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硫的分散作用创造了一种有价值的新生长培养基配方,使嗜酸氧化亚铁硫杆菌培养物中的硫氧化相对于铁氧化更早发生。

Dispersion of sulfur creates a valuable new growth medium formulation that enables earlier sulfur oxidation in relation to iron oxidation in Acidithiobacillus ferrooxidans cultures.

机构信息

Department of Chemical Engineering, Columbia University, New York, USA.

出版信息

Biotechnol Bioeng. 2021 Aug;118(8):3225-3238. doi: 10.1002/bit.27847. Epub 2021 Jun 16.

Abstract

Acidithiobacillus ferrooxidans is an acidophilic chemolithoautotroph that is commonly reported to exhibit diauxic population growth behavior where ferrous iron is oxidized before elemental sulfur when both are available, despite the higher energy content of sulfur. We have discovered sulfur dispersion formulations that enables sulfur oxidation before ferrous iron oxidation. The oxidation of dispersed sulfur can lower the culture pH within days below the range where aerobic ferrous iron oxidation can occur. Thus, ferric iron reduction can be observed quickly which had previously been reported over extended incubation periods with untreated sulfur. Therefore, we demonstrate that this substrate utilization pattern is strongly dependent on the cell loading in relation to sulfur concentration, sulfur surface hydrophobicity, and the pH of the culture. Our dispersed sulfur formulation, lig-sulfur, can be used to support the rapid antibiotic selection of plasmid-transformed cells, which is not possible in liquid cultures where ferrous iron is the main source of energy for these acidophiles. Furthermore, we find that media containing lig-sulfur supports higher production of green fluorescent protein compared to media containing ferrous iron. The use of dispersed sulfur is a valuable new tool for the development of engineered A. ferrooxidans strains and it provides a new method to control iron and sulfur oxidation behaviors.

摘要

嗜酸氧化亚铁硫杆菌是一种嗜酸化化学自养生物,通常被报道表现出兼性营养型群体生长行为,即在亚铁离子和元素硫都存在的情况下,优先氧化亚铁离子,尽管硫的能量含量更高。我们发现了硫分散制剂,使硫在亚铁离子之前氧化。分散硫的氧化可以在几天内将培养物的 pH 值降低到有氧亚铁离子氧化发生的范围以下。因此,可以观察到铁还原,这在以前未经处理的硫的长时间孵育中曾被报道过。因此,我们证明这种底物利用模式强烈依赖于细胞负载与硫浓度、硫表面疏水性和培养物 pH 值的关系。我们的硫分散制剂 lig-sulfur 可用于支持质粒转化细胞的快速抗生素选择,这在亚铁离子是这些嗜酸菌主要能源的液体培养中是不可能的。此外,我们发现含有 lig-sulfur 的培养基比含有亚铁离子的培养基支持更高水平的绿色荧光蛋白生产。使用分散硫是开发工程化嗜酸氧化亚铁硫杆菌菌株的一种有价值的新工具,它提供了一种控制铁和硫氧化行为的新方法。

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