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Structure and function of siderophores produced by mycorrhizal fungi

机译:菌根真菌产生的铁载体的结构和功能

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摘要

Most fungi synthesize siderophores as chelating agents which form soluble complexes with Fe~(3+) with very high stability constants, thus solubilizing ferric Fe. Ericoid mycorrhizal fungi release ferricrocin or fusigen as the main siderophores. Ferricrocin was also shown to be produced by the ectomycorrhizal fungi, Cenococcum geophilum and Hebeloma crustuliniforme. Arbuscular mycorrhizal fungi are reported to enhance Fe-uptake rates of associated host plants which can be taken as an indication that mycorrhizal siderophores of a yet unknown structure may be involved. Mycorrhizal fungi of orchids were shown to produce as the main siderophores, both well known ferrichrome-type siderophores or the novel linear trishydroxamate basidiochrome.
机译:大多数真菌会合成铁螯合物作为螯合剂,并以很高的稳定常数与Fe〜(3+)形成可溶性络合物,从而溶解三价铁。类固醇菌根真菌释放铁铁蛋白或fusigen作为主要铁载体。还显示出铁锈菌素是由外生菌根真菌,嗜地球球菌和甲壳纲铁锈菌产生的。据报道,丛枝菌根真菌可提高相关寄主植物的铁吸收率,这可被视为可能涉及结构未知的菌根铁载体的指示。兰花的菌根真菌被证明是主要的铁载体,既是众所周知的亚铁铬型铁载体,又是新型的线性三异羟肟酸酯基二恶英。

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