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首页> 外文期刊>Environmental microbiology >Another chemolithotrophic metabolism missing in nature: sulfur comproportionation
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Another chemolithotrophic metabolism missing in nature: sulfur comproportionation

机译:在自然界中缺少的另一种嗜型化学营养性代谢:硫包括

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Chemotrophic microorganisms gain energy for cellular functions by catalyzing oxidation-reduction (redox) reactions that are out of equilibrium. Calculations of the Gibbs energy (Delta G(r)) can identify whether a reaction is thermodynamically favourable and quantify the accompanying energy yield at the temperature, pressure and chemical composition in the system of interest. Based on carefully calculated values of Delta G(r), we predict a novel microbial metabolism - sulfur comproportionation (3H(2)S + SO42- + 2H(+) (sic) 4S(0) + 4H(2)O). We show that at elevated concentrations of sulfide and sulfate in acidic environments over a broad temperature range, this putative metabolism can be exergonic (Delta G(r)<0), yielding similar to 30-50 kJ mol(-1). We suggest that this may be sufficient energy to support a chemolithotrophic metabolism currently missing from the literature. Other versions of this metabolism, comproportionation to thiosulfate (H2S + SO42- (sic) S2O32- + H2O) and to sulfite (H2S + 3SO(4)(2-) (sic) 4SO(3)(2-) + 2H(+)), are only moderately exergonic or endergonic even at ideal geochemical conditions. Natural and impacted environments, including sulfidic karst systems, shallow-sea hydrothermal vents, sites of acid mine drainage, and acid-sulfate crater lakes, may be ideal hunting grounds for finding microbial sulfur comproportionators.
机译:通过催化超出平衡的氧化还原(氧化还原)反应,嗜疗微生物通过催化氧化还原(氧化还原)反应而获得能量。 Gibbs能量的计算(Delta G(R))可以识别反应是否在热力学上有利,并且量化感兴趣系统中的温度,压力和化学成分的伴随能量产量。基于仔细计算Delta G(R)的值,我们预测了一种新型微生物代谢 - 硫含量(3H(2)S + SO42- + 2H(+)(SiC)4 S + 4H(2)O)。我们表明,在宽温度范围内,在酸性环境中升高浓度的硫化物和硫酸盐,这种推定的代谢可以是出现的(ΔG(R)<0),产生类似于30-50kJ摩尔(-1)。我们认为这可能是支持目前缺失文献中缺失的化学脱位的代谢的能量。这种新陈代谢的其他形式,硫代硫酸盐的常规(H 2 S + SO42-(SiC)S2O32- + H 2 O)和亚硫酸盐(H 2 S + 3SO(4)(2-)(SiC)4SO(3)(2-)+ 2H( +)),即使在理想的地球化学条件下,也只有适度的Axergony或indergonic。天然和受影响的环境,包括磺基岩溶系统,浅海水热通风口,酸性矿山排水部位和酸性硫酸盐火山口湖泊,可能是用于寻找微生物硫抑制因度器的理想狩猎场。

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