Production of High Added-Value Chemicals in <i>Basfia succiniciproducens</i>: Role of Medium Composition
Succinic acid production through biological fermentation led to new pathways in the integration of renewable feedstock from different industries into biosynthesis. In this article, we investigate the population growth dynamics and succinic acid production potential of the recently isolated natural s...
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doaj-cf2d063819134a719682b0084db6ac492021-03-23T00:03:11ZengMDPI AGSustainability2071-10502021-03-01133513351310.3390/su13063513Production of High Added-Value Chemicals in <i>Basfia succiniciproducens</i>: Role of Medium CompositionHunor Bartos0Márta Balázs1Ildikó Hajnalka Kuzman2Szabolcs Lányi3Ildikó Miklóssy4Faculty of Science, University of Pécs, Ifjúság 6, H-7624 Pécs, HungaryFaculty of Science, University of Pécs, Ifjúság 6, H-7624 Pécs, HungaryDepartment of Bioengineering, Sapientia Hungarian University of Transylvania, Piata Libertatii 1, 530104 Miercurea Ciuc, RomaniaDepartment of Bioengineering, Sapientia Hungarian University of Transylvania, Piata Libertatii 1, 530104 Miercurea Ciuc, RomaniaDepartment of Bioengineering, Sapientia Hungarian University of Transylvania, Piata Libertatii 1, 530104 Miercurea Ciuc, RomaniaSuccinic acid production through biological fermentation led to new pathways in the integration of renewable feedstock from different industries into biosynthesis. In this article, we investigate the population growth dynamics and succinic acid production potential of the recently isolated natural succinic acid producer, <i>Basfia succiniciproducens</i>, using in silico constraint-based metabolic models as well as in vitro experiments. Our work focuses on the influence of different renewable substrates and added yeast extract on fermentation dynamics, and the produced metabolites of the strain cultured in mineral (minimal) medium. According to our experiments, which were carried out as small-scale fermentations and in bioreactor conditions, glucose is the preferred carbon source, while the addition of 1% yeast extract has a significant positive effect on biomass formation. In the case of <i>B. succiniciproducens</i> cultured in minimal salt medium, a production potential as high as 47.09 mM succinic acid was obtained in these conditions. Industrial applications related to this bacterial strain could contribute to new possibilities for the re-use of byproducts by using fermentation processes, leading to high added-value compounds.https://www.mdpi.com/2071-1050/13/6/3513<i>Basfia succiniciproducens</i>succinic acidyeast extract effectbacterial growthbatch cultivation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hunor Bartos Márta Balázs Ildikó Hajnalka Kuzman Szabolcs Lányi Ildikó Miklóssy |
spellingShingle |
Hunor Bartos Márta Balázs Ildikó Hajnalka Kuzman Szabolcs Lányi Ildikó Miklóssy Production of High Added-Value Chemicals in <i>Basfia succiniciproducens</i>: Role of Medium Composition Sustainability <i>Basfia succiniciproducens</i> succinic acid yeast extract effect bacterial growth batch cultivation |
author_facet |
Hunor Bartos Márta Balázs Ildikó Hajnalka Kuzman Szabolcs Lányi Ildikó Miklóssy |
author_sort |
Hunor Bartos |
title |
Production of High Added-Value Chemicals in <i>Basfia succiniciproducens</i>: Role of Medium Composition |
title_short |
Production of High Added-Value Chemicals in <i>Basfia succiniciproducens</i>: Role of Medium Composition |
title_full |
Production of High Added-Value Chemicals in <i>Basfia succiniciproducens</i>: Role of Medium Composition |
title_fullStr |
Production of High Added-Value Chemicals in <i>Basfia succiniciproducens</i>: Role of Medium Composition |
title_full_unstemmed |
Production of High Added-Value Chemicals in <i>Basfia succiniciproducens</i>: Role of Medium Composition |
title_sort |
production of high added-value chemicals in <i>basfia succiniciproducens</i>: role of medium composition |
publisher |
MDPI AG |
series |
Sustainability |
issn |
2071-1050 |
publishDate |
2021-03-01 |
description |
Succinic acid production through biological fermentation led to new pathways in the integration of renewable feedstock from different industries into biosynthesis. In this article, we investigate the population growth dynamics and succinic acid production potential of the recently isolated natural succinic acid producer, <i>Basfia succiniciproducens</i>, using in silico constraint-based metabolic models as well as in vitro experiments. Our work focuses on the influence of different renewable substrates and added yeast extract on fermentation dynamics, and the produced metabolites of the strain cultured in mineral (minimal) medium. According to our experiments, which were carried out as small-scale fermentations and in bioreactor conditions, glucose is the preferred carbon source, while the addition of 1% yeast extract has a significant positive effect on biomass formation. In the case of <i>B. succiniciproducens</i> cultured in minimal salt medium, a production potential as high as 47.09 mM succinic acid was obtained in these conditions. Industrial applications related to this bacterial strain could contribute to new possibilities for the re-use of byproducts by using fermentation processes, leading to high added-value compounds. |
topic |
<i>Basfia succiniciproducens</i> succinic acid yeast extract effect bacterial growth batch cultivation |
url |
https://www.mdpi.com/2071-1050/13/6/3513 |
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