Macrosystem community assembly patterns are predicted by foundation tree species genetic connectivity and environment across the American Southwest
Bothwell, H. M.; Keith, A. R.; Hull, J. B.; Cooper, H. F.; Andrews, L. V.; Wehenkel, C.; Hultine, K. R.; Gehring, C. A.; Cushman, S. A.; Whitham, T. G.; Allan, G. J.
Show abstract
Macrosystems ecology is an emerging science that aims to integrate traditionally distinct disciplines to predict how hierarchical interacting processes influence the emergence of complex patterns across local to regional and global scales. Despite increased focus on cross-scale relationships and cross-disciplinary integration, few macroecology studies incorporate genetic-based processes. Here we used a community genetics approach to investigate the pattern-process relationships underlying the emergence of macroscale biodiversity patterns. We tested the hypothesis that environmental variation, geography, and genetic connectivity in a foundation tree species differentially predict associated community assembly patterns from local to continental scales. Using genome-wide SNP data, we assessed genetic connectivity as a function of genetic similarity and structure in Fremont cottonwood (Populus fremontii) across its distribution throughout the southwestern US and Mexico. For the same trees, we measured community composition, diversity, and abundance of leaf modifying arthropods and sequenced targeted amplicons of twig fungal endophytes. Five key findings emerged. (1) We identified three primary and six secondary population genetic groups within P. fremontii, which occupy distinct climate niches. (2) Both the leaf modifying arthropod and fungal endophyte communities were significantly differentiated across host tree ecotypes, with genetic distance among sampling locations explaining 13-17% of respective macroscale community structure. (3) For arthropods, environmental distance was the strongest driver of community similarity. (4) Conversely, host genetic connectivity was the most important contributor to macroscale endophyte community structure, with no significant contribution of environmental distance. (5) Furthermore, we observed a shift in the strength of interspecific relationships, with host genetics most strongly influencing associated communities at the intermediate population scale. Our findings suggest that genetic connectivity and environmental variation play integrated roles in macroscale community assembly, and their relative importance changes with scale. Thus, conservation genetic management of the diversity harbored within foundation species is vital for sustaining associated regional biodiversity.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Rare species do not disproportionately contribute to phylogenetic diversity in a subalpine plant community 95%
- Community turnover by composition and climatic affinity across scales in an alpine system 95%
- Evaluating the definition and distribution of spring ephemeral wildflowers in eastern North America 94%
Similar papers in this journal
- Fungal communities living within leaves of native Hawaiian dicots are structured by landscape-scale variables as well as by host plants 96%
- Different factors drive community assembly of rare and common ectomycorrhizal fungi 95%
- Parallel evolution and cryptic diversification in the common and widespread Amazonian tree, Protium subserratum 95%
Similar papers in this journal
- Plant-mycorrhizal associations may explain the latitudinal gradient of plant community assembly 95%
- Seedling performance in a dioecious tree species is similar near female and male conspecific adults despite differences in colonization by arbuscular mycorrhizal fungi 95%
- Linking microenvironment modification to species interactions and demography in an alpine plant community 95%
Similar papers in this journal
- Disturbance Sensitivity Shapes Patterns of Tree Species Distribution in Afrotropical Lowland Rainforests More Than Climate or Soil 94%
- Panmixia across elevation in thermally sensitive Andean dung beetles 94%
- Drivers of plant diversity, community composition, functional traits and soil processes along an alpine gradient in the central Chilean Andes 94%
Similar papers in this journal
- Plant neighbors differentially alter a focal species' biotic interactions through changes to resource allocation 94%
- Tree demographic strategies largely overlap across succession in Neotropical wet and dry forest communities 93%
- Inferring ecological selection from multidimensional community trait distributions along environmental gradients 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.