Cargando…

Analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing

Antibiotics have been used in livestock production for not only treatment but also for increasing the effectiveness of animal feed, aiding animal growth, and preventing infectious diseases at the time when immunity is lowered due to stress. South Korea and the EU are among the countries that have pr...

Descripción completa

Detalles Bibliográficos
Autores principales: Keum, Gi Beom, Kim, Eun Sol, Cho, Jinho, Song, Minho, Oh, Kwang Kyo, Cho, Jae Hyoung, Kim, Sheena, Kim, Hyeri, Kwak, Jinok, Doo, Hyunok, Pandey, Sriniwas, Kim, Hyeun Bum, Lee, Ju-Hoon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society of Animal Sciences and Technology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10119475/
https://www.ncbi.nlm.nih.gov/pubmed/37093913
http://dx.doi.org/10.5187/jast.2022.e103
_version_ 1785029032925986816
author Keum, Gi Beom
Kim, Eun Sol
Cho, Jinho
Song, Minho
Oh, Kwang Kyo
Cho, Jae Hyoung
Kim, Sheena
Kim, Hyeri
Kwak, Jinok
Doo, Hyunok
Pandey, Sriniwas
Kim, Hyeun Bum
Lee, Ju-Hoon
author_facet Keum, Gi Beom
Kim, Eun Sol
Cho, Jinho
Song, Minho
Oh, Kwang Kyo
Cho, Jae Hyoung
Kim, Sheena
Kim, Hyeri
Kwak, Jinok
Doo, Hyunok
Pandey, Sriniwas
Kim, Hyeun Bum
Lee, Ju-Hoon
author_sort Keum, Gi Beom
collection PubMed
description Antibiotics have been used in livestock production for not only treatment but also for increasing the effectiveness of animal feed, aiding animal growth, and preventing infectious diseases at the time when immunity is lowered due to stress. South Korea and the EU are among the countries that have prohibited the use of antibiotics for growth promotion in order to prevent indiscriminate use of antibiotics, as previous studies have shown that it may lead to increase in cases of antibiotic-resistant bacteria. Therefore, this study evaluated the number of antibiotic resistance genes in piglets staging from pre-weaning to weaning. Fecal samples were collected from 8 piglets just prior to weaning (21 d of age) and again one week after weaning (28 d of age). Total DNA was extracted from the 200 mg of feces collected from the 8 piglets. Whole metagenome shotgun sequencing was carried out using the Illumina Hi-Seq 2000 platform and raw sequence data were imported to Metagenomics Rapid Annotation using Subsystem Technology (MG-RAST) pipeline for microbial functional analysis. The results of this study did not show an increase in antibiotic-resistant bacteria although confirmed an increase in antibiotic-resistant genes as the consequence of changes in diet and environment during the experiment.
format Online
Article
Text
id pubmed-10119475
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Korean Society of Animal Sciences and Technology
record_format MEDLINE/PubMed
spelling pubmed-101194752023-04-22 Analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing Keum, Gi Beom Kim, Eun Sol Cho, Jinho Song, Minho Oh, Kwang Kyo Cho, Jae Hyoung Kim, Sheena Kim, Hyeri Kwak, Jinok Doo, Hyunok Pandey, Sriniwas Kim, Hyeun Bum Lee, Ju-Hoon J Anim Sci Technol Short Communication Antibiotics have been used in livestock production for not only treatment but also for increasing the effectiveness of animal feed, aiding animal growth, and preventing infectious diseases at the time when immunity is lowered due to stress. South Korea and the EU are among the countries that have prohibited the use of antibiotics for growth promotion in order to prevent indiscriminate use of antibiotics, as previous studies have shown that it may lead to increase in cases of antibiotic-resistant bacteria. Therefore, this study evaluated the number of antibiotic resistance genes in piglets staging from pre-weaning to weaning. Fecal samples were collected from 8 piglets just prior to weaning (21 d of age) and again one week after weaning (28 d of age). Total DNA was extracted from the 200 mg of feces collected from the 8 piglets. Whole metagenome shotgun sequencing was carried out using the Illumina Hi-Seq 2000 platform and raw sequence data were imported to Metagenomics Rapid Annotation using Subsystem Technology (MG-RAST) pipeline for microbial functional analysis. The results of this study did not show an increase in antibiotic-resistant bacteria although confirmed an increase in antibiotic-resistant genes as the consequence of changes in diet and environment during the experiment. Korean Society of Animal Sciences and Technology 2023-01 2023-01-31 /pmc/articles/PMC10119475/ /pubmed/37093913 http://dx.doi.org/10.5187/jast.2022.e103 Text en © Copyright 2023 Korean Society of Animal Science and Technology https://creativecommons.org/licenses/by-nc/4.0/This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Communication
Keum, Gi Beom
Kim, Eun Sol
Cho, Jinho
Song, Minho
Oh, Kwang Kyo
Cho, Jae Hyoung
Kim, Sheena
Kim, Hyeri
Kwak, Jinok
Doo, Hyunok
Pandey, Sriniwas
Kim, Hyeun Bum
Lee, Ju-Hoon
Analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing
title Analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing
title_full Analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing
title_fullStr Analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing
title_full_unstemmed Analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing
title_short Analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing
title_sort analysis of antibiotic resistance genes in pig feces during the weaning transition using whole metagenome shotgun sequencing
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10119475/
https://www.ncbi.nlm.nih.gov/pubmed/37093913
http://dx.doi.org/10.5187/jast.2022.e103
work_keys_str_mv AT keumgibeom analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT kimeunsol analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT chojinho analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT songminho analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT ohkwangkyo analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT chojaehyoung analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT kimsheena analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT kimhyeri analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT kwakjinok analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT doohyunok analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT pandeysriniwas analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT kimhyeunbum analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing
AT leejuhoon analysisofantibioticresistancegenesinpigfecesduringtheweaningtransitionusingwholemetagenomeshotgunsequencing