首页> 外文期刊>Microbes and Environments >Uptake and Intraradical Immobilization of Cadmium by Arbuscular Mycorrhizal Fungi as Revealed by a Stable Isotope Tracer and Synchrotron Radiation mu X-Ray Fluorescence Analysis
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Uptake and Intraradical Immobilization of Cadmium by Arbuscular Mycorrhizal Fungi as Revealed by a Stable Isotope Tracer and Synchrotron Radiation mu X-Ray Fluorescence Analysis

机译:常规同位素示踪剂和同步辐射μX射线荧光分析揭示丛枝菌根真菌的吸收和镉的镉

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Arbuscular mycorrhizal (AM) fungi can improve plant tolerance to heavy metal contamination. This detoxification ability may largely depend on how AM fungi influence the uptake and distribution of metals in host plants. Two experiments were performed in order to gain insights into the mechanisms underlying cadmium (Cd) tolerance in mycorrhizal plants. Stable isotope Cd-106 and compartmented pots were adopted to quantify the contribution of the AM fungus, Rhizophagus irregularis, to the uptake of Cd by Lotus japonicus. Moreover, synchrotron radiation mu X-ray fluorescence (SR-mu XRF) was applied to localize Cd in the mycorrhizal roots at the sub-cellular level. The results obtained indicated that mycorrhizal colonization markedly enhanced Cd immobilization in plant roots. Less Cd was partitioned to plant shoots when only hyphae had access to Cd in the hyphal compartment than when roots also had direct access to the Cd pool. SR-mu CRF imaging indicated that Cd absorbed by extraradical hyphae was translocated into intraradical fungal structures, in which arbuscules accumulated large amounts of Cd; however, plant cells without fungal structures and plant cell walls contained negligible amounts of Cd. The present results provide direct evidence for the intraradical immobilization of Cd absorbed by AM fungi, which may largely contribute to the enhanced tolerance of plants to Cd. Therefore, AM fungi may play a role in the phytostabilization of Cd-contaminated soil.
机译:丛枝菌根(AM)真菌可以改善植物耐受重金属污染。这种解毒能力可能主要取决于Am Fungi如何影响宿主植物中金属的摄取和分布。进行两次实验,以便在菌根植物中进入镉(CD)耐受性的潜在机制的见解。采用稳定的同位素CD-106和隔间盆来量化AM真菌,无知,莲属植物对CD的吸收的贡献。此外,将同步辐射沟X射线荧光(SR-MU XRF)施加以在亚细胞水平下占菌根根中的鉴定CD。得到的结果表明,菌根殖民化明显增强了植物根中的CD固定化。当只有菌丝箱中的CD在剪切盒中的CD时,少CD被分配给植物芽,而不是根源也直接访问CD池时。 SR-MU CRF成像表明,通过脱晶菌丝吸收的Cd被易于分化为内部真菌结构,其中仲裁累积了大量CD;然而,没有真菌结构和植物细胞壁的植物细胞包含可忽略量的CD。目前的结果提供了AM真菌吸收的CD的镉的IntrArmical固定的直接证据,这可能主要有助于增强植物对Cd的耐受性。因此,AM Fungi可能在CD污染土壤的植物化中发挥作用。

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