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The role of biotic interactions in shaping distributions and realised assemblages of species: implications for species distribution modelling
Author(s) -
Wisz Mary Susanne,
Pottier Julien,
Kissling W. Daniel,
Pellissier Loïc,
Lenoir Jonathan,
Damgaard Christian F.,
Dormann Carsten F.,
Forchhammer Mads C.,
Grytnes JohnArvid,
Guisan Antoine,
Heikkinen Risto K.,
Høye Toke T.,
Kühn Ingolf,
Luoto Miska,
Maiorano Luigi,
Nilsson MarieCharlotte,
Normand Signe,
Öckinger Erik,
Schmidt Niels M.,
Termansen Mette,
Timmermann Allan,
Wardle David A.,
Aastrup Peter,
Svenning JensChristian
Publication year - 2013
Publication title -
biological reviews
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.993
H-Index - 165
eISSN - 1469-185X
pISSN - 1464-7931
DOI - 10.1111/j.1469-185x.2012.00235.x
Subject(s) - ecology , species distribution , abiotic component , species richness , biological dispersal , biotic component , range (aeronautics) , trophic level , spatial ecology , pairwise comparison , biology , habitat , population , computer science , materials science , demography , artificial intelligence , sociology , composite material
Predicting which species will occur together in the future, and where, remains one of the greatest challenges in ecology, and requires a sound understanding of how the abiotic and biotic environments interact with dispersal processes and history across scales. Biotic interactions and their dynamics influence species' relationships to climate, and this also has important implications for predicting future distributions of species. It is already well accepted that biotic interactions shape species' spatial distributions at local spatial extents, but the role of these interactions beyond local extents (e.g. 10 km 2 to global extents) are usually dismissed as unimportant. In this review we consolidate evidence for how biotic interactions shape species distributions beyond local extents and review methods for integrating biotic interactions into species distribution modelling tools. Drawing upon evidence from contemporary and palaeoecological studies of individual species ranges, functional groups, and species richness patterns, we show that biotic interactions have clearly left their mark on species distributions and realised assemblages of species across all spatial extents. We demonstrate this with examples from within and across trophic groups. A range of species distribution modelling tools is available to quantify species environmental relationships and predict species occurrence, such as: ( i ) integrating pairwise dependencies, ( ii ) using integrative predictors, and ( iii ) hybridising species distribution models (SDMs) with dynamic models. These methods have typically only been applied to interacting pairs of species at a single time, require a priori ecological knowledge about which species interact, and due to data paucity must assume that biotic interactions are constant in space and time. To better inform the future development of these models across spatial scales, we call for accelerated collection of spatially and temporally explicit species data. Ideally, these data should be sampled to reflect variation in the underlying environment across large spatial extents, and at fine spatial resolution. Simplified ecosystems where there are relatively few interacting species and sometimes a wealth of existing ecosystem monitoring data (e.g. arctic, alpine or island habitats) offer settings where the development of modelling tools that account for biotic interactions may be less difficult than elsewhere.

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