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Evaluation of Klebsiella pneumoniae pathogenicity through holistic gene content analysis
Miyu Isogai1, Kumiko Kawamura1, Tetsuya Yagi2
1Department of Integrated Health Sciences, Nagoya University Graduate School of Medicine, Aichi, Japan.
Abstract:
Klebsiella pneumoniae is a Gram-negative bacterium that causes both community- and healthcare-associated infections. Although various virulence factors and highly pathogenic phenotypes have been reported, the pathogenicity of K. pneumoniae is still not fully understood. In this study, we utilized whole-genome sequencing data of 168 clinical K. pneumoniae strains to assess pathogenicity. This work was based on the concept that the genetic composition of individual genomes (referred to as holistic gene content) of the strains may contribute to their pathogenicity. Holistic gene content analysis revealed two distinct groups of K. pneumoniae strains ('major group' and 'minor group'). The minor group included strains with known highly pathogenic clones (ST23, ST375, ST65 and ST86). The minor group had higher rates of capsular genotype K1 and presence of nine specific virulence genes (rmpA, iucA, iutA, irp2, fyuA, ybtS, iroN, allS and clbA) compared to the major group. Pathogenicity was assessed using Galleria mellonella larvae. Infection experiments revealed lower survival rates of larvae infected with strains from the minor group, indicating higher virulence. In addition, the minor group had a higher string test positivity rate than the major group. Holistic gene content analysis predicted possession of virulence genes, string test positivity and pathogenicity as observed in the G. mellonella infection model. Moreover, the findings suggested the presence of as yet unrecognized genomic elements that are either involved in the acquisition of virulence genes or associated with pathogenicity.
Insights
Whole-genome sequencing revealed two Klebsiella pneumoniae groups. The minor group, containing highly pathogenic clones, showed increased virulence gene content and higher pathogenicity in Galleria mellonella larvae.
Area of Science:
- Microbiology
- Genomics
- Infectious Diseases
Background:
- Klebsiella pneumoniae is a significant cause of community- and healthcare-associated infections.
- The complete understanding of K. pneumoniae pathogenicity, despite known virulence factors, remains incomplete.
Purpose of the Study:
- To assess K. pneumoniae pathogenicity using whole-genome sequencing data.
- To investigate the correlation between holistic gene content and bacterial pathogenicity.
Main Methods:
- Whole-genome sequencing of 168 clinical K. pneumoniae strains.
- Holistic gene content analysis to categorize strains into distinct groups.
- Pathogenicity assessment using Galleria mellonella larvae infection model.
Main Results:
- Two distinct groups ('major' and 'minor') were identified based on gene content.
- The minor group, containing highly pathogenic clones (ST23, ST375, ST65, ST86), exhibited higher rates of capsular genotype K1 and specific virulence genes (rmpA, iucA, iutA, irp2, fyuA, ybtS, iroN, allS, clbA).
- Larvae infected with minor group strains showed lower survival rates, indicating higher virulence; this group also had higher string test positivity.
Conclusions:
- Holistic gene content analysis effectively predicts virulence genes, string test positivity, and pathogenicity.
- The study suggests the existence of unrecognized genomic elements contributing to virulence gene acquisition or pathogenicity in K. pneumoniae.
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