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Adaptive Resistance Mutations at Suprainhibitory Concentrations Independent of SOS Mutagenesis.

Authors :
GutiƩrrez, Ricardo
Ram, Yoav
Berman, Judith
Sousa, Keyla Carstens Marques de
Nachum-Biala, Yaarit
Britzi, Malka
Elad, Daniel
Glaser, Gad
Covo, Shay
Harrus, Shimon
Source :
Molecular Biology & Evolution; Oct2021, Vol. 38 Issue 10, p4095-4115, 21p
Publication Year :
2021

Abstract

Emergence of resistant bacteria during antimicrobial treatment is one of the most critical and universal health threats. It is known that several stress-induced mutagenesis and heteroresistance mechanisms can enhance microbial adaptation to antibiotics. Here, we demonstrate that the pathogen Bartonella can undergo stress-induced mutagenesis despite the fact it lacks error-prone polymerases, the rpoS gene and functional UV-induced mutagenesis. We demonstrate that Bartonella acquire de novo single mutations during rifampicin exposure at suprainhibitory concentrations at a much higher rate than expected from spontaneous fluctuations. This is while exhibiting a minimal heteroresistance capacity. The emerged resistant mutants acquired a single rpoB mutation, whereas no other mutations were found in their whole genome. Interestingly, the emergence of resistance in Bartonella occurred only during gradual exposure to the antibiotic, indicating that Bartonella sense and react to the changing environment. Using a mathematical model, we demonstrated that, to reproduce the experimental results, mutation rates should be transiently increased over 1,000-folds, and a larger population size or greater heteroresistance capacity is required. RNA expression analysis suggests that the increased mutation rate is due to downregulation of key DNA repair genes (mutS , mutY , and recA), associated with DNA breaks caused by massive prophage inductions. These results provide new evidence of the hazard of antibiotic overuse in medicine and agriculture. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07374038
Volume :
38
Issue :
10
Database :
Complementary Index
Journal :
Molecular Biology & Evolution
Publication Type :
Academic Journal
Accession number :
152716839
Full Text :
https://doi.org/10.1093/molbev/msab196