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Pathogenic investigations of Streptococcus pasteurianus, an underreported zoonotic pathogen, isolated from a diseased
Shuoyue Wang1,2,3, Miaohang Ma1,2,3, Zijing Liang1,2,3
1MOE Joint International Research Laboratory of Animal Health and Food Safety, College of Veterinary Medicine, Nanjing Agricultural University, Nanjing, China.
Abstract:
Streptococcus pasteurianus, an underreported opportunistic pathogen, is considered an increasingly recognized cause of meningitis and bacteremia in many animals and humans worldwide. However, except for some epidemiological studies, there is no report about the gene-deletion mutagenesis, virulence factors, reservoir niches or animal infection models for this pathogen. In this study, we first isolated an S. pasteurianus strain from a newly weaned piglet's brain with meningitis. The genomic sequence of this swine isolate WUSP067 shared high homology with that of two human strains. The comparative genome analysis showed that strain WUSP067 contained a fucose utilization cluster absent in human strains, and it shared 91% identity with that of an integrative and conjugative element (ICE) ICEssuZJ20091101-2 from Streptococcus suis, another important swine bacterial pathogen. Strain WUSP067 was resistant to erythromycin, tulathromycin, lincomycin, clindamycin, doxycycline and gentamycin, and ICEs are vehicles for harbouring antimicrobial resistance genes. The infection model was established using the 3-week-old newly weaned ICR mice. The 50% lethal dose value of strain WUSP067 was 4.0 × 107 colony-forming units per mouse. The infected mice showed severe signs of meningitis and pathological changes in brains. Furthermore, the capsule-deficient mutant was generated using natural transformation, and we showed that capsule was an essential virulence factor for S. pasteurianus. In addition, we found that tonsils and hilar lymph nodes of healthy pigs may be reservoir niches for this bacterium. Thus, our study provided valuable information about the pathogenetic characteristics and antimicrobial resistance of S. pasteurianus and paved the way for studying its pathogenesis.
Insights
Streptococcus pasteurianus causes meningitis and bacteremia in animals and humans. This study details its virulence factors, antimicrobial resistance, and identifies pig tonsils and lymph nodes as potential reservoirs.
Area of Science:
- Veterinary Microbiology
- Infectious Diseases
- Genomics
Background:
- Streptococcus pasteurianus is an opportunistic pathogen causing meningitis and bacteremia globally in animals and humans.
- Limited research exists on its gene-deletion mutagenesis, virulence factors, reservoir niches, or animal infection models.
Purpose of the Study:
- To investigate the pathogenic characteristics and antimicrobial resistance of Streptococcus pasteurianus.
- To establish an animal infection model and identify potential reservoir niches for S. pasteurianus.
Main Methods:
- Isolation of S. pasteurianus from a meningitis-affected piglet and whole-genome sequencing.
- Comparative genome analysis with human strains and identification of an integrative and conjugative element (ICE).
- Generation of a capsule-deficient mutant and establishment of a mouse infection model to determine the 50% lethal dose (LD50).
Main Results:
- The swine isolate WUSP067 shares high homology with human strains but possesses a unique fucose utilization cluster and an ICE similar to Streptococcus suis.
- Strain WUSP067 exhibits resistance to multiple antibiotics, with ICEs potentially mediating antimicrobial resistance.
- The mouse model showed an LD50 of 4.0 × 10^7 CFU/mouse, with meningitis and brain pathology observed. Capsule was identified as an essential virulence factor.
- Tonsils and hilar lymph nodes of healthy pigs were identified as potential reservoir niches.
Conclusions:
- This study provides crucial insights into the pathogenesis, antimicrobial resistance, and potential reservoirs of Streptococcus pasteurianus.
- The findings establish an infection model and highlight the capsule as a key virulence factor, paving the way for further research into S. pasteurianus pathogenesis.
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