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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Microbially mediated re-oxidation of sulfide during dissimilatory sulfate reduction by Desulfobacter latus
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Microbially mediated re-oxidation of sulfide during dissimilatory sulfate reduction by Desulfobacter latus

机译:脱硫细菌在异化硫酸盐还原过程中微生物介导的硫化物再氧化

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摘要

Enzymatic reactions during dissimilatory sulfate reduction (DSR) are often treated as unidirectional with respect to dissolved sulfide. However, quantitative models describing kinetic sulfur isotope fractionations during DSR consider the individual enzymatic reactions as reversible (Rees, 1973). Brunner and Bernasconi (2005) extended this line of thought, and suggested that as long as cell external sulfide (CES) concentrations are high enough, CES may diffuse back across the cytoplasmic cell membrane and may subsequently be re-oxidized to sulfate. Here, we test this hypothesis by measuring the time evolution of the δ~(34)S-sulfate signal during DSR in closed system experiments under different levels of sulfide stress (0-20mM and 0-40mM total dissolved sulfide). Our results show that the measured δ~(34)S-sulfate signal is markedly different in the latter case and that the observed sulfate S-isotope time-evolution is incompatible with a Rayleigh type fractionation model. In contrast, our results are consistent with a sulfate reduction and fractionation model that allows for a cell internal oxidation of dissolved sulfide by a sulfate reducer.
机译:异化硫酸盐还原(DSR)过程中的酶促反应通常相对于溶解的硫化物被视为单向的。但是,描述DSR过程中动力学硫同位素分馏的定量模型认为各个酶反应是可逆的(Rees,1973)。 Brunner和Bernasconi(2005)扩展了这一思路,并提出只要细胞外部硫化物(CES)浓度足够高,CES可能会扩散回整个细胞质细胞膜,随后可能被重新氧化为硫酸盐。在这里,我们通过在不同水平的硫化物应力下(0-20mM和0-40mM的总溶解硫化物)在封闭系统实验中测量DSR期间δ〜(34)S-硫酸盐信号的时间演变来检验该假设。我们的结果表明,在后一种情况下,测得的δ〜(34)S-硫酸盐信号明显不同,并且所观察到的硫酸盐S-同位素时间演化与瑞利分馏模型不兼容。相反,我们的结果与硫酸盐还原和分级分离模型一致,该模型允许硫酸盐还原剂对溶解的硫化物进行细胞内部氧化。

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