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Early anaerobic metabolisms

机译:早期厌氧代谢

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摘要

Before the advent of oxygenic photosynthesis, the biosphere was driven by anaerobic metabolisms. We catalogue and quantify the source strengths of the most probable electron donors and electron acceptors that would have been available to fuel early-Earth ecosystems. The most active ecosystems were probably driven by the cycling of H-2 and Fe2+ through primary production conducted by anoxygenic phototrophs. Interesting and dynamic ecosystems would have also been driven by the microbial cycling of sulphur and nitrogen species, but their activity levels were probably not so great. Despite the diversity of potential early ecosystems, rates of primary production in the early-Earth anaerobic biosphere were probably well below those rates observed in the marine environment. We shift our attention to the Earth environment at 3.8 Gyr ago, where the earliest marine sediments are preserved. We calculate, consistent with the carbon isotope record and other considerations of the carbon cycle, that marine rates of primary production at this time were probably an order of magnitude (or more) less than today. We conclude that the flux of reduced species to the Earth surface at this time may have been sufficient to drive anaerobic ecosystems of sufficient activity to be consistent with the carbon isotope record. Conversely, an ecosystem based on oxygenic photosynthesis was also possible with complete removal of the oxygen by reaction with reduced species from the mantle.
机译:在氧气光合作用出现之前,生物圈是由厌氧代谢驱动的。我们对可能给早期地球生态系统提供燃料的最有可能的电子供体和电子受体的源强度进行了分类和量化。最活跃的生态系统可能是由H-2和Fe2 +循环驱动的,而该过程是由产氧光养菌进行的初级生产。有趣的,充满活力的生态系统也将受到硫和氮物种的微生物循环的推动,但它们的活性水平可能并不那么高。尽管潜在的早期生态系统具有多样性,但早期地球厌氧生物圈的初级生产力可能远低于在海洋环境中观察到的初级生产力。我们将注意力转移到了Gyr 3.8年前的地球环境,该地区保存了最早的海洋沉积物。根据碳同位素记录和碳循环的其他考虑,我们计算得出,此时的海洋初级生产速率可能比今天低一个数量级(或更多)。我们得出的结论是,此时还原物种向地球表面的通量可能足以驱动具有足够活性的厌氧生态系统,以与碳同位素记录保持一致。反之,通过与地幔中还原物种的反应完全去除氧气,也可以实现基于氧气光合作用的生态系统。

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