首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Shewanella putrefaciens produces an Fe(III)-solubilizing organic ligand during anaerobic respiration on insoluble Fe(III) oxides
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Shewanella putrefaciens produces an Fe(III)-solubilizing organic ligand during anaerobic respiration on insoluble Fe(III) oxides

机译:腐臭希瓦氏菌在不溶性Fe(III)氧化物的厌氧呼吸过程中产生可溶解Fe(III)的有机配体

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摘要

The mechanism of Fe(III) reduction was investigated using voltammetric techniques in anaerobic incubations of Shewanella putrefaciens strain 200 supplemented with Fe(III) citrate or a suite of Fe(III) oxides as terminal electron acceptor. Results indicate that organic complexes of Fe(III) are produced during the reduction of Fe(III) at rates that correlate with the reactivity of the Fe(III) phase and bacterial cell density. Anaerobic Fe(III) solubilization activity is detected with either Fe(III) oxides or Fe(III) citrate, suggesting that the organic ligand produced is strong enough to destabilize Fe(III) from soluble or solid Fe(III) substrates. Results also demonstrate that Fe(III) oxide dissolution is not controlled by the intrinsic chemical reactivity of the Fe(III) oxides. Instead, the chemical reaction between the endogenous organic ligand is only affected by the number of reactive surface sites available to S. putrefaciens. This report describes the first application of voltammetric techniques to demonstrate production of soluble organic-Fe(III) complexes by any Fe(III)-reducing microorganism and is the first report of a Fe(III)-solubilizing ligand generated by a metal-reducing member of the genus Shewanella.
机译:使用伏安技术在补充柠檬酸铁(III)或一组氧化铁(III)作为末端电子受体的腐臭希瓦氏菌200厌氧培养中,研究了Fe(III)还原的机理。结果表明,Fe(III)的还原过程中会生成与Fe(III)相的反应性和细菌细胞密度相关的有机配合物。可用Fe(III)氧化物或柠檬酸Fe(III)检测到厌氧Fe(III)增溶活性,表明产生的有机配体强度足以使Fe(III)脱离可溶性或固态Fe(III)底物。结果还表明,Fe(III)氧化物的溶解不受Fe(III)氧化物的固有化学反应性控制。相反,内源性有机配体之间的化学反应仅受腐链霉菌可用的反应性表面位点的数量影响。该报告描述了伏安技术的首次应用,以证明可通过任何还原Fe(III)的微生物生产可溶性有机Fe(III)配合物,并且是通过还原金属生成Fe(III)的可溶解配体的第一份报告。希瓦氏菌属的成员。

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