Genomic Characteristion of Opportunistic Pathogen Kluyvera Reveals a Novel CTX-M Subgroup

Author:

Yu Keyi1,Huang Zhenzhou2,Lan Ruiting3ORCID,Morris J. Glenn4ORCID,Xiao Yue1ORCID,Fu Songzhe5,Gao He1,Bai Xuemei1,Li Kun1,Wang Duochun1ORCID

Affiliation:

1. National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention (China CDC), State Key Laboratory of Infectious Disease Prevention and Control, Beijing 102206, China

2. Hangzhou Center for Disease Control and Prevention, Hangzhou 310021, China

3. School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, NSW 2052, Australia

4. Emerging Pathogens Institute, University of Florida, Gainesville, FL 32610, USA

5. College of Marine Science and Environment, Dalian Ocean University, Dalian 116023, China

Abstract

A rising incidence of clinical infections has been caused by Kluyvera, a significant opportunistic pathogen. Meanwhile, Kluyvera acts as an important reservoir of blaCTX-Ms, which are the dominant genes of class A extended-spectrum β-lactamases (ESBLs). In this work, 60 strains of Kluyvera were subjected to phylogenetic relationship reconstruction, antimicrobial susceptibility testing, and antibiotic resistance genes prediction. All mature blaCTX-Ms were gathered to perform subgroup reclassification. The findings demonstrate that Kluyvera has a large gene pool with significant genetic flexibility. Notably, 25% of strains showed simultaneous detection of ESBLs and carbapenem resistance genes. The genotypes of fourteen novel blaCTX-Ms were identified. A new subgroup classification approach for blaCTX-Ms was defined by using 20 amino acid site variants, which could split blaCTX-Ms into 10 subgroups. The results of the subgroup division were consistent with the phylogenetic clustering. More significantly, we proposed a novel blaCTX-M subgroup, KLUS, that is chromosomally encoded in K. sichuanensis and the new species put forward in this study, showing amino acid differences from the currently known sequences. Cloning and transformation tests demonstrated that the recipient bacteria had a robust phenotype of cefotaxime resistance. Closely related Kluyvera species had blaCTX-Ms in the same subgroup. Our research lays the groundwork for a deeper comprehension of Kluyvera and emphasizes how important a blaCTX-M reservoir it is. We provide an update on blaCTX-M subgroups reclassification from the aspects of phylogenetic relationship, amino acid differences, and the new subgroup KLUS, which needs to be strengthen monitored due to its strong resistance phenotype to cefotaxime.

Funder

National Science and Technology Infrastructure of China

Establishment of national Shewanella standard strain

Construction of protein fingerprints of rare pathogen

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

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