首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Sulfur-cycling fossil bacteria from the 1.8-Ga Duck Creek Formation provide promising evidence of evolutions null hypothesis
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Sulfur-cycling fossil bacteria from the 1.8-Ga Duck Creek Formation provide promising evidence of evolutions null hypothesis

机译:1.8 Ga Duck Creek地层中的硫循环化石细菌为进化的无效假设提供了有希望的证据

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摘要

The recent discovery of a deep-water sulfur-cycling microbial biota in the ∼2.3-Ga Western Australian Turee Creek Group opened a new window to life's early history. We now report a second such subseafloor-inhabiting community from the Western Australian ∼1.8-Ga Duck Creek Formation. Permineralized in cherts formed during and soon after the 2.4- to 2.2-Ga “Great Oxidation Event,” these two biotas may evidence an opportunistic response to the mid-Precambrian increase of environmental oxygen that resulted in increased production of metabolically useable sulfate and nitrate. The marked similarity of microbial morphology, habitat, and organization of these fossil communities to their modern counterparts documents exceptionally slow (hypobradytelic) change that, if paralleled by their molecular biology, would evidence extreme evolutionary stasis.
机译:最近在约2.3 Ga西澳大利亚州Turee Creek组发现了深水硫循环微生物菌群,这为生命的早期历史打开了新的窗口。现在,我们从西澳大利亚的〜1.8-Ga Duck Creek组中报告了第二个这样的海底居住社区。在2.4-2.2 Ga的“大氧化事件”期间和之后不久形成的石中被矿化了,这两个生物区系可能证明对前寒武纪中期环境氧的增加有机会反应,导致增加了可代谢利用的硫酸盐和硝酸盐的产量。这些化石群落的微生物形态,生境和组织与现代生物群落的显着相似之处表明,异常缓慢的变化(低速运动),如果与它们的分子生物学相平行,则将证明其极端的发育停滞。

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