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Rule-based simulation of temperate bacteriophage infection: Restriction-modification as a limiter to infection in bacterial populations

机译:基于规则的温带噬菌体感染的模拟:限制修饰作为细菌种群感染的限制因素

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An individual-based model (IbM) for bacterial adaptation and evolution, COSMIC-Rules, has been employed to simulate interactions of virtual temperate bacteriophages (phages) and their bacterial hosts. Outcomes of infection mimic those of a phage such as lambda, which can enter either the lytic or lysogenic cycle, depending on the nutritional status of the host. Infection of different hosts possessing differing restriction and modification systems is also simulated. Phages restricted upon infection of one restricting host can be adapted (by host-controlled modification of the phage genome) and subsequently propagate with full efficiency on this host. However, such ability is lost if the progeny phages are passaged through a new host with a different restriction and modification system before attempted re-infection of the original restrictive host. The simulations show that adaptation and re-adaptation to a particular host-controlled restriction and modification system result in lower efficiency and delayed lysis of bacterial cells compared with infection of non-restricting host bacteria.Such biologically realistic simulations validate the use of the IbM approach to predicting behaviour of bacteriophages in bacterial populations. The applicability of the model for more complex scenarios aimed at predictive modelling of bacterial evolution in a changing environment and the implications for the spread of viruses in a wider context are discussed.
机译:用于细菌适应和进化的基于个体的模型(IbM)COSMIC-Rules已被用于模拟虚拟温带噬菌体(噬菌体)与其细菌宿主之间的相互作用。感染的结果模仿了λ之类的噬菌体,它们可以进入裂解或溶原性循环,具体取决于宿主的营养状况。还模拟了具有不同限制和修饰系统的不同宿主的感染。可以适应受一种限制性宿主感染限制的噬菌体(通过宿主控制的噬菌体基因组修饰),然后在该宿主上高效繁殖。但是,如果在尝试再次感染原始限制性宿主之前,使子代噬菌体通过具有不同限制和修饰系统的新宿主传代,则会丧失这种能力。模拟表明,与非限制性宿主细菌的感染相比,对特定宿主控制的限制性和修饰系统的适应和重新适应导致细菌细胞效率降低和细胞裂解延迟。此类生物学上现实的模拟验证了IbM方法的使用以预测细菌群体中噬菌体的行为。讨论了该模型在更复杂的场景中的适用性,该场景旨在对不断变化的环境中的细菌进化进行预测建模,以及在更广泛的环境中对病毒传播的影响。

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