Biochar phosphorus concentration dictates mycorrhizal colonisation, plant growth and soil phosphorus cycling

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Zakaria M. Solaiman
Lynette K. Abbott
Daniel V. Murphy
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[1] The University of Western Australia,SoilsWest, UWA School of Agriculture and Environment, and the UWA Institute of Agriculture
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Scientific Reports | / 9卷
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We aimed to determine the relationship between biochar properties and colonisation of roots by arbuscular mycorrhizal (AM) fungi in agricultural soil. We used a range of biochars that differed in pH, water holding capacity, C, N and P concentrations to investigate interactions between biochar and AM fungi. A glasshouse experiment was conducted with subterranean clover and wheat, amended separately with 34 sources of biochar (applied at 1% w/w), to investigate potential responses in a phosphorus (P) deficient agricultural soil. Plant growth responses to biochar ranged from positive to negative and were dependent on biochar P concentration, available soil P and AM root colonisation. The higher the nutrient P concentration in biochar, the lower was AM colonisation. Growth responses of wheat and clover to the application of various biochars were mostly positive, and their growth was correlated, but biochar contributions to soil fertility varied with biochar properties. When nutrient concentrations are higher in biochars, especially for P and N, plants can gain access to nutrients via the plant roots and mycorrhizal hyphae. Thus biochar amendments can increase both plant nutrient uptake and crop production in nutrient deficient soil.
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  • [31] Storer P(2010)Carbon flux from plants to soil microbes is highly sensitive to nitrogen addition and biochar amendment Appl. Soil Ecol. 46 450-456
  • [32] LeCroy C(2008)Influences of non-herbaceous biochar on arbuscular mycorrhizal fungal abundances in roots and soils: results from growth-chamber and field experiments Biol. Fertil. Soils 44 815-821
  • [33] Masiello CA(2006)Influence of arbuscular mycorrhizal fungi, inoculum level and phosphorus placement on growth and phosphorus uptake of Forest Ecol. Manag. 231 86-93
  • [34] Rudgers JA(2005) under jarrah forest Biol. Fertil. Soils 41 15-21
  • [35] Hockaday WC(2014)Temperature and source material influence ecological attributes of ponderosa pine and Douglas-fir charcoal Plant Soil 375 61-74
  • [36] Silberg JJ(2005)Manioc peel and charcoal: a potential organic amendment for sustainable soil fertility in the tropics Plant Soil 277 221-232
  • [37] Hammer EC(1998)The fate of phosphorus of ash-rich biochars in a soil-plant system Oecologia 115 419-426
  • [38] Forstreutera M(1996)Wheat responses to arbuscular mycorrhizal fungi in a highly calcareous soil differ from those of clover, and change with plant development and P supply Oikos 77 10-19
  • [39] Rillig MC(2011)The charcoal effect in Boreal forests: mechanisms and ecological consequences Pedobiologia 54 309-320
  • [40] Kohlera J(2010)Key ecological function of charcoal from wildfire in the Boreal forest Isotopes Environ. Health Studies 46 64-77