1 Department of Evolutionary Biology and Environmental Studies, University of Zurich , Winterthurerstrasse 190, 8057 Zürich , Switzerland.
2 Department of Aquatic Ecology, Eawag, Swiss Federal Institute of Aquatic Science and Technology , Überlandstrasse 133, 8600 Dübendorf , Switzerland.
Biol Lett. 2019 Mar 29;15(3):20180865. doi: 10.1098/rsbl.2018.0865.
Dispersal can strongly influence ecological and evolutionary dynamics. Besides the direct contribution of dispersal to population dynamics, dispersers often differ in their phenotypic attributes from non-dispersers, which leads to dispersal syndromes. The consequences of such dispersal syndromes have been widely explored at the population and community level; however, to date, ecosystem-level effects remain unclear. Here, we examine whether dispersing and resident individuals of two different aquatic keystone invertebrate species have different contributions to detrital processing, a key function in freshwater ecosystems. Using experimental two-patch systems, we found no difference in leaf consumption rates with dispersal status of the common native species Gammarus fossarum. In Dikerogammarus villosus, however, a Ponto-Caspian species now expanding throughout Europe, dispersers consumed leaf litter at roughly three times the rate of non-dispersers. Furthermore, this put the contribution of dispersing D. villosus to leaf litter processing on par with native G. fossarum, after adjusting for differences in organismal size. Given that leaf litter decomposition is a key function in aquatic ecosystems, and the rapid species turnover in freshwater habitats with range expansions of non-native species, this finding suggests that dispersal syndromes may have important consequences for ecosystem functioning.
扩散可以强烈影响生态和进化动态。除了扩散对种群动态的直接贡献外,扩散者通常在表型特征上与非扩散者不同,这导致了扩散综合征。这种扩散综合征的后果已经在种群和群落水平上得到了广泛的研究;然而,迄今为止,生态系统层面的影响仍不清楚。在这里,我们研究了两种不同的水生关键无脊椎动物物种的扩散和居留个体是否对碎屑处理有不同的贡献,碎屑处理是淡水生态系统中的一个关键功能。使用实验的两斑块系统,我们发现常见的本地物种食盐水蚤(Gammarus fossarum)的扩散状态对叶片消耗率没有影响。然而,在现在正在整个欧洲扩张的泊达-里海物种杜氏宽跗真猛水蚤(Dikerogammarus villosus)中,扩散者的叶片消耗量大约是非扩散者的三倍。此外,在考虑到生物大小差异后,扩散的 D. villosus 对落叶处理的贡献与本地的 G. fossarum 相当。鉴于落叶分解是水生生态系统的关键功能,以及随着非本地物种的扩张,淡水生境中的物种快速更替,这一发现表明扩散综合征可能对生态系统功能有重要影响。