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Published in: Gut Pathogens 1/2014

Open Access 01-09-2014 | Research

Probiotics and virulent human rotavirus modulate the transplanted human gut microbiota in gnotobiotic pigs

Authors: Husen Zhang, Haifeng Wang, Megan Shepherd, Ke Wen, Guohua Li, Xingdong Yang, Jacob Kocher, Ernawati Giri-Rachman, Allan Dickerman, Robert Settlage, Lijuan Yuan

Published in: Gut Pathogens | Issue 1/2014

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Abstract

We generated a neonatal pig model with human infant gut microbiota (HGM) to study the effect of a probiotic on the composition of the transplanted microbiota following rotavirus vaccination and challenge. All the HGM-transplanted pigs received two doses of an oral attenuated rotavirus vaccine. The gut microbiota of vaccinated pigs were investigated for effects of Lactobacillus rhamnosus GG (LGG) supplement and homotypic virulent human rotavirus (HRV) challenge. High-throughput sequencing of V4 region of 16S rRNA genes demonstrated that HGM-transplanted pigs carried microbiota similar to that of the C-section delivered baby. Firmicutes and Proteobacteria represented over 98% of total bacteria in the human donor and the recipient pigs. HRV challenge caused a phylum-level shift from Firmicutes to Proteobacteria. LGG supplement prevented the changes in microbial communities caused by HRV challenge. In particular, members of Enterococcus in LGG-supplemented pigs were kept at the baseline level, while they were enriched in HRV challenged pigs. Taken together, our results suggested that HGM pigs are valuable for testing the microbiota’s response to probiotic interventions for treating infantile HRV infection.
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Metadata
Title
Probiotics and virulent human rotavirus modulate the transplanted human gut microbiota in gnotobiotic pigs
Authors
Husen Zhang
Haifeng Wang
Megan Shepherd
Ke Wen
Guohua Li
Xingdong Yang
Jacob Kocher
Ernawati Giri-Rachman
Allan Dickerman
Robert Settlage
Lijuan Yuan
Publication date
01-09-2014
Publisher
BioMed Central
Published in
Gut Pathogens / Issue 1/2014
Electronic ISSN: 1757-4749
DOI
https://doi.org/10.1186/s13099-014-0039-8

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