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Magnetite biomineralization induced by Shewanella oneidensis

机译:沙瓦氏菌引起的磁铁矿生物矿化

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Shewanella oneidensis is a dissimilatory iron reducing bacterium capable of inducing the extracellular precipitation of magnetite. This precipitation requires a combination of passive and active mechanisms. Precipitation occurs as a consequence of active production of Fe2+ (aq) when bacteria utilize ferrihydrite as a terminal electron acceptor, and the pH rise probably due to the bacterial metabolism of amino acids. As for passive mechanisms, the localized concentration of Fe2+ (aq) and Fe3+ (aq) at the net negatively charged cell wall, cell structures and/or cell debris induces a local rise of supersaturation of the system with respect to magnetite, triggering the precipitation of such a phase. These biologically induced magnetites are morphologically identical to those formed inorganically in free-drift experiments (closed system; 25 C, 1 atm total pressure), both from aqueous solutions containing Fe(ClO4)2, FeCl3, NaHCO3, NaCO3 and NaOH, and also from sterile culture medium added with FeCl2. However, organic material becomes incorporated in substantial amounts into the crystal structure of S. oneidensis-induced magnetites, modifying such a structure compared to that of inorganic magnetites. This structural change and the presence of organic matter are detected by Raman and FT-IR spectroscopic analyses and may be used as a biomarker to recognize the biogenic origin of natural magnetites.
机译:沙瓦氏菌是一种异化的铁还原细菌,能够诱导磁铁矿的细胞外沉淀。这种沉淀需要被动和主动机制的结合。当细菌利用亚铁酸盐作为末端电子受体时,由于Fe2 +(水溶液)的活性产生而产生沉淀,并且pH升高可能是由于细菌的氨基酸代谢所致。至于被动机制,在净带负电的细胞壁,细胞结构和/或细胞碎片上,Fe2 +(aq)和Fe3 +(aq)的局部浓度会引起系统相对于磁铁矿的局部过饱和升高,从而触发沉淀这样的阶段。这些由生物诱发的磁铁矿在形态上与在自由飘浮实验(密闭系统; 25 C,总压力为1 atm)中由无机形成的磁铁矿相同,二者均来自含有Fe(ClO4)2,FeCl3,NaHCO3,NaCO3和NaOH的水溶液,以及从添加FeCl 2的无菌培养基中提取。但是,有机材料大量掺入到沙门氏菌诱导的磁铁矿的晶体结构中,与无机磁铁矿相比,这种结构发生了变化。这种结构变化和有机物的存在可以通过拉曼光谱和FT-IR光谱分析进行检测,并且可以用作识别天然磁铁矿生物成因的生物标记。

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