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Banyai, K.

Publications and source records attributed to Banyai, K..

2 recordsLinked to original sources

A glimpse of antimicrobial resistance gene diversity in kefir and yoghurt

Antimicrobial resistance (AMR) is a global threat gaining more and more practical significance every year. The protection of bacteria against antimicrobials based on antimicrobial resistance genes (ARGs) developed in evolution. One of the essential clinical questions is the origin of ARGs of pathogen bacteria. Since the bacteria can share genetic components by horizontal gene transfer (HGT), all even non-pathogen bacteria may provide ARG to any pathogens when they became close physically. The bacteria of the human gut may make contact with bacteria entered into the body by food. The fermented food contains bacteria in high amount by its nature. Here we studied the diversity of ARG content by a unified metagenomic approach in various kefir and yoghurt products, in grain and isolated bacterial strains. We found numerous ARGs of commonly used fermenting bacteria with diversity characteristics in kefir and yoghurt samples. Even with the strictest filter restrictions we identified ARGs undermining the efficacy of aminocoumarin, aminoglycoside, carbapenem, cephalosporin, cephamycin, diaminopyrimidine, elfamycin, fluoroquinolone, fosfomycin, glycylcycline, lincosamides, macrolide, monobactam, nitrofuran, nitroimidazole, penam, penem, peptide, phenicol, rifamycin, tetracycline and triclosan. In the case of gene lmrD, we detected genetic environment providing mobility of this ARG. Our findings support that theory during the fermentation process the food ARG content can grow by the bacteria multiplication. Results presented suggest that starting culture strains of fermented food should be monitored and selected to decrease the ARG amount intake by nutrition.

genomics

Multiple SARS-CoV-2 introductions shaped the early outbreak in Central Eastern Europe: comparing Hungarian data to a worldwide sequence data-matrix

Severe Acute Respiratory Syndrome Coronavirus 2 is the third highly pathogenic human coronavirus in history. Since the emergence in Hubei province, China, during late 2019 the situation evolved to pandemic level. Following China, Europe was the second epicenter of the pandemic. To better comprehend the detailed founder mechanisms of the epidemic evolution in Central-Eastern Europe, particularly in Hungary, we determined the full-length SARS-CoV-2 genomes from 32 clinical samples collected from laboratory confirmed COVID-19 patients over the first month of disease in Hungary. We applied a haplotype network analysis on all available complete genomic sequences of SARS-CoV-2 from GISAID database as of the 21th of April, 2020. We performed additional phylogenetic and phylogeographic analyses to achieve the recognition of multiple and parallel introductory events into our region. Here we present a publicly available network imaging of the worldwide haplotype relations of SARS-CoV-2 sequences and conclude the founder mechanisms of the outbreak in Central-Eastern Europe.

microbiology