First multi-proxy chronostratigraphy of the lower Cambrian Byrd Group, Transantarctic Mountains and correlation within East Gondwana

IF 7.2 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Gondwana Research Pub Date : 2024-08-23 DOI:10.1016/j.gr.2024.07.022
Marissa J. Betts , Thomas M. Claybourn , Lars E. Holmer , Christian B. Skovsted , Paul M. Myrow , Lars Stemmerik , Timothy P. Topper , Tae-Yoon S. Park , Nigel C. Hughes , James L. Crowley , Elizabeth A. Jagodzinski , Glenn A. Brock
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Abstract

Antarctica and Australia were sutured together at the equator during the major pulse of animal biodiversification associated with the Cambrian radiation. However, the lack of detailed systematic chemostratigraphic and biostratigraphic sampling of lower Cambrian sedimentary successions from Antarctica has significantly impeded precise age determination and correlation with Cambrian strata on other palaeocontinents. This study is the first to present integrated, simultaneously sampled biostratigraphic and chemostratigraphic (δ13C isotopes) data from the same measured stratigraphic sections through the lower Cambrian Byrd Group in the Transantarctic Mountains. Shelly fossil assemblages (brachiopods, tommotiids, molluscs, bradoriids, trilobites) from the Holyoake Range and Churchill Mountains facilitate direct correlation with the Dailyatia odyssei Zone of South Australia (Cambrian Stages 3–4), and trilobites provide strong correlation between the Starshot Formation and the Cymbric Vale Formation in western New South Wales. A new ID-TIMS radiometric date of 514.96 ± 0.16 Ma from a tuff in the lower Cymbric Vale Formation is similar to dates from tuff beds in the Third Plain Creek Member of the Mernmerna Formation in the Flinders Ranges, providing an important absolute-age tie point between these lower Cambrian successions. Chemostratigraphic data from the upper Shackleton Limestone in the Holyoake Range capture a negative δ13C excursion that can be correlated to negative values within the multi-peaked MICE (cycles V–VIII in Siberia). Integrated faunal and chemostratigraphic data indicate a Cambrian Stages 3–4 age, giving robust chronostratigraphic context for the upper Shackleton Limestone–Holyoake Formation–Starshot Formation succession for the first time, permitting reconstruction of the depositional history of the lower Cambrian of Antarctica and global correlation of Byrd Group strata.

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跨南极山脉下寒武纪伯德群首次多代理年代地层学研究及东冈瓦纳内部的相关性
在与寒武纪辐射相关的动物生物多样化大潮中,南极洲和澳大利亚在赤道缝合在一起。然而,由于缺乏对南极洲下寒武统沉积统进行详细系统的化学地层学和生物地层学取样,这极大地阻碍了精确年龄的确定以及与其他古大陆寒武纪地层的关联。本研究首次从横贯南极山脉的下寒武统伯德组的同一测量地层剖面中同时采集生物地层学和化学地层学(δ13C 同位素)的综合数据。来自霍利约克山脉和丘吉尔山脉的雪莱化石群(腕足动物、瘤齿类、软体动物、腕足动物、三叶虫)有助于与南澳大利亚的Dailyatia odyssei区(寒武纪第3-4期)直接相关,而三叶虫则为新南威尔士州西部的Starshot地层和Cymbric Vale地层提供了强有力的相关性。来自 Cymbric Vale Formation 下层凝灰岩的新 ID-TIMS 放射性测定日期为 514.96 ± 0.16 Ma,与来自弗林德斯山脉 Mernmerna Formation 第三平原溪岩层凝灰岩床的日期相似,为这些下寒武纪演替之间提供了一个重要的绝对年代联系点。来自霍利约克山脉上部沙克尔顿石灰岩的化学地层学数据捕捉到了负的δ13C偏移,该偏移可与多峰MICE(西伯利亚的周期V-VIII)中的负值相关联。动物和化学地层学综合数据显示了寒武纪第 3-4 阶段的年龄,首次为上沙克尔顿石灰岩-霍利约克地层-斯塔肖特地层演替提供了可靠的年代地层学背景,从而可以重建南极洲下寒武纪的沉积历史以及伯德群地层的全球相关性。
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来源期刊
Gondwana Research
Gondwana Research 地学-地球科学综合
CiteScore
12.90
自引率
6.60%
发文量
298
审稿时长
65 days
期刊介绍: Gondwana Research (GR) is an International Journal aimed to promote high quality research publications on all topics related to solid Earth, particularly with reference to the origin and evolution of continents, continental assemblies and their resources. GR is an "all earth science" journal with no restrictions on geological time, terrane or theme and covers a wide spectrum of topics in geosciences such as geology, geomorphology, palaeontology, structure, petrology, geochemistry, stable isotopes, geochronology, economic geology, exploration geology, engineering geology, geophysics, and environmental geology among other themes, and provides an appropriate forum to integrate studies from different disciplines and different terrains. In addition to regular articles and thematic issues, the journal invites high profile state-of-the-art reviews on thrust area topics for its column, ''GR FOCUS''. Focus articles include short biographies and photographs of the authors. Short articles (within ten printed pages) for rapid publication reporting important discoveries or innovative models of global interest will be considered under the category ''GR LETTERS''.
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