A high-resolution cgMLST framework is established for B. henselae and it is demonstrated that genetically distinct strains have diverse endothelial cell phenotypes, indicating strain-dependent differences in endothelial cell injury.
Abstract
Bartonella henselae is a zoonotic pathogen associated with cat-scratch disease. Although multilocus sequence typing (MLST) has been used for strain classification, its resolution for distinguishing between B. henselae isolates remains limited. We herein developed a B. henselae-specific core genome MLST (cgMLST) scheme based on whole-genome sequencing data and examined the genetic and phenotypic diversities of 80 strains derived from cats, humans, mongooses, and masked palm civets. Using the conventional MLST scheme, the 80 strains were classified into nine sequence types (STs), while cgMLST subdivided them into 72 cgSTs, demonstrating a marked improvement in discriminatory power. The cgMLST scheme comprised 1,183 core genes and showed high applicability across the 80 strains. A phylogenetic analysis revealed that ST1, which has been associated with cat-scratch disease, was further subdivided into three major clusters and two singletons, indicating high genetic heterogeneity within this ST. We also found that the bafA subtypes clustered in a manner that was largely consistent with the cgMLST-based phylogenetic structure, suggesting a close relationship between bafA variations and the genomic background of B. henselae strains. In a human umbilical vein endothelial cell proliferation assay, strains belonging to distinct cgSTs exhibited strain-dependent differences in proliferative capacity, which were associated with the bafA subtype classification. Some strains induced focal cell fragmentation and a reduced cell density at a high multiplicity of infection, indicating strain-dependent differences in endothelial cell injury. Collectively, the present results establish a high-resolution cgMLST framework for B. henselae and demonstrate that genetically distinct strains have diverse endothelial cell phenotypes.
Pasteurella multocida is a zoonotic pathogen infecting a wide range of domestic and wild animals. Although genomic data are available for several domestic hosts, isolates from wildlife remain underrepresented. Here, we performed whole-genome sequencing of nine P. multocida isolates recovered in Connecticut between 2022...
Jillian Barron, Nina Francesca Soriano, Zeinab H. Helal et al.· Frontiers in Veterinary Scie...· 0 citations
Introduction Histoplasma capsulatum is an important fungal pathogen of humans, especially in immunocompromised patients, and the World Health Organisation has listed Histoplasma as a High Priority fungal pathogen. The taxonomy of the genus Histoplasma is still under development, but its only species H. capsulatum has a...
The evolutionary mechanisms of the foodborne O4:KUT serotype prevalent in local seafood and clinical samples from Huzhou, China are revealed, and a preliminary gene-signature framework is provided that may inform the future development of molecular serotyping assays.
Peng Zhang, L. Ji, Wei Yan et al.· Microorganisms· 0 citations
It is demonstrated that, while most yellow-legged gull isolates constitute host-adapted lineages, gulls also harbor overlapping genotypes shared with livestock and clinical human isolates, compatible with shared ecological niches and common contamination sources rather than direct bird-to-human transmission.
S. Duvnjak, L. Jurinović, F. Krstulović et al.· Microorganisms· 0 citations
Cystic echinococcosis (CE), caused by members of the Echinococcus granulosus sensu lato complex, remains endemic in Iran. Genotype G6, classified within Echinococcus canadensis, is epidemiologically important because of its frequent occurrence in camels and its ability to cause human infection. This study compared the...
A. Latifi, M. Alebouyeh, Hamid Choobineh et al.· Journal of Parasitology· 0 citations
The genomic diversity of this understudied Legionella species is underscore the genomic diversity of this understudied Legionella species and provides a framework for future investigations regarding environmental persistence and potential pathogenicity.
M. Najeeb, Sara Matthews, M. Prévost et al.· FEMS Microbiology Letters· 0 citations
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