Late weaning is associated with increased microbial diversity and Faecalibacterium prausnitzii abundance in the fecal microbiota of piglets

In pig production systems, weaning is a crucial period characterized by nutritional, environmental, and social stresses. Piglets transition from a milk-based diet to a solid, more complex plant-based diet, and their gut physiology must adapt accordingly. It is well established that piglets weaned la...

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Veröffentlicht in:Animal microbiome 2020-01, Vol.2 (1), p.2-12, Article 2
Hauptverfasser: Massacci, Francesca Romana, Berri, Mustapha, Lemonnier, Gaetan, Guettier, Elodie, Blanc, Fany, Jardet, Deborah, Rossignol, Marie Noelle, Mercat, Marie-José, Doré, Joël, Lepage, Patricia, Rogel-Gaillard, Claire, Estellé, Jordi
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Sprache:eng
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Zusammenfassung:In pig production systems, weaning is a crucial period characterized by nutritional, environmental, and social stresses. Piglets transition from a milk-based diet to a solid, more complex plant-based diet, and their gut physiology must adapt accordingly. It is well established that piglets weaned later display improved health, better wean-to-finish growth performance, and lower mortality rates. The aim of this study was to evaluate the impact of weaning age on fecal microbiota diversity and composition in piglets. Forty-eight Large White piglets were divided into 4 groups of 12 animals that were weaned at different ages: 14 days (early weaning), 21 days (a common weaning age in intensive pig farming), 28 days (idem), and 42 days (late weaning). Microbiota composition was assessed in each group by sequencing the 16S rRNA gene using fecal samples taken on the day of weaning, 7 days later, and at 60 days of age. In each group, there were significant differences in fecal microbiota composition before and after weaning (p 
ISSN:2524-4671
2524-4671
DOI:10.1186/s42523-020-0020-4