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首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Influence of arbuscular mycorrhizal fungi (AMF) on zinc biogeochemistry in the rhizosphere of Lindenbergia philippensis growing in zinc-contaminated sediment
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Influence of arbuscular mycorrhizal fungi (AMF) on zinc biogeochemistry in the rhizosphere of Lindenbergia philippensis growing in zinc-contaminated sediment

机译:丛枝菌根真菌(AMF)对生长在锌污染沉积物中的菩提树(Lindenbergia philippensis)根际锌生物地球化学的影响

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摘要

The association of arbuscular mycorrhizal fungi (AMF) with the roots of Lindenbergia philippensis (Cham.) Benth., sampled from a Zn-contaminated settling pond at a zinc smelter, significantly enhanced Zn accumulation (72,540 ± 5,092 mg kg~(-1) dry weight) in rhizosphere sediment amended with 1,000 mg L~(-1) of Zn sulfate solution compared to fungicide-treatments that suppressed AMF colonization. This can be explained by a significant proportion of Zn being found in rectangular crystals that were associated with the root mucilaginous sheath. Despite this, all treatments maintained the same Zn coordination geometry in both Zn oxidation state and the coordinated neighbouring atoms. X-ray absorption spectroscopy (XAS) showed a Zn(II) oxidation state as a core atom and associated with six oxygen atoms symmetrically arranged in an octahedral coordination and coordinated with sulfur. The results may indicate a role for AMF in enhancing Zn immobilization in the rhizosphere of indigenous plants that successfully colonize Zn mining and smelting disposal sites.
机译:丛枝菌根真菌(AMF)与Lindenbergia philippensis(Cham。)Benth。的根的关联(从锌冶炼厂的一个受锌污染的沉淀池中取样)显着增强了锌积累(72,540±5,092 mg kg〜(-1))与抑制AMF定殖的杀菌剂处理相比,用1,000 mg L〜(-1)的硫酸锌溶液修正了根际沉积物中的干重。这可以通过在与根粘液鞘相关的矩形晶体中发现大量的Zn来解释。尽管如此,所有处理在Zn氧化态和相邻的配位原子上都保持相同的Zn配位几何形状。 X射线吸收光谱法(XAS)显示Zn(II)氧化态为核心原子,并与六个氧原子相关联,对称地以八面体配位形式与硫原子配位。结果可能表明AMF在成功地定居锌矿开采和冶炼处置场的本地植物的根际中增强锌的固定作用。

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