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VARIABILITY OF COORDINATION COMPLEXES OF COPPER ACCUMULATED WITHIN FUNGAL COLONY IN THE PRESENCE OF COPPER-CONTAINING MINERALS

机译:在含铜矿物质存在下真菌菌落中积累的铜中积聚的协调复合物的变化

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摘要

The aim of work was to elucidate the mechanisms of bioaccumulation of copper leached from minerals by fungus Aspergillus niger with great bioremedial potential due to its ability to produce chelating metabolites and transform toxic metals and minerals. The special attention was paid to the chemical speciation of copper bioaccumulated within fungal colony in the process of fungal transformation of copper-containing minerals.Chemical speciation of copper within different parts of the fungal colony was studied using solid-state chemistry methods such as synchrotron-based X-ray absorption spectroscopy providing information about the oxidation state of the target element, and its coordination environment. The analysis of the obtained X-ray absorption spectroscopy spectra was carried out using Fourier transforms of Extended X-ray Absorption Fine Structure regions, which correspond to the oscillating part of the spectrum to the right of the absorption edge.Results of this study showed that fungus A. niger was involved in the process of solubilization of copper-containing minerals resulted in leaching of mobile copper and its further immobilization by fungal biomass with variable coordination of accumulated copper within fungal colony which depended on the age and physiological/reproductive state of fungal mycelium. X-ray absorption spectroscopy data demonstrated that copper accumulated within outer zone of fungal colony with immature vegetative mycelium was coordinated with sulphur–containing ligands, in contrast to copper coordination with phosphate ligands within mature mycelium with profuse conidia in the central zone of the colony.The findings of this study not only broaden our understanding of the biogeochemical role of fungi but can also be used in the development of various fungal-based biometallurgy technologies such as bioremediation, bioaccumulation and bioleaching and in the assessment of their reliability.The main conclusion is that coordination environment of copper bioaccumulated within fungal biomass via the process of transformation of copper minerals is heterogeneous varying from sulphydryl to phosphate.
机译:作品的目的是阐明由真菌曲霉患者浸出的铜的生物累积机制,由于其产生螯合代谢物和转化毒性金属和矿物质的能力,因此具有很大的生物化潜力。在含铜矿物质的真菌转化过程中,对真菌菌落中的铜生物菌落中的化学品质进行了特别的注意。使用固态化学方法研究了真菌菌落不同部分内的铜化学品质,例如同步基于基于同步的X射线吸收光谱,提供有关目标元素的氧化状态的信息,以及其协调环境。使用延伸的X射线吸收细结构区域的傅里叶变换进行了对所得X射线吸收光谱光谱的分析,其对应于吸收边缘右侧的光谱的振荡部分。本研究的结果表明,真菌黑曲霉参与了含铜矿物的溶解过程导致移动铜及其由真菌生物量进一步的固定作用与真菌菌落内积累铜可变协调的浸出,其依赖于年龄和真菌菌丝体的生理/生殖状态。 X射线吸收光谱数据证明,含有未成熟营养菌丝菌丝体内的含有含硫配体的真菌菌落的外部铜的铜与含有成熟菌丝体内的磷酸盐配体的铜配位与殖民地的中央区中的细胞区的铜配位相反。这项研究的结果不仅拓宽了对真菌的生物地球化学作用的理解,而且还可以用于发展各种基于真菌的生物冶金技术,如生物修复,生物累积和生物浸入以及评估其可靠性。主要结论是通过铜矿物转化过程在真菌生物量内的铜生物累积的协调环境与硫酰到磷酸盐异质改变。

著录项

  • 作者

    M. O. Fomina;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 rus;ukr;eng
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