Home-field advantages of litter decomposition increase with increasing N deposition rates: a litter and soil perspective‘Home’ and ‘away’ litter decomposition depends on the size fractions of the soil biotic communityLocal-scale soil nematode diversity in a subtropical forest depends on the phylogenetic and functional diversity of neighbor treesSpatial patterns and ecological drivers of soil nematode β-diversity in natural grasslands vary among vegetation types and trophic positionLong-term fertilization management affects the C utilization from crop residues by the soil micro-food webSoil addition improves multifunctionality of degraded grasslands through increasing fungal richness and network complexityStoichiometric imbalances between soil microorganisms and their resources regulate litter decompositionInterspecific interactions between crops influence soil functional groups and networks in a maize/soybean intercropping systemChanges in litter quality induced by N deposition alter soil microbial communities
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Legacy effects of elevated ozone on soil biota and plant growthCommunity composition, diversity and metabolic footprints of soil nematodes in differently-aged temperate forestsThe database of the PREDICTS (Projecting Responses of Ecological Diversity In Changing Terrestrial Systems) projectSoil inoculum identity and rate jointly steer microbiomes and plant communities in the fieldSoil nematode abundance and functional group composition at a global scaleCultivar specific plant-soil feedback overrules soil legacy effects of elevated ozone in a rice-wheat rotation systemHome-field advantages of litter decomposition increase with nitrogen addition