Mycorrhizal Mediation of Soil

- Fertility, Structure, and Carbon Storage

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Mycorrhizal Mediation of Soil: Fertility, Structure, and Carbon Storage offers a better understanding of mycorrhizal mediation that will help inform earth system models and subsequently improve the accuracy of global carbon model predictions. Mycorrhizas transport tremendous quantities of plant-derived carbon below ground and are increasingly recognized for their importance in the creation, structure, and function of soils. Different global carbon models vary widely in their predictions of the dynamics of the terrestrial carbon pool, ranging from a large sink to a large source. This edited book presents a unique synthesis of the influence of environmental change on mycorrhizas across a wide range of ecosystems, as well as a clear examination of new discoveries and challenges for the future, to inform land management practices that preserve or increase below ground carbon storage.

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Detaljer
Størrelse og vægt
  • Vægt1040 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,4 cm

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    Evolution History Decomposition Symbiosis Drought Climate Cropping systems Environment Feedback Forest management Tillage Mycorrhizas Nitrogen Weathering Carbon sequestration Geochemical modeling Carbon Secretions Stabilization Soil porosity Formation Physiology Soil fertility Structural equation modeling Mutualism Biogeochemical cycles Salinity Mycorrhizal fungi Climate change Ecosystem Fertilization Stoichiometry Sulfur Apatite Coarse woody debris Ectomycorrhizal fungi Biochar Soil carbon Soil food web Soil hydraulic conductivity Carbon Stock Arbuscular mycorrhiza Plant stress Nutrient sensing Mycorrhiza Global change Thinning Complexity Soil properties Disintegration Redistribution Carbon cycle Food Webs Water Availability Priming Mineralization Nutrient cycling Salinity stress Disturbance Nutrients Plant growth Precision Agriculture Nutrient uptake Pedogenesis Soil organic matter Topography Inoculation Soil Hydraulic Properties Symbioses Alternate carbon source Arbuscular mycorrhizal symbiosis Arbuscular mycorrhizal colonization Biosphere�geospherse�ocean�atmosphere feedbacks Biological fertility Carbon allocation Carbon (C) sequestration Arbuscular mycorrhizal Chemical fertility Evolution of biogeochemical cycles Ectomycorrhizae C immobilization Ectomycorrhiza Ectomycorrhizal Ericoid mycorrhiza Common mycorrhizal networks Climate global change History of mycorrhizal research Fungal drivers Hydraulic lift Interdisciplinary sciences Hyphae-associated microbes Ecosystem models Interacting drivers Interface compartment LANDFIRE Extraradical mycorrhizal mycelium Mycorrhizal mycelium Mineral protection management principles Nutrient mining Nutrient weathering Mycorrhizal types Habitat drivers Nutrient mineralization fungal diversity Host-plant mortality nitrogen deposition Nitrogen (N)Organic nutrients Hypersymbionts Photosynthate Physical fertility Hydraulic redistribution Plant�microbe interactions Resource stoichiometry Recalcitrant carbon Periarbuscular membrane Phosphate fertilizer Phosphorus (P)Phosphorus Plant-available soil water Inorganic nutrients Saprotrophic Fungi resource exchange Response to mycorrhization Soil parent material Terrestrial biosphere models web of science Trait-based approach Morphological and physiological mechanisms of salt tolerance Multitrophic interactions Plant and fungal evolution Mycorrhizal network (MN)Resilience Mineral Nutrients Mineral weathering Mycorrhiza management Pedogensis soil aggregation soil water-holding capacity Soil water retention capacity Types of mycorrhizal symbioses Sustainable intensification of crop production systemic effects

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