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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Metal binding by bacteria from uranium mining waste piles and its technological applications.
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Metal binding by bacteria from uranium mining waste piles and its technological applications.

机译:铀开采废料堆中细菌与金属的结合及其技术应用。

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摘要

Uranium mining waste piles, heavily polluted with radionuclides and other toxic metals, are a reservoir for bacteria that have evolved special strategies to survive in these extreme environments. Understanding the mechanisms of bacterial adaptation may enable the development of novel bioremediation strategies and other technological applications. Cell isolates of Bacillus sphaericus JG-A12 from a uranium mining waste pile in Germany are able to accumulate high amounts of toxic metals such as U, Cu, Pb, Al, and Cd as well as precious metals. Some of these metals, i.e. U, Cu, Pd(II), Pt(II) and Au(III), are also bound by the highly orderd paracrystalline proteinaceous surface layer (S-layer) that envelopes the cells of this strain. These special capabilities of the cells and the S-layer proteins of B. sphaericus JG-A12 are highly interesting for the clean-up of uranium contaminated waste waters, for the recovery of precious metals from electronic wastes, and for the production of metal nanoclusters. The fabricated nanoparticles are promising for the development of novel catalysts.This work reviews the molecular biology of the S-layer of the strain JG-A12 and the S-layer dependent interactions of the bacterial cells with metals. It presents future perspectives for their application in bioremediation and nanotechnology.
机译:铀开采废料堆被放射性核素和其他有毒金属污染严重,是细菌的储存库,这些细菌已发展出在这些极端环境中生存的特殊策略。了解细菌适应的机制可能使新的生物修复策略和其他技术应用的发展。来自德国铀矿废物堆的球形芽孢杆菌JG-A12的细胞分离物能够积累大量有毒金属,例如U,Cu,Pb,Al和Cd以及贵金属。这些金属中的一些,即U,Cu,Pd(II),Pt(II)和Au(III),也被包裹该菌株细胞的高度有序的顺晶质蛋白质表面层(S层)结合。球形芽孢杆菌JG-A12的细胞和S层蛋白的这些特殊功能对于净化铀污染的废水,从电子废物中回收贵金属以及生产金属纳米团簇非常有趣。 。制备的纳米粒子有望用于新型催化剂的开发。这项工作回顾了菌株JG-A12的S层的分子生物学以及细菌细胞与金属的S层依赖性相互作用。它提出了它们在生物修复和纳米技术中的应用的未来前景。

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