Cargando…

The In-Feed Antibiotic Carbadox Induces Phage Gene Transcription in the Swine Gut Microbiome

Carbadox is a quinoxaline-di-N-oxide antibiotic fed to over 40% of young pigs in the United States that has been shown to induce phage DNA transduction in vitro; however, the effects of carbadox on swine microbiome functions are poorly understood. We investigated the in vivo longitudinal effects of...

Descripción completa

Detalles Bibliográficos
Autores principales: Johnson, Timothy A., Looft, Torey, Severin, Andrew J., Bayles, Darrell O., Nasko, Daniel J., Wommack, K. Eric, Howe, Adina, Allen, Heather K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5550749/
https://www.ncbi.nlm.nih.gov/pubmed/28790203
http://dx.doi.org/10.1128/mBio.00709-17
_version_ 1783256177405067264
author Johnson, Timothy A.
Looft, Torey
Severin, Andrew J.
Bayles, Darrell O.
Nasko, Daniel J.
Wommack, K. Eric
Howe, Adina
Allen, Heather K.
author_facet Johnson, Timothy A.
Looft, Torey
Severin, Andrew J.
Bayles, Darrell O.
Nasko, Daniel J.
Wommack, K. Eric
Howe, Adina
Allen, Heather K.
author_sort Johnson, Timothy A.
collection PubMed
description Carbadox is a quinoxaline-di-N-oxide antibiotic fed to over 40% of young pigs in the United States that has been shown to induce phage DNA transduction in vitro; however, the effects of carbadox on swine microbiome functions are poorly understood. We investigated the in vivo longitudinal effects of carbadox on swine gut microbial gene expression (fecal metatranscriptome) and phage population dynamics (fecal dsDNA viromes). Microbial metagenome, transcriptome, and virome sequences were annotated for taxonomic inference and gene function by using FIGfam (isofunctional homolog sequences) and SEED subsystems databases. When the beta diversities of microbial FIGfam annotations were compared, the control and carbadox communities were distinct 2 days after carbadox introduction. This effect was driven by carbadox-associated lower expression of FIGfams (n = 66) related to microbial respiration, carbohydrate utilization, and RNA metabolism (q < 0.1), suggesting bacteriostatic or bactericidal effects within certain populations. Interestingly, carbadox treatment caused greater expression of FIGfams related to all stages of the phage lytic cycle 2 days following the introduction of carbadox (q ≤0.07), suggesting the carbadox-mediated induction of prophages and phage DNA recombination. These effects were diminished by 7 days of continuous carbadox in the feed, suggesting an acute impact. Additionally, the viromes included a few genes that encoded resistance to tetracycline, aminoglycoside, and beta-lactam antibiotics but these did not change in frequency over time or with treatment. The results show decreased bacterial growth and metabolism, prophage induction, and potential transduction of bacterial fitness genes in swine gut bacterial communities as a result of carbadox administration.
format Online
Article
Text
id pubmed-5550749
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-55507492017-08-14 The In-Feed Antibiotic Carbadox Induces Phage Gene Transcription in the Swine Gut Microbiome Johnson, Timothy A. Looft, Torey Severin, Andrew J. Bayles, Darrell O. Nasko, Daniel J. Wommack, K. Eric Howe, Adina Allen, Heather K. mBio Research Article Carbadox is a quinoxaline-di-N-oxide antibiotic fed to over 40% of young pigs in the United States that has been shown to induce phage DNA transduction in vitro; however, the effects of carbadox on swine microbiome functions are poorly understood. We investigated the in vivo longitudinal effects of carbadox on swine gut microbial gene expression (fecal metatranscriptome) and phage population dynamics (fecal dsDNA viromes). Microbial metagenome, transcriptome, and virome sequences were annotated for taxonomic inference and gene function by using FIGfam (isofunctional homolog sequences) and SEED subsystems databases. When the beta diversities of microbial FIGfam annotations were compared, the control and carbadox communities were distinct 2 days after carbadox introduction. This effect was driven by carbadox-associated lower expression of FIGfams (n = 66) related to microbial respiration, carbohydrate utilization, and RNA metabolism (q < 0.1), suggesting bacteriostatic or bactericidal effects within certain populations. Interestingly, carbadox treatment caused greater expression of FIGfams related to all stages of the phage lytic cycle 2 days following the introduction of carbadox (q ≤0.07), suggesting the carbadox-mediated induction of prophages and phage DNA recombination. These effects were diminished by 7 days of continuous carbadox in the feed, suggesting an acute impact. Additionally, the viromes included a few genes that encoded resistance to tetracycline, aminoglycoside, and beta-lactam antibiotics but these did not change in frequency over time or with treatment. The results show decreased bacterial growth and metabolism, prophage induction, and potential transduction of bacterial fitness genes in swine gut bacterial communities as a result of carbadox administration. American Society for Microbiology 2017-08-08 /pmc/articles/PMC5550749/ /pubmed/28790203 http://dx.doi.org/10.1128/mBio.00709-17 Text en Copyright © 2017 Johnson et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Johnson, Timothy A.
Looft, Torey
Severin, Andrew J.
Bayles, Darrell O.
Nasko, Daniel J.
Wommack, K. Eric
Howe, Adina
Allen, Heather K.
The In-Feed Antibiotic Carbadox Induces Phage Gene Transcription in the Swine Gut Microbiome
title The In-Feed Antibiotic Carbadox Induces Phage Gene Transcription in the Swine Gut Microbiome
title_full The In-Feed Antibiotic Carbadox Induces Phage Gene Transcription in the Swine Gut Microbiome
title_fullStr The In-Feed Antibiotic Carbadox Induces Phage Gene Transcription in the Swine Gut Microbiome
title_full_unstemmed The In-Feed Antibiotic Carbadox Induces Phage Gene Transcription in the Swine Gut Microbiome
title_short The In-Feed Antibiotic Carbadox Induces Phage Gene Transcription in the Swine Gut Microbiome
title_sort in-feed antibiotic carbadox induces phage gene transcription in the swine gut microbiome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5550749/
https://www.ncbi.nlm.nih.gov/pubmed/28790203
http://dx.doi.org/10.1128/mBio.00709-17
work_keys_str_mv AT johnsontimothya theinfeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT loofttorey theinfeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT severinandrewj theinfeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT baylesdarrello theinfeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT naskodanielj theinfeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT wommackkeric theinfeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT howeadina theinfeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT allenheatherk theinfeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT johnsontimothya infeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT loofttorey infeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT severinandrewj infeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT baylesdarrello infeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT naskodanielj infeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT wommackkeric infeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT howeadina infeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome
AT allenheatherk infeedantibioticcarbadoxinducesphagegenetranscriptionintheswinegutmicrobiome