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Fungal Biomineralization of lead phosphates on the surface of lead metal

机译:铅金属表面铅磷酸盐的真菌生物丙原

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The present work describes the lead phosphate biomineralization by a wood-decaying fungal isolate, Penicillium chrysogenum A15, after incubation in solid medium with metallic lead (Pb shot pellets). This fungal isolate showed high tolerance to this element being able to grow on solid medium containing 8 mM Pb(II). Environmental Scanning Electron Microscope (ESEM) observations of abiotic controls showed the presence of lead oxide crystals on the lead shot surface after 8 weeks incubation. However, in presence of P. chrysogenum, lead phosphate mineral phases were detected as botryoidal aggregates on the surface of lead shots after 2-weeks and 8-weeks incubation. The morphology of the biotically deposited secondary minerals showed significant differences in shape in comparison to those produced under abiotic condition, appearing globular, prismatic and acicular crystals. High Resolution Transmission Electron Microscope (HRTEM) analysis indicated cell surface lead phosphates deposition which could be considered as Pb resistance mechanism used by this isolate to cope with toxicity of lead. This study extends the spectrum of fungal isolates with potential on the biomineralization of lead phosphates useful for the bioremediation of lead contaminated sites.
机译:本作者通过金属铅(PB射击颗粒)在固体培养基中孵育后,通过木腐败的真菌分离物(PNICILLIUM),Penicillium chrysogenum A15描述了磷酸盐生物抗体。这种真菌分离物向该元素显示出高耐受能够在含有8mM Pb(II)的固体培养基上。环境扫描电子显微镜(ESEM)非生物对照的观察结果显示8周孵育后引线射击表面上的铅氧化物晶体存在。然而,在P. Chrysogenum存在下,在2周和8周孵育后,在铅射照表面上检测铅磷酸盐矿物相。与非生物条件下产生的那些相比,生物沉积的次级矿物的形态表现出显着的形状差异,出现球状,棱柱形和针状晶体。高分辨率透射电子显微镜(HRTEM)分析表明细胞表面铅磷酸盐沉积,可被认为是这种分离物用于应对铅的毒性的PB抗性机制。该研究扩展了真菌分离物的光谱,其潜在的铅磷酸盐的生物丙原化物潜力可用于铅污染部位的生物化。

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