2026/01/05 by Gwenaëlle Auger, Julien Pottier, Laurence Andanson +4 · 1 voice
Earth and Planetary Sciences · Environmental Science · #Marine Biology and Ecology Research #Isotope Analysis in Ecology #Ecology and Vegetation Dynamics Studies
paper · pdf · doi:10.1002/oik.12001
Biodiversity dynamics in heterogeneous landscapes is the result of a complex interplay between movement processes of organisms within and between habitat patches, and niche filtering processes due to spatially varying environmental conditions. Disentangling the relative influences of these different processes on community assembly and dynamics is a central theme of metacommunity ecology. At edges between two habitats, environmental properties more sharply vary in the direction perpendicular to the edge than in the direction parallel to it, a spatial feature called ‘anisotropy'. We here propose to take advantage of this anisotropy of environmental variation in the vicinity of habitat edges to better disentangle the drivers of community assembly between habitats. We develop an analytical framework based on the analysis of the spatial turn‐over in community composition at habitat edges. We then test this framework using metacommunity simulations. Finally, we apply this novel approach to an empirical case study on soil macrofauna at a forest–grassland interface. Our analytical framework evidences a very clear habitat‐driven filtering of soil macrofauna at this forest–grassland edge, with no detectable influence of movement limitation. Various environmental variables are associated with this abrupt community turn‐over, including litter amount and canopy cover, but also soil pH and Mg and Ca micronutrients.