Modelling of <em>S. cerevisiae</em> and <em>T. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen model

Aim: The objective of the present work is to propose a model describing the evolution of the pure culture fermentation of two oenological yeasts: S. cerevisiae and T. delbrueckii. Methods and results: For both yeasts, pure culture fermentation was performed in a synthetic medium with different init...

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Main Authors: Paul Brou, Taillandier Patricia, Sandra Beaufort, Cédric Brandam
Format: Article
Language:English
Published: International Viticulture and Enology Society 2020-05-01
Series:OENO One
Subjects:
Online Access:https://oeno-one.eu/article/view/2574
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spelling doaj-ac8de2ee0f12446e923198a7183bbda82021-04-02T12:17:04ZengInternational Viticulture and Enology SocietyOENO One2494-12712020-05-015410.20870/oeno-one.2020.54.2.2574Modelling of <em>S. cerevisiae</em> and <em>T. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen modelPaul Brou0Taillandier Patricia1Sandra Beaufort2Cédric Brandam3Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, 31000 ToulouseLaboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, 31000 ToulouseLaboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, 31000 ToulouseLaboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, 31000 Toulouse Aim: The objective of the present work is to propose a model describing the evolution of the pure culture fermentation of two oenological yeasts: S. cerevisiae and T. delbrueckii. Methods and results: For both yeasts, pure culture fermentation was performed in a synthetic medium with different initial concentrations of yeast available nitrogen. The datasets obtained from those experiments were used to identify the parameters of the proposed model. Conclusions: The developed comprehensive model of wine-making fermentation is based on the partition of assimilated nitrogen between the constitutive and the storage compartments. It efficiently describes the evolution of S. cerevisiae and T. delbrueckii pure cultures. This mass-balance model provides a stoichiometric approach in biomass production, unlike nitrogen backboned models used in winemaking. Moreover, it gives an estimation of non-accessed data such as nitrogen partition between vacuole and cytosol during T. delbrueckii fermentation. Significance and impact of the study: The developed model is robust enough to precisely describe the fermentation evolution of two pure culture yeasts and therefore has future potential for modelling mixed culture fermentations of S. cerevisiae and T. delbrueckii. https://oeno-one.eu/article/view/2574ModellingFermentationS. cerevisiaeT. delbrueckii
collection DOAJ
language English
format Article
sources DOAJ
author Paul Brou
Taillandier Patricia
Sandra Beaufort
Cédric Brandam
spellingShingle Paul Brou
Taillandier Patricia
Sandra Beaufort
Cédric Brandam
Modelling of <em>S. cerevisiae</em> and <em>T. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen model
OENO One
Modelling
Fermentation
S. cerevisiae
T. delbrueckii
author_facet Paul Brou
Taillandier Patricia
Sandra Beaufort
Cédric Brandam
author_sort Paul Brou
title Modelling of <em>S. cerevisiae</em> and <em>T. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen model
title_short Modelling of <em>S. cerevisiae</em> and <em>T. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen model
title_full Modelling of <em>S. cerevisiae</em> and <em>T. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen model
title_fullStr Modelling of <em>S. cerevisiae</em> and <em>T. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen model
title_full_unstemmed Modelling of <em>S. cerevisiae</em> and <em>T. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen model
title_sort modelling of <em>s. cerevisiae</em> and <em>t. delbrueckii</em> pure culture fermentation in synthetic media using a compartmental nitrogen model
publisher International Viticulture and Enology Society
series OENO One
issn 2494-1271
publishDate 2020-05-01
description Aim: The objective of the present work is to propose a model describing the evolution of the pure culture fermentation of two oenological yeasts: S. cerevisiae and T. delbrueckii. Methods and results: For both yeasts, pure culture fermentation was performed in a synthetic medium with different initial concentrations of yeast available nitrogen. The datasets obtained from those experiments were used to identify the parameters of the proposed model. Conclusions: The developed comprehensive model of wine-making fermentation is based on the partition of assimilated nitrogen between the constitutive and the storage compartments. It efficiently describes the evolution of S. cerevisiae and T. delbrueckii pure cultures. This mass-balance model provides a stoichiometric approach in biomass production, unlike nitrogen backboned models used in winemaking. Moreover, it gives an estimation of non-accessed data such as nitrogen partition between vacuole and cytosol during T. delbrueckii fermentation. Significance and impact of the study: The developed model is robust enough to precisely describe the fermentation evolution of two pure culture yeasts and therefore has future potential for modelling mixed culture fermentations of S. cerevisiae and T. delbrueckii.
topic Modelling
Fermentation
S. cerevisiae
T. delbrueckii
url https://oeno-one.eu/article/view/2574
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