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亚铁的氧化由硫氧化嗜酸硫杆菌完成,并且在转录和蛋白质合成水平上对该过程进行了分析。

Ferrous iron oxidation by sulfur-oxidizing Acidithiobacillus ferrooxidans and analysis of the process at the levels of transcription and protein synthesis.

机构信息

Department of Biochemistry, Faculty of Science, Masaryk University, Kotlarska 2, 61137, Brno, Czech Republic.

出版信息

Antonie Van Leeuwenhoek. 2013 Apr;103(4):905-19. doi: 10.1007/s10482-012-9872-2. Epub 2013 Jan 5.

Abstract

In contrast to iron-oxidizing Acidithiobacillus ferrooxidans, A. ferrooxidans from a stationary phase elemental sulfur-oxidizing culture exhibited a lag phase in pyrite oxidation, which is similar to its behaviour during ferrous iron oxidation. The ability of elemental sulfur-oxidizing A. ferrooxidans to immediately oxidize ferrous iron or pyrite without a lag phase was only observed in bacteria obtained from growing cultures with elemental sulfur. However, these cultures that shifted to ferrous iron oxidation showed a low rate of ferrous iron oxidation while no growth was observed. Two-dimensional gel electrophoresis was used for a quantitative proteomic analysis of the adaptation process when bacteria were switched from elemental sulfur to ferrous iron. A comparison of total cell lysates revealed 39 proteins whose increase or decrease in abundance was related to this phenotypic switching. However, only a few proteins were closely related to iron and sulfur metabolism. Reverse-transcription quantitative PCR was used to further characterize the bacterial adaptation process. The expression profiles of selected genes primarily involved in the ferrous iron oxidation indicated that phenotypic switching is a complex process that includes the activation of genes encoding a membrane protein, maturation proteins, electron transport proteins and their regulators.

摘要

与氧化铁的嗜酸氧化亚铁硫杆菌相反,来自固定相元素硫氧化培养物的嗜酸氧化亚铁硫杆菌在黄铁矿氧化过程中表现出滞后期,这与其在亚铁氧化过程中的行为相似。只有在从生长有元素硫的培养物中获得的细菌中,才能观察到元素硫氧化的嗜酸氧化亚铁硫杆菌立即氧化亚铁或黄铁矿而没有滞后期的能力。然而,这些转向亚铁氧化的培养物表现出低的亚铁氧化速率,而没有观察到生长。二维凝胶电泳用于对细菌从元素硫切换到亚铁时适应过程的定量蛋白质组学分析。对总细胞裂解物的比较揭示了 39 种蛋白质,其丰度的增加或减少与这种表型转换有关。然而,只有少数几种蛋白质与铁和硫代谢密切相关。逆转录定量 PCR 用于进一步表征细菌的适应过程。选定的主要参与亚铁氧化的基因的表达谱表明,表型转换是一个复杂的过程,包括编码膜蛋白、成熟蛋白、电子传递蛋白及其调节剂的基因的激活。

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