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Role of Lactic Acid Bacteria Phospho-β-Glucosidases during the Fermentation of Cereal by-Products

Bioprocessing using lactic acid bacteria (LAB) is a powerful means to exploit plant-derived by-products as a food ingredient. LAB have the capability to metabolize a large variety of carbohydrates, but such metabolism only relies on few metabolic routes, conferring on them a high fermentation potent...

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Detalles Bibliográficos
Autores principales: Acin-Albiac, Marta, Filannino, Pasquale, Arora, Kashika, Da Ros, Alessio, Gobbetti, Marco, Di Cagno, Raffaella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7830935/
https://www.ncbi.nlm.nih.gov/pubmed/33466465
http://dx.doi.org/10.3390/foods10010097
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author Acin-Albiac, Marta
Filannino, Pasquale
Arora, Kashika
Da Ros, Alessio
Gobbetti, Marco
Di Cagno, Raffaella
author_facet Acin-Albiac, Marta
Filannino, Pasquale
Arora, Kashika
Da Ros, Alessio
Gobbetti, Marco
Di Cagno, Raffaella
author_sort Acin-Albiac, Marta
collection PubMed
description Bioprocessing using lactic acid bacteria (LAB) is a powerful means to exploit plant-derived by-products as a food ingredient. LAB have the capability to metabolize a large variety of carbohydrates, but such metabolism only relies on few metabolic routes, conferring on them a high fermentation potential. One example of these pathways is that involving phospho-β-glucosidase genes, which are present in high redundancy within LAB genomes. This enzymatic activity undertakes an ambivalent role during fermentation of plant-based foods related to the release of a wide range of phenolic compounds, from their β-D-glycosylated precursors and the degradation of β-glucopyranosyl derived carbohydrates. We proposed a novel phenomic approach to characterize the metabolism drift of Lactiplantibacillus plantarum and Leuconostoc pseudomesenteroides caused by a lignocellulosic by-product, such as the brewers’ spent grain (BSG), in contrast to Rich De Man, Rogosa and Sharpe (MRS) broth. We observed an increased metabolic activity for gentiobiose, cellobiose and β-glucoside conjugates of phenolic compounds during BSG fermentation. Gene expression analysis confirmed the importance of cellobiose metabolism while a release of lignin-derived aglycones was found during BSG fermentation. We provided a comprehensive view of the important role exerted by LAB 6-phospho-β-glucosidases as well the major metabolic routes undertaken during plant-based fermentations. Further challenges will consider a controlled characterization of pbg gene expression correlated to the metabolism of β-glucosides with different aglycone moieties.
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spelling pubmed-78309352021-01-26 Role of Lactic Acid Bacteria Phospho-β-Glucosidases during the Fermentation of Cereal by-Products Acin-Albiac, Marta Filannino, Pasquale Arora, Kashika Da Ros, Alessio Gobbetti, Marco Di Cagno, Raffaella Foods Article Bioprocessing using lactic acid bacteria (LAB) is a powerful means to exploit plant-derived by-products as a food ingredient. LAB have the capability to metabolize a large variety of carbohydrates, but such metabolism only relies on few metabolic routes, conferring on them a high fermentation potential. One example of these pathways is that involving phospho-β-glucosidase genes, which are present in high redundancy within LAB genomes. This enzymatic activity undertakes an ambivalent role during fermentation of plant-based foods related to the release of a wide range of phenolic compounds, from their β-D-glycosylated precursors and the degradation of β-glucopyranosyl derived carbohydrates. We proposed a novel phenomic approach to characterize the metabolism drift of Lactiplantibacillus plantarum and Leuconostoc pseudomesenteroides caused by a lignocellulosic by-product, such as the brewers’ spent grain (BSG), in contrast to Rich De Man, Rogosa and Sharpe (MRS) broth. We observed an increased metabolic activity for gentiobiose, cellobiose and β-glucoside conjugates of phenolic compounds during BSG fermentation. Gene expression analysis confirmed the importance of cellobiose metabolism while a release of lignin-derived aglycones was found during BSG fermentation. We provided a comprehensive view of the important role exerted by LAB 6-phospho-β-glucosidases as well the major metabolic routes undertaken during plant-based fermentations. Further challenges will consider a controlled characterization of pbg gene expression correlated to the metabolism of β-glucosides with different aglycone moieties. MDPI 2021-01-05 /pmc/articles/PMC7830935/ /pubmed/33466465 http://dx.doi.org/10.3390/foods10010097 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Acin-Albiac, Marta
Filannino, Pasquale
Arora, Kashika
Da Ros, Alessio
Gobbetti, Marco
Di Cagno, Raffaella
Role of Lactic Acid Bacteria Phospho-β-Glucosidases during the Fermentation of Cereal by-Products
title Role of Lactic Acid Bacteria Phospho-β-Glucosidases during the Fermentation of Cereal by-Products
title_full Role of Lactic Acid Bacteria Phospho-β-Glucosidases during the Fermentation of Cereal by-Products
title_fullStr Role of Lactic Acid Bacteria Phospho-β-Glucosidases during the Fermentation of Cereal by-Products
title_full_unstemmed Role of Lactic Acid Bacteria Phospho-β-Glucosidases during the Fermentation of Cereal by-Products
title_short Role of Lactic Acid Bacteria Phospho-β-Glucosidases during the Fermentation of Cereal by-Products
title_sort role of lactic acid bacteria phospho-β-glucosidases during the fermentation of cereal by-products
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7830935/
https://www.ncbi.nlm.nih.gov/pubmed/33466465
http://dx.doi.org/10.3390/foods10010097
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