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Arbuscular mycorrhizas contribute to phyto stabilization of uranium in uranium mining tailings

机译:丛枝菌根有助于铀矿开采尾矿中铀的植物稳定化

摘要

Uranium (U) tailings pose environmental risks and call for proper remediation. In this paper medic and ryegrass plants were used as host plants to examine whether inoculation with an AM fungus, Glomus intraradices, would help phytostabilization of U tailings. The need of amending with uncontaminated soil for supporting plant survival was also examined by mixing soil with U tailing at different mixing ratios. Soil amendment increased plant growth and P uptake. Ryegrass produced a more extensive root system and a greater biomass than medic plants at all mixing ratios. Medic roots were extensively colonized by G. intraradices whereas ryegrass were more sparsely colonized. Plant growth was not improved by mycorrhizas, which, however, improved P nutrition of medic plants. Medic plants contained higher U concentrations and showed higher specific U uptake efficiency compared to ryegrass. In the presence of U tailing, most U had been retained in plant roots, and this distribution pattern was further enhanced by mycorrhizal colonization. The results suggest a role for AM fungi in phytostabilization of U tailings. (c) 2007 Elsevier Ltd. All rights reserved.
机译:铀尾矿构成环境风险,要求进行适当的补救。在本文中,将军医和黑麦草植物用作宿主植物,以检查接种AM真菌Glomus intraradices是否有助于U尾矿的植物稳定化。还通过将土壤与U尾矿以不同的混合比混合来检查是否需要对未污染的土壤进行改良以支持植物生存。土壤改良剂增加了植物的生长和磷的吸收。在所有混合比例下,黑麦草的根系比药用植物更广泛,生物量也更大。军医根系广泛地被G. intraradices定植,而黑麦草则更稀疏定植。菌根不能改善植物的生长,但是可以改善药用植物的磷营养。与黑麦草相比,药用植物的U浓度更高,并且显示出更高的U吸收比效率。在存在U尾矿的情况下,大多数U已保留在植物根部,并且通过菌根定植进一步增强了这种分布模式。结果表明AM真菌在U尾矿的植物稳定作用中发挥了作用。 (c)2007 Elsevier Ltd.保留所有权利。

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