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首页> 外文期刊>Sedimentary geology >Microorganism-mediated preservation of Planolites, a common trace fossil from the Harkless Formation, Cambrian of Nevada, USA
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Microorganism-mediated preservation of Planolites, a common trace fossil from the Harkless Formation, Cambrian of Nevada, USA

机译:微生物介导的Planolite的保存,Planolite是美国内华达州寒武纪的Harkless组的常见微量化石

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摘要

Specimens of Planolites, a tubular ichnofossil, from the Harkless Formation (Cambrian of Nevada) are commonly rimmed by thin layers of limonite, a probable pseudomorph after pyrite, suggesting that bacterially induced biomineralization played a key role in the preservation of the burrows. Organic material secreted by a vermiform, infaunal tracemaker is inferred to have formed the substrate for a biofilm that facilitated iron sulfide biomineralization by bacteria under localized anaerobic or dysaerobic conditions. Rapid, microbially mediated biomineralization of mucus-lined burrow walls is inferred to have promoted three-dimensional preservation of burrows by strengthening them against sediment compaction, and possibly providing sufficient support for burrows to allow time for sediment infill. Decomposition of organic materials in Planolites also left evidence in sediment layers immediately above the burrows: undulose sediment surfaces and small, round, pimpleform gas escape structures.
机译:来自Harkless组(内华达州寒武纪)的管状鱼鳞化石Planolite的标本通常被褐铁矿薄层边缘化,褐铁矿是黄铁矿之后的可能的假晶,这表明细菌诱导的生物矿化在洞穴的保存中起着关键作用。据推测,蠕虫状痕量标记物分泌的有机物质已形成生物膜的底物,该底物促进了细菌在局部厌氧或厌氧条件下硫化铁的生物矿化作用。可以认为,通过微生物直接介导的黏液衬里洞穴壁的生物矿化作用增强了洞穴对沉积物的压实,从而促进了洞穴的三维保存,并可能为洞穴提供了足够的支撑,从而有时间充填沉积物。蓝藻中有机物的分解也为洞穴上方的沉积物层留下了证据:沉积物表面松散,小而圆形的粉状气体逸出结构。

著录项

  • 来源
    《Sedimentary geology》 |2012年第1期|p.30-35|共6页
  • 作者

    Soo Yeun Ahn; Loren E. Babcock;

  • 作者单位

    School of Earth Sciences, The Ohio State University, Columbus, OH 43210, United States,Department of Geology and Environmental Sciences,University of Akron, Akron, OH 44325, United States;

    School of Earth Sciences, The Ohio State University, Columbus, OH 43210, United States,Department of Earth and Ecosystem Sciences, Lund University, Solvegatan 12, 223 62 Lund, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    trace fossil; biofilm; biomineralization; taphonomy; cambrian; nevada;

    机译:微量化石生物膜生物矿化;拓朴寒武纪内华达州;

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