Method for controlling the production of sulphites, of hydrogen sulphide and of acetaldehyde by yeasts
View Patent ↗The present invention relates to the identification of alleles of the MET2 and SKP2 genes having the effect of reducing the production of sulphites, of hydrogen sulphide and of acetaldehyde by Saccharomyces , and to the use of these alleles in methods for controlling the production of these compounds during alcoholic fermentation.
1. A method for obtaining a yeast strain of the genus Saccharomyces producing an amount of SO 2 , of hydrogen sulfide and of acetaldehyde which is lower than that produced by the parent strain from which it is derived, said method being characterized in that it comprises:
the selection of a parent strain containing an allele of the SKP2 gene, hereinafter known as SKP2 (350/357X) , encoding a Skp2 protein in which the amino acid in position 350 and the amino acid in position 357 are other than isoleucines, and/or an allele of the MET2 gene, hereinafter known as MET2 301X , encoding a Met2 protein in which the amino acid in position 301 is other than a glycine; and
the introduction, into said parent strain, of an allele of the SKP2 gene, hereinafter known as SKP2 (350/357)I , encoding a Skp2 protein in which the amino acid in position 350 and the amino acid in position 357 are isoleucines, and/or of an allele of the MET2 gene, hereinafter known as MET2 301G , encoding a Met2 protein in which the amino acid in position 301 is a glycine, wherein said yeast strain belongs to the Saccharomyces cervisiae species.
2. The method as claimed in claim 1 , characterized in that said parent strain contains an allele of the SKP2 gene, hereinafter known as SKP2 350V/357T , encoding a Skp2 protein in which the amino acid in position 350 is a valine and/or the amino acid in position 357 is a threonine, and/or an allele of the MET2 gene, hereinafter known as MET2 301R , encoding a Met2 protein in which the amino acid in position 301 is an arginine.
3. The method as claimed in claim 1 , characterized in that said parent strain contains an allele of the SKP2 gene, hereinafter known as SKP2 350V/357T , encoding a Skp2 protein in which the amino acid in position 350 is a valine and the amino acid in position 357 is a threonine.
4. The method as claimed in claim 1 , characterized in that said parent strain contains an allele of the SKP2 gene, hereinafter known as SKP2 350V/357T , encoding a Skp2 protein in which the amino acid in position 350 is a valine and the amino acid in position 357 is a threonine and an allele of the MET2 gene, hereinafter known as MET2 301R , encoding a Met2 protein in which the amino acid in position 301 is an arginine.