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不同形态氮肥对水稻植株吸收砷的影响。

Effects of different forms of nitrogen fertilizers on arsenic uptake by rice plants.

作者信息

Chen Xue-Ping, Zhu Yong-Guan, Hong Mi-Na, Kappler Andreas, Xu Yu-Xin

机构信息

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

出版信息

Environ Toxicol Chem. 2008 Apr;27(4):881-7. doi: 10.1897/07-368.1.

Abstract

A pot microcosm experiment was conducted to investigate the effect of different forms of N fertilizers on As uptake by rice. Compared to a nontreated control, addition of nitrate reduced Fe(II) concentration in soil solution, while treatment with ammonium enhanced Fe(III) reduction, probably coupled to NH(4)(+) oxidation in the nonrhizosphere. Most-probable-number (MPN) enumerations revealed high densities of nitrate-dependent Fe(II)-oxidizing microorganisms. The addition of nitrate decreased Fe plaque formation on the root surface, accompanied by much lower dissolved Fe(II) concentrations in the rhizosphere soil solution compared to the nonamended control. Nitrate addition also reduced As uptake by the rice plant. These results suggest that nitrate may inhibit Fe(III) reduction and/or stimulate nitrate-dependent Fe(II) oxidation, leading to As coprecipitation with, or adsorption to, Fe(III) minerals in the soil. Although Fe plaque formation on the root surface is reduced, nitrate-dependent stimulation of Fe(II) oxidation and/or inhibition of Fe(III) reduction in the bulk soil sequesters mobile As in the soil, resulting in reduced As uptake by rice.

摘要

进行了一项盆栽微观实验,以研究不同形态氮肥对水稻吸收砷的影响。与未处理的对照相比,添加硝酸盐会降低土壤溶液中的Fe(II)浓度,而铵处理则会增强Fe(III)的还原,这可能与非根际中NH(4)(+)的氧化有关。最大可能数(MPN)计数显示,依赖硝酸盐的Fe(II)氧化微生物密度很高。添加硝酸盐会减少根表面铁膜的形成,与未添加的对照相比,根际土壤溶液中溶解的Fe(II)浓度也低得多。添加硝酸盐还会降低水稻植株对砷的吸收。这些结果表明,硝酸盐可能会抑制Fe(III)的还原和/或刺激依赖硝酸盐的Fe(II)氧化,导致砷与土壤中的Fe(III)矿物共沉淀或吸附。虽然根表面的铁膜形成减少,但土壤中依赖硝酸盐对Fe(II)氧化的刺激和/或对Fe(III)还原的抑制会使土壤中的可移动砷被固定,从而减少水稻对砷的吸收。

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