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Diversity in the Archean Biosphere: New Insights from NanoSIMS

机译:太古代生物圈中的多样性:NanoSIMS的新见解

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摘要

The origin of organic microstructures in the ~ 3 Ga Farrel Quartzite is controversial due to their relatively poor state of preservation, the Archean age of the cherts in which they occur, and the unusual spindle-like morphology of some of the forms. To provide more insight into the significance of these microstructures, nano-scale secondary ion mass spectrometry (NanoSIMS) maps of carbon, nitrogen, sulfur, silicon, and oxygen were obtained for spheroidal and spindle-shaped constituents of the Farrel Quartzite assemblage. Results suggest that the structures are all bona fide ~ 3 Ga microfossils.rnThe spindles demonstrate an architecture that is remarkable for 3Ga organisms. They are relatively large, robust, and morphologically complex. The NanoSIMS element maps corroborate their complexity by demonstrating an intricate, internal network of organic material that fills many of the spindles and extends continuously from the body of these structures into their spearlike appendages.rnResults from this study combine with previous morphological and chemical analyses to argue that the micro-structures in the Farrel Quartzite comprise a diverse assemblage of Archean microfossils. This conclusion adds to a growing body of geochemical, stromatolitic, and morphological evidence that indicates the Archean biosphere was varied and well established by at least ~3 Ga. Together, the data paint a picture of Archean evolution that is one of early development of morphological and chemical complexity. The evidence for Archean evolutionary innovation may augur well for the possibility that primitive life on other planets could adapt to adverse conditions by ready development of diversity in form and biochemistry.
机译:〜3 Ga Farrel石英岩中的有机微观结构的起源是有争议的,这是由于它们的保存状态相对较差,它们发生的硅质岩的太古代时代,以及某些形式的纺锤状形态。为了更深入地了解这些微结构的重要性,获得了Farrel石英岩组合体的球形和纺锤形成分的碳,氮,硫,硅和氧的纳米级二次离子质谱(NanoSIMS)图。结果表明,这些结构都是真正的〜3 Ga微化石。纺锤体显示出对3Ga生物体显着的结构。它们相对较大,健壮并且形态复杂。 NanoSIMS元素图通过演示复杂的内部有机材料网络来证实其复杂性,该内部材料填充了许多纺锤体,并从这些结构的主体连续延伸到其矛状的附件。rn该研究的结果与先前的形态学和化学分析相结合法雷尔石英岩中的微结构包括太古代微化石的不同组合。这一结论增加了越来越多的地球化学,层间岩性和形态学证据,这些证据表明太古宙生物圈在至少〜3 Ga范围内发生了变化并得到了良好的建立。这些数据共同描绘了太古宙演化的图景,这是形态学的早期发展之一。和化学复杂性。太古宙进化创新的证据可能很好地预示了其他星球上原始生命可以通过适当地发展形式和生物化学多样性来适应不利条件的可能性。

著录项

  • 来源
    《Astrobiology》 |2010年第4期|P.413-424|共12页
  • 作者单位

    Astromaterials Research and Exploration Science, NASA, Johnson Space Center, Houston, Texas, USA Astromaterials Research and Exploration Science NASA, Johnson Space Center 2101 NASA Parkway Houston, TX 77058 USA;

    Laboratoire de Mineralogie et Cosmochimie du Museum (LMCM), Museum National d'Histoire Naturelle, Paris, France;

    Australian Centre for Astrobiology, University of New South Wales, Kensington, Australia;

    rnDepartment of Environmental Engineering and Architecture, Graduate School of Environmental Studies, Nagoya University, Nagoya,Japan;

    rnLaboratoire de Mineralogie et Cosmochimie du Museum (LMCM), Museum National d'Histoire Naturelle, Paris, France;

    rnLaboratoire de Mineralogie et Cosmochimie du Museum (LMCM), Museum National d'Histoire Naturelle, Paris, France;

    rnAstromaterials Research and Exploration Science, NASA, Johnson Space Center, Houston, Texas, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nanoSIMS; archean; pilbara; organic microfossil; spindle; microstructure; early evolution; farrel quartzite;

    机译:纳米SIMS;古生;pilbara;有机微化石;纺锤体;显微组织;早期演化;珍珠岩型石英岩;
  • 入库时间 2022-08-17 13:09:34

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