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Parasite diversity drives rapid host dynamics and evolution of resistance in a bacteria-phage system

机译:寄生虫的多样性驱动细菌噬菌体系统中快速的宿主动态和抗性的进化

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摘要

Host-parasite evolutionary interactions are typically considered in a pairwise species framework. However, natural infections frequently involve multiple parasites. Altering parasite diversity alters ecological and evolutionary dynamics as parasites compete and hosts resist multiple infection. We investigated the effects of parasite diversity on host-parasite population dynamics and evolution using the pathogen P. aeruginosa and five lytic bacteriophage parasites. To manipulate parasite diversity, bacterial populations were exposed for 24 hours to either phage monocultures or diverse communities containing up to five phages. Phage communities suppressed host populations more rapidly but also showed reduced phage density, likely due to inter-phage competition. The evolution of resistance allowed rapid bacterial recovery that was greater in magnitude with increases in phage diversity. We observed no difference in the extent of resistance with increased parasite diversity, but there was a profound impact on the specificity of resistance; specialized resistance evolved to monocultures through mutations in a diverse set of genes. In summary, we demonstrate that parasite diversity has rapid effects on host-parasite population dynamics and evolution by selecting for different resistance mutations and affecting the magnitude of bacterial suppression and recovery. Finally, we discuss the implications of phage diversity for their use as biological control agents.
机译:通常在成对物种框架中考虑宿主-寄生虫进化相互作用。但是,自然感染经常涉及多种寄生虫。随着寄生虫竞争和宿主抵抗多种感染,改变寄生虫多样性会改变生态和进化动态。我们调查了病原体铜绿假单胞菌和五个裂解噬菌体寄生虫对寄主-寄生虫种群动态和进化的寄生虫多样性的影响。为了操纵寄生虫的多样性,细菌种群要暴露于噬菌体单一培养物或包含多达五个噬菌体的多样群落中24小时。噬菌体群落更快地抑制了宿主种群,但也可能由于噬菌体间竞争而降低了噬菌体密度。抗性的进化允许细菌快速恢复,其随着噬菌体多样性的增加而增加。我们观察到随着寄生虫多样性的增加,耐药程度没有差异,但是对耐药的特异性产生了深远的影响。特殊的抗性通过多种基因中的突变演变为单一培养。总而言之,我们通过选择不同的抗性突变并影响细菌抑制和恢复的程度,证明了寄生虫多样性对宿主-寄生虫种群动态和进化有快速的影响。最后,我们讨论了噬菌体多样性作为生物防治剂的意义。

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