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球形节杆菌 151B 抗六价铬的生物修复潜力:铯和其他碱金属离子摄取的研究。

Bioremediation potential of hexavalent chromium-resistant Arthrobacter globiformis 151B: study of the uptake of cesium and other alkali ions.

机构信息

Institute of Biophysics, Ilia State University, 3/5 Kakutsa Cholokashvili Ave, Tbilisi, 0162, Georgia.

Institute of Chemical Biology, Ilia State University, 3/5 Kakutsa Cholokashvili Ave, Tbilisi, 0162, Georgia.

出版信息

Int Microbiol. 2022 Nov;25(4):745-758. doi: 10.1007/s10123-022-00258-5. Epub 2022 Jun 29.

Abstract

Cesium (Cs) enters environments largely because of global release into the environment from weapons testing and accidents such as Fukushima Daiichi and Chernobyl nuclear waste. Even at low concentrations, Cs is highly toxic to ecological receptors because of its physicochemical similarity to macronutrient potassium (K). We investigated the uptake and accumulation of Cs by Arthrobacter globiformis strain 151B in reference to three similar alkali metal cations rubidium (Rb), sodium (Na), and potassium (K). The impact of hexavalent chromium (Cr) as a co-contaminant was also evaluated. A. globiformis 151B accumulated Cs and Cr in a time-dependent fashion. In contrast, the uptake and accumulation of Rb did not exhibit any trends. An exposure to Cs, Rb, and Cr triggered a drastic increase in K and Na uptake by the bacterial cells. That was followed by the efflux of K and Na, suggesting a Cs "substitution." Two-dimensional gel-electrophoresis of bacterial cell proteomes with the following mass-spectrometry of differentially expressed bands revealed that incubation of bacterial cells with Cs induced changes in the expression of proteins involved in the maintenance of cellular homeostasis and reactive oxygen species removal. The ability of A. globiformis 151B to mediate the uptake and accumulation of cesium and hexavalent chromium suggests that it possesses wide-range bioremediation potential.

摘要

铯(Cs)主要是由于全球从武器测试和福岛第一核电站和切尔诺贝利核废料等事故中向环境释放而进入环境。即使浓度很低,由于其与大量营养元素钾(K)的物理化学相似性,Cs 对生态受体也具有高度毒性。我们研究了球形节杆菌(Arthrobacter globiformis)菌株 151B 对 Cs 的摄取和积累,参考了三种类似的碱金属阳离子铷(Rb)、钠(Na)和钾(K)。还评估了六价铬(Cr)作为共污染物的影响。A. 球形节杆菌 151B 以时间依赖的方式积累 Cs 和 Cr。相比之下,Rb 的摄取和积累没有显示出任何趋势。Cs、Rb 和 Cr 的暴露会导致细菌细胞中 K 和 Na 的摄取急剧增加。随后是 K 和 Na 的外排,表明 Cs 的“替代”。用 Cs 处理细菌细胞后,二维凝胶电泳和差异表达带的质谱分析显示,细菌细胞中蛋白表达发生变化,这些蛋白与细胞内稳态的维持和活性氧物质的清除有关。A. 球形节杆菌 151B 介导 Cs 和六价铬的摄取和积累的能力表明它具有广泛的生物修复潜力。

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