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Iron minerals within specific microfossil morphospecies of the 1.88 Ga Gunflint Formation

机译:1.88 Ga Gunflint组特定微化石形态物种内的铁矿物质

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摘要

Problematic microfossils dominate the palaeontological record between the Great Oxidation Event 2.4 billion years ago (Ga) and the last Palaeoproterozoic iron formations, deposited 500–600 million years later. These fossils are often associated with iron-rich sedimentary rocks, but their affinities, metabolism, and, hence, their contributions to Earth surface oxidation and Fe deposition remain unknown. Here we show that specific microfossil populations of the 1.88 Ga Gunflint Iron Formation contain Fe-silicate and Fe-carbonate nanocrystal concentrations in cell interiors. Fe minerals are absent in/on all organically preserved cell walls. These features are consistent with in vivo intracellular Fe biomineralization, with subsequent in situ recrystallization, but contrast with known patterns of post-mortem Fe mineralization. The Gunflint populations that display relatively large cells (thick-walled spheres, filament-forming rods) and intra-microfossil Fe minerals are consistent with oxygenic photosynthesizers but not with other Fe-mineralizing microorganisms studied so far. Fe biomineralization may have protected oxygenic photosynthesizers against Fe2+ toxicity during the Palaeoproterozoic.
机译:在24亿年前的大氧化事件(Ga)与500-600百万年后沉积的上古元古代铁形成之间,古生物学记录一直是有问题的微化石。这些化石通常与富含铁的沉积岩有关,但它们的亲和力,新陈代谢以及因此对地球表面氧化和铁沉积的贡献仍然未知。在这里,我们显示了1.88 Ga Gunflint铁层的特定微化石种群在细胞内部含有Fe-硅酸盐和Fe-碳酸盐纳米晶浓度。在所有有机保存的细胞壁中/上都不含铁矿物质。这些特征与体内细胞内铁的生物矿化,随后的原位重结晶是一致的,但与验尸后的铁矿化的已知模式相反。显示相对较大细胞(厚壁球体,细丝形成棒)和微化石内部铁矿物质的Gunflint种群与含氧光合剂一致,但与迄今为止研究的其他铁矿化微生物不一致。铁的生物矿化可能保护了含氧光合作用剂免受古元古代时期的Fe 2 + 毒性。

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