首页> 外文期刊>Geomicrobiology journal >Fe(III) Oxide Reduction by a Gram-positive Thermophile: Physiological Mechanisms for Dissimilatory Reduction of Poorly Crystalline Fe(III) Oxide by a Thermophilic Gram-positive Bacterium Carboxydothermus ferrireducens
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Fe(III) Oxide Reduction by a Gram-positive Thermophile: Physiological Mechanisms for Dissimilatory Reduction of Poorly Crystalline Fe(III) Oxide by a Thermophilic Gram-positive Bacterium Carboxydothermus ferrireducens

机译:革兰氏阳性嗜热菌还原Fe(III):嗜热的革兰氏阳性细菌羧基铁还原异化还原结晶性较弱的Fe(III)的生理机制

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摘要

Physiological strategies driving the reduction of poorly crystalline Fe(III) oxide by the thermophilic Gram-positive dissimilatory Fe(III)-reducing bacterium C. ferrireducens were evaluated. Direct cell-to-mineral contact appears to be the major physiological strategy for ferrihydrite reduction. This strategy is promoted by cell surface-associated c-type cytochromes, and the extracellular electron transfer to ferrihydrite is linked to energy generation via a membrane-bound electron transport chain. The involvement of pili-like appendages in ferrihydrite reduction has been detected for the first time in a thermophilic microorganism. A supplementary strategy for the utilization of a siderophore (DFO) in dissimilatory ferrihydrite reduction has also been characterized.
机译:评价了通过嗜热的革兰氏阳性异化Fe(III)还原菌铁还原梭菌还原弱结晶Fe(III)氧化物的生理策略。直接的细胞与矿物的接触似乎是还原水铁矿的主要生理策略。细胞表面相关的c型细胞色素促进了这种策略,并且细胞外电子转移至三水铁矿的过程与通过膜结合电子传输链产生的能量有关。在嗜热微生物中首次检测到菌毛状附属物参与水铁矿还原。还表征了在异化亚铁水合物还原中利用铁载体(DFO)的补充策略。

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