[HTML][HTML] Streptococcus agalactiae clones infecting humans were selected and fixed through the extensive use of tetracycline

V Da Cunha, MR Davies, PE Douarre… - Nature …, 2014 - nature.com
V Da Cunha, MR Davies, PE Douarre, I Rosinski-Chupin, I Margarit, S Spinali, T Perkins
Nature communications, 2014nature.com
Abstract Streptococcus agalactiae (Group B Streptococcus, GBS) is a commensal of the
digestive and genitourinary tracts of humans that emerged as the leading cause of bacterial
neonatal infections in Europe and North America during the 1960s. Due to the lack of
epidemiological and genomic data, the reasons for this emergence are unknown. Here we
show by comparative genome analysis and phylogenetic reconstruction of 229 isolates that
the rise of human GBS infections corresponds to the selection and worldwide dissemination …
Abstract
Streptococcus agalactiae (Group B Streptococcus, GBS) is a commensal of the digestive and genitourinary tracts of humans that emerged as the leading cause of bacterial neonatal infections in Europe and North America during the 1960s. Due to the lack of epidemiological and genomic data, the reasons for this emergence are unknown. Here we show by comparative genome analysis and phylogenetic reconstruction of 229 isolates that the rise of human GBS infections corresponds to the selection and worldwide dissemination of only a few clones. The parallel expansion of the clones is preceded by the insertion of integrative and conjugative elements conferring tetracycline resistance (TcR). Thus, we propose that the use of tetracycline from 1948 onwards led in humans to the complete replacement of a diverse GBS population by only few TcR clones particularly well adapted to their host, causing the observed emergence of GBS diseases in neonates.
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