Species diversity is the variable most commonly studied in recent
ecological research. Ecological processes, however, are driven by
individuals and affected by their abundances. Understanding the variation
in animal abundances along climatic gradients is important for predicting
changes in ecosystem processes under global warming. High abundances make
arthropods, despite their small body sizes, important actors in food webs,
yet abundance distributions of major arthropod taxa along climatic
gradients remain poorly documented. We sampled arthropod assemblages in
disturbed and undisturbed vegetation types along an elevational gradient
of 860–4550 m asl on the southern slopes of Mt. Kilimanjaro, Tanzania. In
our analysis, we focused on 13 taxa of arthropods that represented three
major functional groups: predators, herbivores, and decomposers. Abundance
patterns were unimodal for most of the taxa and functional groups,
including decomposer arthropods, and most of them peaked at low elevations
in lower montane forest. When we assigned beetles to functional groups,
however, decomposer beetle abundances declined almost linearly, and
abundances of predator beetles (ca. 2400 m asl) and herbivore beetles (ca.
3000 m asl, undisturbed vegetation) peaked at higher elevations and
exhibited unimodal patterns. Temperature, not primary productivity, was
the best predictor of abundance for most of the taxa and groups.
Disturbance was only of minor importance. Our results revealed different
trends in the response of arthropod abundance along the elevational
gradient that depended on the level of taxonomic and functional
resolution. This highlights the need for more comparisons of different
taxa along the same climatic gradients. Roeder_et_al_Biotropica_Kilimanjaro_arthropod_abundances_data_and_meta-dataRaw data of arthropod abundances per trap for pitfall traps. Taxonomical resolution: order to family (depending on taxon).Roeder_et_al_arthropod_abundances_data_and_meta-data.xlsx