Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Protective effect of Lactobacillus reuteri KUB-AC5 against Salmonella Enteritidis challenge in chickens

View through CrossRef
Poultry is an important high-quality food and protein source for humans. However, chicken is considered a primary source of foodborne diseases, especially Salmonella Enteritidis infection. Reducing Salmonella contamination in live poultry will thus lower the risk to consumers. Our previous studies reported that Lactobacillus reuteri KUB-AC5 can produce a substance with antimicrobial activity against pathogenic bacteria, especially Salmonella. In vivo testing revealed that this strain greatly influenced the ileal microbiota by improving chicken gastrointestinal health and inhibiting certain pathogenic bacteria. However, its activity against Salmonella in chicken is unknown. This study investigated the effects of the probiotic L. reuteri KUB-AC5 at various concentrations against Salmonella and the microbiota status in the gastrointestinal tract of broiler chickens. Four treatments groups were used: negative-control group (no Salmonella challenge), positive-control group (Salmonella challenge), and 5 or 7 log cfu probiotic supplementation to Salmonella-challenged chickens. The resultant microbial diversities at the growing and finisher stages were not significantly different among the groups (P>0.05). However, a high dosage of KUB-AC5 maintained similar microbial diversity in Salmonella-challenged chickens as observed in the non-challenged group in the early stage. The exposure Salmonella can affect the microbial diversity that consequently contributes to the disease progression in chicken. Low and high dosages of KUB-AC5 eliminated S. Enteritidis from the ileum and caecum at 14, 21 and 35 days of age. A high-dose of KUB-AC5 also enhanced Lactobacillaceae levels in the growing stage in both the ileum and caecum and suppressed Enterobacteriaceae levels in the finisher stage on day 35, whereas these effects were not observed in the low dose of KUB-AC5 or control groups. These results support the potential value of high-dose L. reuteri KUB-AC5 supplementation for three days after hatching in preventing Salmonella infection in chickens.
Title: Protective effect of Lactobacillus reuteri KUB-AC5 against Salmonella Enteritidis challenge in chickens
Description:
Poultry is an important high-quality food and protein source for humans.
However, chicken is considered a primary source of foodborne diseases, especially Salmonella Enteritidis infection.
Reducing Salmonella contamination in live poultry will thus lower the risk to consumers.
Our previous studies reported that Lactobacillus reuteri KUB-AC5 can produce a substance with antimicrobial activity against pathogenic bacteria, especially Salmonella.
In vivo testing revealed that this strain greatly influenced the ileal microbiota by improving chicken gastrointestinal health and inhibiting certain pathogenic bacteria.
However, its activity against Salmonella in chicken is unknown.
This study investigated the effects of the probiotic L.
reuteri KUB-AC5 at various concentrations against Salmonella and the microbiota status in the gastrointestinal tract of broiler chickens.
Four treatments groups were used: negative-control group (no Salmonella challenge), positive-control group (Salmonella challenge), and 5 or 7 log cfu probiotic supplementation to Salmonella-challenged chickens.
The resultant microbial diversities at the growing and finisher stages were not significantly different among the groups (P>0.
05).
However, a high dosage of KUB-AC5 maintained similar microbial diversity in Salmonella-challenged chickens as observed in the non-challenged group in the early stage.
The exposure Salmonella can affect the microbial diversity that consequently contributes to the disease progression in chicken.
Low and high dosages of KUB-AC5 eliminated S.
Enteritidis from the ileum and caecum at 14, 21 and 35 days of age.
A high-dose of KUB-AC5 also enhanced Lactobacillaceae levels in the growing stage in both the ileum and caecum and suppressed Enterobacteriaceae levels in the finisher stage on day 35, whereas these effects were not observed in the low dose of KUB-AC5 or control groups.
These results support the potential value of high-dose L.
reuteri KUB-AC5 supplementation for three days after hatching in preventing Salmonella infection in chickens.

Related Results

Anti-inflammatory Effect of Probiotic Limosilactobacillus reuteri KUB-AC5 Against Salmonella Infection in a Mouse Colitis Model
Anti-inflammatory Effect of Probiotic Limosilactobacillus reuteri KUB-AC5 Against Salmonella Infection in a Mouse Colitis Model
Acute non-typhoidal salmonellosis (NTS) caused by Salmonella enterica Typhimurium (STM) is among the most prevalent of foodborne diseases. A global rising of antibiotic resistance ...
Association of Growth Hormone Gen with KUB Chicken Productivity
Association of Growth Hormone Gen with KUB Chicken Productivity
This study aims to investigate the diversity of quantitative characteristics and GH genes, along with the association between GH genes and quantitative characteristics. The researc...
Disruption of Adenylyl Cyclase Type 5 Induces Anti‐Depressive Behavior
Disruption of Adenylyl Cyclase Type 5 Induces Anti‐Depressive Behavior
It is generally thought that increases in cyclic AMP signaling will induce depressive behavior. We examined the extent to which behavior was modified by disruption of adenylyl cycl...
Growth Performance of French Guinea Fowl Broilers Fed the Probiotics Lactobacillus reuteri and Streptomyces coelicolor
Growth Performance of French Guinea Fowl Broilers Fed the Probiotics Lactobacillus reuteri and Streptomyces coelicolor
The continuous use of antibiotics is associated with many complications in the poultry industry. Probiotics have emerged as a viable alternative over the past few decades to counte...
Action of secondary metabolites of Lactobacillus strains against caries causing microorganism Streptococcus mutans, oral care in vitro study
Action of secondary metabolites of Lactobacillus strains against caries causing microorganism Streptococcus mutans, oral care in vitro study
Oral health has a direct impact on an individual’s wellbeing and quality of life. Probiotics are increasingly being recognized as an effective preventive measure in dental hygiene....

Back to Top