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Methylated sulfur compounds in microbial mats: in situ concentrations and metabolism by a colorless sulfur bacterium.

机译:微生物垫中的甲基化硫化合物:无色硫细菌的原位浓度和代谢。

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摘要

The concentrations of the volatile organic sulfur compounds methanethiol, dimethyl disulfide, and dimethyl sulfide (DMS) and the viable population capable of DMS utilization in laminated microbial ecosystems were evaluated. Significant levels of DMS and dimethyl disulfide (maximum concentrations of 220 and 24 nmol cm3 of sediment-1, respectively) could be detected only at the top 20 mm of the microbial mat, whereas methanethiol was found only at depth horizons from 20 to 50 mm (maximum concentration of 42 nmol cm3 of sediment-1). DMS concentrations in the surface layer doubled after cold hydrolysis of its precursor, dimethylsulfoniopropionate. Most-probable-number counts revealed 2.2 x 10(5) cells cm3 of sediment-1, in the 0- to 5-mm depth horizon, capable of growth on DMS as the sole source of energy. An obligately chemolithoautotrophic bacillus designated strain T5 was isolated from the top layer of the marine sediment. Continuous culture studies in which DMS was the growth-limiting substrate revealed a maximum specific growth rate of 0.10 h-1 and a saturation constant of 90 mumol liter-1 for aerobic growth on this substrate.
机译:评估了挥发性有机硫化合物甲硫醇,二甲基二硫和二甲基硫(DMS)的浓度以及能够在叠层微生物生态系统中利用DMS的可行种群。仅在微生物垫的顶部20 mm处才能检测到大量DMS和二甲基二硫(最高浓度分别为沉积物1的最大浓度220和24 nmol cm3),而仅在20至50 mm的深层发现了甲烷硫醇(沉积物1的最大浓度为42 nmol cm3)。表层中的DMS浓度在其前体二甲基磺酸丙酸二甲酯冷水解后翻了一番。最有可能发生的计数显示,在0至5毫米深度范围内,有2.2 x 10(5)立方厘米的沉积物-1,能够在DMS上作为唯一的能源生长。从海洋沉积物的顶层分离出专一的化石自养芽孢杆菌,命名为菌株T5。以DMS为生长限制基质的连续培养研究表明,该基质上的有氧生长的最大比生长速率为0.10 h-1,饱和常数为90μmol升-1。

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