Hummingbird community structure and nectar resources modulate the response of interspecific competition to forest conversion

Oecologia. 2023 Mar;201(3):761-770. doi: 10.1007/s00442-023-05330-z. Epub 2023 Feb 9.

Abstract

On-going land-use change has profound impacts on biodiversity by filtering species that cannot survive in disturbed landscapes and potentially altering biotic interactions. In particular, how land-use change reshapes biotic interactions remains an open question. Here, we used selectivity experiments with nectar feeders in natural and converted forests to test the direct and indirect effects of land-use change on resource competition in Andean hummingbirds along an elevational gradient. Selectivity was defined as the time hummingbirds spent at high resource feeders when feeders with both low and high resource values were offered in the presence of other hummingbird species. Selectivity approximates the outcome of interspecific competition (i.e., the resource intake across competing species); in the absence of competition, birds should exhibit higher selectivity. We evaluated the indirect effect of forest conversion on selectivity, as mediated by morphological dissimilarity and flower resource abundance, using structural equation models. We found that forest conversion influenced selectivity at low and mid-elevations, but the influence of morphological dissimilarity and resource availability on selectivity varied between these elevations. At mid-elevation, selectivity was more influenced by the presence of morphologically similar competitors than by resource abundance while at low-elevation resource abundance was a more important predictor of selectivity. Our results suggest that selectivity is influenced by forest conversion, but that the drivers of these changes vary across elevation, highlighting the importance of considering context-dependent variation in the composition of resources and competitors when studying competition.

Keywords: Andes; Context dependency; Ecuador; Land-use change; Morphological dissimilarity; Selectivity.

MeSH terms

  • Animals
  • Biodiversity
  • Birds* / physiology
  • Ecology
  • Flowers
  • Forests
  • Plant Nectar*

Substances

  • Plant Nectar