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PMID: 12764565 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Expression of the Aspergillus niger glucose oxidase gene in Saccharomyces cerevisiae and its potential applications in wine production.

Applied microbiology and biotechnology ·Vol. 61 ·No. 5-6 ·2003-06-00 ·Pages 502-11

Malherbe DF, du Toit M, Cordero Otero RR, van Rensburg P, Pretorius IS

Abstract

There is a growing consumer demand for wines containing lower levels of alcohol and chemical preservatives. The objectives of this study were to express the Aspergillus niger gene encoding a glucose oxidase (GOX; beta- d-glucose:oxygen oxidoreductase, EC 1.1.3.4) in Saccharomyces cerevisiae and to evaluate the transformants for lower alcohol production and inhibition of wine spoilage organisms, such as acetic acid bacteria and lactic acid bacteria, during fermentation. The A. niger structural glucose oxidase (gox) gene was cloned into an integration vector (YIp5) containing the yeast mating pheromone alpha-factor secretion signal (MFalpha1(S)) and the phosphoglycerate-kinase-1 gene promoter (PGK1(P)) and terminator (PGK1(T)). The PGK1(P)- MFalpha1(S)- gox- PGK1(T) cassette (designated GOX1) was introduced into a laboratory strain (Sigma1278) of S. cerevisiae. Yeast transformants were analysed for the production of biologically active glucose oxidase on selective agar plates and in liquid assays. The results indicated that the recombinant glucose oxidase was active and was produced beginning early in the exponential growth phase, leading to a stable level in the stationary phase. The yeast transformants also displayed antimicrobial activity in a plate assay against lactic acid bacteria and acetic acid bacteria. This might be explained by the fact that a final product of the GOX enzymatic reaction is hydrogen peroxide, a known antimicrobial agent. Microvinification with the laboratory yeast transformants resulted in wines containing 1.8-2.0% less alcohol. This was probably due to the production of d-glucono-delta-lactone and gluconic acid from glucose by GOX. These results pave the way for the development of wine yeast starter culture strains for the production of wine with reduced levels of chemical preservatives and alcohol.

MeSH Terms
Aspergillus niger/enzymology,genetics Cloning, Molecular Ethanol/metabolism Fermentation Food Microbiology Food Preservatives/administration & dosage Food Technology Gene Expression Genes, Fungal Glucose Oxidase/genetics Microscopy, Electron, Scanning Saccharomyces cerevisiae/enzymology,genetics,ultrastructure Wine/analysis,microbiology
Chemicals
Food Preservatives Ethanol Glucose Oxidase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Malherbe D F
Institute for Wine Biotechnology, Department of Viticulture and Oenology, Stellenbosch University, 7600 Stellenbosch, South Africa.
du Toit M
Cordero Otero R R
van Rensburg P
Pretorius I S
Article Info
Journal
Applied microbiology and biotechnology
Abbr.
Appl Microbiol Biotechnol
ISSN
0175-7598
Published
2003-06-00
Epub
2003-00-11
Pages
502-11
Language
English
Region
Germany
NLM ID
8406612
Subset
IM
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