...
首页> 外文期刊>Earth-Science Reviews: The International Geological Journal Bridging the Gap between Research Articles and Textbooks >Resolving MISS conceptions and misconceptions: A geological approach to sedimentary surface textures generated by microbial and abiotic processes
【24h】

Resolving MISS conceptions and misconceptions: A geological approach to sedimentary surface textures generated by microbial and abiotic processes

机译:解决MISS概念和误解:一种通过微生物和非生物过程产生的沉积物表面纹理的地质方法

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The rock record contains a rich variety of sedimentary surface textures on siliciclastic sandstone, siltstone and mudstone bedding planes. In recent years, an increasing number of these textures have been attributed to surficial microbial mats at the time of deposition, resulting in their classification as microbially induced sedimentary structures, or MISS. Research into MISS has developed at a rapid rate, resulting in a number of misconceptions in the literature. Here, we attempt to rectify these MISS misunderstandings. The first part of this paper surveys the stratigraphic and environmental range of reported MISS, revealing that contrary to popular belief there are more reported MISS-bearing rock units of Phanerozoic than Precambrian age. Furthermore, MISS exhibit a pan environmental and almost continuous record since the Archean. Claims for the stratigraphic restriction of MISS to intervals prior to the evolution of grazing organisms or after mass extinction events, as well as claims for the environmental restriction of MISS, appear to result from sampling bias. In the second part of the paper we suggest that raised awareness of MISS has come at the cost of a decreasing appreciation of abiotic processes that may create morphologically similar features. By introducing the umbrella term 'sedimentary surface textures', of which MISS are one subset, we suggest a practical methodology for classifying such structures in the geological record. We illustrate how elucidating the formative mechanisms of ancient sedimentary surface textures usually requires consideration of a suite of sedimentological evidence from surrounding strata. Resultant interpretations, microbial or non-microbial, should be couched within a reasonable degree of uncertainty. This approach recognizes that morphological similarity alone does not constitute scientific proof of a common origin, and reinstates a passive descriptive terminology for sedimentary surface textures that cannot be achieved with the current MISS lexicon. It is hoped that this new terminology will reduce the number of overly sensational and misleading claims of MISS occurrence, and permit the means to practically separate initial observation from interpretation. Furthermore, this methodology offers a scientific approach that appreciates the low likelihood of conclusively identifying microbial structures from visual appearance alone, informing the search for true MISS in Earth's geological record and potentially on other planetary bodies such as Mars. (C) 2016 The Authors. Published by Elsevier B.V.
机译:岩石记录包含硅质碎屑砂岩,粉砂岩和泥岩层理面上的各种沉积物表面纹理。近年来,越来越多的这些纹理被归因于沉积时的表面微生物垫,从而将它们归类为微生物诱导的沉积结构或MISS。对MISS的研究发展迅速,导致文献中出现了许多误解。在这里,我们试图纠正这些MISS的误解。本文的第一部分调查了已报道的MISS的地层和环境范围,揭示出与普遍的看法相反,与生前寒武纪相比,已报告的MISS含生代的MISS岩石单元更多。此外,MISS展示了自Archean以来的泛环境和近乎连续的记录。对MISS地层限制在放牧生物体进化之前或灭绝事件之后的间隔的主张,以及对MISS的环境限制的主张,似乎是由采样偏差引起的。在本文的第二部分中,我们建议提高对MISS的认识是以降低对可能产生形态相似特征的非生物过程的认识为代价的。通过引入伞形术语“沉积表面纹理”(MISS是其中的一个子集),我们提出了一种在地质记录中对此类结构进行分类的实用方法。我们说明了如何阐明古代沉积表面纹理的形成机制通常需要考虑来自周围地层的一系列沉积学证据。结果解释(微生物或非微生物)应在合理的不确定性范围内进行。这种方法认识到单独的形态相似性并不能构成一个共同起源的科学证明,并且可以恢复当前MISS词典无法实现的用于沉积表面纹理的被动描述性术语。希望这一新术语将减少对MISS发生的过度轰动和误导性主张的数量,并允许该方法将初始观察与解释实际分开。此外,这种方法提供了一种科学的方法,该方法认识到仅凭视觉即可最终确定微生物结构的可能性很小,从而为在地球地质记录中以及潜在地在其他行星体(如火星)上寻找真正的MISS提供了信息。 (C)2016作者。由Elsevier B.V.发布

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号