Seppälä Otto, Lively Curtis M, Jokela Jukka
Institute of Integrative Biology ETH Zürich Zürich Switzerland.
Department of Aquatic Ecology Eawag Dübendorf Switzerland.
Ecol Evol. 2020 Aug 30;10(18):9600-9612. doi: 10.1002/ece3.6373. eCollection 2020 Sep.
Genetically specific interactions between hosts and parasites can lead to coevolutionary fluctuations in their genotype frequencies over time. Such fluctuating selection dynamics are, however, expected to occur only under specific circumstances (e.g., high fitness costs of infection to the hosts). The outcomes of host-parasite interactions are typically affected by environmental/ecological factors, which could modify coevolutionary dynamics. For instance, individual hosts are often infected with more than one parasite species and interactions between them can alter host and parasite performance. We examined the potential effects of coinfections by genetically specific (i.e., coevolving) and nonspecific (i.e., generalist) parasite species on fluctuating selection dynamics using numerical simulations. We modeled coevolution (a) when hosts are exposed to a single parasite species that must genetically match the host to infect, (b) when hosts are also exposed to a generalist parasite that increases fitness costs to the hosts, and (c) when coinfecting parasites compete for the shared host resources. Our results show that coinfections can enhance fluctuating selection dynamics when they increase fitness costs to the hosts. Under resource competition, coinfections can either enhance or suppress fluctuating selection dynamics, depending on the characteristics (i.e., fecundity, fitness costs induced to the hosts) of the interacting parasites.
宿主与寄生虫之间特定的基因相互作用会导致它们的基因型频率随时间发生协同进化波动。然而,这种波动选择动态预计仅在特定情况下出现(例如,感染对宿主造成的高适应性成本)。宿主 - 寄生虫相互作用的结果通常受环境/生态因素影响,这些因素可能改变协同进化动态。例如,个体宿主常常感染不止一种寄生虫,它们之间的相互作用会改变宿主和寄生虫的表现。我们使用数值模拟研究了特定基因(即协同进化)和非特定(即泛化)寄生虫物种的混合感染对波动选择动态的潜在影响。我们对协同进化进行了建模:(a)宿主暴露于单一必须在基因上与宿主匹配才能感染的寄生虫物种时;(b)宿主还暴露于会增加宿主适应性成本的泛化寄生虫时;(c)混合感染的寄生虫争夺共享宿主资源时。我们的结果表明,当混合感染增加宿主的适应性成本时,它会增强波动选择动态。在资源竞争情况下,混合感染既可能增强也可能抑制波动选择动态,这取决于相互作用的寄生虫的特征(即繁殖力、对宿主造成的适应性成本)。