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Silicon-Rich, Iron Oxide Microtubular Sheath Produced by an Iron-Oxidizing Bacterium, Leptothrix sp. Strain OUMS1, in Culture

机译:铁氧化细菌Leptothrix sp。生产的富含硅的氧化铁微管护套。文化中的OUMS1菌株

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摘要

This study aimed to manipulate the texture and elemental composition of the novel sheaths produced by the iron-oxidizing bacterium Leptothrix in culture by altering components of the medium. When previously isolated strain OUMS1 was cultured in media (pH 7.0 throughout incubation) containing various levels of Si on a rotary shaker at 20 °C and 70 rpm for 14 days, the strain was able to reproduce in media with up to 300 ppm Si, and the hollow microtubular architecture of the sheath was maintained even at 300 ppm Si. The constitutional iron oxide phase changed from poorly crystalline lepidocrocite at 0 ppm Si to X-ray diffraction (XRD)-amorphous 2-line ferrihydrite at 100–300 ppm via their mixture phase with intermediate Si content (Si-30 and -50 ppm). The results strongly indicate that the chemical character and crystallinity of the sheath texture can be regulated by culture conditions, especially components of the medium.
机译:这项研究的目的是通过改变培养基的成分来操纵由铁氧化细菌Leptothrix在培养物中产生的新型鞘的质地和元素组成。当先前分离的菌株OUMS1在旋转摇床上于20°C和70 rpm的含有各种水平的Si的培养基(整个孵育过程中pH值为7.0)中培养14天时,该菌株能够在含300 ppm Si的培养基中繁殖,鞘的中空微管结构即使在300 ppm Si时也能保持。组成相的铁氧化物相从硅含量为0 ppm的弱晶硅铁矿转变为100-300 ppm的X射线衍射(XRD)-非晶态2线亚铁水合物,其混合相具有中等Si含量(Si-30和-50 ppm) 。结果强烈表明,鞘质的化学特性和结晶度可以通过培养条件,尤其是培养基成分来调节。

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