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Ammonium enhances the uptake, bioaccumulation, and tolerance of phenanthrene in cucumber seedlings

机译:铵盐增强黄瓜幼苗中菲的吸收,生物积累和耐性

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Phenanthrene is one of the ubiquitous, persistent organic pollutants commonly found in soil and sediments. The study will provide insight regarding the feasibility of nitrogen-assisted phytoremediation. To study the effects of various nitrogen forms on cucumber seedling phenanthrene tolerance, hydroponic experiments were conducted in a greenhouse. Under phenanthrene stress, decreases in plant growth and biomass were more pronounced with a nitrate supply than with ammonium. In addition, phenanthrene concentrations in plants fed with ammonium were higher than those fed with nitrate. The reduction in plant protein and sugar, increases in nitrogen and phosphate concentrations, and increased activity of antioxidative enzymes may contribute to the phenanthrene stress response and adaptation. Higher peroxidase, superoxide dismutase, and catalase activities were found in ammonium-fed plants as compared to nitrate-fed plants under phenanthrene stress. Moreover, the reduction in soluble protein content and increases in phenanthrene transport and accumulation in non-photosynthetic organs may enable ammonium-fed plants to adapt more effectively to adverse conditions. Overall, these results suggest that ammonium nutrition could provide a useful tool to improve the growth and adaption of plants under phenanthrene stress.
机译:菲是土壤和沉积物中普遍存在的持久性有机污染物之一。该研究将提供有关氮辅助植物修复可行性的见解。为了研究各种氮素形态对黄瓜幼苗菲耐受性的影响,在温室中进行了水培试验。在菲胁迫下,硝酸盐的供给比铵盐对植物生长和生物量的降低更为明显。另外,饲喂铵的植物中的菲浓度高于饲喂硝酸盐的植物中的菲浓度。植物蛋白和糖的减少,氮和磷酸盐浓度的增加以及抗氧化酶活性的提高可能有助于菲的胁迫响应和适应。在菲胁迫下,与硝酸盐喂养的植物相比,铵盐喂养的植物具有更高的过氧化物酶,超氧化物歧化酶和过氧化氢酶活性。此外,可溶性蛋白质含量的减少以及菲在非光合器官中的转运和积累的增加可能使铵饲植物能够更有效地适应不利条件。总体而言,这些结果表明铵营养可以为改善菲胁迫下植物的生长和适应提供有用的工具。

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