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Genomic network analysis of environmental and livestock F-type plasmid populations

Biology

Genomic network analysis of environmental and livestock F-type plasmid populations

W. Matlock, K. K. Chau, et al.

Explore how F-type plasmids, vital carriers of antimicrobial resistance genes, exhibit remarkable diversity influenced by environmental niches. This insightful research conducted by leading experts delves into plasmid network communities, revealing their unique genetic make-up and potential for rapid adaptation. Discover the findings that shed light on the persistent structures of these plasmids in various environments.... show more
Abstract
F-type plasmids are diverse and of great clinical significance, often carrying genes conferring antimicrobial resistance (AMR) such as extended-spectrum β-lactamases, particularly in Enterobacterales. Organising this plasmid diversity is challenging, and current knowledge is largely based on plasmids from clinical settings. Here, we present a network community analysis of a large survey of F-type plasmids from environmental (influent, effluent and upstream/downstream waterways surrounding wastewater treatment works) and livestock settings. We use a tractable and scalable methodology to examine the relationship between plasmid metadata and network communities. This reveals how niche (sampling compartment and host genera) partition and shape plasmid diversity. We also perform pangenome-style analyses on network communities. We show that such communities define unique combinations of core genes, with limited overlap. Building plasmid phylogenies based on alignments of these core genes, we demonstrate that plasmid accessory function is closely linked to core gene content. Taken together, our results suggest that stable F-type plasmid backbone structures can persist in environmental settings while allowing dramatic variation in accessory gene content that may be linked to niche adaptation. The association of F-type plasmids with AMR may reflect their suitability for rapid niche adaptation.
Publisher
Springer Nature
Published On
Mar 01, 2021
Authors
William Matlock, Kevin K. Chau, Manal AbuOun, Emma Stubberfield, Leanne Barker, James Kavanagh, Hayleah Pickford, Daniel Gilson, Richard P. Smith, H. Soon Gweon, Sarah J. Hoosdally, Jeremy Swann, Robert Sebra, Mark J. Bailey, Timothy E. A. Peto, Derrick W. Crook, Muna F. Anjum, Daniel S. Read, A. Sarah Walker, Nicole Stoesser, Liam P. Shaw, REHAB consortium
Tags
F-type plasmids
antimicrobial resistance
plasmid diversity
environmental adaptation
network community analysis
core genes
accessory function
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