Engelstädter Jan, Harms Klaus, Johnsen Pål J
School of Biological Sciences, The University of Queensland, Brisbane, Queensland, Australia.
Faculty of Health Sciences, Department of Pharmacy, UIT - The Arctic University of Norway, Tromsø, Norway.
ISME J. 2016 Jun;10(6):1296-307. doi: 10.1038/ismej.2015.222. Epub 2016 Feb 5.
Integrons are genetic elements that are common in bacteria and are hotspots for genome evolution. They facilitate the acquisition and reassembly of gene cassettes encoding a variety of functions, including drug resistance. Despite their importance in clinical settings, the selective forces responsible for the evolution and maintenance of integrons are poorly understood. We present a mathematical model of integron evolution within bacterial populations subject to fluctuating antibiotic exposures. Bacteria carrying a functional integrase that mediates reshuffling of cassette genes and thereby modulates gene expression patterns compete with bacteria without a functional integrase. Our results indicate that for a wide range of parameters, the functional integrase can be stably maintained in the population despite substantial fitness costs. This selective advantage arises because gene-cassette shuffling generates genetic diversity, thus enabling the population to respond rapidly to changing selective pressures. We also show that horizontal gene transfer promotes stable maintenance of the integrase and can also lead to de novo assembly of integrons. Our model generates testable predictions for integron evolution, including loss of functional integrases in stable environments and selection for intermediate gene-shuffling rates in changing environments. Our results highlight the need for experimental studies of integron population biology.
整合子是细菌中常见的遗传元件,是基因组进化的热点。它们促进了编码多种功能(包括耐药性)的基因盒的获取和重新组装。尽管它们在临床环境中很重要,但对负责整合子进化和维持的选择压力却知之甚少。我们提出了一个在抗生素暴露波动的细菌群体中整合子进化的数学模型。携带功能性整合酶(介导基因盒基因重排从而调节基因表达模式)的细菌与没有功能性整合酶的细菌竞争。我们的结果表明,对于广泛的参数范围,尽管存在相当大的适应性成本,功能性整合酶仍可在群体中稳定维持。这种选择优势的出现是因为基因盒重排产生了遗传多样性,从而使群体能够快速应对不断变化的选择压力。我们还表明,水平基因转移促进了整合酶的稳定维持,并且还可以导致整合子的从头组装。我们的模型为整合子进化产生了可测试的预测,包括在稳定环境中功能性整合酶的丧失以及在变化环境中对中等基因重排率的选择。我们的结果突出了对整合子群体生物学进行实验研究的必要性。