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Biostratinomy of the Ediacara Member (Rawnsley Quartzite, South Australia): implications for depositional environments, ecology and biology of Ediacara organisms.埃迪卡拉生物群段(南澳大利亚劳恩斯利石英岩)的埋藏学:对埃迪卡拉生物的沉积环境、生态学和生物学的启示
Interface Focus. 2020 Aug 6;10(4):20190100. doi: 10.1098/rsfs.2019.0100. Epub 2020 Jun 12.
2
Elevated Marine Dissolved Silica Levels Explain a Wide Range of Ediacaran-Cambrian Ediacara-Style Fossil Deposits.海洋溶解硅含量升高解释了广泛的埃迪卡拉纪-寒武纪埃迪卡拉型化石沉积现象。
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Rheotaxis in the Ediacaran epibenthic organism Parvancorina from South Australia.在澳大利亚南部埃迪卡拉纪的表生生物 Parvancorina 中存在流态定向性。
Sci Rep. 2017 Mar 30;7:45539. doi: 10.1038/srep45539.
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The advent of animals: The view from the Ediacaran.动物的出现:来自埃迪卡拉纪的视角。
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Discovery of the oldest bilaterian from the Ediacaran of South Australia.发现于澳大利亚南部埃迪卡拉纪最古老的两侧对称动物化石。
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Deep-water first occurrences of Ediacara biota prior to the Shuram carbon isotope excursion in the Wernecke Mountains, Yukon, Canada.在加拿大育空地区沃纳克山脉的舒兰碳同位素漂移之前,深水中埃迪卡拉生物群的首次出现。
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Ancient steroids establish the Ediacaran fossil as one of the earliest animals.古甾醇将埃迪卡拉纪化石确定为最早的动物之一。
Science. 2018 Sep 21;361(6408):1246-1249. doi: 10.1126/science.aat7228. Epub 2018 Sep 20.

引用本文的文献

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A Reassessment of the Coprostane Biomarker in the Ediacaran With Implications for Dickinsonia.对埃迪卡拉纪粪甾烷生物标志物的重新评估及其对狄更逊水母的意义
Geobiology. 2025 Jul-Aug;23(4):e70029. doi: 10.1111/gbi.70029.

本文引用的文献

1
Discovery of the oldest bilaterian from the Ediacaran of South Australia.发现于澳大利亚南部埃迪卡拉纪最古老的两侧对称动物化石。
Proc Natl Acad Sci U S A. 2020 Apr 7;117(14):7845-7850. doi: 10.1073/pnas.2001045117. Epub 2020 Mar 23.
2
Slime travelers: Early evidence of animal mobility and feeding in an organic mat world.黏菌旅行者:有机垫世界中动物活动性和摄食的早期证据
Geobiology. 2019 Sep;17(5):490-509. doi: 10.1111/gbi.12351. Epub 2019 Jun 10.
3
Simple sediment rheology explains the Ediacara biota preservation.简单的沉积流变学解释了埃迪卡拉生物群的保存。
Nat Ecol Evol. 2019 Apr;3(4):582-589. doi: 10.1038/s41559-019-0820-7. Epub 2019 Mar 25.
4
Quantitative study of developmental biology confirms as a metazoan.发育生物学的定量研究证实其为后生动物。
Proc Biol Sci. 2017 Sep 13;284(1862). doi: 10.1098/rspb.2017.1348.
5
Highly regulated growth and development of the Ediacara macrofossil Dickinsonia costata.埃迪卡拉纪大型化石狄更逊水母(Dickinsonia costata)受到高度调控的生长与发育。
PLoS One. 2017 May 17;12(5):e0176874. doi: 10.1371/journal.pone.0176874. eCollection 2017.
6
Rheotaxis in the Ediacaran epibenthic organism Parvancorina from South Australia.在澳大利亚南部埃迪卡拉纪的表生生物 Parvancorina 中存在流态定向性。
Sci Rep. 2017 Mar 30;7:45539. doi: 10.1038/srep45539.
7
Reconstructing the reproductive mode of an Ediacaran macro-organism.重建埃迪卡拉纪大型生物的繁殖模式。
Nature. 2015 Aug 20;524(7565):343-6. doi: 10.1038/nature14646. Epub 2015 Aug 3.
8
The Cambrian conundrum: early divergence and later ecological success in the early history of animals.寒武纪之谜:动物早期历史中的早期分化和后来的生态成功。
Science. 2011 Nov 25;334(6059):1091-7. doi: 10.1126/science.1206375.
9
A placozoan affinity for Dickinsonia and the evolution of late Proterozoic metazoan feeding modes.后生动物对狄更逊水母的趋同进化以及晚元古代后生动物取食方式的演化。
Evol Dev. 2010 Mar-Apr;12(2):201-9. doi: 10.1111/j.1525-142X.2010.00404.x.
10
On the eve of animal radiation: phylogeny, ecology and evolution of the Ediacara biota.动物辐射前夕:埃迪卡拉生物群的系统发育、生态学与演化
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埃迪卡拉生物群段(南澳大利亚劳恩斯利石英岩)的埋藏学:对埃迪卡拉生物的沉积环境、生态学和生物学的启示

