Genomic and metabolic characterization of Trueperella pyogenes isolated from domestic and wild animals
Magossi, G.; James-Gzyl, K. E.; Holman, D. B.; Nagaraja, T. G.; Amachawadi, R. G.; Amat, S.
Show abstract
Trueperella pyogenes is an important bacterial pathogen implicated in infections such as mastitis, metritis, pneumonia, and liver abscesses in both domestic and wild animals as well as endocarditis and prosthetic joint infections in humans. Understanding the genomic and metabolic features that enable T. pyogenes to colonize different anatomical sites within a host and its inter-kingdom transmission and survival is important for the effective control of this pathogen. We employed whole genome sequencing, phenotype microarrays, and antimicrobial susceptibility testing to identify genomic, metabolic and phenotypic features as well as antimicrobial resistance (AMR) genes in T. pyogenes recovered from different livestock, companion and wildlife animals. For comparative genomic analysis, 83 T. pyogenes genomes, including 60 isolated in the current study and 23 publicly available genomes were evaluated. These genomes represented T. pyogenes strains originated from 16 different body sites of 11 different animal hosts (e.g. bovine, swine, ovine, cervid, bison, equine, chamois, feline). Additionally, 49 T. pyogenes isolates (bovine, ovine, deer, swine and feline) were evaluated for phenotypic antimicrobial resistance using disk diffusion, and for metabolic profiling using the Biology GENIII MicroPlates. We identified that T. pyogenes strains are not host- or body site-specific. The presence of conserved virulence genes (plo and fimA), as well as genotypic and phenotypic AMR may contribute to T. pyogeness ability to cause infections in livestock, wildlife, and pets. Most of the tested isolates metabolized diverse carbon sources and chemical compounds, suggesting that this metabolic versatility may contribute to T. pyogenes survival, competitive advantage, and pathogenic potential. ImportanceTrueperella pyogenes is an important animal pathogen with zoonotic potential, posing a significant health concern to both animals and humans due to its ability to cause infections across different animal host species and tissues. Current understanding of this pathogens adaptability and survival mechanisms is limited. Here, we evaluated the genomic, virulence, metabolic, and antimicrobial resistance characteristics of T. pyogenes recovered from 16 different body sites of 11 different animal hosts (livestock, companion, and wild animals). We identified multiple antimicrobial resistance and virulence genes that may enable T. pyogenes for sustained infection and transmission. Additionally, T. pyogenes strains displayed metabolic versatility which could also contribute to its ability to thrive in diverse environments. Understanding the genomic and metabolic, and antimicrobial resistance characteristics that enable T. pyogenes to colonize different anatomical sites within a host and its transmission between different animal species is important for the effective control of this pathogen.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Comparative genomics of emerging lineages and mobile resistomes of contemporary broiler strains of Salmonella Infantis and E. coli 96%
- Exploring the phylogenetic diversity and antimicrobial activity of non-aureus staphylococci and mammaliicocci isolated from teat apices of organic dairy cows 96%
- Monitoring the Antimicrobial Resistance Dynamics of Salmonella enterica in Healthy Dairy Cattle Populations at the Individual Farm Level Using Whole-Genome Sequencing 96%
Similar papers in this journal
- Prevalence of antimicrobial resistance phenotypes and genes in stable fly- and manure-derived bacterial isolates from clinically relevant taxa in dairy settings 97%
- Lytic bacteriophage vB_KmiS-Kmi2C disrupts biofilms formed by members of the Klebsiella oxytoca complex, and represents a novel virus family and genus 93%
- An evaluation of screening methods for the detection of extended-spectrum beta-lactamase-producing Escherichia coli and Klebsiella pneumoniae in environmental samples from healthcare settings 93%
Similar papers in this journal
- Comparative genomic analyses of Lactococcus garvieae isolated from bovine mastitis in China 97%
- Establishment of a publicly available core genome multilocus sequence typing scheme for Clostridium perfringens 95%
- Transport and utilization of glycogen breakdown products by Gardnerella spp. from the human vaginal microbiome 95%
Similar papers in this journal
- Enteropathogenic Providencia alcalifaciens: A subgroup of P. alcalifaciens that causes diarrhea. 96%
- Expression of Bacillus cereus Virulence-Related Genes in an Ocular Infection-Related Environment 94%
- Comprehensive genomic analysis of Klebsiella pneumoniae and its temperate N-15-like phage: From isolation to functional annotation 94%
Similar papers in this journal
- Evidence of a novel sublineage of Streptococcus agalactiae in elephants from zoo populations in Germany 97%
- Genomic Insights into the Diversity, Antimicrobial Resistance, and Zoonotic Potential of Campylobacter fetus Across Diverse Hosts and Geographies 96%
- Comparative genomics of Nocardia seriolae reveals recent importation and subsequent widespread dissemination in mariculture farms in South Central Coast, Vietnam 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.