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首页> 外文期刊>ACS nano >Magnetite biomineralization in magnetospirillum gryphiswaldense: Time-resolved magnetic and structural studies
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Magnetite biomineralization in magnetospirillum gryphiswaldense: Time-resolved magnetic and structural studies

机译:灰螺螺螺旋藻中的磁铁矿生物矿化:时间分辨的磁性和结构研究

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Magnetotactic bacteria biosynthesize magnetite nanoparticles of high structural and chemical purity that allow them to orientate in the geomagnetic field. In this work we have followed the process of biomineralization of these magnetite nanoparticles. We have performed a time-resolved study on magnetotactic bacteria Magnetospirillum gryphiswaldense strain MSR-1. From the combination of magnetic and structural studies by means of Fe K-edge X-ray absorption near edge structure (XANES) and high-resolution transmission electron microscopy we have identified and quantified two phases of Fe (ferrihydrite and magnetite) involved in the biomineralization process, confirming the role of ferrihydrite as the source of Fe ions for magnetite biomineralization in M. gryphiswaldense. We have distinguished two steps in the biomineralization process: the first, in which Fe is accumulated in the form of ferrihydrite, and the second, in which the magnetite is rapidly biomineralized from ferrihydrite. Finally, the XANES analysis suggests that the origin of the ferrihydrite could be at bacterial ferritin cores, characterized by a poorly crystalline structure and high phosphorus content.
机译:趋磁细菌生物合成具有高结构和化学纯度的磁铁矿纳米颗粒,从而使它们能够在地磁场中定向。在这项工作中,我们遵循了这些磁铁矿纳米颗粒的生物矿化过程。我们已经对趋磁细菌Magnetospirillum gryphiswaldense菌株MSR-1进行了时间分辨研究。通过磁性和结构研究相结合,借助Fe K边缘近边缘结构X射线吸收(XANES)和高分辨率透射电子显微镜,我们已经确定并量化了参与生物矿化的Fe的两个相(三水铁矿和磁铁矿)的过程,证实了水铁矿作为铁离子的来源,可用于格里菲斯瓦尔登塞矿中磁铁矿的生物矿化。在生物矿化过程中,我们区分了两个步骤:第一步,其中铁以水铁矿的形式积累,第二步,磁铁矿从三水铁矿快速生物矿化。最后,XANES分析表明,水铁矿的起源可能是细菌铁蛋白核心,其特征在于晶体结构差且磷含量高。

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