Prevalence and Antimicrobial Susceptibility of Bovine Mycoplasma Species in Egypt

Ahmed Ammar, Marwa I. Abd El-Hamid, Yousreya H. Mohamed, Heba Mohamed, Dalal Hussien M. Alkhalifah, Wael N. Hozzein, Samy Selim, Wafaa M. El-Neshwy, Rania M. S. El-Malt

Biology · 2022 · 31 citations · 58 references

DOIFull text

Open access

Abstract

Among many bovine <i>Mycoplasma</i> species (spp.), <i>Mycoplasma bovis</i> is recognized as a significant causative agent of respiratory diseases in cattle. In recent years, resistant <i>M. bovis</i> isolates, especially to fluoroquinolones, have been reported globally as a result of the extensive usage of antimicrobials in the treatment of bovine pneumonia. Therefore, the aim of this study is to investigate the prevalence and antimicrobial susceptibility patterns of bovine <i>Mycoplasma</i> spp. isolated from the respiratory tracts of cattle in Egypt and to assess the fluoroquinolones resistance in the recovered mycoplasma isolates via broth microdilution and conventional PCR techniques. Conventional phenotypic methods identified 128 mycoplasma isolates (32%) from 400 different samples, with <i>M. bovis</i> being the predominant spp. (61%), followed by <i>M. bovirhinis</i> (15%). Of note, mycoplasma isolates were rarely isolated from total healthy lung tissues (7/55, 12.7%), but they were frequently isolated from pneumonic lungs (31/45, 68.9%). All the examined mycoplasma isolates (<i>n</i> = 76) were sensitive to tilmicosin, tylosin, tulathromycin, spiramycin, and spectinomycin (100% each), while 60.5% and 43.4% of the examined isolates had high minimum inhibitory concentration (MIC) values to enrofloxacin and doxycycline, respectively. Three and two mycoplasma isolates with high enrofloxacin MICs were confirmed to be <i>M. bovis</i> and <i>M. bovirhinis</i>, respectively, by PCR assays. All molecularly confirmed mycoplasma isolates (<i>n</i> = 5) were positive for the <i>gyrA</i> gene (100%); meanwhile, three isolates (60%) were positive for the <i>parC</i> gene. In conclusion, our findings revealed alarming resistance to enrofloxacin and doxycycline antibiotics; thus, antimicrobial usage must be restricted and molecular techniques can help in the rapid detection of the resistant strains.

References

58