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Updated: Sep 16, 2025

Identification of Rare Bacterial Pathogens by 16S rRNA Gene Sequencing and MALDI-TOF MS
Published on: July 11, 2016
Application of MALDI-TOF MS and FT-IR spectroscopy in identification and antibiotic resistance profiling of lactic
Tamás Kocsis1, Anna Győrffy2, Andrea Pomázi2
1Department of Food Microbiology, Hygiene, and Safety, Hungarian University of Agriculture and Life Sciences, 1118, Budapest, Hungary. kocsis.tamas.jozsef@uni-mate.hu.
Abstract:
This study evaluates the combined application of MALDI-TOF MS and Fourier transform infrared (FT-IR) spectroscopy for the purpose of species identification and strain-level differentiation of lactic acid bacteria isolated from commercial yoghurts. MALDI-TOF MS provided rapid species-level identification, while FT-IR detected metabolic variations by analysing key cellular components such as membrane fatty acids (3000-2800 cm-1), protein amide bands (1800-1500 cm-1), and polysaccharides (1200-900 cm-1). These spectral features reflected phenotypic differences among strains linked to antibiotic resistance profiles. Disc diffusion antibiotic susceptibility testing revealed significant variability among isolates, and a strong correlation was observed between FT-IR-derived linear discriminant analysis (LDA) clusters and resistance to oxacillin, clindamycin, and tetracycline (Chi2 test, p < 0.05). This demonstrates FT-IR as a rapid, non-invasive tool for the early detection of resistant strains, facilitating real-time monitoring of bacterial adaptation during fermentation. The findings of this study provide support for integrating FT-IR and MALDI-TOF MS into industrial quality control, aiding in strain selection and enhancing food safety. KEY POINTS: • FT-IR enables rapid phenotypic typing of lactic acid bacteria strains. • Spectral profiles correlate with antibiotic resistance. • MALDI-TOF MS and FT-IR offer a robust, complementary identification method.
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