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菲对不同氮形态的吸收和迁移在生菜和小麦幼苗中的响应。

Response of uptake and translocation of phenanthrene to nitrogen form in lettuce and wheat seedlings.

机构信息

College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, Jiangsu, 210095, People's Republic of China,

出版信息

Environ Sci Pollut Res Int. 2015 Apr;22(8):6280-7. doi: 10.1007/s11356-014-3834-3. Epub 2014 Nov 20.

Abstract

Polycyclic aromatic hydrocarbons (PAHs) are widespread chemicals that are potentially carcinogenic and toxic to human due to dietary intake of food crops contaminated by PAHs. To date, the mechanisms underlying root uptake and acropetal translocation of PAHs in crops are poorly understood. Here we describe uptake and translocation of phenanthrene (a model PAH) in relation to nitrogen form and concentration in wheat and lettuce seedlings. At concentrations of 0-15 mM, phenanthrene uptake by roots is enhanced with an increase in ammonium and inhibited with an increment of nitrate. Phenanthrene concentration in shoots is much lower than in roots, suggesting that the direction of phenanthrene transport is acropetal. Ammonium reduces both phenanthrene accumulation and bioconcentration factor in shoots, as well as translocation factor, but nitrate elevates them. Phenanthrene uptake increases nutrient solution pH in the treatments with either nitrate or ammonium. Thus, it is concluded that the root uptake and acropetal translocation of phenanthrene in crops are associated with nitrogen form. Our results provide both a novel insight into the mechanism on PAH transport in higher plants and a promising agronomic strategy to minimize PAH contamination in crops or to improve phytoremediation of PAH-contaminated soils or water via nitrogen management.

摘要

多环芳烃(PAHs)是广泛存在的化学物质,由于食用被 PAHs 污染的农作物,它们对人类具有潜在的致癌性和毒性。迄今为止,人们对农作物中 PAHs 的根部吸收和向顶转移的机制还知之甚少。在这里,我们描述了在小麦和生菜幼苗中,与氮的形式和浓度有关的菲(一种模式 PAH)的吸收和转运。在 0-15mM 的浓度下,根部对菲的吸收随着铵的增加而增强,随着硝酸盐的增加而受到抑制。菲在地上部分的浓度远低于根部,这表明菲的运输方向是向顶的。铵降低了地上部分的菲积累和生物浓缩因子以及转运因子,但硝酸盐则提高了它们。在含有硝酸盐或铵的处理中,菲的吸收增加了营养液的 pH 值。因此,可以得出结论,农作物中菲的根部吸收和向顶转移与氮的形式有关。我们的研究结果为高等植物中 PAH 运输的机制提供了新的见解,并为通过氮管理来最小化农作物中 PAH 污染或改善受 PAH 污染的土壤或水的植物修复提供了有前途的农业策略。

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