Department of Microbiology, University of Granada, Granada, Spain.
Department of Geography, The University of Sheffield, Sheffield, United Kingdom.
Chemosphere. 2018 May;199:351-360. doi: 10.1016/j.chemosphere.2018.02.055. Epub 2018 Feb 9.
This study presents the effect of aqueous uranium speciation (U-hydroxides and U-hydroxo-carbonates) on the interaction of this radionuclide with the cells of the yeast Rhodotorula mucigilanosa BII-R8. This strain was isolated from Spanish bentonites considered as reference materials for the engineered barrier components of the future deep geological repository of radioactive waste. X-ray absorption and infrared spectroscopy showed that the aqueous uranium speciation has no effect on the uranium binding process by this yeast strain. The cells bind mobile uranium species (U-hydroxides and U-hydroxo-carbonates) from solution via a time-dependent process initiated by the adsorption of uranium species to carboxyl groups. This leads to the subsequent involvement of organic phosphate groups forming uranium complexes with a local coordination similar to that of the uranyl mineral phase meta-autunite. Scanning transmission electron microscopy with high angle annular dark field analysis showed uranium accumulations at the cell surface associated with phosphorus containing ligands. Moreover, the effect of uranium mobile species on the cell viability and metabolic activity was examined by means of flow cytometry techniques, revealing that the cell metabolism is more affected by higher concentrations of uranium than the cell viability. The results obtained in this work provide new insights on the interaction of uranium with bentonite natural yeast from genus Rhodotorula under deep geological repository relevant conditions.
本研究展示了水合铀形态(U-氢氧化物和 U-羟碳酸盐)对这种放射性核素与酵母 Rhodotorula mucigilanosa BII-R8 细胞相互作用的影响。该菌株是从被认为是未来放射性废物深层地质处置库工程屏障组件参考材料的西班牙膨润土中分离出来的。X 射线吸收和红外光谱表明,水合铀形态对该酵母菌株的铀结合过程没有影响。细胞通过一个由铀物种吸附到羧基上引发的时间依赖性过程,从溶液中结合可移动的铀物种(U-氢氧化物和 U-羟碳酸盐)。这导致随后涉及有机磷酸基团,形成与假钙铀云母铀矿物相具有局部相似配位的铀配合物。高角度环形暗场分析的扫描透射电子显微镜显示,铀在细胞表面与含磷配体积聚。此外,通过流式细胞术技术研究了铀移动物种对细胞活力和代谢活性的影响,结果表明细胞代谢比细胞活力更容易受到较高浓度铀的影响。本工作获得的结果为在深层地质处置库相关条件下,研究膨润土天然酵母属 Rhodotorula 中铀的相互作用提供了新的见解。