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Role and influence of mycorrhizal fungi on radiocesium accumulation by plants

机译:菌根真菌对植物放射性铯累积的作用和影响

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This review summarizes current knowledge on the contribution of mycorrhizal fungi to radiocesium immobilization and plant accumulation. These root symbionts develop extended hyphae in soils and readily contribute to the soil-to-plant transfer of some nutrients. Available data show that ecto-mycorrhizal (ECM) fungi can accumulate high concentration of radiocesium in their ex-traradical phase while radiocesium uptake and accumulation by arbuscular mycorrhizal (AM) fungi is limited. Yet, both ECM and AM fungi can transport radiocesium to their host plants, but this transport is low. In addition, mycorrhizal fungi could thus either store radiocesium in their intraradical phase or limit its root-to-shoot translocation. The review discusses the impact of soil characteristics, and fungal and plant transporters on radiocesium uptake and accumulation in plants, as well as the potential role of mycorrhizal fungi in phytoremediation strategies.
机译:这篇综述总结了当前关于菌根真菌对放射性铯固定和植物积累的贡献的知识。这些根部共生菌在土壤中形成延长的菌丝,并容易促进某些养分从土壤到植物的转移。现有数据显示,菌根外菌根真菌在根外阶段可以积累高浓度的铯,而丛枝菌根(AM)菌对铯的吸收和积累受到限制。然而,ECM和AM真菌都可以将radio转移到宿主植物中,但是这种转移很低。此外,菌根真菌可能因此将放射性铯存储在其自由基内阶段或限制其根到茎的易位。该综述讨论了土壤特性,真菌和植物转运体对植物中放射性铯吸收和积累的影响,以及菌根真菌在植物修复策略中的潜在作用。

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