Various investigations to analyze the effects on species richness of birds during the KiLi (Kilimanjaro) Project

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Autori principali: Ferger, Stefan W, Schleuning, Matthias, Hemp, Andreas, Howell, Kim M, Böhning-Gaese, Katrin
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 2018
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author Ferger, Stefan W
Schleuning, Matthias
Hemp, Andreas
Howell, Kim M
Böhning-Gaese, Katrin
author_facet Ferger, Stefan W
Schleuning, Matthias
Hemp, Andreas
Howell, Kim M
Böhning-Gaese, Katrin
collection Datos científicos de ciencias marinas y ambientales
contents Climate is widely recognized as a major predictor of species richness patterns along large‐scale environmental gradients. Nevertheless, the mechanisms by which climate influences species richness are still a matter of debate. We disentangle whether climate influences species richness of birds directly via physiological limitations or indirectly via vegetation structure or the availability of food resources. We recorded bird species richness along an elevational gradient from 870 to 4550 m a.s.l. We quantified local climatic conditions, vegetation structure and the availability of food resources, and applied path analysis to disentangle their direct and indirect effects on species richness of all birds, frugivores and insectivores. Overall, we recorded 2945 individuals from 114 bird species. Species richness of all birds was closely correlated with temperature, vegetation structure and invertebrate biomass and both direct and indirect (via vegetation structure and availability of food resources) climatic effects were important for the diversity of the whole, trophically heterogeneous bird community. The species richness of insectivorous birds was linked to vegetation structure and invertebrate biomass, while the richness of frugivores was strongly associated with fruit abundance. Climatic factors influenced bird species richness of both avian feeding guilds exclusively indirectly via vegetation structure and availability of food resources. We reveal the importance of trophic interactions for generating species richness patterns along large‐scale environmental gradients. Our results challenge the general assumption that temperature and water availability influence species richness mostly directly, and underscore the importance of vegetation structure and the availability of food resources as principal mediators of climatic effects on species richness patterns on macroecological scales.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_896128
institution PANGAEA
language en
publishDate 2018
publisher PANGAEA
record_format pangaea
spellingShingle Various investigations to analyze the effects on species richness of birds during the KiLi (Kilimanjaro) Project
Ferger, Stefan W
Schleuning, Matthias
Hemp, Andreas
Howell, Kim M
Böhning-Gaese, Katrin
KiLi; Kilimanjaro Research Group
Climate is widely recognized as a major predictor of species richness patterns along large‐scale environmental gradients. Nevertheless, the mechanisms by which climate influences species richness are still a matter of debate. We disentangle whether climate influences species richness of birds directly via physiological limitations or indirectly via vegetation structure or the availability of food resources. We recorded bird species richness along an elevational gradient from 870 to 4550 m a.s.l. We quantified local climatic conditions, vegetation structure and the availability of food resources, and applied path analysis to disentangle their direct and indirect effects on species richness of all birds, frugivores and insectivores. Overall, we recorded 2945 individuals from 114 bird species. Species richness of all birds was closely correlated with temperature, vegetation structure and invertebrate biomass and both direct and indirect (via vegetation structure and availability of food resources) climatic effects were important for the diversity of the whole, trophically heterogeneous bird community. The species richness of insectivorous birds was linked to vegetation structure and invertebrate biomass, while the richness of frugivores was strongly associated with fruit abundance. Climatic factors influenced bird species richness of both avian feeding guilds exclusively indirectly via vegetation structure and availability of food resources. We reveal the importance of trophic interactions for generating species richness patterns along large‐scale environmental gradients. Our results challenge the general assumption that temperature and water availability influence species richness mostly directly, and underscore the importance of vegetation structure and the availability of food resources as principal mediators of climatic effects on species richness patterns on macroecological scales.
title Various investigations to analyze the effects on species richness of birds during the KiLi (Kilimanjaro) Project
topic KiLi; Kilimanjaro Research Group
url https://doi.org/10.1594/PANGAEA.896128