Plant-pollinator interactions along an elevational gradient in Central European forest understorey
Sounapoglou, A.; Janecek, S.; Sakhalkar, S. P.; Kobe, I. N.; Chmelova, E.; Anyz, D.; Delabye, S.; Filip, J.; Hodecek, J.; Jackwerth, K.; Piplova, R.; Hanzelkova, K.; Krizek, T.; Klomberg, Y.; Mertens, J. E. J.; Tropek, R.
Show abstract
Elevational gradients provide a framework for understanding how environmental filtering reorganises communities and interactions, but plant-pollinator interactions along temperate forest elevational gradients remain overlooked. We studied early-spring understorey communities at four forest sites spanning the foothills towards the timberline (450-1,000 m a.s.l.) in the Krkono[s]e Mountains, Czechia. Across six transects per elevation, we quantified flowering plant species richness, floral resources and traits, and video-recorded flowers, yielding 4,003 pollinator visits. We analysed elevational patterns in species richness, community composition, floral traits, and quantitative network characteristics. Visitation frequency and flowering plant and pollinator species richness peaked at intermediate elevations. The contribution of dipteran relative to hymenopteran pollinators increased towards higher elevations, principally because of non-hoverfly flies, whereas individual bee groups showed no uniform response. Floral resources and traits showed no uniform elevational responses, although total nectar sugar availability peaked at the highest site because of the dominant Vaccinium myrtillus. Most notably, both network-level specialisation and mean species-level specialisation were generally greater at the two higher elevations, whereas nestedness was lower and other network characteristics showed no consistent patterns. These findings suggest that shifts in pollinator composition and dominant floral resources potentially shaped interactions along the gradient. The increasing specialisation with elevation contrasts with the generalisation often expected under reduced partner availability and indicates that forest networks may follow elevational patterns not predicted from open habitats. Despite limited site-level replication, this study provides, to our knowledge, the first community-wide characterisation of plant-pollinator interactions along a temperate forest elevational gradient and identifies patterns requiring evaluation across replicated gradients.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Bark beetles as ecosystem engineers: triggered tree mortality rearranges the assemblage of Tree-related Microhabitats in old-growth coniferous forest 95%
- Eucalyptus cover as the primary driver of native forest bird reductions: evidence from a stand-scale analysis in NW Iberia 94%
- Hazel dormouse in managed woodland select for young, dense, and species-rich tree stands 94%
Similar papers in this journal
- Vegetation structural complexity uniquely captures competition between vascular plants and bryophytes over succession 93%
- Lightning-caused disturbance frequency and severity varies with topography in an Afromontane forest 93%
- Pathways of savannization in a mesic African savanna-forest mosaic following an extreme fire 93%
Similar papers in this journal
- Crown defoliation decreases reproduction and wood growth in a marginal European beech population. 92%
- Ecological niche differentiation mediates near complete premating reproductive isolation within the Gladiolus carneus (Iridaceae) species complex. 92%
- Comparative anatomy of leaf petioles in temperate trees and shrubs 92%
Similar papers in this journal
- Lack of negative density-dependence regulation in a dominant oak tree from a neotropical highland forest 92%
- Evolutionary heritage shapes tree distributions along an Amazon-to-Andes elevation gradient 91%
- Climatic sensitivity of species’ vegetative and reproductive phenology in a Hawaiian montane wet forest 91%
Similar papers in this journal
- Simple attributes predict the importance of plants as hosts to the richness of fungi and arthropods 93%
- Linking microenvironment modification to species interactions and demography in an alpine plant community 91%
- Assessing the links between pollinators and the genetic and epigenetic features of plant species with contrasting distribution ranges 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.