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Published on: January 7, 2019
Distinct evolution of ST11 KL64 Klebsiella pneumoniae in Taiwan
Yia-Ting Li1, Yao-Chen Wang2,3, Chih-Ming Chen4
1Division of Respiratory Therapy, Department of Internal Medicine, Chung Shan Medical University Hospital, Taichung, Taiwan.
Abstract:
Carbapenem-resistant ST11_KL64 Klebsiella pneumoniae emerged as a significant public health concern in Taiwan, peaking between 2013 and 2015, with the majority of isolates exhibiting OXA-48 as the sole carbapenemase. In this study, we employed whole-genome sequencing to investigate the molecular underpinnings of ST11_KL64 isolates collected from 2013 to 2021. Phylogenomic analysis revealed a notable genetic divergence between the ST11_KL64 strains in Taiwan and those in China, suggesting an independent evolutionary trajectory. Our findings indicated that the ST11_KL64_Taiwan lineage originated from the ST11_KL64 lineage in Brazil, with recombination events leading to the integration of ICEKp11 and a 27-kb fragment at the tRNAASN sites, shaping its unique genomic landscape. To further elucidate this unique sublineage, we examined the plasmid contents. In contrast to ST11_KL64_Brazil strains, which predominantly carried blaKPC-2, ST11_KL64_Taiwan strains exhibited the acquisition of an epidemic blaOXA-48-carrying IncL plasmid. Additionally, ST11_KL64_Taiwan strains consistently harbored a multi-drug resistance IncC plasmid, along with a collection of gene clusters that conferred resistance to heavy metals and the phage shock protein system via various Inc-type plasmids. Although few, there were still rare ST11_KL64_Taiwan strains that have evolved into hypervirulent CRKP through the horizontal acquisition of pLVPK variants. Comprehensive characterization of the high-risk ST11_KL64 lineage in Taiwan not only sheds light on its epidemic success but also provides essential data for ongoing surveillance efforts aimed at tracking the spread and evolution of ST11_KL64 across different geographical regions. Understanding the molecular underpinnings of CRKP evolution is crucial for developing effective strategies to combat its emergence and dissemination.
Insights
Carbapenem-resistant ST11_KL64 Klebsiella pneumoniae in Taiwan evolved independently, originating from Brazil. This lineage acquired OXA-48 and other resistance genes, posing a significant public health threat.
Area of Science:
- Microbiology
- Genomics
- Epidemiology
Background:
- Carbapenem-resistant ST11_KL64 Klebsiella pneumoniae is a major public health concern, particularly in Taiwan.
- Most Taiwanese isolates possess OXA-48 as the sole carbapenemase, highlighting a specific resistance mechanism.
Purpose of the Study:
- To investigate the molecular epidemiology and genomic evolution of ST11_KL64 Klebsiella pneumoniae in Taiwan.
- To understand the genetic factors contributing to the success and dissemination of this high-risk pathogen.
Main Methods:
- Whole-genome sequencing of ST11_KL64 isolates collected from 2013 to 2021.
- Phylogenomic analysis to determine evolutionary relationships.
- Plasmid profiling to identify mobile genetic elements associated with resistance.
Main Results:
- The Taiwanese ST11_KL64 lineage shows genetic divergence from Chinese strains, indicating independent evolution.
- This lineage likely originated from Brazil, with key recombination events integrating ICEKp11 and a 27-kb fragment.
- Taiwanese strains acquired an OXA-48-carrying IncL plasmid and a multi-drug resistance IncC plasmid, alongside other resistance gene clusters.
- Rare hypervirulent strains emerged through horizontal acquisition of pLVPK variants.
Conclusions:
- The ST11_KL64 lineage in Taiwan has a unique genomic and plasmid profile, shaped by independent evolution and acquisition of specific resistance determinants.
- Understanding these molecular underpinnings is crucial for surveillance and control of carbapenem-resistant Klebsiella pneumoniae.
- This research provides essential data for tracking the spread and evolution of high-risk ST11_KL64 strains globally.
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