Reassembly of soil fungal communities under reforestation and herbivore exclusion
Tatsumi, S.; Matsuoka, S.; Fujii, S.; Makoto, K.; Osono, T.; Isbell, F.; Mori, A. S.
Show abstract
Soil fungi can help improve ecosystem restoration, yet our understanding of how they reassemble in degraded land is limited. Here, we studied fungal community structure using DNA metabarcoding in reforested sites following agricultural abandonment and overgrazing. Two treatments, namely reforestation using different numbers of tree species and deer exclusion, have been applied for multiple decades in the study sites. We found that local fungal richness (alpha diversity) and total fungal richness (gamma diversity) were 1.9-2.9 and 1.3-1.9 times greater, respectively, in reforested stands than in natural forests. These results were regardless of the number of tree species planted in the reforested stands. Conversely, reforested stands had a spatially homogenized community structure with relatively lower degrees of compositional dissimilarity among sites within each stand (beta diversity). These findings were attributable to lower environmental heterogeneity, stronger dispersal limitation, and a comparatively shorter time since the onset of community assembly in reforested stands. Deer exclosures had no detectable effect on fungal community structure. Overall, the agricultural legacy in fungal community structure appears to have persisted for decades, even under proactive restoration of aboveground vegetation. Direct human intervention belowground may therefore be necessary for the recovery of soil biota once altered.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Long-term cross-scale comparison of grazing and mowing on plant diversity and community composition in a salt-marsh system 94%
- The recovery of plant community composition following passive restoration across spatial scales 94%
- Forest growth resistance and resilience to the 2018-2020 drought depend on tree diversity and mycorrhizal type 94%
Similar papers in this journal
- Evidence for Elton's diversity-invasibility hypothesis from belowground 96%
- Tree diversity effects on productivity depend on mycorrhizae and life strategies in a temperate forest experiment 95%
- Partitioning the colonization and extinction components of beta diversity: Spatiotemporal species turnover across disturbance gradients 95%
Similar papers in this journal
- Different factors drive community assembly of rare and common ectomycorrhizal fungi 96%
- Invertebrate-induced priority effects and secondary metabolites control fungal community composition in dead wood 96%
- Mega-fire in Redwood Tanoak Forest Reduces Bacterial and Fungal Richness and Selects for Pyrophilous Taxa and Traits that are Phylogenetically Conserved 96%
Similar papers in this journal
- Community composition, and not species richness of microbes, influences decomposer functional diversity in soil 96%
- Response of soil microbial communities to mixed forests of European beech and conifers: Variations with site conditions 96%
- Resilience in soil bacterial communities of the boreal forest from one to five years after wildfire across a severity gradient 96%
Similar papers in this journal
- Plant-mycorrhizal associations may explain the latitudinal gradient of plant community assembly 96%
- Seedling performance in a dioecious tree species is similar near female and male conspecific adults despite differences in colonization by arbuscular mycorrhizal fungi 96%
- Rewiring of peatland plant-microbe networks outpaces species turnover 94%
"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.