pronk, J.T. (author), Daran, J.G. (author)
Chromosomal copy number variation (CCNV) plays a key role in evolution and health of eukaryotes. The unicellular yeast Saccharomyces cerevisiae is an important model for studying the generation, physiological impact, and evolutionary significance of CCNV. Fundamental studies of this yeast have contributed to an extensive set of methods for...
journal article 2017
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Gorter de Vries, A.R. (author), de Groot, P.A. (author), van den Broek, M.A. (author), Daran, J.G. (author)
Background: The ease of use of CRISPR-Cas9 reprogramming, its high efficacy, and its multiplexing capabilities have brought this technology at the forefront of genome editing techniques. Saccharomyces pastorianus is an aneuploid interspecific hybrid of Saccharomyces cerevisiae and Saccharomyces eubayanus that has been domesticated for...
journal article 2017
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Salazar, A.N. (author), Gorter de Vries, A.R. (author), van den Broek, M.A. (author), Wijsman, M. (author), de la Torre, P. (author), Brickwedde, A. (author), Brouwers, N. (author), Daran, J.G. (author), Abeel, T.E.P.M.F. (author)
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic engineering and systems biology research. Current genome assemblies are based on short-read sequencing data scaffolded based on homology to strain S288C. However, these assemblies contain large sequence gaps, particularly in subtelomeric regions, and...
journal article 2017
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Gonzalez Ramos, D. (author), Gorter de Vries, A.R. (author), Grijseels, Sietske S. (author), van Berkum, M.C. (author), Swinnen, Steve (author), van den Broek, M.A. (author), Nevoigt, Elke (author), Daran, J.G. (author), Pronk, J.T. (author), van Maris, A.J.A. (author)
Background: Acetic acid, released during hydrolysis of lignocellulosic feedstocks for second generation bioethanol production, inhibits yeast growth and alcoholic fermentation. Yeast biomass generated in a propagation step that precedes ethanol production should therefore express a high and constitutive level of acetic acid tolerance before...
journal article 2016
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