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Effects of Chestnut Tannin Extract, Vescalagin and Gallic Acid on the Dimethyl Acetals Profile and Microbial Community Composition in Rumen Liquor: An In Vitro Study

The addition of polyphenol extracts in ruminant diets is an effective strategy to modulate rumen microflora. The aim of this in vitro trial was to study the effects of chestnut tannin extract (CHT), vescalagin (VES) and gallic acid (GAL) on dietary fibre degradability and on the dimethyl acetals (DM...

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Autores principales: Mannelli, Federica, Daghio, Matteo, Alves, Susana P., Bessa, Rui J. B., Minieri, Sara, Giovannetti, Luciana, Conte, Giuseppe, Mele, Marcello, Messini, Anna, Rapaccini, Stefano, Viti, Carlo, Buccioni, Arianna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680752/
https://www.ncbi.nlm.nih.gov/pubmed/31323805
http://dx.doi.org/10.3390/microorganisms7070202
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author Mannelli, Federica
Daghio, Matteo
Alves, Susana P.
Bessa, Rui J. B.
Minieri, Sara
Giovannetti, Luciana
Conte, Giuseppe
Mele, Marcello
Messini, Anna
Rapaccini, Stefano
Viti, Carlo
Buccioni, Arianna
author_facet Mannelli, Federica
Daghio, Matteo
Alves, Susana P.
Bessa, Rui J. B.
Minieri, Sara
Giovannetti, Luciana
Conte, Giuseppe
Mele, Marcello
Messini, Anna
Rapaccini, Stefano
Viti, Carlo
Buccioni, Arianna
author_sort Mannelli, Federica
collection PubMed
description The addition of polyphenol extracts in ruminant diets is an effective strategy to modulate rumen microflora. The aim of this in vitro trial was to study the effects of chestnut tannin extract (CHT), vescalagin (VES) and gallic acid (GAL) on dietary fibre degradability and on the dimethyl acetals (DMA) profile and microbial community composition of rumen liquor. Four diets (basal diet; basal diet plus CHT; basal diet plus VES; basal diet plus GAL) were fermented for 24 h using ewe rumen liquor. At the end of the fermentation, the microbial communities were characterized by sequencing the 16S rRNA gene. The DMA profile was analyzed by gas chromatography. Chestnut tannin extract did not affect fibre degradability, whereas VES and GAL showed a detrimental effect. The presence of CHT, VES and GAL influenced the concentration of several DMA (i.e., 12:0, 13:0, 14:0, 15:0, 18:0 and 18:1 trans-11), whereas the composition of the microbial community was marginally affected. The inclusion of CHT led to the enrichment of the genera Anaerovibrio, Bibersteinia, Escherichia/Shigella, Pseudobutyrivibrio and Streptococcus. The results of this study support the hypothesis that the activity of CHT is due to the synergistic effect of all components rather than the property of a single component.
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spelling pubmed-66807522019-08-09 Effects of Chestnut Tannin Extract, Vescalagin and Gallic Acid on the Dimethyl Acetals Profile and Microbial Community Composition in Rumen Liquor: An In Vitro Study Mannelli, Federica Daghio, Matteo Alves, Susana P. Bessa, Rui J. B. Minieri, Sara Giovannetti, Luciana Conte, Giuseppe Mele, Marcello Messini, Anna Rapaccini, Stefano Viti, Carlo Buccioni, Arianna Microorganisms Article The addition of polyphenol extracts in ruminant diets is an effective strategy to modulate rumen microflora. The aim of this in vitro trial was to study the effects of chestnut tannin extract (CHT), vescalagin (VES) and gallic acid (GAL) on dietary fibre degradability and on the dimethyl acetals (DMA) profile and microbial community composition of rumen liquor. Four diets (basal diet; basal diet plus CHT; basal diet plus VES; basal diet plus GAL) were fermented for 24 h using ewe rumen liquor. At the end of the fermentation, the microbial communities were characterized by sequencing the 16S rRNA gene. The DMA profile was analyzed by gas chromatography. Chestnut tannin extract did not affect fibre degradability, whereas VES and GAL showed a detrimental effect. The presence of CHT, VES and GAL influenced the concentration of several DMA (i.e., 12:0, 13:0, 14:0, 15:0, 18:0 and 18:1 trans-11), whereas the composition of the microbial community was marginally affected. The inclusion of CHT led to the enrichment of the genera Anaerovibrio, Bibersteinia, Escherichia/Shigella, Pseudobutyrivibrio and Streptococcus. The results of this study support the hypothesis that the activity of CHT is due to the synergistic effect of all components rather than the property of a single component. MDPI 2019-07-18 /pmc/articles/PMC6680752/ /pubmed/31323805 http://dx.doi.org/10.3390/microorganisms7070202 Text en © 2019 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
Mannelli, Federica
Daghio, Matteo
Alves, Susana P.
Bessa, Rui J. B.
Minieri, Sara
Giovannetti, Luciana
Conte, Giuseppe
Mele, Marcello
Messini, Anna
Rapaccini, Stefano
Viti, Carlo
Buccioni, Arianna
Effects of Chestnut Tannin Extract, Vescalagin and Gallic Acid on the Dimethyl Acetals Profile and Microbial Community Composition in Rumen Liquor: An In Vitro Study
title Effects of Chestnut Tannin Extract, Vescalagin and Gallic Acid on the Dimethyl Acetals Profile and Microbial Community Composition in Rumen Liquor: An In Vitro Study
title_full Effects of Chestnut Tannin Extract, Vescalagin and Gallic Acid on the Dimethyl Acetals Profile and Microbial Community Composition in Rumen Liquor: An In Vitro Study
title_fullStr Effects of Chestnut Tannin Extract, Vescalagin and Gallic Acid on the Dimethyl Acetals Profile and Microbial Community Composition in Rumen Liquor: An In Vitro Study
title_full_unstemmed Effects of Chestnut Tannin Extract, Vescalagin and Gallic Acid on the Dimethyl Acetals Profile and Microbial Community Composition in Rumen Liquor: An In Vitro Study
title_short Effects of Chestnut Tannin Extract, Vescalagin and Gallic Acid on the Dimethyl Acetals Profile and Microbial Community Composition in Rumen Liquor: An In Vitro Study
title_sort effects of chestnut tannin extract, vescalagin and gallic acid on the dimethyl acetals profile and microbial community composition in rumen liquor: an in vitro study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680752/
https://www.ncbi.nlm.nih.gov/pubmed/31323805
http://dx.doi.org/10.3390/microorganisms7070202
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