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DOI10.1016/j.earscirev.2023.104384
High-resolution Early Triassic ammonoid biostratigraphy of South Tibet, China and implications for global correlations
Dai, Xu; Brayard, Arnaud; Ware, David; Jiang, Shouyi; Li, Mingtao; Wang, Fengyu; Liu, Xiaokang; Song, Haijun
发表日期2023
ISSN0012-8252
EISSN1872-6828
卷号239
英文摘要Ammonoids are key fossil indexes for Triassic biochronology, as all Triassic stages and substages were initially defined on ammonoid faunas. In recent decades, the temporal resolution of ammonoid biostratigraphical scales for the Early Triassic has been greatly improved. However, many uncertainties in zones correlation and super-positions remain, mainly due to sampling heterogeneities, preservation biases, and faunal endemicity. In this work, we present the first comprehensive Early Triassic ammonoid zonation from South Tibet, China, a previ-ously poorly investigated region. Ammonoids were sampled from the Kangshare Formation at four sections (Selong, Paizi, Qubu and Xialong), representing a total of 140 species, ranging from the Griesbachian to the Smithian. These new robust data allow the construction of a high-resolution biostratigraphy using the Unitary Association (UA) method. A total of 22 Unitary Association zones (UAZs) were recognized, including two UAZs for the Griesbachian, nine for the Dienerian, and 11 for the Smithian. Then, we integrated data from neighboring basins, i.e., Spiti (India) and the Salt Range (Pakistan), and the new data from South Tibet to construct synthetic, laterally reproducible Dienerian-Smithian ammonoid UAZs, which include 12 UAZs for the Dienerian and 16 UAZs for the Smithian. Based on the newly obtained data and high-resolution biostratigraphic scales, we revised global correlations known for the ammonoid biostratigraphy in the Griesbachian, Dienerian and Smithian. Finally, the high-resolution ammonoid zones are generally in agreement with conodont zones in defining stage/ substage boundaries. They also provide a robust and accurate time calibration for Early Triassic carbon isotope trends and temperature changes.
关键词South TibetNeotethysUnitary Association zoneGriesbachianDienerianSmithian
英文关键词SELONG XISHAN SECTION; PERMIAN BRACHIOPODS; QUBUERGA FORMATION; OSAWA FORMATION; KITAKAMI BELT; NORTHWESTERN GUANGXI; DIVERSITY DYNAMICS; QOMOLANGMA REGION; XIZANG TIBET; ELKO COUNTY
WOS研究方向Geosciences, Multidisciplinary
WOS记录号WOS:000957778800001
来源期刊EARTH-SCIENCE REVIEWS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/282618
作者单位China University of Geosciences - Wuhan; Centre National de la Recherche Scientifique (CNRS); Universite de Bourgogne; Leibniz Institut fur Evolutions und Biodiversitatsforschung; Linyi University
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GB/T 7714
Dai, Xu,Brayard, Arnaud,Ware, David,et al. High-resolution Early Triassic ammonoid biostratigraphy of South Tibet, China and implications for global correlations[J],2023,239.
APA Dai, Xu.,Brayard, Arnaud.,Ware, David.,Jiang, Shouyi.,Li, Mingtao.,...&Song, Haijun.(2023).High-resolution Early Triassic ammonoid biostratigraphy of South Tibet, China and implications for global correlations.EARTH-SCIENCE REVIEWS,239.
MLA Dai, Xu,et al."High-resolution Early Triassic ammonoid biostratigraphy of South Tibet, China and implications for global correlations".EARTH-SCIENCE REVIEWS 239(2023).
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