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Capacity of Azospirillum thiophilum for lithotrophic growth coupled to oxidation of reduced sulfur compounds

机译:硫唑假单胞菌对石质生长的能力与还原的硫化合物的氧化作用有关

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Capacity for lithotrophic growth coupled to oxidation of reduced sulfur compounds was revealed in an Azospirillum strain, A. thiophilum BV-ST. Oxygen concentration in the medium was the major factor determining the type of energy metabolism (organotrophic or lithotrophic) in the presence of thiosulfate. Under aerobic conditions, metabolism of A. thiophilum BV-ST was organoheterotrophic, with thiosulfate oxidation to tetrathionate resulting from the interaction with reactive oxygen species, mostly H_2O_2, which was formed in the electron transport chain in the course of oxidation of organic electron donors. Under microaerobic conditions (2 mg/L O_2 in liquid medium), A. thiophilum BV-S~T carried out lithoheterotrophic (mixotrophic) metabolism; enzymes of the dissimilatory type of sulfur metabolism were responsible for thiosulfate oxidation to tetrathionate and sulfate. Two enzyme systems were found in the cells: thiosulfate dehydrogenase, which catalyzes incomplete oxidation of thiosulfate to tetrathionate and the thiosulfate-oxidizing Sox enzyme complex, which is involved in complete oxidation of thiosulfate to sulfate. The genetic determinant of a Sox complex component in A. thiophilum BV-S~T was revealed. The soxB gene was found, and its expression under microaerobic conditions was observed to increase 32-fold compared to aerobic cultivation.
机译:在固氮螺菌菌株A.thiophilum BV-ST中揭示了岩石生长的能力与还原的硫化合物的氧化相结合。在硫代硫酸盐存在下,培养基中的氧气浓度是决定能量代谢类型(有机营养或岩石营养)的主要因素。在有氧条件下,A.thiophilum BV-ST的代谢是有机异养的,硫代硫酸盐氧化成四硫酸盐是由于与活性氧(主要是H_2O_2)的相互作用,这是在有机电子给体氧化过程中在电子传输链中形成的。在微需氧条件下(液体介质中的O 2为2 mg / L O 2),嗜硫曲霉BV-S〜T进行了异养(混合营养)代谢。硫代谢的异化类型的酶负责将硫代硫酸盐氧化为四硫酸盐和硫酸盐。在细胞中发现了两种酶系统:硫代硫酸盐脱氢酶,其催化硫代硫酸盐不完全氧化为四硫代酸盐;和硫代硫酸盐氧化的Sox酶复合物,其涉及硫代硫酸盐完全氧化为硫酸盐。揭示了A.thiophilum BV-S〜T中Sox复合物成分的遗传决定因素。发现了soxB基因,并且在有氧条件下的表达与有氧培养相比增加了32倍。

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