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化能自养型氧化亚铁硫杆菌向专性有机营养型的转变以及葡萄糖培养细胞的代谢能力。

Transition of chemolithotroph Ferrobacillus ferrooxidans to obligate organotrophy and metabolic capabilities of glucose-grown cells.

作者信息

Shafia F, Brinson K R, Heinzman M W, Brady J M

出版信息

J Bacteriol. 1972 Jul;111(1):56-65. doi: 10.1128/jb.111.1.56-65.1972.

Abstract

Transition of chemolithotrophic Ferrobacillus ferrooxidans to organotrophy occurred after 60 hr of incubation in an organic medium. Three distinct phases, based on metabolic activities of cells, were observed during the course of transition. Conversion of cellular nutrition to organotrophy resulted in a gradual loss of Fe(2+) oxidation and cessation of CO(2) fixation. These changes were concomitant with a rapid increase in uptake of glucose and phosphate during the latter part of transition period. The outcome of transition was governed by the pH of the medium, temperature of incubation, availability of oxygen, age of the chemolithotrophic cells, and the type of energy and carbon source available to the bacterium. Presence or absence of p-aminobenzoic acid and Fe(2+) ions did not influence transition of cells. A defined medium containing glucose, mineral salts, and p-aminobenzoic acid at pH 2.5 was found to be most suitable for transition and for culture of heterotrophic convertants. Maximum growth rate of the heterotrophic cells was attained with vigorous aeration at 35 C. The bacterium could be cultured on a variety of organic compounds, including complex organic media, provided they were used in low concentrations. Serological studies on autotrophic cells and the heterotrophic convertant have shown a definite antigenic relationship between the two cell types.

摘要

在有机培养基中培养60小时后,化能自养型氧化亚铁硫杆菌转变为有机营养型。在转变过程中,根据细胞的代谢活性观察到三个不同阶段。细胞营养向有机营养的转变导致Fe(2+)氧化逐渐丧失和CO(2)固定停止。这些变化与转变后期葡萄糖和磷酸盐摄取的迅速增加同时发生。转变的结果受培养基的pH值、培养温度、氧气供应、化能自养细胞的菌龄以及细菌可用的能量和碳源类型的影响。对氨基苯甲酸和Fe(2+)离子的存在与否不影响细胞的转变。发现一种含有葡萄糖、矿物盐和pH值为2.5的对氨基苯甲酸的限定培养基最适合转变和异养转化体的培养。在35℃剧烈通气条件下,异养细胞达到最大生长速率。只要以低浓度使用,该细菌可以在包括复杂有机培养基在内的多种有机化合物上培养。对自养细胞和异养转化体的血清学研究表明,这两种细胞类型之间存在明确的抗原关系。

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