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首页> 外文期刊>Journal of plant nutrition and soil science >Influence of phosphorus application on growth and cadmium uptake of spinach in two cadmium-contaminated soils.
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Influence of phosphorus application on growth and cadmium uptake of spinach in two cadmium-contaminated soils.

机译:施磷对两种镉污染土壤中菠菜生长和镉吸收的影响。

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摘要

A pot experiment was conducted to investigate the influence of phosphate (P) application on diethylene triamine pentaacetic acid (DTPA)-extractable cadmium (Cd) in soil and on growth and uptake of Cd by spinach (Spinacia oleracea L.). Two soils varying in texture were contaminated by application of five levels of Cd (NO< sub>3)< sub>2 (0, 20, 30, 40, and 60 mg Cd kg-1). Three levels of KH< sub>2PO< sub>4 (0, 12, and 24 mg P kg-1) were applied to determine immobilization of Cd by P. Spinach was grown for 60 d after seeding. Progressive contamination of soils through application of Cd affected dry-matter yield (DMY) of spinach shoot differently in the two soils, with 67% reduction of DMY in the sandy soil and 34% in the silty-loam soil. The application of P increased DMY of spinach from 4.53 to 6.06 g pot-1 (34%) in silty-loam soil and from 3.54 to 5.12 g pot-1 (45%) in sandy soil. The contamination of soils increased Cd concentration in spinach shoots by 34 times in the sandy soil and 18 times in the silty-loam soil. The application of P decreased Cd concentration in shoot. The decrease of Cd concentration was higher in the sandy soil in comparison to the silty-loam soil. Phosphorus application enhanced DMY of spinach by decreasing Cd concentration in soil as well as in plants. The results indicate that Cd toxicity in soil can be alleviated by P application.
机译:进行了盆栽试验,研究了磷酸盐(P)的施用对土壤中二亚乙基三胺五乙酸(DTPA)可提取的镉(Cd)以及菠菜(Spinacia oleracea L.)对Cd的生长和吸收的影响。施用五种水平的Cd(NO 3 2 (0、20、30、40和60 mg Cd kg-1)污染了两种质地不同的土壤。三种水平的KH 2 PO 4 (0、12和24 mg P kg-1)用于确定P对Cd的固定作用。菠菜生长60 d播种后。通过施用镉对土壤的逐步污染对两种土壤中菠菜的干物质产量(DMY)的影响不同,沙质土壤中的DMY降低了67%,粉质壤土中的34%。 P的施用使粉质壤土中菠菜的DMY从4.53增加到6.06 g pot-1(34%),而在沙质土壤中则从3.54增加到5.12 g pot-1(45%)。土壤污染使菠菜芽中的Cd浓度在沙质土壤中增加了34倍,在粉质壤土土壤中增加了18倍。磷的施用降低了芽中镉的浓度。与粉质壤土相比,沙质土壤中Cd的下降幅度更大。磷的施用通过降低土壤和植物中的Cd浓度来增强菠菜的DMY。结果表明,施用磷可减轻土壤中Cd的毒性。

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