Ghoul Melanie, Andersen Sandra B, Marvig Rasmus L, Johansen Helle K, Jelsbak Lars, Molin Søren, Perron Gabriel, Griffin Ashleigh S
Department of Biology, University of Oxford, Oxford, United Kingdom.
Center for Evolutionary Hologenomics, Globe Institute, University of Copenhagen, Copenhagen, Denmark.
Evol Lett. 2023 Sep 20;7(6):389-400. doi: 10.1093/evlett/qrad034. eCollection 2023 Dec.
Pathogenic bacteria respond to antibiotic pressure with the evolution of resistance but survival can also depend on their ability to tolerate antibiotic treatment, known as tolerance. While a variety of resistance mechanisms and underlying genetics are well characterized in vitro and in vivo, an understanding of the evolution of tolerance, and how it interacts with resistance in situ is lacking. We assayed for tolerance and resistance in isolates of from chronic cystic fibrosis lung infections spanning up to 40 years of evolution, with 3 clinically relevant antibiotics: meropenem, ciprofloxacin, and tobramycin. We present evidence that tolerance is under positive selection in the lung and that it can act as an evolutionary stepping stone to resistance. However, by examining evolutionary patterns across multiple patients in different clone types, a key result is that the potential for an association between the evolution of resistance and tolerance is not inevitable, and difficult to predict.
致病细菌通过耐药性的进化来应对抗生素压力,但生存也可能取决于它们耐受抗生素治疗的能力,即耐受性。虽然多种耐药机制及其潜在遗传学在体外和体内已得到充分表征,但对于耐受性的进化以及它在原位如何与耐药性相互作用仍缺乏了解。我们用三种临床相关抗生素(美罗培南、环丙沙星和妥布霉素)对来自慢性囊性纤维化肺部感染长达40年进化过程中的分离株进行了耐受性和耐药性检测。我们提供的证据表明,耐受性在肺部受到正选择,并且它可以作为耐药性的进化跳板。然而,通过研究不同克隆类型的多个患者的进化模式,一个关键结果是,耐药性和耐受性进化之间关联的可能性并非不可避免,且难以预测。