Schenk Hanna, Traulsen Arne, Gokhale Chaitanya S
Department of Evolutionary Theory, Max Planck Institute for Evolutionary Biology, August-Thienemann Str-2, Plön, 24306, Germany.
Department of Evolutionary Theory, Max Planck Institute for Evolutionary Biology, August-Thienemann Str-2, Plön, 24306, Germany; New Zealand Institute for Advanced Study, Massey University, Albany, Private Bag 102904, North Shore Mail Centre, Auckland, 0745, New Zealand.
J Theor Biol. 2017 Oct 27;431:1-10. doi: 10.1016/j.jtbi.2017.07.027. Epub 2017 Jul 27.
The interplay between parasites and their hosts is found in all kinds of species and plays an important role in understanding the principles of evolution and coevolution. Usually, the different genotypes of hosts and parasites oscillate in their abundances. The well-established theory of oscillatory Red Queen dynamics proposes an ongoing change in frequencies of the different types within each species. So far, it is unclear under what conditions Red Queen dynamics persists, especially when the number of types per species increases. Some models show that with many types of hosts and parasites or more species chaotic dynamics occur. In our analysis, an arbitrary number of types within two species are examined in a deterministic framework with constant or changing population size and very simple interactions. This general framework allows for analytical solutions for internal fixed points and their stability. The numerical analysis shows that for two species, once more than two types are considered per species, irregular dynamics in their frequencies can be observed in the long run. The nature of the dynamics depends strongly on the initial configuration of the system; the usual regular Red Queen oscillations are only observed when all types initially have similar abundance.
寄生虫与其宿主之间的相互作用存在于各种物种中,对于理解进化和共同进化的原理起着重要作用。通常,宿主和寄生虫的不同基因型在其丰度上会发生波动。已确立的振荡红皇后动力学理论提出,每个物种内不同类型的频率会持续变化。到目前为止,尚不清楚在何种条件下红皇后动力学持续存在,尤其是当每个物种的类型数量增加时。一些模型表明,当存在多种类型的宿主和寄生虫或更多物种时,会出现混沌动力学。在我们的分析中,在种群大小恒定或变化且相互作用非常简单的确定性框架内,研究了两个物种内任意数量的类型。这个通用框架允许对内部固定点及其稳定性进行解析求解。数值分析表明,对于两个物种,一旦每个物种考虑的类型超过两种,从长远来看,就可以观察到其频率的不规则动力学。动力学的性质在很大程度上取决于系统的初始配置;只有当所有类型最初具有相似的丰度时,才会观察到通常的规则红皇后振荡。