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How nested and monogamous infection networks in host-phage communities come to be

机译:宿主噬菌体社区中的嵌套和一夫一妻式感染网络如何成为

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We show that a chemostat community of bacteria and bacteriophage in which bacteria compete for a single nutrient and for which the bipartite infection network is perfectly nested is permanent, a.k.a. uniformly persistent, provided that bacteria that are superior competitors for nutrient devote the least effort to defence against infection and the virus that are the most efficient at infecting host have the smallest host range. This confirms an earlier work of Jover et al. (J. Theor. Biol. 332:65-77, 2013) who raised the issue of whether nested infection networks are permanent. In addition, we provide sufficient conditions that a bacteria-phage community of arbitrary size with nested infection network can arise through a succession of permanent subcommunties each with a nested infection network by the successive addition of one new population. The same permanence results hold for the monogamous infection network considered by Thingstad (Limnol Oceanogr 45:1320-1328, 2000) but without the trade-offs.
机译:我们表明,细菌和噬菌体的化学恒温器群落中的细菌竞争一种营养素,而完美地嵌套了两方感染网络的细菌和噬菌体则是永久的,也就是一致持久的,前提是作为营养素的最佳竞争者的细菌花费最少的精力进行防御抵抗感染,最有效感染宿主的病毒具有最小的宿主范围。这证实了Jover等人的早期工作。 (J. Theor。Biol。332:65-77,2013)提出了嵌套感染网络是否是永久性的问题。此外,我们提供了充分的条件,可以通过连续添加一个新种群,通过一系列具有嵌套感染网络的永久性亚社区,形成具有嵌套感染网络的任意大小的细菌-噬菌体群落。 Thingstad考虑的一夫一妻制感染网络具有相同的持久性结果(Limnol Oceanogr 45:1320-1328,2000),但没有权衡取舍。

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