Characterization and Transferability of erm and tet Antibiotic Resistance Genes in Lactobacillus spp. Isolated from Traditional Fermented Milk
- PMID: 36209320
- DOI: 10.1007/s00284-022-02980-9
Characterization and Transferability of erm and tet Antibiotic Resistance Genes in Lactobacillus spp. Isolated from Traditional Fermented Milk
Abstract
Lactobacillus is a widely used bacteria and consumed through various fermented foods and beverages. Strains have been shown to carry resistance genes and mobile genetic elements with their ability to transfer the resistance to sensitive pathogenic strains. To study this, 4 cultures of Lactobacillus were isolated from traditional fermented milk. The isolates were able to grow up to 4% (w/v) NaCl concentration and 45 °C temperature, and showed > 97% 16S rRNA gene similarities with Lactobacillus fermentum. All the isolates were phenotypically screened for the presence of antibiotic resistance. Minimum inhibitory concentration (MIC) as microbiological breakpoints were observed against a varied class of antibiotics. Isolates AKO 94.6, DVM 95.7, and NIFTEM 95.8 were explicitly resistant to ampicillin, ciprofloxacin and vancomycin with MIC well beyond the maximum range of 256 µg/ml in the E-strip test. While isolate SKL1 was sensitive to ampicillin and showed MIC at 0.25 µg/ml but resistant to streptomycin and trimethoprim (MIC > 256 µg/ml). Molecular characterization showed the presence of tet(M) gene in three isolates SKL1, DVM 95.7, and NIFTEM 95.8 which was chromosomally associated resistance determinants while erm(B) resistance gene was detected in isolates DVM 95.7 and NIFTEM 95.8 only which was a plasmid associated gene and could be transferrable conjugally. Gene for Tn916 family (xis) was also observed in isolates DVM 95.7 and NIFTEM 95.8. Transferability of antibiotic resistance to pathogenic recipient strains was examined in isolates DVM 95.7 and NIFTEM 95.8 in different food matrices. The highest conjugation frequency with ~ 10-1 was obtained in alfalfa seed sprouts. This study reports the presence of acquired gene resistance in Lactobacillus species and dissemination to susceptible strains of bacteria in different food matrices. 16S rRNA gene sequences of isolates were uploaded to the NCBI GenBank database to retrieve the accession number.
© 2022. The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.
References
References:
-
- Generally Recognized as Safe (GRAS) | FDA. https://www.fda.gov/food/food-ingredients-packaging/generally-recognized... . Accessed 16 Dec 2021
-
- Hill C, Guarner F, Reid G et al (2014) Expert consensus document: The international scientific association for probiotics and prebiotics consensus statement on the scope and appropriate use of the term probiotic. Nat Rev Gastroenterol Hepatol 11:506–514. https://doi.org/10.1038/nrgastro.2014.66 - DOI - PubMed
-
- Guo Z, Liu XM, Zhang QX et al (2011) Influence of consumption of probiotics on the plasma lipid profile : a meta-analysis of randomised controlled trials. Nutr Metab Cardiovasc Dis 21:844–850. https://doi.org/10.1016/j.numecd.2011.04.008 - DOI - PubMed
-
- Guarino A, Guandalini S, Lo VA (2015) Probiotics for prevention and treatment of diarrhea. J Clin Gastroeterol 49:37–45. https://doi.org/10.1097/MCG.0000000000000349 - DOI
-
- Ford AC, Quigley EMM, Lacy BE et al (2014) Efficacy of prebiotics probiotics, and synbiotics in irritable bowel syndrome and chronic idiopathic constipation. Syst Rev Meta-anal. https://doi.org/10.1038/ajg.2014.202 - DOI
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