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Class 1 integrons are low-cost structures in Escherichia coli

机译:1类整合素是大肠杆菌中的低成本结构

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摘要

Resistance integrons are bacterial genetic platforms that can capture and express antibiotic resistance genes embedded within gene cassettes. The capture and shuffling of gene cassettes are mediated by the integrase IntI, the expression of which is regulated by the SOS response in Escherichia coli. Gene cassettes are expressed from a common Pc promoter. Despite the clinical and environmental relevance of integrons, the selective forces responsible for their evolution and maintenance are poorly understood. Here, we conducted pairwise competition experiments in order to assess the fitness cost of class 1 integrons in E. coli. We found that integrons are low-cost structures and that their cost is further reduced by their tight regulation. We show that the SOS response prevents the expression of costly integrases whose cost is activity dependent. Thus, when an integron is repressed, its cost depends mostly on the expression of its gene cassettes array and increases with Pc strength and the number of cassettes in the array. Furthermore, different cassettes have different costs. Lastly, we showed that subinhibitory antibiotic concentrations promoted the selection of integron-carrying bacteria, especially those with a strong Pc promoter. These results provide new insights into the evolutionary dynamics of integron-carrying bacterial populations.
机译:抗性整合素是细菌遗传平台,可以捕获和表达嵌入基因盒中的抗生素抗性基因。基因盒的捕获和改组由整合酶IntI介导,整合酶IntI的表达受大肠杆菌中SOS反应的调节。基因盒由普通的Pc启动子表达。尽管整联蛋白在临床和环境上都具有相关性,但对其形成和维持的选择性作用力知之甚少。在这里,我们进行了成对竞争实验,以评估大肠杆菌中1类整合素的适应性成本。我们发现整联蛋白是低成本的结构,通过严格的监管其成本进一步降低。我们表明,SOS响应阻止了成本依赖于活动的昂贵积分的表达。因此,当整合子受到抑制时,其成本主要取决于其基因盒阵列的表达,并随着Pc强度和阵列中盒数的增加而增加。此外,不同的盒具有不同的成本。最后,我们显示了亚抑制性抗生素浓度促进了整合子携带细菌的选择,特别是那些具有强大Pc启动子的细菌。这些结果为携带整合子的细菌种群的进化动力学提供了新的见解。

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