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Textural and Mineralogical Characteristics of Microbial Fossils Associated with Modern and Ancient Iron (Oxyhydr)Oxides: Terrestrial Analogue for Sediments in Gale Crater

机译:与现代和古代的氧化铁相关的微生物化石的组织学和矿物学特征:大风火山口中沉积物的陆地类似物

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摘要

Iron (oxyhydr)oxide microbial mats in modern to ~ 100ka tufa terraces are present in a cold spring system along Ten Mile Graben, southeastern Utah, USA. Mats exhibit morphological, chemical, and textural bio-signatures and show diagenetic changes that occur over millennial scales. The Jurassic Brushy Basin Member of the Morrison Formation in the Four Corners region of the USA also exhibits comparable microbial fossils and iron (oxyhydr)oxide biosignatures in the lacustrine unit. Both the modern spring system and Brushy Basin Member represent alkaline, saline, groundwater-fed systems and preserve diatoms and other similar algal forms with cellular elaboration. Two distinct suites of elements (1. C, Fe, As and 2. C, S, Se, P) are associated with microbial fossils in modem and ancient iron (oxyhydr)oxides and may be potential markers for biosignatures. The presence of ferrihydrite in ~100ka fossil microbial mats and Jurassic rocks suggests that this thermodynamically unstable mineral may also be a potential biomarker. One of the most extensive sedimentary records on Mars is exposed in Gale Crater and consists of non-acidic clays and sulfates possibly of lacustrine origin. These terrestrial iron (oxyhydr)oxide examples are a valuable analogue because of similar iron- and clay-rich host rock compositions and will help (1) understand diagenetic processes in a non-acidic, saline lacustrine environment such as the sedimentary rocks in Gale Crater, (2) document specific biomediated textures, (3) demonstrate how biomediated textures might persist or respond to diagenesis over time, and (4) provide a ground truth library of textures to explore and compare in extraterrestrial iron (oxyhydr)oxides, where future explorations hope to detect past evidence of life.
机译:在美国犹他州东南部的十英里格拉本(Ten Mile Graben)的冷泉系统中,存在着约100ka石灰石梯阶的现代氧化铁(羟基氧化物)微生物垫。席子表现出形态,化学和纹理生物特征,并显示出千禧年尺度上发生的成岩作用。在美国四个角落地区的莫里森地层的侏罗纪刷盆地盆地成员在湖相单元中也显示出可比的微生物化石和氧化铁生物特征。现代泉水系统和刷盆地盆地均代表碱性,盐分,地下水喂养的系统,并通过细胞精制来保存硅藻和其他类似藻类。两种不同的元素组(1. C,Fe,As和2。C,S,Se,P)与现代和古代氧化铁中的微生物化石有关,可能是生物特征的潜在标志。约100ka的化石微生物垫和侏罗纪岩石中存在水铁矿,表明这种热力学不稳定的矿物也可能是潜在的生物标志物。火星上最广泛的沉积记录之一暴露在大风火山口中,由非酸性粘土和可能来自湖相的硫酸盐组成。由于富含铁和粘土的基质岩石成分相似,这些陆地氧化铁(羟基氧化物)实例是有价值的类似物,并且将有助于(1)了解非酸性,盐湖相环境中的成岩过程,例如大风火山口中的沉积岩。 ,(2)记录特定的生物介导的纹理,(3)证明生物介导的纹理如何随时间持续存在或对成岩作用作出反应,并且(4)提供一个地面纹理真相库,用于探索和比较地外铁(羟基氧化物)氧化物,探索希望能发现过去的生命证据。

著录项

  • 来源
    《Astrobiology》 |2014年第1期|1-14|共14页
  • 作者单位

    Department of Geology, Southern Illinois University, Carbondale, Illinois Southern Illinois University Department of Geology Parkinson Lab, Mailcode 4324 Carbondale, IL 62901;

    Department of Geology and Geophysics, University of Utah, Salt Lake City, Utah;

    Department of Geology and Geophysics, University of Utah, Salt Lake City, Utah;

  • 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

    Biogeochemistry; Mars; Biosignatures; Diagenesis; Iron oxides;

    机译:生物地球化学;火星;生物签名;成岩作用氧化铁;
  • 入库时间 2022-08-17 13:07:20

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