Genomic Analysis of Human-infecting Leptospira borgpetersenii isolates in Sri Lanka expanded PF07598 gene family repertoire, less overall genome reduction than bovine isolates
Senavirathna, I.; Jayasundara, D.; Warnasekara, J.; Agampodi, S. B.; Putz, E. J.; Nally, J. E.; Bayles, D. O.; Chaurasia, R.; Vinetz, J. M.
Show abstract
Leptospira borgpetersenii commonly causes human leptospirosis, including severe disease. The first published analysis of L. borgpetersenii, performed on two strains of serovar Hardjo (L550 and JB197), concluded that the L. borgpetersenii genome is in the process of genome decay with functional consequences leading to a more obligately host-dependent life cycle. Yet whole genome analysis has only been carried out on few strains of L. borgpetersenii, with limited closed genomes and comprehensive analysis. Herein we report the complete, circularized genomes of seven non-Hardjo Leptospira borgpetersenii isolates from human leptospirosis patients in Sri Lanka. These isolates (all ST144) were found to be nearly identical by whole genome analysis; serotyping showed they are a novel serovar. We show that the L. borgpetersenii isolated from humans in Sri Lanka are less genomically decayed than previously reported isolates: fewer pseudogenes (N=141) and Insertion Sequence (IS) elements (N=46) compared to N=248, N=270, and N=400 pseudogenes, and N=121 and N=116 IS elements in published L. borgpetersenii Hardjo genomes (L550, JB197 and TC112). Compared to previously published L. borgpetersenii whole genome analyses showing two to three VM proteins in L. borgpetersenii isolates from cattle, rats and humans, we found that all of the human L. borgpetersenii isolates from Sri Lanka, including previously reported serovar Piyasena, have 4 encoded VM proteins, one ortholog of L. interrogans Copenhageni LIC12339 and 3 orthologs of LIC12844. Our findings of fewer pseudogenes, IS elements and expansion of the LIC12844 homologs of the PF07598 family in these human isolates suggests that this newly identified L. borgpetersenii serovar from Sri Lanka has unique pathogenicity. Comparative genome analysis and experimental studies of these L. borgpetersenii isolates will enable deeper insights into the molecular and cellular mechanisms of leptospirosis pathogenesis. Author SummaryLeptospirosis is an emerging bacterial zoonosis worldwide. Leptospira borgpetersenii predominates as the cause of human leptospirosis in some agricultural contexts. We address here the relatively neglected comparative genome analysis of L. borgpetersenii. We show here that L. borgpetersenii isolated from humans in Sri Lanka have less genome reduction compared to available cattle isolates and have novel virulence characteristics compared to isolates from other animals including cattle and rats.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- 12 Novel Clonal Groups of Leptospira Infecting Humans in Multiple Contrasting Epidemiological Contexts in Sri Lanka 98%
- Complete genomes of Rickettsia typhi reveal a clonal population 98%
- Whole genome sequences of Treponema pallidum subsp. endemicum isolated from Cuban patients: the non-clonal character of isolates suggests a persistent human infection rather than a single outbreak 97%
Similar papers in this journal
- Whole genome sequences of multi-drug resistant Escherichia coli isolated in a Pastoralist Community of Western Uganda: Phylogenomic changes, virulence and resistant genes 96%
- Gene expression is associated with virulence in murine macrophages infected with Leptospira spp 96%
- Novel strains of Campylobacter cause diarrheal outbreak in Rhesus macaques (Macaca mulatta) of Kathmandu Valley 96%
Similar papers in this journal
- Genomic diversity and antimicrobial resistance among non-typhoidal Salmonella associated with human disease in The Gambia 97%
- Comparative genomics of Chinese and international isolates of Escherichia albertii: population structure and evolution of virulence and antimicrobial resistance 97%
- Revisiting typing systems for group B Streptococcus (GBS) prophages: an application in prophage detection and classification in GBS isolates from Argentina 95%
Similar papers in this journal
- Cross-border investigations on the prevalence and transmission dynamics of Cryptosporidium species in dairy cattle farms in western mainland Europe 96%
- Comprehensive genomic analysis of Klebsiella pneumoniae and its temperate N-15-like phage: From isolation to functional annotation 94%
- Analysis of 56K genomes identifies the relationship between antibiotic and metal resistance co-Occurrence and the spread of multidrug-resistant non-typhoidal Salmonella 94%
Similar papers in this journal
- Yersinia canariae sp. nov., isolated from a human yersiniosis case 96%
- Genomic characterisation of a novel species of Erysipelothrix associated with mortalities among endangered seabirds 96%
- Reclassification of Catabacter hongkongensis as Christensenella hongkongensis comb.nov. based on whole genome analysis 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.