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Temporal Resistome and Microbial Community Dynamics in an Intensive Aquaculture Facility with Prophylactic Antimicrobial Treatment

Excessive use of antimicrobials in aquaculture is concerning, given possible environmental ramifications and the potential contribution to the spread of antimicrobial resistance (AR). In this study, we explored seasonal abundance of antimicrobial resistance genes and bacterial community composition...

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Autores principales: Patil, Hemant J., Gatica, Joao, Zolti, Avihai, Benet-Perelberg, Ayana, Naor, Alon, Dror, Barak, Al Ashhab, Ashraf, Marman, Sophi, Hasan, Nur A., Colwell, Rita R., Sher, Daniel, Minz, Dror, Cytryn, Eddie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764744/
https://www.ncbi.nlm.nih.gov/pubmed/33322131
http://dx.doi.org/10.3390/microorganisms8121984
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author Patil, Hemant J.
Gatica, Joao
Zolti, Avihai
Benet-Perelberg, Ayana
Naor, Alon
Dror, Barak
Al Ashhab, Ashraf
Marman, Sophi
Hasan, Nur A.
Colwell, Rita R.
Sher, Daniel
Minz, Dror
Cytryn, Eddie
author_facet Patil, Hemant J.
Gatica, Joao
Zolti, Avihai
Benet-Perelberg, Ayana
Naor, Alon
Dror, Barak
Al Ashhab, Ashraf
Marman, Sophi
Hasan, Nur A.
Colwell, Rita R.
Sher, Daniel
Minz, Dror
Cytryn, Eddie
author_sort Patil, Hemant J.
collection PubMed
description Excessive use of antimicrobials in aquaculture is concerning, given possible environmental ramifications and the potential contribution to the spread of antimicrobial resistance (AR). In this study, we explored seasonal abundance of antimicrobial resistance genes and bacterial community composition in the water column of an intensive aquaculture pond stocked with Silver Carp (Hypophthalmichthys molitrix) prophylactically treated with sulfamethoprim (25% sulfadiazine; 5% trimethoprim), relative to an adjacent unstocked reservoir. Bacterial community composition was monitored using high-throughput sequencing of 16S rRNA gene amplicons in eight sampling profiles to determine seasonal dynamics, representing principal stages in the fish fattening cycle. In tandem, qPCR was applied to assess relative abundance of selected antimicrobial resistance genes (sul1, sul2, dfrA1, tetA and blaTEM) and class-1 integrons (int1). Concomitantly, resistomes were extrapolated from shotgun metagenomes in representative profiles. Analyses revealed increased relative abundance of sulfonamide and tetracycline resistance genes in fishpond-03, relative to pre-stocking and reservoir levels, whereas no significant differences were observed for genes encoding resistance to antimicrobials that were not used in the fishpond-03. Seasons strongly dictated bacterial community composition, with high abundance of cyanobacteria in summer and increased relative abundance of Flavobacterium in the winter. Our results indicate that prophylactic use of sulfonamides in intensive aquaculture ponds facilitates resistance suggesting that prophylactic use of these antimicrobials in aquaculture should be restricted.
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spelling pubmed-77647442020-12-27 Temporal Resistome and Microbial Community Dynamics in an Intensive Aquaculture Facility with Prophylactic Antimicrobial Treatment Patil, Hemant J. Gatica, Joao Zolti, Avihai Benet-Perelberg, Ayana Naor, Alon Dror, Barak Al Ashhab, Ashraf Marman, Sophi Hasan, Nur A. Colwell, Rita R. Sher, Daniel Minz, Dror Cytryn, Eddie Microorganisms Article Excessive use of antimicrobials in aquaculture is concerning, given possible environmental ramifications and the potential contribution to the spread of antimicrobial resistance (AR). In this study, we explored seasonal abundance of antimicrobial resistance genes and bacterial community composition in the water column of an intensive aquaculture pond stocked with Silver Carp (Hypophthalmichthys molitrix) prophylactically treated with sulfamethoprim (25% sulfadiazine; 5% trimethoprim), relative to an adjacent unstocked reservoir. Bacterial community composition was monitored using high-throughput sequencing of 16S rRNA gene amplicons in eight sampling profiles to determine seasonal dynamics, representing principal stages in the fish fattening cycle. In tandem, qPCR was applied to assess relative abundance of selected antimicrobial resistance genes (sul1, sul2, dfrA1, tetA and blaTEM) and class-1 integrons (int1). Concomitantly, resistomes were extrapolated from shotgun metagenomes in representative profiles. Analyses revealed increased relative abundance of sulfonamide and tetracycline resistance genes in fishpond-03, relative to pre-stocking and reservoir levels, whereas no significant differences were observed for genes encoding resistance to antimicrobials that were not used in the fishpond-03. Seasons strongly dictated bacterial community composition, with high abundance of cyanobacteria in summer and increased relative abundance of Flavobacterium in the winter. Our results indicate that prophylactic use of sulfonamides in intensive aquaculture ponds facilitates resistance suggesting that prophylactic use of these antimicrobials in aquaculture should be restricted. MDPI 2020-12-13 /pmc/articles/PMC7764744/ /pubmed/33322131 http://dx.doi.org/10.3390/microorganisms8121984 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Patil, Hemant J.
Gatica, Joao
Zolti, Avihai
Benet-Perelberg, Ayana
Naor, Alon
Dror, Barak
Al Ashhab, Ashraf
Marman, Sophi
Hasan, Nur A.
Colwell, Rita R.
Sher, Daniel
Minz, Dror
Cytryn, Eddie
Temporal Resistome and Microbial Community Dynamics in an Intensive Aquaculture Facility with Prophylactic Antimicrobial Treatment
title Temporal Resistome and Microbial Community Dynamics in an Intensive Aquaculture Facility with Prophylactic Antimicrobial Treatment
title_full Temporal Resistome and Microbial Community Dynamics in an Intensive Aquaculture Facility with Prophylactic Antimicrobial Treatment
title_fullStr Temporal Resistome and Microbial Community Dynamics in an Intensive Aquaculture Facility with Prophylactic Antimicrobial Treatment
title_full_unstemmed Temporal Resistome and Microbial Community Dynamics in an Intensive Aquaculture Facility with Prophylactic Antimicrobial Treatment
title_short Temporal Resistome and Microbial Community Dynamics in an Intensive Aquaculture Facility with Prophylactic Antimicrobial Treatment
title_sort temporal resistome and microbial community dynamics in an intensive aquaculture facility with prophylactic antimicrobial treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764744/
https://www.ncbi.nlm.nih.gov/pubmed/33322131
http://dx.doi.org/10.3390/microorganisms8121984
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