Disturbance increases functional diversity but decreases phylogenetic diversity of an arboreal tropical ant community
Hoenle, P. O.; Plowman, N.; Matos-Maravi, P.; de Bello, F.; Bishop, T. R.; Libra, M.; Idigel, C.; Rimandai, M.; Klimes, P.
Show abstract
O_LITropical rainforest canopies host a highly diverse arthropod fauna, which contribute to ecosystem function through their functional (FD) and phylogenetic diversity (PD). While a lot of previous research has documented the severe negative impacts of disturbance on the FD and PD of ground invertebrate communities, our understanding of arboreal counterparts is limited. C_LIO_LIHere, we studied the effects of forest disturbance on an ecologically important invertebrate group, the ants, in a lowland rainforest in New Guinea. We exhaustively sampled 4000 m2 area of a primary and a secondary forest for canopy ants. We report > 2800 occurrences of 128 ant species in 852 trees, one of the most comprehensive arboreal collections to date. C_LIO_LITo test how ant PD and FD differ between the two forests, we constructed the ant species-level community phylogeny and measured 10 functional traits. Furthermore, we assessed by data exclusion the influence of species which were not nesting in individual trees (visitors) or only nesting (nesters), and of non-native species on FD and PD values. We expected that disturbance would decrease FD and PD in tree dwelling ants. We hypothesized that traits in primary forests would be more overdispersed due to the greater availability of ecological niches, while secondary forests would have stronger trait clustering due to a a stronger habitat filtering caused by more extreme microclimate. C_LIO_LIPrimary forests had higher species richness and PD than secondary forest. Surprisingly, we found higher FD in secondary forest. This pattern was robust even if we decoupled functional and phylogenetic signals or if non-native ant species were excluded from the data. Visitors did not contribute strongly to FD, but they increased PD. Community trait means further corroborate the functional distinctiveness of arboreal ants among secondary and primary forest, with almost all traits being impacted by disturbance and forest succession. C_LIO_LIWe conclude that the most plausible explanation is increased competition among closely related ant species in the secondary forest, which drives trait divergence. In the primary forest, abiotic habitat filters leads to more similar morphology and thus lower FD of phylogenetically more diverse ant assemblages. C_LI
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Historical forest disturbance results in variation in functional resilience of seed dispersal mutualisms 97%
- Tree demographic strategies largely overlap across succession in Neotropical wet and dry forest communities 95%
- Partitioning the colonization and extinction components of beta diversity: Spatiotemporal species turnover across disturbance gradients 95%
Similar papers in this journal
- Trait-based responses to land use and canopy dynamics modify long-term diversity changes in forest understories 95%
- Ectomycorrhizal fungi are influenced by ecoregion boundaries across Europe 94%
- Phenology across scales: an intercontinental analysis of leaf-out dates in temperate deciduous tree communities 93%
Similar papers in this journal
Similar papers in this journal
- Induced drought strongly affects richness and composition of ground-dwelling ants in the eastern Amazon 95%
- Biotic interactions and environmental filtering both determine earthworm alpha and beta diversity in tropical rainforests 94%
- Drivers of taxonomic, functional and phylogenetic diversities in dominant ground-dwelling arthropods of coastal heathlands 94%
Similar papers in this journal
- Seed-dispersal networks in tropical forest fragments: area effects, remnant species, and interaction diversity 96%
- Competition, precipitation and temperature shape deviations from scaling laws in the crown allometries of miombo woodlands 93%
- Climatic sensitivity of species’ vegetative and reproductive phenology in a Hawaiian montane wet forest 93%
"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.