Trickle-down ecology: Vertical stratification of temperate forests drives asymmetric cross-layer effects on consumer communities
Vigues Jorba, J.; Bhardwaj, M.; Cordeiro Pereira, J. M.; Hendel, A.-L.; Kukenbrink, D.; Villarroya Villalba, L.; Scherrer, D.; Gossner, M. M.; Bollmann, K.; Braunisch, V.
Show abstract
O_LIForests are vertically structured ecosystems where light attenuation, microclimatic buffering and resource availability occur along continuous gradients from the canopy to the understorey layers. Despite this complexity, studies rarely integrate trophic interactions across vertical layers, overlooking how vertical forest structure shapes consumer communities through abiotic and biotic pathways. C_LIO_LIIn this study, we combined layer-specific measurements of plant diversity, structure and microclimate with arthropod sampling in the canopy and understorey, as well as bird survey data, in a temperate forest. Applying Bayesian structural equation models with explicitly defined directional pathways, we modelled both consumer biomass and abundance across trophic levels and vertical layers. C_LIO_LIAbundance measures were predominantly filtered by local layer conditions, while biomass responded to conditions across layers, reflecting stand-level energy flow. This suggests that these two metrics capture fundamentally different ecological processes. Canopy conditions consistently predicted understorey arthropod abundance across trophic levels, while the reverse was not observed, suggesting a strong asymmetric downward propagation of canopy-driven effects. Furthermore, trophic interactions between arthropod primary and secondary consumers remained largely stratified within vertical layers, suggesting a vertical food web compartmentalisation rarely shown in structurally complex aboveground systems. C_LIO_LIPlant diversity, structure and microclimate shaped consumer communities mainly through the modulation of resource availability and plant apparency, with effects varying across vertical layers, trophic levels and taxonomic groups. Through complementary mechanisms, plant diversity likely determined the variability of resources available to consumers at different trophic levels. Structural properties, in contrast, potentially drove the spatial redistribution of these resources through light attenuation and microclimatic buffering, which in turn influenced the physiological capacity of consumers to access and exploit available resources. C_LIO_LIThese findings demonstrate that vertical stratification mediates trophic pathways in a highly directional manner, with canopy characteristics playing a disproportionate role in structuring the forest community across layers. Integrating layer-specific structural and trophic indicators into forest biodiversity assessments and management strategies is therefore essential to fully evaluate biodiversity dynamics and multifunctionality in structurally complex forest ecosystems. C_LI
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Seasonal structural stability promoted by forest diversity and composition explains overyielding 95%
- Tree demographic strategies largely overlap across succession in Neotropical wet and dry forest communities 94%
- Partitioning the colonization and extinction components of beta diversity: Spatiotemporal species turnover across disturbance gradients 93%
Similar papers in this journal
- The effect of selective logging on microclimates, arthropod abundance and the foraging behaviour of Eastern Himalayan birds 93%
- Eucalyptus cover as the primary driver of native forest bird reductions: evidence from a stand-scale analysis in NW Iberia 93%
- Bark beetles as ecosystem engineers: triggered tree mortality rearranges the assemblage of Tree-related Microhabitats in old-growth coniferous forest 93%
Similar papers in this journal
- Pathways of savannization in a mesic African savanna-forest mosaic following an extreme fire 93%
- Vegetation structural complexity uniquely captures competition between vascular plants and bryophytes over succession 93%
- Forest growth resistance and resilience to the 2018-2020 drought depend on tree diversity and mycorrhizal type 92%
Similar papers in this journal
- Nitrogen availability and plant functional composition modify biodiversity-multifunctionality relationships 91%
- Fast-slow traits predict competition network structure and its response to resources and enemies. 90%
- Jack-of-all-trades paradigm meets long-term data: generalist herbivores are more widespread and locally less abundant 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.