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Glycerol and reuterin-producing Limosilactobacillus reuteri enhance butyrate production and inhibit Enterobacteriaceae in broiler chicken cecal microbiota PolyFermS model
by
Babst, Angela
, Greppi, Anna
, Pennacchia, Alessia
, Asare, Paul Tetteh
, Geirnaert, Annelies
, Lacroix, Christophe
in
3-Hydroxypropionaldehyde
/ Alcohol metabolism
/ Alcohols
/ Animals
/ Antimicrobial agents
/ Bacteria
/ Biological Microscopy
/ Biomedical and Life Sciences
/ Bioreactors
/ Broilers (Poultry)
/ Butyrate
/ Butyrates
/ Campylobacter
/ Cecum
/ Chain branching
/ Chicken cecal microbiota
/ Chickens
/ Combined treatment
/ Effluents
/ Enterobacteriaceae
/ Enterobacteriaceae infections
/ Fermentation
/ Glycerol
/ Health aspects
/ In vitro model
/ Intestinal microflora
/ L. reuteri
/ Life Sciences
/ Limosilactobacillus reuteri
/ Liquid chromatography
/ Metabolism
/ Metabolites
/ Methods
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Microorganisms
/ Mycology
/ Organic compounds
/ Parasitology
/ Physiological aspects
/ Poultry
/ Prevention
/ Probiotics
/ Reactors
/ Reuterin
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Salmonella
/ Supplements
/ Virology
2023
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Glycerol and reuterin-producing Limosilactobacillus reuteri enhance butyrate production and inhibit Enterobacteriaceae in broiler chicken cecal microbiota PolyFermS model
by
Babst, Angela
, Greppi, Anna
, Pennacchia, Alessia
, Asare, Paul Tetteh
, Geirnaert, Annelies
, Lacroix, Christophe
in
3-Hydroxypropionaldehyde
/ Alcohol metabolism
/ Alcohols
/ Animals
/ Antimicrobial agents
/ Bacteria
/ Biological Microscopy
/ Biomedical and Life Sciences
/ Bioreactors
/ Broilers (Poultry)
/ Butyrate
/ Butyrates
/ Campylobacter
/ Cecum
/ Chain branching
/ Chicken cecal microbiota
/ Chickens
/ Combined treatment
/ Effluents
/ Enterobacteriaceae
/ Enterobacteriaceae infections
/ Fermentation
/ Glycerol
/ Health aspects
/ In vitro model
/ Intestinal microflora
/ L. reuteri
/ Life Sciences
/ Limosilactobacillus reuteri
/ Liquid chromatography
/ Metabolism
/ Metabolites
/ Methods
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Microorganisms
/ Mycology
/ Organic compounds
/ Parasitology
/ Physiological aspects
/ Poultry
/ Prevention
/ Probiotics
/ Reactors
/ Reuterin
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Salmonella
/ Supplements
/ Virology
2023
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Glycerol and reuterin-producing Limosilactobacillus reuteri enhance butyrate production and inhibit Enterobacteriaceae in broiler chicken cecal microbiota PolyFermS model
by
Babst, Angela
, Greppi, Anna
, Pennacchia, Alessia
, Asare, Paul Tetteh
, Geirnaert, Annelies
, Lacroix, Christophe
in
3-Hydroxypropionaldehyde
/ Alcohol metabolism
/ Alcohols
/ Animals
/ Antimicrobial agents
/ Bacteria
/ Biological Microscopy
/ Biomedical and Life Sciences
/ Bioreactors
/ Broilers (Poultry)
/ Butyrate
/ Butyrates
/ Campylobacter
/ Cecum
/ Chain branching
/ Chicken cecal microbiota
/ Chickens
/ Combined treatment
/ Effluents
/ Enterobacteriaceae
/ Enterobacteriaceae infections
/ Fermentation
/ Glycerol
/ Health aspects
/ In vitro model
/ Intestinal microflora
/ L. reuteri
/ Life Sciences
/ Limosilactobacillus reuteri
/ Liquid chromatography
/ Metabolism
/ Metabolites
/ Methods
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Microorganisms
/ Mycology
/ Organic compounds
/ Parasitology
/ Physiological aspects
/ Poultry
/ Prevention
/ Probiotics
/ Reactors
/ Reuterin
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Salmonella
/ Supplements
/ Virology
2023
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Glycerol and reuterin-producing Limosilactobacillus reuteri enhance butyrate production and inhibit Enterobacteriaceae in broiler chicken cecal microbiota PolyFermS model
Journal Article
Glycerol and reuterin-producing Limosilactobacillus reuteri enhance butyrate production and inhibit Enterobacteriaceae in broiler chicken cecal microbiota PolyFermS model
2023
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Overview
Background
Administering probiotic strains of
Limosilactobacillus reuteri
to poultry has been shown to improve poultry performance and health. Some strains of
L. reuteri
taxa can produce reuterin, a broad-spectrum antimicrobial compound from glycerol conversion, with high inhibitory activity against enterobacteria. However, little is known about the metabolism of glycerol in the complex chicken cecal microbiota nor the effect of glycerol, either alone or combined with
L. reuteri
on the microbiota. In this study, we investigated the effect of
L. reuteri
PTA5_F13, a high-reuterin-producing chicken strain and glycerol, alone or combined, on broiler chicken cecal microbiota composition and activity using the continuous PolyFermS model recently developed to mimic chicken cecal fermentation.
Methods
Three independent PolyFermS chicken cecal microbiota models were inoculated with immobilized cecal microbiota from different animals and operated continuously. The effects of two additional levels of glycerol (50 and 100 mM) with or without daily supplementation of chicken-derived
L. reuteri
PTA5_F13 (10
7
CFU/mL final concentration) were tested in parallel second-stage reactors continuously inoculated with the same microbiota. We analyzed the complex chicken gut microbiota structure and dynamics upon treatment using 16S rRNA metabarcoding and qPCR. Microbiota metabolites, short-chain and branched-chain fatty acids, and glycerol and reuterin products were analyzed by HPLC in effluent samples from stabilized reactors.
Results
Supplementation with 100 mM glycerol alone and combined with
L. reuteri
PTA5_F13 resulted in a reproducible increase in butyrate production in the three modelled microbiota (increases of 18 to 25%). Glycerol alone resulted also in a reduction of
Enterobacteriaceae
in two of the three microbiota, but no effect was detected for
L. reuteri
alone. When both treatments were combined, all microbiota quantitatively inhibited
Enterobacteriaceae
, including in the last model that had very high initial concentrations of
Enterobacteriaceae
. Furthermore, a significant 1,3-PDO accumulation was measured in the effluent of the combined treatment, confirming the conversion of glycerol via the reuterin pathway. Glycerol supplementation, independent of
L. reuteri
addition, did not affect the microbial community diversity.
Conclusions
Glycerol induced a stable and reproducible butyrogenic activity for all tested microbiota and induced an inhibitory effect against
Enterobacteriaceae
that was strengthened when reuterin-producing
L. reuteri
was spiked daily. Our in vitro study suggests that co-application of
L. reuteri
PTA5_F13 and glycerol could be a useful approach to promote chicken gut health by enhancing metabolism and protection against
Enterobacteriaceae
.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
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