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Unveiling Rare Pathogens and Antibiotic Resistance in Tanzanian Cholera Outbreak Waters

Baraka, Vito ; Andersson, Tilde LU ; Makenga, Geofrey ; Francis, Filbert ; Minja, Daniel T.R. ; Overballe-Petersen, Sören ; Tang, Man Hung Eric LU ; Fuursted, Kurt and Lood, Rolf LU (2023) In Microorganisms 11(10).
Abstract

The emergence of antibiotic resistance is a global health concern. Therefore, understanding the mechanisms of its spread is crucial for implementing evidence-based strategies to tackle resistance in the context of the One Health approach. In developing countries where sanitation systems and access to clean and safe water are still major challenges, contamination may introduce bacteria and bacteriophages harboring antibiotic resistance genes (ARGs) into the environment. This contamination can increase the risk of exposure and community transmission of ARGs and infectious pathogens. However, there is a paucity of information on the mechanisms of bacteriophage-mediated spread of ARGs and patterns through the environment. Here, we deploy... (More)

The emergence of antibiotic resistance is a global health concern. Therefore, understanding the mechanisms of its spread is crucial for implementing evidence-based strategies to tackle resistance in the context of the One Health approach. In developing countries where sanitation systems and access to clean and safe water are still major challenges, contamination may introduce bacteria and bacteriophages harboring antibiotic resistance genes (ARGs) into the environment. This contamination can increase the risk of exposure and community transmission of ARGs and infectious pathogens. However, there is a paucity of information on the mechanisms of bacteriophage-mediated spread of ARGs and patterns through the environment. Here, we deploy Droplet Digital PCR (ddPCR) and metagenomics approaches to analyze the abundance of ARGs and bacterial pathogens disseminated through clean and wastewater systems. We detected a relatively less-studied and rare human zoonotic pathogen, Vibrio metschnikovii, known to spread through fecal-–oral contamination, similarly to V. cholerae. Several antibiotic resistance genes were identified in both bacterial and bacteriophage fractions from water sources. Using metagenomics, we detected several resistance genes related to tetracyclines and beta-lactams in all the samples. Environmental samples from outlet wastewater had a high diversity of ARGs and contained high levels of blaOXA-48. Other identified resistance profiles included tetA, tetM, and blaCTX-M9. Specifically, we demonstrated that blaCTX-M1 is enriched in the bacteriophage fraction from wastewater. In general, however, the bacterial community has a significantly higher abundance of resistance genes compared to the bacteriophage population. In conclusion, the study highlights the need to implement environmental monitoring of clean and wastewater to inform the risk of infectious disease outbreaks and the spread of antibiotic resistance in the context of One Health.

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author
; ; ; ; ; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
antibiotic resistance, bacteriophage, cholera, ESBL, microbiota, One Health, transduction, water, zoonotic pathogen
in
Microorganisms
volume
11
issue
10
article number
2490
publisher
MDPI AG
external identifiers
  • pmid:37894148
  • scopus:85175084130
ISSN
2076-2607
DOI
10.3390/microorganisms11102490
language
English
LU publication?
yes
id
2c7f4680-08ec-4d12-82de-84a3a0c450e9
date added to LUP
2023-12-15 10:48:26
date last changed
2024-04-14 02:39:08
@article{2c7f4680-08ec-4d12-82de-84a3a0c450e9,
  abstract     = {{<p>The emergence of antibiotic resistance is a global health concern. Therefore, understanding the mechanisms of its spread is crucial for implementing evidence-based strategies to tackle resistance in the context of the One Health approach. In developing countries where sanitation systems and access to clean and safe water are still major challenges, contamination may introduce bacteria and bacteriophages harboring antibiotic resistance genes (ARGs) into the environment. This contamination can increase the risk of exposure and community transmission of ARGs and infectious pathogens. However, there is a paucity of information on the mechanisms of bacteriophage-mediated spread of ARGs and patterns through the environment. Here, we deploy Droplet Digital PCR (ddPCR) and metagenomics approaches to analyze the abundance of ARGs and bacterial pathogens disseminated through clean and wastewater systems. We detected a relatively less-studied and rare human zoonotic pathogen, Vibrio metschnikovii, known to spread through fecal-–oral contamination, similarly to V. cholerae. Several antibiotic resistance genes were identified in both bacterial and bacteriophage fractions from water sources. Using metagenomics, we detected several resistance genes related to tetracyclines and beta-lactams in all the samples. Environmental samples from outlet wastewater had a high diversity of ARGs and contained high levels of blaOXA-48. Other identified resistance profiles included tetA, tetM, and blaCTX-M9. Specifically, we demonstrated that blaCTX-M1 is enriched in the bacteriophage fraction from wastewater. In general, however, the bacterial community has a significantly higher abundance of resistance genes compared to the bacteriophage population. In conclusion, the study highlights the need to implement environmental monitoring of clean and wastewater to inform the risk of infectious disease outbreaks and the spread of antibiotic resistance in the context of One Health.</p>}},
  author       = {{Baraka, Vito and Andersson, Tilde and Makenga, Geofrey and Francis, Filbert and Minja, Daniel T.R. and Overballe-Petersen, Sören and Tang, Man Hung Eric and Fuursted, Kurt and Lood, Rolf}},
  issn         = {{2076-2607}},
  keywords     = {{antibiotic resistance; bacteriophage; cholera; ESBL; microbiota; One Health; transduction; water; zoonotic pathogen}},
  language     = {{eng}},
  number       = {{10}},
  publisher    = {{MDPI AG}},
  series       = {{Microorganisms}},
  title        = {{Unveiling Rare Pathogens and Antibiotic Resistance in Tanzanian Cholera Outbreak Waters}},
  url          = {{http://dx.doi.org/10.3390/microorganisms11102490}},
  doi          = {{10.3390/microorganisms11102490}},
  volume       = {{11}},
  year         = {{2023}},
}