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

机译:生物炭磷浓度决定了菌根殖民,植物生长和土壤磷循环

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摘要

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.
机译:我们的旨在通过农业土壤中的丛枝菌根(AM)真菌来确定生物炭特性与根系定植的关系。我们使用了一系列不同的Biochar,其在pH,水持能力,C,N和P浓度不同,以研究生物炭与AM真菌之间的相互作用。用地下三叶草和小麦进行玻璃室实验,用34个生物炭(施用在1%w / w)分开修订,以研究磷(p)缺乏农业土壤中的潜在反应。植物生长对生物炭的影响范围从阳性到阴性,依赖于生物炭P浓度,可用土壤p和根部定植。生物炭中的营养P浓度越高,较低的是染色。小麦和三叶草的生长反应主要是阳性的,它们的增长是相关的,但生物炭对土壤肥力的贡献随生物炭特性而变化。当Biochars的营养浓度较高时,特别是对于P和N,植物可以通过植物根和菌根菌丝获得营养物质。因此,生物炭修正案可以增加植物营养吸收和作物生产营养缺陷土壤。

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