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Anaerobic Benzene Oxidation by Geobacter Species

机译:地球细菌对厌氧苯的氧化作用

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The abundance of Geobacter species in contaminated aquifers in which benzene is anaerobically degraded has led to the suggestion that some Geobacter species might be capable of anaerobic benzene degradation, but this has never been documented. A strain of Geobacter, designated strain Ben, was isolated from sediments from the Fe(III)-reducing zone of a petroleum-contaminated aquifer in which there was significant capacity for anaerobic benzene oxidation. Strain Ben grew in a medium with benzene as the sole electron donor and Fe(III) oxide as the sole electron acceptor. Furthermore, additional evaluation of Geobacter metallireducens demonstrated that it could also grow in benzene-Fe(III) medium. In both strain Ben and G. metallireducens the stoichiometry of benzene metabolism and Fe(III) reduction was consistent with the oxidation of benzene to carbon dioxide with Fe(III) serving as the sole electron acceptor. With benzene as the electron donor, and Fe(III) oxide (strain Ben) or Fe(III) citrate (G. metallireducens) as the electron acceptor, the cell yields of strain Ben and G. metallireducens were 3.2 × 109 and 8.4 × 109 cells/mmol of Fe(III) reduced, respectively. Strain Ben also oxidized benzene with anthraquinone-2,6-disulfonate (AQDS) as the sole electron acceptor with cell yields of 5.9 × 109 cells/mmol of AQDS reduced. Strain Ben serves as model organism for the study of anaerobic benzene metabolism in petroleum-contaminated aquifers, and G. metallireducens is the first anaerobic benzene-degrading organism that can be genetically manipulated.
机译:厌氧降解了苯的受污染含水层中大量的土壤细菌物种已经提示,某些土壤细菌物种可能具有厌氧苯降解的能力,但这从未有文献记载。从被石油污染的含水层的Fe(III)还原带的沉积物中分离出了一种名为Ben的Geobacter菌株,该菌株具有明显的厌氧苯氧化能力。 Ben菌株在以苯为唯一电子供体,以Fe(III)氧化物为唯一电子受体的培养基中生长。此外,对土壤还原金属杆菌的进一步评估表明它也可以在苯-铁(III)培养基中生长。在菌株Ben和G.metalli中,均降低了苯代谢的化学计量,并且Fe(III)的还原与以Fe(III)作为唯一电子受体的苯氧化为二氧化碳一致。用苯作为电子供体,用Fe(III)氧化物(Ben菌株)或Fe(III)柠檬酸盐(G.metallireducens)作为电子受体,Ben和G.metallireducens菌株的细胞产率分别为3.2×109和8.4× Fe(III)分别减少109个细胞/ mmol。 Ben菌株还用2,6-蒽磺酸蒽醌(AQDS)作为唯一的电子受体氧化苯,降低了细胞产量5.9×109个细胞/ mmol AQDS。 Ben菌株是研究石油污染的含水层中厌氧苯代谢的模型生物,而金属还原还原杆菌是第一个可以通过基因操作的降解厌氧苯的生物。

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