The veil of flor's structure, composition and interactions in biological ageing wines
Biological ageing occurs after fermentation of the grape must and it is due to the appearance of a biofilm on the surface of the wine called “veil of flor”. Yeast involved in veil formation are mainly Saccharomyces cerevisiae and they have traditionally been divided into four races according to thei...
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2019-01-01
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doaj-5bbd1be7e15d47bd97c26097ee21abb02021-04-02T17:33:20ZengEDP SciencesBIO Web of Conferences2117-44582019-01-01150201810.1051/bioconf/20191502018bioconf-oiv2019_02018The veil of flor's structure, composition and interactions in biological ageing winesRuiz-Muñoz M.0Cordero-Bueso G.1Martínez S.2Pérez F.3Hughes-Herrera D.4Izquierdo-Bueno I.Cantoral J.M.5Departamento de Biomedicina, Biotecnologíay Salud Pública, Universidad de CádizDepartamento de Biomedicina, Biotecnologíay Salud Pública, Universidad de CádizEmilio Lustau S.A. Jerezdela FronteraLuis Caballero S.A. El Puerto de Santa MaríaDepartamento de Biomedicina, Biotecnologíay Salud Pública, Universidad de CádizDepartamento de Biomedicina, Biotecnologíay Salud Pública, Universidad de CádizBiological ageing occurs after fermentation of the grape must and it is due to the appearance of a biofilm on the surface of the wine called “veil of flor”. Yeast involved in veil formation are mainly Saccharomyces cerevisiae and they have traditionally been divided into four races according to their ability to metabolize different sugars. The growth of flor yeasts depends on different factors, such as the aerobic assimilation of the wine ethanol, since the medium is deficient in both sugars and nitrogen. Actually, flor yeast metabolism is different from wine S. cerevisiaeyeast, but it hasn't been analysed yet. Thus, the aim of this work is to study the diversity of flor yeast strains and to analyse the composition and the structure of the veil of flor in Jerez-Xérés-Sherry D.O. The results of this work revealed 14 different genotypes of S. cerevisiaestrains using multiplex-microsatellite PCR and these strains showed 8 different biochemical profiles using a similar procedure than traditionally. In addition, mannose and glucose were found in veil of flor complex using UHPLC-MS.https://www.bio-conferences.org/articles/bioconf/full_html/2019/04/bioconf-oiv2019_02018/bioconf-oiv2019_02018.html |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ruiz-Muñoz M. Cordero-Bueso G. Martínez S. Pérez F. Hughes-Herrera D. Izquierdo-Bueno I. Cantoral J.M. |
spellingShingle |
Ruiz-Muñoz M. Cordero-Bueso G. Martínez S. Pérez F. Hughes-Herrera D. Izquierdo-Bueno I. Cantoral J.M. The veil of flor's structure, composition and interactions in biological ageing wines BIO Web of Conferences |
author_facet |
Ruiz-Muñoz M. Cordero-Bueso G. Martínez S. Pérez F. Hughes-Herrera D. Izquierdo-Bueno I. Cantoral J.M. |
author_sort |
Ruiz-Muñoz M. |
title |
The veil of flor's structure, composition and interactions in biological ageing wines |
title_short |
The veil of flor's structure, composition and interactions in biological ageing wines |
title_full |
The veil of flor's structure, composition and interactions in biological ageing wines |
title_fullStr |
The veil of flor's structure, composition and interactions in biological ageing wines |
title_full_unstemmed |
The veil of flor's structure, composition and interactions in biological ageing wines |
title_sort |
veil of flor's structure, composition and interactions in biological ageing wines |
publisher |
EDP Sciences |
series |
BIO Web of Conferences |
issn |
2117-4458 |
publishDate |
2019-01-01 |
description |
Biological ageing occurs after fermentation of the grape must and it is due to the appearance of a biofilm on the surface of the wine called “veil of flor”. Yeast involved in veil formation are mainly Saccharomyces cerevisiae and they have traditionally been divided into four races according to their ability to metabolize different sugars. The growth of flor yeasts depends on different factors, such as the aerobic assimilation of the wine ethanol, since the medium is deficient in both sugars and nitrogen. Actually, flor yeast metabolism is different from wine S. cerevisiaeyeast, but it hasn't been analysed yet. Thus, the aim of this work is to study the diversity of flor yeast strains and to analyse the composition and the structure of the veil of flor in Jerez-Xérés-Sherry D.O. The results of this work revealed 14 different genotypes of S. cerevisiaestrains using multiplex-microsatellite PCR and these strains showed 8 different biochemical profiles using a similar procedure than traditionally. In addition, mannose and glucose were found in veil of flor complex using UHPLC-MS. |
url |
https://www.bio-conferences.org/articles/bioconf/full_html/2019/04/bioconf-oiv2019_02018/bioconf-oiv2019_02018.html |
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