Literature DB >> 15856224

The use of genetically modified Saccharomyces cerevisiae strains in the wine industry.

Dorit Schuller1, Margarida Casal.   

Abstract

In recent decades, science and food technology have contributed at an accelerated rate to the introduction of new products to satisfy nutritional, socio-economic and quality requirements. With the emergence of modern molecular genetics, the industrial importance of Saccharomyces cerevisiae, is continuously extended. The demand for suitable genetically modified (GM) S. cerevisiae strains for the biofuel, bakery and beverage industries or for the production of biotechnological products (e.g. enzymes, pharmaceutical products) will continuously grow in the future. Numerous specialised S. cerevisiae wine strains were obtained in recent years, possessing a wide range of optimised or novel oenological properties, capable of satisfying the demanding nature of modern winemaking practise. The unlocking of transcriptome, proteome and metabolome complexities will contribute decisively to the knowledge about the genetic make-up of commercial yeast strains and will influence wine strain improvement via genetic engineering. The most relevant advances regarding the importance and implications of the use of GM yeast strains in the wine industry are discussed in this mini-review. In this work, various aspects are considered including the strategies used for the construction of strains with respect to current legislation requirements, the environmental risk evaluations concerning the deliberate release of genetically modified yeast strains, the methods for detection of recombinant DNA and protein that are currently under evaluation, and the reasons behind the critical public perception towards the application of such strains.

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Year:  2005        PMID: 15856224     DOI: 10.1007/s00253-005-1994-2

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  15 in total

1.  Efficient expression of a Paenibacillus barcinonensis endoglucanase in Saccharomyces cerevisiae.

Authors:  María Mormeneo; Fi Javier Pastor; Jesús Zueco
Journal:  J Ind Microbiol Biotechnol       Date:  2011-06-24       Impact factor: 3.346

2.  Assessment of microbial quality and health risks associated with traditional rice wine starter Xaj-pitha of Assam, India: a step towards defined and controlled fermentation.

Authors:  Jyotshna Keot; Sudipta Sankar Bora; Rajiv Das Kangabam; Madhumita Barooah
Journal:  3 Biotech       Date:  2020-01-23       Impact factor: 2.406

3.  Reduction of oxidative cellular damage by overexpression of the thioredoxin TRX2 gene improves yield and quality of wine yeast dry active biomass.

Authors:  Rocío Gómez-Pastor; Roberto Pérez-Torrado; Elisa Cabiscol; Joaquim Ros; Emilia Matallana
Journal:  Microb Cell Fact       Date:  2010-02-12       Impact factor: 5.328

4.  High hydrostatic pressure activates gene expression that leads to ethanol production enhancement in a Saccharomyces cerevisiae distillery strain.

Authors:  Fernanda Bravim; Soyeon I Lippman; Lucas F da Silva; Diego T Souza; A Alberto R Fernandes; Claudio A Masuda; James R Broach; Patricia M B Fernandes
Journal:  Appl Microbiol Biotechnol       Date:  2012-08-23       Impact factor: 4.813

5.  An extra copy of the β-glucosidase gene improved the cellobiose fermentation capability of an engineered Saccharomyces cerevisiae strain.

Authors:  Hyo Jin Kim; Won-Heong Lee; Timothy Lee Turner; Suryang Kwak; Yong-Su Jin
Journal:  3 Biotech       Date:  2019-09-23       Impact factor: 2.406

Review 6.  Progress in metabolic engineering of Saccharomyces cerevisiae.

Authors:  Elke Nevoigt
Journal:  Microbiol Mol Biol Rev       Date:  2008-09       Impact factor: 11.056

Review 7.  Flavour-active wine yeasts.

Authors:  Antonio G Cordente; Christopher D Curtin; Cristian Varela; Isak S Pretorius
Journal:  Appl Microbiol Biotechnol       Date:  2012-09-01       Impact factor: 4.813

8.  Identification of multiple interacting alleles conferring low glycerol and high ethanol yield in Saccharomyces cerevisiae ethanolic fermentation.

Authors:  Georg Hubmann; Lotte Mathé; Maria R Foulquié-Moreno; Jorge Duitama; Elke Nevoigt; Johan M Thevelein
Journal:  Biotechnol Biofuels       Date:  2013-06-11       Impact factor: 6.040

9.  Diversity of flux distribution in central carbon metabolism of S. cerevisiae strains from diverse environments.

Authors:  Thibault Nidelet; Pascale Brial; Carole Camarasa; Sylvie Dequin
Journal:  Microb Cell Fact       Date:  2016-04-05       Impact factor: 5.328

10.  Aroma Profile of Montepulciano d'Abruzzo Wine Fermented by Single and Co-culture Starters of Autochthonous Saccharomyces and Non-saccharomyces Yeasts.

Authors:  Rosanna Tofalo; Francesca Patrignani; Rosalba Lanciotti; Giorgia Perpetuini; Maria Schirone; Paola Di Gianvito; Daniel Pizzoni; Giuseppe Arfelli; Giovanna Suzzi
Journal:  Front Microbiol       Date:  2016-04-28       Impact factor: 5.640

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