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抗生素耐药性的成本取决于大肠杆菌的进化史。

The cost of antibiotic resistance depends on evolutionary history in Escherichia coli.

机构信息

Institute of Integrative Biology, ETH Zürich, Zürich, CH-8092, Switzerland.

出版信息

BMC Evol Biol. 2013 Aug 2;13:163. doi: 10.1186/1471-2148-13-163.

Abstract

BACKGROUND

The persistence of antibiotic resistance depends on the fitness effects of resistance elements in the absence of antibiotics. Recent work shows that the fitness effect of a given resistance mutation is influenced by other resistance mutations on the same genome. However, resistant bacteria acquire additional beneficial mutations during evolution in the absence of antibiotics that do not alter resistance directly but may modify the fitness effects of new resistance mutations.

RESULTS

We experimentally evolved rifampicin-resistant and sensitive Escherichia coli in a drug-free environment, before measuring the effects of new resistance elements on fitness in antibiotic-free conditions. Streptomycin-resistance mutations had small fitness effects in rifampicin-resistant genotypes that had adapted to antibiotic-free growth medium, compared to the same genotypes without adaptation. We observed a similar effect when resistance was encoded by a different mechanism and carried on a plasmid. Antibiotic-sensitive bacteria that adapted to the same conditions showed the same pattern for some resistance elements but not others.

CONCLUSIONS

Epistatic variation of costs of resistance can result from evolution in the absence of antibiotics, as well as the presence of other resistance mutations.

摘要

背景

抗生素耐药性的持续存在取决于抗生素存在情况下抗性元件的适应性效应。最近的研究表明,给定抗性突变的适应性效应受到同一基因组上其他抗性突变的影响。然而,在没有抗生素的情况下,抗性细菌在进化过程中会获得其他有益的突变,这些突变不会直接改变抗性,但可能会改变新抗性突变的适应性效应。

结果

我们在无药物环境中实验性地进化了对利福平具有抗性和敏感性的大肠杆菌,然后在无抗生素的条件下测量了新的抗性元件对适应性的影响。与没有适应的相同基因型相比,在适应无抗生素生长培养基的利福平抗性基因型中,链霉素抗性突变的适应性效应较小。当抗性由不同的机制编码并携带在质粒上时,我们观察到了类似的效果。适应相同条件的抗生素敏感细菌对一些抗性元件表现出相同的模式,但对其他抗性元件则没有。

结论

在没有抗生素的情况下进化以及存在其他抗性突变时,抗性成本的上位性变化可能会发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc8a/3751127/fa1fde88b7b8/1471-2148-13-163-1.jpg

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