首页> 外文期刊>Earth-Science Reviews: The International Geological Journal Bridging the Gap between Research Articles and Textbooks >Remarkable preservation of microbial mats in Neoproterozoic siliciclastic settings: Implications for Ediacaran taphonomic models
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Remarkable preservation of microbial mats in Neoproterozoic siliciclastic settings: Implications for Ediacaran taphonomic models

机译:在新元古代硅质碎屑环境中微生物垫的显着保存:对Ediacaran胶体模型的启示

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摘要

It is beyond doubt that the appearance of infaunal bioturbation and metazoan biomineralization across the Ediacaran-Cambrian transition irreversibly affected the nature of marine sediment architecture and biogeochemistry. Here we review those changes in relation to their likely effect upon the processes of fossil preservation, especially within siliciclastic sediments. Processes of soft-tissue preservation in siliciclastic settings from the Ediacaran Period, including microbes and microbial mats as well as Ediacaran macrofossils, are here reviewed within this context. Highlighted examples include the exceptional preservation of microbes found in association with wrinkle structures and Ediacaran macrofossils in England and Newfoundland (replicated by silicate minerals) and in the White Sea region of Russia (replicated by iron sulphide). These occurrences show that soft-tissue preservation in siliciclastic settings went well beyond that typical for Ediacaran macrofossils alone and also extended to similar modes of preservation in associated microbes. Using these new observations it can be argued that several existing explanations for Ediacaran fossil preservation can be united within a biogeochemical model that involves evolution of the sediment mixed layer across this transition.
机译:毫无疑问,整个埃迪卡拉-寒武纪过渡期发生的生物扰动和后生生物矿化作用不可逆转地影响了海洋沉积物构造和生物地球化学的性质。在这里,我们回顾了这些变化与它们对化石保存过程(尤其是硅质碎屑沉积物)的可能影响有关。在此背景下,本文回顾了Ediacaran时期硅质碎屑环境中的软组织保存过程,包括微生物和微生物垫以及Ediacaran大型化石。突出的例子包括在英国和纽芬兰(由硅酸盐矿物复制)和在俄罗斯白海地区(由硫化铁复制)与皱纹结构和Ediacaran大型化石有关的微生物的特殊保存。这些事件表明,在硅质碎屑环境中,软组织的保存远远超出了单独的Ediacaran大型化石所具有的典型保存能力,并且还扩展到了相关微生物中的类似保存模式。利用这些新的观察结果,可以论证将埃迪卡拉类化石保存的几种现有解释可以结合到一个生物地球化学模型中,该模型涉及整个过渡过程中沉积物混合层的演化。

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