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PMID: 31248462 Published · epublish English

Sewage effluent from an Indian hospital harbors novel carbapenemases and integron-borne antibiotic resistance genes.

Microbiome ·Vol. 7 ·No. 1 ·2019-00-27

Marathe NP, Berglund F, Razavi M, Pal C, Dröge J, Samant S, Kristiansson E, Larsson DGJ

Abstract

Hospital wastewaters contain fecal material from a large number of individuals, of which many are undergoing antibiotic therapy. It is, thus, plausible that hospital wastewaters could provide opportunities to find novel carbapenemases and other resistance genes not yet described in clinical strains. Our aim was therefore to investigate the microbiota and antibiotic resistome of hospital effluent collected from the city of Mumbai, India, with a special focus on identifying novel carbapenemases. Shotgun metagenomics revealed a total of 112 different mobile antibiotic resistance gene types, conferring resistance against almost all classes of antibiotics. Beta-lactamase genes, including encoding clinically important carbapenemases, such as NDM, VIM, IMP, KPC, and OXA-48, were abundant. NDM (0.9% relative abundance to 16S rRNA genes) was the most common carbapenemase gene, followed by OXA-58 (0.84% relative abundance to 16S rRNA genes). Among the investigated mobile genetic elements, class 1 integrons (11% relative abundance to 16S rRNA genes) were the most abundant. The genus Acinetobacter accounted for as many as 30% of the total 16S rRNA reads, with A. baumannii accounting for an estimated 2.5%. High throughput sequencing of amplified integron gene cassettes identified a novel functional variant of an IMP-type (proposed IMP-81) carbapenemase gene (eight aa substitutions) along with recently described novel resistance genes like sul4 and blaRSA1. Using a computational hidden Markov model, we detected 27 unique metallo-beta-lactamase (MBL) genes in the shotgun data, of which nine were novel subclass B1 genes, one novel subclass B2, and 10 novel subclass B3 genes. Six of the seven novel MBL genes were functional when expressed in Escherichia coli. By exploring hospital wastewater from India, our understanding of the diversity of carbapenemases has been extended. The study also demonstrates that the microbiota of hospital wastewater can serve as a reservoir of novel resistance genes, including previously uncharacterized carbapenemases with the potential to spread further.

Keywords
Antibiotic resistance Carbapenemase Hidden Markov model Hospital effluent India Pathogens
MeSH 主题词
Anti-Bacterial Agents/pharmacology Bacteria/drug effects,genetics Bacterial Proteins/genetics Drug Resistance, Microbial/genetics Genes, Bacterial Hospitals Humans India Integrons/genetics Metagenomics Microbial Sensitivity Tests Microbiota/genetics RNA, Ribosomal, 16S/genetics Sequence Analysis, DNA Sewage/microbiology beta-Lactamases/genetics
Article Info
Journal
Microbiome
Abbr.
Microbiome
ISSN
2049-2618
Corresponding email
Published
2019-00-27
Language
English
Country/Region
England
NLM ID
101615147
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