Department of Biology, University of Virginia, Charlottesville, Virginia, 22904.
Evolution. 2022 Jul;76(7):1556-1564. doi: 10.1111/evo.14521. Epub 2022 Jun 17.
Host and parasites interact across spatial scales, but parasite-mediated fitness effects are typically measured only at local scales. Recent work suggests that parasites can reduce host fitness during dispersal between patches, highlighting the potential for both within- and between-patch effects to contribute to the net fitness consequences of parasitism. Building on this work, we measured the contribution of the dispersal phase to parasite-mediated reductions in host fitness. We used the nematode Caenorhabditis elegans and its natural microsporidian parasite Nematocida parisii to quantify the fitness consequences of parasitism at the individual, population, and metapopulation level. Nematocida parisii reduced individual fecundity and population growth but had its greatest fitness impact at the dispersal stage: parasitism reduced the fitness of dispersing larvae by 62%-100%. These results indicate that the cost of parasitism in this system is greatly underestimated if the metapopulation level is not taken into account. We also found that the effects of N. parisii vary with host genotype, and the relative advantage of the most resistant genotype increases with inclusion of the dispersal stage. Taken together, our findings demonstrate that host-parasite interactions at the dispersal stage can magnify selection for parasite resistance.
宿主和寄生虫在空间尺度上相互作用,但寄生虫介导的适合度效应通常仅在局部尺度上进行测量。最近的研究表明,寄生虫可以在斑块之间的扩散过程中降低宿主的适合度,这突出了在斑块内和斑块间效应都可能对寄生虫感染的净适合度后果产生影响。基于这项工作,我们测量了扩散阶段对寄生虫介导的宿主适合度降低的贡献。我们使用线虫秀丽隐杆线虫及其天然微孢子虫寄生虫 Nematocida parisii 来量化个体、种群和集合种群水平上寄生虫感染的适合度后果。Nematocida parisii 降低了个体的繁殖力和种群增长率,但在扩散阶段对适合度的影响最大:寄生虫感染使扩散幼虫的适合度降低了 62%-100%。这些结果表明,如果不考虑集合种群水平,该系统中寄生虫感染的成本将被大大低估。我们还发现,N. parisii 的作用因宿主基因型而异,最具抗性基因型的相对优势随着包括扩散阶段而增加。总之,我们的研究结果表明,扩散阶段的宿主-寄生虫相互作用可以放大对寄生虫抗性的选择。