Cargando…

Dietary Supplementation with Probiotic Bacillus licheniformis S6 Improves Intestinal Integrity via Modulating Intestinal Barrier Function and Microbial Diversity in Weaned Piglets

SIMPLE SUMMARY: The livestock industry urgently needs alternatives to antibiotics, especially in post-weaning piglets. Numerous studies support the notion that dietary supplementation probiotics seem to be one of the most promising tactics to reduce post-weaning diarrhea in pigs. Bacillus li-canifor...

Descripción completa

Detalles Bibliográficos
Autores principales: Sun, Wenjuan, Chen, Wenning, Meng, Kun, Cai, Long, Li, Guiguan, Li, Xilong, Jiang, Xianren
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9953057/
https://www.ncbi.nlm.nih.gov/pubmed/36829515
http://dx.doi.org/10.3390/biology12020238
_version_ 1784893783552294912
author Sun, Wenjuan
Chen, Wenning
Meng, Kun
Cai, Long
Li, Guiguan
Li, Xilong
Jiang, Xianren
author_facet Sun, Wenjuan
Chen, Wenning
Meng, Kun
Cai, Long
Li, Guiguan
Li, Xilong
Jiang, Xianren
author_sort Sun, Wenjuan
collection PubMed
description SIMPLE SUMMARY: The livestock industry urgently needs alternatives to antibiotics, especially in post-weaning piglets. Numerous studies support the notion that dietary supplementation probiotics seem to be one of the most promising tactics to reduce post-weaning diarrhea in pigs. Bacillus li-caniforms S6 (BL−S6) supplementation in piglets was investigated for its effect on growth performance and gut health. The researchers found that BL−S6 supplementation modulated the piglet’s immunity-oxidative capacity and composition of the cecum microbiota, which would, in turn, modulate intestinal barrier function, and eventually improve growth performance and relieves diarrhea. We highlight the potential role of BL−S6 as an option to improve growth performance and relieve diarrhea in pig production. ABSTRACT: Bacillus licheniformis (B. Licheniformis) has been considered to be an effective probiotic to maintain gut health and boost productivity in the pig industry, but there is no complete understanding of its mechanisms. We determined whether weaned piglets exposed to BL−S6 (probiotic) had altered intestinal barrier function or microbiota composition. In our study, 108 weaned piglets (54 barrows and 54 gilts) were divided equally into three groups, each with six pens and six piglets/pen, and fed a basal diet supplemented without or with antibiotic (40 g/t of Virginiamycin and 500 g/t of Chlortetracycline) or probiotic (1000 g/t of B. Licheniformis) for a 14-day trial. On day 14, one piglet was chosen from each pen to collect blood and intestinal samples. Compared with the control group, dietary supplementation with a probiotic promoted body weight (BW) gain and average daily gains (ADG) while reducing diarrhea incidence (p < 0.05). Probiotics enhanced superoxidase dismutase (SOD) activity and decreased malondialdehyde (MDA) levels in serum (p < 0.05), and increased the level of mRNA expression of SOD1, Nrf2, and HO-1 (p < 0.05) in the jejunum mucosa. Moreover, supplementation with probiotics improved intestinal mucosal integrity as evidenced by higher villus heights and a higher ratio of villus heights to crypt depths (duodenum and jejunum) and higher mRNA and protein levels of occludin and ZO-1 in jejunum mucosa (p < 0.05). The intestinal sIgA levels (p < 0.05) were elevated in the probiotic group, and that of serum immunoglobulin A (IgA) tended to be higher (p = 0.09). Furthermore, weaning piglets who were given probiotics had a better balance of the cecum microbiota, with lactobacillus abundance increased and clostridium_sensu_stricto_1 abundance decreased. In conclusion, dietary supplementation with the probiotic BL−S6 promoted intestinal integrity, which was associated, in part, with modulating intestinal barrier function and microbial diversity in weaned piglets; it may offer a promising alternative to antibiotics to prevent diarrhea.
format Online
Article
Text
id pubmed-9953057
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99530572023-02-25 Dietary Supplementation with Probiotic Bacillus licheniformis S6 Improves Intestinal Integrity via Modulating Intestinal Barrier Function and Microbial Diversity in Weaned Piglets Sun, Wenjuan Chen, Wenning Meng, Kun Cai, Long Li, Guiguan Li, Xilong Jiang, Xianren Biology (Basel) Article SIMPLE SUMMARY: The livestock industry urgently needs alternatives to antibiotics, especially in post-weaning piglets. Numerous studies support the notion that dietary supplementation probiotics seem to be one of the most promising tactics to reduce post-weaning diarrhea in pigs. Bacillus li-caniforms S6 (BL−S6) supplementation in piglets was investigated for its effect on growth performance and gut health. The researchers found that BL−S6 supplementation modulated the piglet’s immunity-oxidative capacity and composition of the cecum microbiota, which would, in turn, modulate intestinal barrier function, and eventually improve growth performance and relieves diarrhea. We highlight the potential role of BL−S6 as an option to