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首页> 外文期刊>Applied and Environmental Microbiology >Calcium Oxalate Biomineralization by Piloderma fallax in Response to Various Levels of Calcium and Phosphorus
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Calcium Oxalate Biomineralization by Piloderma fallax in Response to Various Levels of Calcium and Phosphorus

机译:毛木毛虫对钙和磷水平不同的草酸钙生物矿化作用

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Piloderma fallax is an ectomycorrhizal fungus commonly associated with several conifer and hardwood species. We examined the formation of calcium oxalate crystals by P. fallax in response to calcium (0.0, 0.1, 0.5, 1, and 5 mM) and phosphorus (0.1 and 6 mM) additions in modified Melin-Norkrans agar medium. Both calcium and phosphorus supplementation significantly affected the amount of calcium oxalate formed. More calcium oxalate was formed at high P levels. Concentrations of soluble oxalate in the fungus and medium were higher at low P levels. There was a strong positive linear relationship between Ca level and calcium oxalate but only under conditions of phosphorus limitation. Calcium oxalate crystals were identified as the monohydrate form (calcium oxalate monohydrate [COM] whewellite) by X-ray diffraction analysis. Prismatic, styloid, and raphide forms of the crystals, characteristic COM, were observed on the surface of fungal hyphae by scanning electron microscopy. P. fallax may be capable of dissolving hyphal calcium oxalate under conditions of limited Ca. The biomineralization of calcium oxalate by fungi may be an important step in the translocation and cycling of Ca and P in soil.
机译:毛木霉菌是一种外生菌根真菌,通常与几种针叶树和阔叶树种有关。我们研究了在改良的Melin-Norkrans琼脂培养基中,响应于补钙(0.0、0.1、0.5、1和5 mM)和磷(0.1和6 mM),由假单胞菌形成的草酸钙晶体。钙和磷的添加均显着影响形成的草酸钙的量。高磷水平会形成更多草​​酸钙。在低磷水平下,真菌和培养基中的可溶性草酸盐浓度较高。 Ca水平与草酸钙之间存在很强的正线性关系,但仅在磷限制条件下。通过X射线衍射分析,草酸钙晶体被鉴定为一水合物形式(草酸钙一水合物[COM]辉绿土)。通过扫描电子显微镜在真菌菌丝的表面观察到了晶体的棱柱形,茎状和环化形式的COM。在有限的Ca条件下,P。fallax能够溶解菌丝草酸钙。真菌对草酸钙的生物矿化作用可能是钙和磷在土壤中易位和循环的重要步骤。

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