Natural disturbances and connectivity shape the seasonal variability of aquatic macroinvertebrate communities across Europe
Chalmandrier, L.; Cunillera-Montcusi, D.; Lopez-Rojo, n.; Canedo-Arguelles, M.; Csabai, Z.; Foulquier, A.; Jabot, F.; Milisa, M.; Mykra, H.; Paril, P.; Pernecker, B.; Polovic, L.; Sarremejane, R.; Snare, H.; Soria, M.; Datry, T.; Bonada, N.; Munoz, F.
Show abstract
Understanding the joint influence of natural disturbance, spatial connectivity and biogeography on biodiversity is essential to forecast its responses to climate change. Macroinvertebrate communities in drying river networks constitute an ideal study system to understand the interplay of these ecological processes. We analyze the taxonomic and functional structure of macroinvertebrate communities sampled across 126 reaches with perennial and intermittent streamflow, surveyed in six drying river networks (DRN) across Europe, six times over one year. Drying frequency decreased community richness and functional diversity of communities, whereas spatio-temporal connectivity increased community richness in intermittent reaches. Communities experiencing a high drying frequency increased the proportion of taxa with K-strategies and drying resistance traits. Communities experiencing a long drying duration compensated by high spatio-temporal connectivity had more taxa with a r-strategy and high dispersal ability. Perennial communities varied from taxa-poor communities of r-strategists in spring and autumn and taxa-rich communities of K-strategists in summer and had a constant functional diversity throughout the year. When drying frequency increased, communities showed a similar pattern except in autumn when they shifted towards species-poor communities of K-strategists. Functional diversity then peaked in summer. Community trait structure and in particular optimal drying resistance traits changed across biogeographical scales. It opposed communities from mountainous DRN (with more r-strategies and high dispersal ability) to non-mountainous DRN (with more K-strategies). Drying frequency, drying duration, and spatio-temporal connectivity drive divergent community structures, suggesting the presence of an ecological threshold that explains the variability of disturbed ecosystems across broad spatial scales. These factors also shaped seasonal community variations, particularly after summer, with intermittent communities influenced by stochastic recolonization events in spring and autumn. Spatial-temporal connectivity proved crucial for maintaining diversity in communities subjected to intense drying. Lastly, the effectiveness of drying resistance traits was dependent on the biogeographical and environmental conditions of drying river networks.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Spatial community variability: Interactive effects of predators and isolation on stochastic community assembly 94%
- Parallels and divergences in landscape genetic and metacommunity patterns in zooplankton inhabiting soda pans 94%
- Exogenous disturbances and endogenous self-organized processes are not mutually exclusive drivers of spatial patterns in macroalgal assemblages 93%
Similar papers in this journal
- Multiple stressors in river networks: local and downstream effects on freshwater macroinvertebrates 96%
- Molecular analyses reveal consistent food web structure with elevation in rainforest Drosophila - parasitoid communities 92%
- Trait-similarity and trait-hierarchy jointly determine co-occurrences of resident and invasive ant species 91%
Similar papers in this journal
Similar papers in this journal
- Environmental filtering and habitat (mis)matching of riverine invertebrate metacommunities 96%
- Patterns and mechanisms underlying ecoregion delineation in North American freshwater plants 94%
- Population dynamics of Amazonian floodplain forest species support spatial variation on genetic diversity but not range expansions through time 93%
Similar papers in this journal
- Dispersal rate and riverine network connectivity shape the genetic diversity of freshwater amphipod metapopulations 94%
- Decision making and best practices for taxonomy-free eDNA metabarcoding in biomonitoring using Hill numbers 94%
- The limited spatial scale of dispersal in soil arthropods revealed with whole-community haplotype-level metabarcoding 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.