improve growth performance and relieve diarrhea in pig production. ABSTRACT: Bacillus licheniformis (B. Licheniformis) has been considered to be an effective probiotic to maintain gut health and boost productivity in the pig industry, but there is no complete understanding of its mechanisms. We determined whether weaned piglets exposed to BL−S6 (probiotic) had altered intestinal barrier function or microbiota composition. In our study, 108 weaned piglets (54 barrows and 54 gilts) were divided equally into three groups, each with six pens and six piglets/pen, and fed a basal diet supplemented without or with antibiotic (40 g/t of Virginiamycin and 500 g/t of Chlortetracycline) or probiotic (1000 g/t of B. Licheniformis) for a 14-day trial. On day 14, one piglet was chosen from each pen to collect blood and intestinal samples. Compared with the control group, dietary supplementation with a probiotic promoted body weight (BW) gain and average daily gains (ADG) while reducing diarrhea incidence (p < 0.05). Probiotics enhanced superoxidase dismutase (SOD) activity and decreased malondialdehyde (MDA) levels in serum (p < 0.05), and increased the level of mRNA expression of SOD1, Nrf2, and HO-1 (p < 0.05) in the jejunum mucosa. Moreover, supplementation with probiotics improved intestinal mucosal integrity as evidenced by higher villus heights and a higher ratio of villus heights to crypt depths (duodenum and jejunum) and higher mRNA and protein levels of occludin and ZO-1 in jejunum mucosa (p < 0.05). The intestinal sIgA levels (p < 0.05) were elevated in the probiotic group, and that of serum immunoglobulin A (IgA) tended to be higher (p = 0.09). Furthermore, weaning piglets who were given probiotics had a better balance of the cecum microbiota, with lactobacillus abundance increased and clostridium_sensu_stricto_1 abundance decreased. In conclusion, dietary supplementation with the probiotic BL−S6 promoted intestinal integrity, which was associated, in part, with modulating intestinal barrier function and microbial diversity in weaned piglets; it may offer a promising alternative to antibiotics to prevent diarrhea. MDPI 2023-02-02 /pmc/articles/PMC9953057/ /pubmed/36829515 http://dx.doi.org/10.3390/biology12020238 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sun, Wenjuan
Chen, Wenning
Meng, Kun
Cai, Long
Li, Guiguan
Li, Xilong
Jiang, Xianren
Dietary Supplementation with Probiotic Bacillus licheniformis S6 Improves Intestinal Integrity via Modulating Intestinal Barrier Function and Microbial Diversity in Weaned Piglets
title Dietary Supplementation with Probiotic Bacillus licheniformis S6 Improves Intestinal Integrity via Modulating Intestinal Barrier Function and Microbial Diversity in Weaned Piglets
title_full Dietary Supplementation with Probiotic Bacillus licheniformis S6 Improves Intestinal Integrity via Modulating Intestinal Barrier Function and Microbial Diversity in Weaned Piglets
title_fullStr Dietary Supplementation with Probiotic Bacillus licheniformis S6 Improves Intestinal Integrity via Modulating Intestinal Barrier Function and Microbial Diversity in Weaned Piglets
title_full_unstemmed Dietary Supplementation with Probiotic Bacillus licheniformis S6 Improves Intestinal Integrity via Modulating Intestinal Barrier Function and Microbial Diversity in Weaned Piglets
title_short Dietary Supplementation with Probiotic Bacillus licheniformis S6 Improves Intestinal Integrity via Modulating Intestinal Barrier Function and Microbial Diversity in Weaned Piglets
title_sort dietary supplementation with probiotic bacillus licheniformis s6 improves intestinal integrity via modulating intestinal barrier function and microbial diversity in weaned piglets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9953057/
https://www.ncbi.nlm.nih.gov/pubmed/36829515
http://dx.doi.org/10.3390/biology12020238
work_keys_str_mv AT sunwenjuan dietarysupplementationwithprobioticbacilluslicheniformiss6improvesintestinalintegrityviamodulatingintestinalbarrierfunctionandmicrobialdiversityinweanedpiglets
AT chenwenning dietarysupplementationwithprobioticbacilluslicheniformiss6improvesintestinalintegrityviamodulatingintestinalbarrierfunctionandmicrobialdiversityinweanedpiglets
AT mengkun dietarysupplementationwithprobioticbacilluslicheniformiss6improvesintestinalintegrityviamodulatingintestinalbarrierfunctionandmicrobialdiversityinweanedpiglets
AT cailong dietarysupplementationwithprobioticbacilluslicheniformiss6improvesintestinalintegrityviamodulatingintestinalbarrierfunctionandmicrobialdiversityinweanedpiglets
AT liguiguan dietarysupplementationwithprobioticbacilluslicheniformiss6improvesintestinalintegrityviamodulatingintestinalbarrierfunctionandmicrobialdiversityinweanedpiglets
AT lixilong dietarysupplementationwithprobioticbacilluslicheniformiss6improvesintestinalintegrityviamodulatingintestinalbarrierfunctionandmicrobialdiversityinweanedpiglets
AT jiangxianren dietarysupplementationwithprobioticbacilluslicheniformiss6improvesintestinalintegrityviamodulatingintestinalbarrierfunctionandmicrobialdiversityinweanedpiglets