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Involvement of Intermediate Sulfur Species in Biological Reduction of Elemental Sulfur under Acidic Hydrothermal Conditions

机译:酸性水热条件下中间硫物种参与元素硫生物还原的研究

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摘要

The thermoacidophile and obligate elemental sulfur (S80)-reducing anaerobe Acidilobus sulfurireducens 18D70 does not associate with bulk solid-phase sulfur during S80-dependent batch culture growth. Cyclic voltammetry indicated the production of hydrogen sulfide (H2S) as well as polysulfides after 1 day of batch growth of the organism at pH 3.0 and 81°C. The production of polysulfide is likely due to the abiotic reaction between S80 and the biologically produced H2S, as evinced by a rapid cessation of polysulfide formation when the growth temperature was decreased, inhibiting the biological production of sulfide. After an additional 5 days of growth, nanoparticulate S80 was detected in the cultivation medium, a result of the hydrolysis of polysulfides in acidic medium. To examine whether soluble polysulfides and/or nanoparticulate S80 can serve as terminal electron acceptors (TEA) supporting the growth of A. sulfurireducens, total sulfide concentration and cell density were monitored in batch cultures with S80 provided as a solid phase in the medium or with S80 sequestered in dialysis tubing. The rates of sulfide production in 7-day-old cultures with S80 sequestered in dialysis tubing with pore sizes of 12 to 14 kDa and 6 to 8 kDa were 55% and 22%, respectively, of that of cultures with S80 provided as a solid phase in the medium. These results indicate that the TEA existed in a range of particle sizes that affected its ability to diffuse through dialysis tubing of different pore sizes. Dynamic light scattering revealed that S80 particles generated through polysulfide rapidly grew in size, a rate which was influenced by the pH of the medium and the presence of organic carbon. Thus, S80 particles formed through abiological hydrolysis of polysulfide under acidic conditions appeared to serve as a growth-promoting TEA for A. sulfurireducens.
机译:嗜热嗜热菌和专性元素硫(S8 0 )还原厌氧嗜酸杆菌Sulfireducens 18D70在依赖S8 0 的分批培养生长过程中不与大量固相硫缔合。循环伏安法表明,在pH 3.0和81°C的生物体分批生长1天后,产生了硫化氢(H2S)和多硫化物。多硫化物的产生很可能是由于S8 0 与生物产生的H2S之间的非生物反应,这是由于降低生长温度会迅速停止多硫化物的形成,从而抑制了硫化物的生物产生。再生长5天后,在培养基中检测到纳米颗粒S8 0 ,这是酸性环境中多硫化物水解的结果。为了检查可溶性多硫化物和/或纳米颗粒S8 0 是否可以用作支持拟南芥生长的末端电子受体(TEA),使用S8 0 作为固相存在于培养基中,或与S8 0 隔离在透析管中。隔离在孔径为12至14 kDa和6至8 kDa的透析管中的7天龄S8 0 培养物中硫化物的产生率分别为55%和22%在培养基中以固相形式提供的S8 0 培养物。这些结果表明,TEA存在于一定的粒径范围内,这影响了它通过不同孔径的透析管扩散的能力。动态光散射表明,通过多硫化物生成的S8 0 粒子的尺寸快速增长,该速率受介质pH值和有机碳的存在的影响。因此,在酸性条件下通过多硫化物的生物水解而形成的S8 0 颗粒似乎可作为促生烟曲霉的TEA生长促进剂。

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