Biostratinomy of the Ediacara Member (Rawnsley Quartzite, South Australia): implications for depositional environments, ecology and biology of Ediacara organisms.

作者信息

Droser Mary L, Tarhan Lidya G, Evans Scott D, Surprenant Rachel L, Gehling James G

机构信息

Department of Earth and Planetary Sciences, University of California, Riverside, CA 92521, USA.

Department of Geology and Geophysics, Yale University, New Haven, CT 06511, USA.

出版信息

Interface Focus. 2020 Aug 6;10(4):20190100. doi: 10.1098/rsfs.2019.0100. Epub 2020 Jun 12.

DOI:10.1098/rsfs.2019.0100
PMID:32642047
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7333909/
Abstract

The Precambrian Ediacara Biota-Earth's earliest fossil record of communities of macroscopic, multicellular organisms-provides critical insights into the emergence of complex life on our planet. Excavation and reconstruction of nearly 300 m of fossiliferous bedding planes in the Ediacara Member of the Rawnsley Quartzite, at the National Heritage Ediacara fossil site Nilpena in South Australia, have permitted detailed study of the sedimentology, taphonomy and palaeoecology of Ediacara fossil assemblages. Characterization of Ediacara macrofossils and textured organic surfaces at the scale of facies, bedding planes and individual specimens has yielded unprecedented insight into the manner in which the palaeoenvironmental settings inhabited by Ediacara communities-particularly hydrodynamic conditions-influenced the aut- and synecology of Ediacara organisms, as well as the morphology and assemblage composition of Ediacara fossils. Here, we describe the manner in which environmental processes mediated the development of taphofacies hosting Ediacara fossil assemblages. Using two of the most common Ediacara Member fossils, and , as examples, we delineate criteria that can be used to distinguish between ecological, environmental and biostratinomic signals and reconstruct how interactions between these processes have distinctively shaped the Ediacara fossil record.

摘要

前寒武纪埃迪卡拉生物群——地球上最早的宏观多细胞生物群落化石记录——为我们深入了解地球上复杂生命的出现提供了关键线索。在南澳大利亚国家遗产埃迪卡拉化石遗址尼尔佩纳的罗恩斯利石英岩埃迪卡拉段,挖掘并重建了近300米富含化石的层面,从而得以对埃迪卡拉化石组合的沉积学、埋藏学和古生态学进行详细研究。在相、层面和单个标本尺度上对埃迪卡拉大型化石和有纹理的有机表面进行特征描述,使我们对埃迪卡拉生物群落所栖息的古环境背景——尤其是水动力条件——影响埃迪卡拉生物的自生态学和群落生态学的方式,以及埃迪卡拉化石的形态和组合构成有了前所未有的深入了解。在此,我们描述了环境过程介导含有埃迪卡拉化石组合的埋藏相发育的方式。以两种最常见的埃迪卡拉段化石和为例,我们划定了可用于区分生态、环境和生物地层信号的标准,并重建了这些过程之间的相互作用如何独特地塑造了埃迪卡拉化石记录。