Skip to content
Open access

Plasmid-Resolved Metagenomics for Tracking Horizontal Transfer of Antimicrobial Resistance Determinants Across Microbial Communities

Sep 2026 · Kashmir Journal of Academic Research and Development · Vol 2, pp. 87-98 · 0 citations · 45 references

TL;DR

A critical assessment of the long-read assemblers such as hifiasm-meta, metaMDBG, metaFlye, HiCanu, and myloasm are carried out, finding that plasmids carrying AMR have a much wider range of phylogenetic host species than those that do not carry resistance, and thus form well-connected transmission networks across the various One Health interfaces.

Abstract

The spread of antimicrobial resistance (AMR) throughout microbial communities is a serious concern for both human and environmental health, since plasmids act as the main carriers for the horizontal gene transfer (HGT) of antibiotic resistance genes (ARGs). Yet, conventional short-read metagenomics has in the past been unable to determine the extrachromosomal context of ARGs, thereby hiding the mechanisms involved in the spread of resistance. Plasmid-resolved metagenomics has now become a groundbreaking approach that brings together third-generation long-read sequencing (using PacBio HiFi and Oxford Nanopore R10.4), improved assembly algorithms, machine learning classifiers, and proximity ligation assays (Hi-C) in order to fully reconstruct plasmids directly from complex microbial communities. This article brings together the technological frameworks, bioinformatic advances, and ecological findings that are shaping this quickly developing area. We carry out a critical assessment of the long-read assemblers such as hifiasm-meta, metaMDBG, metaFlye, HiCanu, and myloasm, showing that they are capable of recovering complete circular plasmids in a variety of environmental samples. We look at the computational methods used for identifying and separating plasmids, pointing out geNomad's deep neural network design and PlasMAAG's assembly-alignment graph method based on contrastive learning, both of which allow for accurate plasmid reconstruction even in complicated metagenomes. We also consider how Hi-C-based proximity ligation helps to establish associations between hosts and plasmids, finding that plasmids carrying AMR have a much wider range of phylogenetic host species than those that do not carry resistance, and thus form well-connected transmission networks across the various One Health interfaces such as wastewater treatment systems, aquaculture sediments, and microplastic plastispheres. Although there have been major progressions, difficulties still remain in resolving plasmid microdiversity, in standardising benchmarking protocols, and in experimentally verifying computational predictions. The future integration of this approach with single-cell microfluidics and stable isotope probing will enable the direct measurement of plasmid transfer kinetics, which in turn will allow for proactive monitoring and control of the spread of AMR mediated by plasmids in interconnected ecosystems.

Read PDF

Similar papers

Open access Sep 2026

Resolving Host-Associated Antimicrobial Resistance in Municipal Wastewater Using Hi-C Metagenomics

Hi-C metagenomics extends wastewater resistome profiling beyond gene inventories by resolving bacterial hosts, plasmid associations, and genomic context, strengthening the ecological interpretation of wastewater-based AMR surveillance.

A. Senok, Subham Verma, Douha Shouqair et al. · 0 citations
Sep 2026

Metagenomic Analysis of Antimicrobial Resistance in Wastewater and Its Environmental Impact

Antimicrobial resistance (AMR) in wastewater is one of the most significant One Health threats, and wastewater treatment plants (WWTPs) are important hybrid reservoirs and dissemination routes for antibiotic resistance genes (ARGs) exploiting environmental resources. Shotgun metagenomics was used in this study to profi...

Daniah Alsaadi · 0 citations
Open access Sep 2026

Resolving the Genomic Context of Clinically Relevant Antibiotic Resistance Genes in Wastewater with Ligation-Mediated PCR

Abstract Antimicrobial resistance (AMR) is a pressing global public health challenge. AMR is driven in part by the spread of antibiotic resistance genes (ARGs) through bacterial communities via mobile genetic elements. Influent wastewater is a promising sample type for monitoring AMR because it pools biological inputs...

M. O'Brien, B. Ahern, P. Brase et al. · 0 citations
Open access Aug 2026

Long-read metagenomics reveals a high burden of antimicrobial resistance, mobile genetic elements, and bacterial diversity in hospital and community wastewater from Conakry, Guinea

Wastewater systems are increasingly recognized as important environmental reservoirs of antimicrobial resistance (AMR), acting as interfaces where resistant bacteria, antimicrobial resistance genes (ARGs), and mobile genetic elements (MGEs) converge and potentially disseminate. Wastewater samples were collected from ho...

T. A. C. Gnimadi, A. Keíta, Y. Hounmanou et al. · 0 citations
Review Open access Aug 2026

Stage-Specific Strategies to Limit the Spread of Antibiotic Resistance in Bacteria with a Focus on Conjugation

This research aims to provide an integrated analysis of bacterial conjugation within the broader context of HGT, emphasizing its evolutionary persistence and mechanistic vulnerabilities and highlights conjugation-specific interfering strategies as a potential opportunity in slowing down resistance dissemination and pre...

Xiao-Han Gu · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.