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Using avian functional traits to assess the impact of land-cover change on ecosystem processes linked to resilience in tropical forests
Author(s) -
Tom P. Bregman,
Alexander Charles Lees,
Hannah E. A. MacGregor,
Bianca Darski,
Nárgila Moura,
Alexandre Luis Padovan Aleixo,
Jos Barlow,
Joseph A. Tobias
Publication year - 2016
Publication title -
proceedings of the royal society b biological sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.342
H-Index - 253
eISSN - 1471-2954
pISSN - 0962-8452
DOI - 10.1098/rspb.2016.1289
Subject(s) - ecology , trophic level , ecosystem , frugivore , biological dispersal , biodiversity , biology , seed dispersal , trophic cascade , herbivore , environmental change , defaunation , food web , climate change , population , habitat , rumen , demography , food science , sociology , fermentation
Vertebrates perform key roles in ecosystem processes via trophic interactions with plants and insects, but the response of these interactions to environmental change is difficult to quantify in complex systems, such as tropical forests. Here, we use the functional trait structure of Amazonian forest bird assemblages to explore the impacts of land-cover change on two ecosystem processes: seed dispersal and insect predation. We show that trait structure in assemblages of frugivorous and insectivorous birds remained stable after primary forests were subjected to logging and fire events, but that further intensification of human land use substantially reduced the functional diversity and dispersion of traits, and resulted in communities that occupied a different region of trait space. These effects were only partially reversed in regenerating secondary forests. Our findings suggest that local extinctions caused by the loss and degradation of tropical forest are non-random with respect to functional traits, thus disrupting the network of trophic interactions regulating seed dispersal by forest birds and herbivory by insects, with important implications for the structure and resilience of human-modified tropical forests. Furthermore, our results illustrate how quantitative functional traits for specific guilds can provide a range of metrics for estimating the contribution of biodiversity to ecosystem processes, and the response of such processes to land-cover change.

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