A Single Dose of Synbiotics and Vitamins at Birth Affects Piglet Microbiota before Weaning and Modifies Post-Weaning Performance

Early-life microbial colonization is an important driver for the development and maturation of the gut. The present study aimed to determine whether a single-dose supplement given only at birth would improve piglet performance and modify their fecal microbiota during the suckling and post-weaning pe...

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Main Authors: Marion Girard, Marco Tretola, Giuseppe Bee
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Animals
Subjects:
Online Access:https://www.mdpi.com/2076-2615/11/1/84
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spelling doaj-c9503058b6dd4b71a244092f458344442021-01-06T00:03:08ZengMDPI AGAnimals2076-26152021-01-0111848410.3390/ani11010084A Single Dose of Synbiotics and Vitamins at Birth Affects Piglet Microbiota before Weaning and Modifies Post-Weaning PerformanceMarion Girard0Marco Tretola1Giuseppe Bee2Agroscope, Tioleyre 4, 1725 Posieux, SwitzerlandAgroscope, Tioleyre 4, 1725 Posieux, SwitzerlandAgroscope, Tioleyre 4, 1725 Posieux, SwitzerlandEarly-life microbial colonization is an important driver for the development and maturation of the gut. The present study aimed to determine whether a single-dose supplement given only at birth would improve piglet performance and modify their fecal microbiota during the suckling and post-weaning periods. At birth, piglets from eight litters received a supplement (SUP+) while piglets from six other litters received water (SUP−). All piglets were monitored until two weeks post-weaning, and fecal samples were collected on Day 16 of age and two weeks post-weaning (Day 39 ± 1). The supplementation resulted in an improvement of average daily gain during the whole experimental period, mainly due to a better growth and a reduction in the incidence of diarrhea in the post-weaning period. There were no differences in the abundance and diversity of the main taxa, although the supplementation increased the relative abundance of rare taxa, such as bacteria from the Saccharibacteria and Cyanobacteria phyla, and the Lentisphaeria class in the suckling period. In addition, at 16 days of age, SUP+ piglets had a more diverse core microbiota, with bacteria from the <i>Lactobacillus</i> genus being present in the core microbiota of SUP+ piglets and absent from SUP− piglets. Therefore, the enhanced growth performance and reduction in diarrhea seem to be related to changes in fecal microbiota during the suckling period rather than at two weeks post-weaning.https://www.mdpi.com/2076-2615/11/1/84piglet microbiotaprobioticsvitaminsprebioticpost-weaning performance
collection DOAJ
language English
format Article
sources DOAJ
author Marion Girard
Marco Tretola
Giuseppe Bee
spellingShingle Marion Girard
Marco Tretola
Giuseppe Bee
A Single Dose of Synbiotics and Vitamins at Birth Affects Piglet Microbiota before Weaning and Modifies Post-Weaning Performance
Animals
piglet microbiota
probiotics
vitamins
prebiotic
post-weaning performance
author_facet Marion Girard
Marco Tretola
Giuseppe Bee
author_sort Marion Girard
title A Single Dose of Synbiotics and Vitamins at Birth Affects Piglet Microbiota before Weaning and Modifies Post-Weaning Performance
title_short A Single Dose of Synbiotics and Vitamins at Birth Affects Piglet Microbiota before Weaning and Modifies Post-Weaning Performance
title_full A Single Dose of Synbiotics and Vitamins at Birth Affects Piglet Microbiota before Weaning and Modifies Post-Weaning Performance
title_fullStr A Single Dose of Synbiotics and Vitamins at Birth Affects Piglet Microbiota before Weaning and Modifies Post-Weaning Performance
title_full_unstemmed A Single Dose of Synbiotics and Vitamins at Birth Affects Piglet Microbiota before Weaning and Modifies Post-Weaning Performance
title_sort single dose of synbiotics and vitamins at birth affects piglet microbiota before weaning and modifies post-weaning performance
publisher MDPI AG
series Animals
issn 2076-2615
publishDate 2021-01-01
description Early-life microbial colonization is an important driver for the development and maturation of the gut. The present study aimed to determine whether a single-dose supplement given only at birth would improve piglet performance and modify their fecal microbiota during the suckling and post-weaning periods. At birth, piglets from eight litters received a supplement (SUP+) while piglets from six other litters received water (SUP−). All piglets were monitored until two weeks post-weaning, and fecal samples were collected on Day 16 of age and two weeks post-weaning (Day 39 ± 1). The supplementation resulted in an improvement of average daily gain during the whole experimental period, mainly due to a better growth and a reduction in the incidence of diarrhea in the post-weaning period. There were no differences in the abundance and diversity of the main taxa, although the supplementation increased the relative abundance of rare taxa, such as bacteria from the Saccharibacteria and Cyanobacteria phyla, and the Lentisphaeria class in the suckling period. In addition, at 16 days of age, SUP+ piglets had a more diverse core microbiota, with bacteria from the <i>Lactobacillus</i> genus being present in the core microbiota of SUP+ piglets and absent from SUP− piglets. Therefore, the enhanced growth performance and reduction in diarrhea seem to be related to changes in fecal microbiota during the suckling period rather than at two weeks post-weaning.
topic piglet microbiota
probiotics
vitamins
prebiotic
post-weaning performance
url https://www.mdpi.com/2076-2615/11/1/84
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