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PERSISTENCE IN PHAGE-BACTERIA COMMUNITIES WITH NESTED AND ONE-TO-ONE INFECTION NETWORKS

机译:具有嵌套和一对一感染网络的噬菌体社区的持久性

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We show that a bacteria and bacteriophage system with either a perfectly nested or a one-to-one infection network is permanent, a.k.a uniformly persistent, provided that bacteria that are superior competitors for nutrient devote the least to defence against infection and the virus that are the most efficient at infecting host have the smallest host range. By ensuring that the density-dependent reduction in bacterial growth rates are independent of bacterial strain, we are able to arrive at the permanence conclusion sought by Jover et al [3]. The same permanence results hold for the one-to-one infection network considered by Thingstad [9] but without virus efficiency ordering. In some special cases, we show the global stability for the nested infection network, and obtain restrictions on the global dynamics for the one-to-one network.
机译:我们表明具有完美嵌套或一对一感染网络的细菌和噬菌体系统是永久的,也就是一致持久的,前提是作为营养素竞争优势的细菌对防御感染和病毒的作用最小。最有效的感染宿主具有最小的宿主范围。通过确保细菌生长速率的密度依赖性降低与细菌菌株无关,我们能够得出Jover等[3]寻求的持久性结论。 Thingstad [9]考虑的一对一感染网络具有相同的持久性结果,但没有病毒效率排序。在某些特殊情况下,我们展示了嵌套感染网络的全局稳定性,并获得了一对一网络全局动态的限制。

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