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Data from: Negative effects of litter richness on root decomposition in the presence of detritivores
负责人:
关键词:
Microbial decomposer;roots;Mass loss;plant species richness;Litterbags;subtropical forest
DOI:
doi:10.5061/dryad.505d9
摘要:
in a subtropical forest to investigate how species richness in root litter mixtures (air-dried fresh fine roots) affects the decomposition of root litter material
Data from: Root vertical distributions of two Artemisia species and their relationships with soil resources in the Hunshandake desert, China
负责人:
关键词:
Artemisia species;root traits;soil moisture and nutrients;the Hunshandake desert
DOI:
doi:10.5061/dryad.9zw3r22b4
摘要:
of drought, combined with extreme poor soil nutrients, on plant roots remain unclear.
  • Herein, we addressed roo
    Data from: Contrasting effects of ectomycorrhizal and arbuscular mycorrhizal tropical tree species on soil nitrogen cycling: the potential mechanism
    负责人:
    关键词:
    soil nitrogen cycling;plant trait;mycorrhizal type
    DOI:
    doi:10.5061/dryad.2811b
    摘要:
    r differences in plant traits. Furthermore, rhizosphere effects on soil N transformations and soil exploration by fine roots were also measured to assess whether
    Data from: Different phylogenetic and environmental controls of first-order root morphological and nutrient traits: evidence of multidimensional
    负责人:
    关键词:
    community-level traits;plant growth form;root nutrient;phylogeny;environmental variables;first-order root;root thickness
    DOI:
    doi:10.5061/dryad.3rj81
    摘要:
    1. Although fine roots are essential for the water and nutrient uptake of plants, there is limited understanding of roo
    Data from: Short-term climate change manipulation effects do not scale up to long-term legacies: effects of an absent snow cover on boreal forest plants
    负责人:
    关键词:
    Minirhizotron;plant-climate interactions;Vaccinium;soil frost;root phenology;Norway spruce;understory;snow removal;Picea abies
    DOI:
    doi:10.5061/dryad.t3g68
    摘要:
    cover in the understorey by 42%, reduced fine root biomass by 16%, reduced shoot growth by up to 53%, and induced tissue damage on two common dwarf shrubs. In the long-term
    Data from: Grazing enhances belowground carbon allocation, microbial biomass, and soil carbon in a subtropical grassland
    负责人:
    关键词:
    Lignin Phenols;belowground carbon allocation;microbial biomass;Paspalum notatum;soil organic carbon;Large Herbivore Grazing;subtropical pasture
    DOI:
    doi:10.5061/dryad.ms2np57
    摘要:
    about the impact of large herbivore grazing on SOC, especially for understudied subtropical grazing lands. It is well known that root system inputs are the source
    Data from: Tissue-specific carbon concentration, carbon stock, and distribution in Cunninghamia lanceolata (Lamb.) Hookplantations at var
    负责人:
    关键词:
    Cunninghamia lanceolata;fine root;tissue-specific carbon concentrations;soil organic carbon;Chinese fir;Litterfall;monoculture plantation
    DOI:
    doi:10.5061/dryad.61pm78v
    摘要:
    occurred as soil organic carbon (SOC) and was more influenced by belowground fine roots than by aboveground litterfall. Context Failing to account
    Data from: Variability in potential to exploit different soil organic phosphorus compounds among tropical montane tree species
    负责人:
    关键词:
    soil organic phosphorus;mycorrhiza;mycorrhiza;Resource partitioning;tropical montane forest;cluster roots
    DOI:
    doi:10.5061/dryad.3gc55
    摘要:
    ater phosphomonoesterase activity than fine roots. Both the mycorrhizal and non-mycorrhizal tree species contained significantly greater foliar P than in no-P contro

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