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首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Response of Soil Phosphorus Required for Maximum Growth of Asparagus officinalis L. to Inoculation of Arbuscular Mycorrhizal Fungi
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Response of Soil Phosphorus Required for Maximum Growth of Asparagus officinalis L. to Inoculation of Arbuscular Mycorrhizal Fungi

机译:芦笋最大生长所需的土壤磷对丛枝菌根真菌接种的响应

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摘要

Fertilizer application efficiently increases crop yield, but may result in phosphorus (P) accumulation in soil, which increases the risk of aquatic eutrophication. Arbuscular mycorrhizal fungi (AMF) inoculation is a potential method to enhance P uptake by plant and to reduce fertilizer input requirements. However, there has been limited research on how much P application could be reduced by AMF inoculation. In this study, a pot experiment growing asparagus (Asparagus officinalis L.) was designed to investigate the effects of AMF inoculation and six levels of soil Olsen-P (10.4, 17.1, 30.9, 40.0, 62.1, and 95.5 mg kg(-1) for P-0, P-1, P-2, P-3, P-4 and P-5 treatments, respectively) on root colonization, soil spore density, and the growth and P uptake of asparagus. The highest root colonization and soil spore density were both obtained in the P1 treatment (76% and 26.3 spores g(-1) soil, respectively). Mycorrhizal dependency significantly (P < 0.05) decreased with increasing soil Olsen-P. A significant correlation (P < 0.01) was observed between mycorrhizal P uptake and root colonization, indicating that AMF contributed to increased P uptake and subsequent plant growth. The quadratic equations of shoot dry weight and soil Olsen-P showed that AMF decreased the P concentration of soil required for maximum plant growth by 14.5% from 67.9 to 59.3 mg Olsen-P kg(-1). Our results suggested that AMF improved P efficiency via increased P uptake and optimal growth by adding AMF to the suitable P fertilization.
机译:施肥有效提高了农作物的产量,但可能导致土壤中磷(P)的积累,从而增加了水体富营养化的风险。丛枝菌根真菌(AMF)接种是增加植物对磷的吸收并减少肥料输入量的潜在方法。但是,关于通过AMF接种可以减少多少P施用的研究很少。在这项研究中,设计了一个盆栽芦笋(Asparagus officinalis L.)试验,以研究AMF接种和六种土壤Olsen-P(10.4、17.1、30.9、40.0、62.1和95.5 mg kg(-1)的影响)分别用于P-0,P-1,P-2,P-3,P-4和P-5处理)的根定植,土壤孢子密度以及芦笋的生长和P吸收。最高的根定植和土壤孢子密度均在P1处理中获得(分别为76%和26.3孢子g(-1)土壤)。随着土壤Olsen-P的增加,菌根依赖性显着降低(P <0.05)。菌根对磷的吸收与根部定植之间存在显着的相关性(P <0.01),表明AMF促进了对磷的吸收和随后植物的生长。茎干重量和土壤Olsen-P的二次方程表明,AMF使最大植物生长所需的土壤P浓度从67.9 mg Olsen-P kg(-1)降低了14.5%,达到59.3 mg。我们的结果表明,AMF通过增加P的吸收和向适当的P肥中添加AMF来优化生长,从而提高P效率。

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