作者
Claire L Gorrie, Mirjana Mirčeta, Ryan R Wick, Louise M Judd, Margaret Lam, Ryota Gomi, Iain J Abbott, Nicholas R Thomson, Richard A Strugnell, Nigel F Pratt, Jill S Garlick, Kerrie M Watson, Peter C Hunter, David V Pilcher, Steve A McGloughlin, Denis W Spelman, Kelly L Wyres, Adam WJ Jenney, Kathryn E Holt
发表日期
2022/5/31
期刊
Nature Communications
卷号
13
期号
1
页码范围
1-17
出版商
Nature Publishing Group
简介
Klebsiella pneumoniae is a major cause of opportunistic healthcare-associated infections, which are increasingly complicated by the presence of extended-spectrum beta-lactamases (ESBLs) and carbapenem resistance. We conducted a year-long prospective surveillance study of K. pneumoniae clinical isolates in hospital patients. Whole-genome sequence (WGS) data reveals a diverse pathogen population, including other species within the K. pneumoniae species complex (18%). Several infections were caused by K. variicola/K. pneumoniae hybrids, one of which shows evidence of nosocomial transmission. A wide range of antimicrobial resistance (AMR) phenotypes are observed, and diverse genetic mechanisms identified (mainly plasmid-borne genes). ESBLs are correlated with presence of other acquired AMR genes (median n = 10). Bacterial genomic features associated with nosocomial onset are …
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