Spatiotemporal pattern of specialization of sunbird-plant networks on Mt. Cameroon

Oecologia. 2022 Aug;199(4):885-896. doi: 10.1007/s00442-022-05234-4. Epub 2022 Aug 10.

Abstract

Differences in interaction specializations between nectarivorous birds and plants across continents serve as common examples of evolutionary trajectory specificity. While New World hummingbird-plant networks have been extensively studied and are considered highly specialized, knowledge on the network specialization of their Old World counterparts, sunbirds (Nectariniidae), remains limited. A few studies from tropical Africa indicate that sunbird-plant networks are rather generalized. Unfortunately, these studies are limited to dry seasons and high elevations at the tree line, environments where niche-based hypotheses also often predict lower resource partitioning. In our study, we explored the specialization of sunbird-plant networks and their spatiotemporal variability on Mt. Cameroon (Cameroon). Using a combination of automatic video recordings and personal observations, we constructed eight comprehensive sunbird-plant networks in four forest types at different elevations in both the dry and wet seasons. As reported in previous studies, the montane forest plants, birds and whole networks were highly generalized. Nevertheless, we observed a much higher specialization in forests at lower elevations. Except at the lowest altitude, the wet season was also characterized by higher specialization. While less specialized flowering trees dominated in the dry season networks, more specialized herbs and shrubs were visited by birds during the wet season. As our findings do not support the generally accepted assumption that Old World bird-plant networks are rather generalized, we need further studies to understand the differences in bird-plant specializations on individual continents.

Keywords: Bird pollination; Ecological network; Elevation; Seasonality; Sunbird.

MeSH terms

  • Animals
  • Birds*
  • Cameroon
  • Flowers
  • Passeriformes*
  • Plant Nectar
  • Plants
  • Pollination*
  • Spatio-Temporal Analysis
  • Trees

Substances

  • Plant Nectar