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Published on: February 24, 2023
Genome-wide association study of Mycoplasma anserisalpingitidis strains for antibiotic susceptibility
Áron B Kovács1,2,3, Enikő Wehmann1,2, Katinka Bekő1
1HUN-REN Veterinary Medical Research Institute, Hungária Krt. 21, Budapest, 1143, Hungary.
Abstract:
Mycoplasma anserisalpingitidis is a facultative pathogenic bacterium affecting waterfowl, predominantly geese and sporadically ducks. Understanding the molecular basis of antimicrobial resistance mechanisms is crucial in the preservation of antibiotic efficiency. This study aimed to elucidate the genetic background of antibiotic susceptibility profiles of 110 M. anserisalpingitidis strains against nine antimicrobial agents. Significant associations between k-mers and five (tylvalosin, tilmicosin, enrofloxacin, lincomycin, spectinomycin) of the nine antimicrobial agents were identified by pyseer. Significant associations were found in multiple coding sequences that encode various members of efflux pumps, epigenetic regulation and topoisomerases among many other groups of functions. Certain k-mers associated with genes found putative prophage-like sequences suggest potential horizontal gene transfer events that could facilitate the acquisition of novel resistance mechanisms. Based on our findings, the genetic background of antimicrobial resistance of M. anserisalpingitidis is composed of multiple factors. Our results not only correlated with the majority of known antibiotic resistance mechanisms (e.g. drug target modification, efflux pumps, methyltransferases) but also showed potentially novel genes that could play a significant role in antimicrobial resistance. The results may serve to expedite the diagnosis of M. anserisalpingitidis antibiotic susceptibility profiles and support the fight against the spreading of resistance.
Insights
This study reveals multiple genetic factors contributing to antimicrobial resistance in Mycoplasma anserisalpingitidis, a pathogen affecting waterfowl. Findings aid in diagnosing resistance and combating its spread.
Area of Science:
- Veterinary Microbiology
- Genomics
- Antimicrobial Resistance
Background:
- Mycoplasma anserisalpingitidis is a facultative pathogen impacting waterfowl, primarily geese.
- Understanding antimicrobial resistance (AMR) mechanisms is vital for maintaining antibiotic efficacy.
Purpose of the Study:
- To investigate the genetic basis of antibiotic susceptibility in M. anserisalpingitidis.
- To identify specific genes and genetic elements associated with resistance.
Main Methods:
- Genomic analysis of 110 M. anserisalpingitidis strains.
- Association analysis using k-mers and pyseer to link genetic features with resistance profiles against nine antimicrobial agents.
Main Results:
- Significant associations identified between k-mers and resistance to five key antimicrobials (tylvalosin, tilmicosin, enrofloxacin, lincomycin, spectinomycin).
- Associated genes involved in efflux pumps, epigenetic regulation, and topoisomerases were implicated.
- Putative prophage-like sequences suggest horizontal gene transfer as a mechanism for acquiring resistance.
Conclusions:
- The genetic background of AMR in M. anserisalpingitidis is multifactorial, involving known mechanisms and potentially novel genes.
- Results can accelerate diagnosis of M. anserisalpingitidis antibiotic susceptibility and support efforts against AMR spread.
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