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Assessment of the stoichiometry and efficiency of CO2 fixation coupled to reduced sulfur oxidation

机译:评估化学计量和二氧化碳固定的效率以及减少的硫氧化

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摘要

Chemolithoautotrophic sulfur oxidizing bacteria (SOB) couple the oxidation of reduced sulfur compounds to the production of biomass. Their role in the cycling of carbon, sulfur, oxygen, and nitrogen is, however, difficult to quantify due to the complexity of sulfur oxidation pathways. We describe a generic theoretical framework for linking the stoichiometry and energy conservation efficiency of autotrophic sulfur oxidation while accounting for the partitioning of the reduced sulfur pool between the energy generating and energy conserving steps as well as between the main possible products (sulfate vs. zero-valent sulfur). Using this framework, we show that the energy conservation efficiency varies widely among SOB with no apparent relationship to their phylogeny. Aerobic SOB equipped with reverse dissimilatory sulfite reductase tend to have higher efficiency than those relying on the complete Sox pathway, whereas for anaerobic SOB the presence of membrane-bound, as opposed to periplasmic, nitrate reductase systems appears to be linked to higher efficiency. We employ the framework to also show how limited rate measurements can be used to estimate the primary productivity of SOB without the knowledge of the sulfate-to-zero-valent-sulfur production ratio. Finally, we discuss how the framework can help researchers gain new insights into the activity of SOB and their niches.
机译:化能自养硫氧化细菌(SOB)将还原的硫化合物的氧化与生物质的产生联系在一起。然而,由于硫氧化途径的复杂性,它们在碳,硫,氧和氮循环中的作用很难量化。我们描述了一种通用的理论框架,用于联系自养硫氧化的化学计量和节能效率,同时考虑了还原的硫池在能量生成和节能步骤之间以及主要可能产物之间的分配(硫酸盐与零-价硫)。使用此框架,我们表明SOB之间的节能效率差异很大,与其系统发育没有明显关系。配备反向异化亚硫酸盐还原酶的好氧SOB倾向于比依赖完整Sox途径的有氧SOB具有更高的效率,而对于厌氧SOB,与周质硝酸盐还原酶系统相反,膜结合的存在似乎与更高的效率有关。我们使用该框架还显示了在不了解硫酸盐与零价硫的生产比率的情况下,如何使用有限的速率测量来估算SOB的主要生产率。最后,我们讨论了该框架如何帮助研究人员获得有关SOB及其生态位活动的新见解。

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