Literature DB >> 22307632

In-feed antibiotic effects on the swine intestinal microbiome.

Torey Looft1, Timothy A Johnson, Heather K Allen, Darrell O Bayles, David P Alt, Robert D Stedtfeld, Woo Jun Sul, Tiffany M Stedtfeld, Benli Chai, James R Cole, Syed A Hashsham, James M Tiedje, Thad B Stanton.   

Abstract

Antibiotics have been administered to agricultural animals for disease treatment, disease prevention, and growth promotion for over 50 y. The impact of such antibiotic use on the treatment of human diseases is hotly debated. We raised pigs in a highly controlled environment, with one portion of the littermates receiving a diet containing performance-enhancing antibiotics [chlortetracycline, sulfamethazine, and penicillin (known as ASP250)] and the other portion receiving the same diet but without the antibiotics. We used phylogenetic, metagenomic, and quantitative PCR-based approaches to address the impact of antibiotics on the swine gut microbiota. Bacterial phylotypes shifted after 14 d of antibiotic treatment, with the medicated pigs showing an increase in Proteobacteria (1-11%) compared with nonmedicated pigs at the same time point. This shift was driven by an increase in Escherichia coli populations. Analysis of the metagenomes showed that microbial functional genes relating to energy production and conversion were increased in the antibiotic-fed pigs. The results also indicate that antibiotic resistance genes increased in abundance and diversity in the medicated swine microbiome despite a high background of resistance genes in nonmedicated swine. Some enriched genes, such as aminoglycoside O-phosphotransferases, confer resistance to antibiotics that were not administered in this study, demonstrating the potential for indirect selection of resistance to classes of antibiotics not fed. The collateral effects of feeding subtherapeutic doses of antibiotics to agricultural animals are apparent and must be considered in cost-benefit analyses.

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Year:  2012        PMID: 22307632      PMCID: PMC3277147          DOI: 10.1073/pnas.1120238109

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  47 in total

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  246 in total

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3.  Implications of direct amplification for measuring antimicrobial resistance using point-of-care devices.

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7.  Early empiric antibiotic use in preterm infants is associated with lower bacterial diversity and higher relative abundance of Enterobacter.

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8.  Study of the diversity and short-chain fatty acids production by the bacterial community in overweight and obese Mexican children.

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9.  Metagenomic and network analysis reveal wide distribution and co-occurrence of environmental antibiotic resistance genes.

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10.  Detecting antibiotic resistance genes and human potential pathogenic Bacteria in fishmeal by culture-independent method.

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