Lower spatial turnover of rare fungal taxa dominantly shaped by stochastic processes in grassland soils
Zhang, B.; Zhou, S.; Xue, K.; Liu, W.; Chen, S.; Tang, L.; Li, L.; Du, J.; Hao, Y.; Cui, X.; Wang, Y.
Show abstract
The spatial pattern and community assembly of soil microbial taxa have notable meanings for biodiversity shaping and maintaining mechanisms. Rare fungal taxa may exhibit distinct patterns and assembly mechanisms compared to abundant taxa, but such information is limited, especially at large scales. Here, we investigated distance-decay patterns and underlying assembly mechanisms for abundant and rare fungal taxa in 129 soil samples collected across 4,000 km in Chinese Northern grasslands, based on high-throughput sequencing data. A total of 208 abundant OTUs (relative abundance > 0.1%, 2.73% of entire OTUs) and 5,779 rare OTUs (relative abundance < 0.01%, 75.85% of entire OTUs) were identified. Both abundant and rare fungal taxa showed significant distance-decay relationships (P < 0.001), but the turnover rate for rare taxa (0.0024 per 100 km) was nearly half that of abundant taxa (0.0054 per 100 km) based on the binary Bray-Curtis distance. The lower turnover of rare fungal taxa was likely due to their community assembly mechanism dominated by stochastic processes, which were less influenced by environmental gradients. In contrast, abundant taxa assembly was dominated by deterministic factors like soil variables and plant traits, which varied significantly along the geographic distance. Consistently, rare fungal taxa were also less sensitive to environmental changes, with a lower turnover rate by environmental distance (0.0027 vs. 0.0099) than abundant taxa. In summary, our findings revealed that rare fungal taxa, shaped mainly by stochastic processes, had lower spatial turnover compared to abundant taxa, dominated by deterministic processes, enhancing our understanding of rare microbial biogeography.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Positive effects of crop diversity on productivity driven by changes in soil microbial composition 95%
- Contrasting responses of protistan plant parasites and phagotrophs to ecosystems, land management and soil properties 95%
- Land-use and forest floor explain prokaryotic metacommunity structuring and spatial turnover in Amazonian forest-to-pasture conversion areas 95%
Similar papers in this journal
- Soil nutrient stoichiometry affects the initial response of microbial community to trophic perturbation. 94%
- Prescribed versus wildfire impacts on exotic plants and soil microbes in California grasslands 94%
- Pinpointing the distinctive impacts of ten cover crop species on the resident and active fractions of the soil microbiome 94%
Similar papers in this journal
- Aspen-associated soil microbiomes reveal different strategies for nitrogen acquisition across ecosystems in Mexico and Canada 95%
- Divergent assembly trajectories: a comparison of the plant and soil microbiome with plant communities in a glacier forefield 95%
- Soil microbial composition varies in response to coffee agroecosystem management 94%
Similar papers in this journal
- Microbial phylogenetic relatedness links to distinct successional patterns of bacterial and fungal communities 97%
- Response of the plant core microbiome to Fusarium oxysporum infection and identification of the pathobiome. 94%
- What's past is past, mostly: Brassicaceae host plants mask the feedback from the previous year's soil history on bacterial communities, except when the Brassicaceae hosts experience drought 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.