Donadi S, Austin Å N, Bergström U, Eriksson B K, Hansen J P, Jacobson P, Sundblad G, van Regteren M, Eklöf J S
Department of Ecology, Environment and Plant Sciences, Stockholm, Sweden
Baltic Sea Centre, Stockholm University, Stockholm, Sweden.
Proc Biol Sci. 2017 Jul 26;284(1859). doi: 10.1098/rspb.2017.0045.
Trophic cascades occur in many ecosystems, but the factors regulating them are still elusive. We suggest that an overlooked factor is that trophic interactions (TIs) are often scale-dependent and possibly interact across spatial scales. To explore the role of spatial scale for trophic cascades, and particularly the occurrence of cross-scale interactions (CSIs), we collected and analysed food-web data from 139 stations across 32 bays in the Baltic Sea. We found evidence of a four-level trophic cascade linking TIs across two spatial scales: at bay scale, piscivores (perch and pike) controlled mesopredators (three-spined stickleback), which in turn negatively affected epifaunal grazers. At station scale (within bays), grazers on average suppressed epiphytic algae, and indirectly benefitted habitat-forming vegetation. Moreover, the direction and strength of the grazer-algae relationship at station scale depended on the piscivore biomass at bay scale, indicating a cross-scale interaction effect, potentially caused by a shift in grazer assemblage composition. In summary, the trophic cascade from piscivores to algae appears to involve TIs that occur at, but also interact across, different spatial scales. Considering scale-dependence in general, and CSIs in particular, could therefore enhance our understanding of trophic cascades.
营养级联在许多生态系统中都会发生,但其调控因素仍不明确。我们认为一个被忽视的因素是,营养级相互作用(TIs)通常依赖于尺度,并且可能在空间尺度上相互作用。为了探究空间尺度对营养级联的作用,特别是跨尺度相互作用(CSIs)的发生情况,我们收集并分析了波罗的海32个海湾中139个站点的食物网数据。我们发现了一个四级营养级联的证据,该级联在两个空间尺度上连接了营养级相互作用:在海湾尺度上,食鱼动物(鲈鱼和梭子鱼)控制着中型捕食者(三刺鱼),而中型捕食者又反过来对表生动物食草者产生负面影响。在站点尺度(海湾内),食草者平均抑制着附生藻类,并间接有利于形成栖息地的植被。此外,站点尺度上食草者与藻类关系的方向和强度取决于海湾尺度上食鱼动物的生物量,这表明存在跨尺度相互作用效应,可能是由食草者组合成分的变化引起的。总之,从食鱼动物到藻类的营养级联似乎涉及到在不同空间尺度上发生但也相互作用的营养级相互作用。因此,考虑到一般的尺度依赖性,特别是跨尺度相互作用,可能会增进我们对营养级联的理解。