Complete sequence of carbapenem-resistant Ralstonia mannitolilytica clinical isolate co-producing novel class D β-lactamase OXA-1176 and OXA-1177 in Japan.
Wataru HayashiHiroyuki KaijuShizuo KayamaLiansheng YuHui ZuoYo SugawaraKaoru AzumaAkemi TakahashiYuka HataMotoyuki SugaiPublished in: Microbiology spectrum (2024)
In 2020, the Ralstonia mannitolilytica strain JARB-RN-0044 was isolated from a midstream urine sample of an elderly hospitalized patient in Japan and was highly resistant to carbapenem (i.e., imipenem, meropenem, and doripenem). Whole-genome sequencing revealed that the complete genome consists of two replicons, a 3.5-Mb chromosome and a 1.5-Mb large non-chromosomal replicon which has not been reported in R. mannitolilytica, and referred to as the "megaplasmid" in this study based on Cluster of Orthologous Group of proteins functional analysis. The strain JARB-RN-0044 harbored two novel OXA-60 and OXA-22 family class D β-lactamase genes bla OXA-1176 and bla OXA-1177 on the megaplasmid. Cloning experiments indicated that Escherichia coli recombinant clone expressing bla OXA-1176 gene showed increased minimum inhibitory concentrations (MICs) of imipenem, meropenem, and doripenem, indicating that bla OXA-1176 gene encodes carbapenemase. In contrast, E. coli recombinant clone expressing bla OXA-1177 gene showed increased MICs of piperacillin and cefazolin, but not of carbapenem. Interestingly, the 44.6 kb putative prophage region containing genes encoding phage integrase, terminase, head and tail protein was identified in the downstream region of bla OXA-1176 gene, and comparative analysis with some previously reported R. mannitolilytica isolates revealed that the prophage region was unique to strain JARB-RN-0044. The existence of a highly carbapenem-resistant R. mannitolilytica isolate may raise human health concerns in Japan, where the population is rapidly aging.IMPORTANCE Ralstonia mannitolilytica is an aerobic non-fermenting Gram-negative rod commonly found in aquatic environments and soil. The bacteria can occasionally cause severe hospital-acquired bloodstream infections in immunocompromised patients and it has been recently recognized as an emerging opportunistic human pathogen. Furthermore, some R. mannitolilytica isolates are resistant to various antimicrobial agents, including β-lactams and aminoglycosides, making antimicrobial therapy challenging and clinically problematic. However, clinical awareness of this pathogen is limited. To our knowledge, in Japan, there has been only one report of a carbapenem-resistant R. mannitolilytica clinical isolate from urine by Suzuki et al. in 2015. In this study, whole-genome sequencing analysis revealed the presence and genetic context of novel bla OXA-1176 and bla OXA-1177 genes on the 1.5 Mb megaplasmid from highly carbapenem-resistant R. mannitolilytica isolate and characterized the overall distribution of functional genes in the chromosome and megaplasmid. Our findings highlight the importance of further attention to R. mannitolilytica isolate in clinical settings.
Keyphrases
- klebsiella pneumoniae
- escherichia coli
- multidrug resistant
- gram negative
- genome wide
- acinetobacter baumannii
- copy number
- genome wide identification
- drug resistant
- risk assessment
- human health
- healthcare
- end stage renal disease
- magnetic resonance
- gene expression
- single cell
- small molecule
- dna methylation
- endothelial cells
- ejection fraction
- climate change
- stem cells
- pseudomonas aeruginosa
- computed tomography
- biofilm formation
- chronic kidney disease
- bioinformatics analysis
- acute respiratory distress syndrome
- cystic fibrosis
- electronic health record
- peritoneal dialysis
- candida albicans
- working memory
- community dwelling