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首页> 外文期刊>FEMS Microbiology Ecology >The marine sulfate reducer Desulfobacterium autotrophicum HRM2 can switch between low and high apparent half-saturation constants for dissimilatory sulfate reduction
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The marine sulfate reducer Desulfobacterium autotrophicum HRM2 can switch between low and high apparent half-saturation constants for dissimilatory sulfate reduction

机译:海洋硫酸盐减速剂脱硫器脱硫性能HRM2可以在低和高表观半饱和度常数之间切换以进行甲状腺硫酸盐还原

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Studies of the kinetics of dissimilatory sulfate reduction in marine sediment have shown that a mixture of marine sulfate-reducing bacteria (SRB) can reduce sulfate with both a high and low apparent sulfate half-saturation constant (K-m). However, all marine pure cultures investigated have shown only low-sulfate affinity sulfate reduction kinetics. It remains unknown whether marine high sulfate-affinity sulfate reduction is catalyzed by unknown SRB or whether known SRB possess unrecognized high-affinity sulfate reduction systems. We used 35S-sulfate incubation experiments to show that cultures of Desulfobacterium autotrophicum HMR2 will switch from low-affinity to high-affinity sulfate reduction when sulfate concentrations fall below 500 mu M. The mean Km was 150 mu M at high sulfate concentrations and 8 mu M at lowsulfate concentrations. The high-affinity Km value is comparable to values found in SRB inhabiting freshwater sediments and D. autotrophicum cultures could deplete sulfate to below our detection limit of 25 nM. The switch in Km value was accompanied by a change in the expression of genes encoding membrane-bound transport proteins putatively involved in sulfate uptake in D. autotrophicum. Our results demonstrate that a marine sulfate reducer can efficiently reduce sulfate at both high and low sulfate concentrations, possibly by activation of different sulfate transporters in the membrane.
机译:对海洋沉积物的含硫酸盐硫酸盐减少的动力学的研究表明,船上硫酸盐还原细菌(SRB)的混合物可以用高低表观硫酸盐半饱和常数(K-M)减少硫酸盐。然而,研究的所有海洋纯培养物只显示了低硫酸盐亲和力硫酸盐减少动力学。它仍然未知是否通过未知的SRB催化海洋高硫酸氢亲和力硫酸盐或已知的SRB是否具有未被识别的高亲和力硫酸盐还原系统。我们使用35s-硫酸盐孵育实验表明,当硫酸盐浓度低于500μm时,脱硫术治疗HMR2的培养物将从低亲和力降低到高亲和力降低。平均km在高硫酸盐浓度下为150μm,8亩m在卤硫酸盐浓度下。高亲和力km值与SRB居住淡水沉积物中发现的值相当,D.自动细胞培养物可以耗尽硫酸盐,低于我们的检测限为25nm。 KM值的开关伴随着编码致编码膜结合的转运蛋白的基因表达的变化,该致癌患者硫酸盐摄取。我们的结果表明,海洋硫酸盐减速器可以在高硫酸盐浓度下有效地减少硫酸盐,可能是通过在膜中的不同硫酸盐转运蛋白激活。

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