K/Pg的边界是一个单一的事件吗?对全球孢粉记录的回顾表明,情况并非如此,这可能具有广泛的意义

Q3 Earth and Planetary Sciences
K. Berry
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引用次数: 4

摘要

阿根廷巴塔哥尼亚的白垩纪/古近纪(K/Pg)边界Classopollis花粉“穗”被视为一个单一事件,在世界其他任何地方都没有类似的同时代事件。然而,对全球孢粉学记录的回顾表明,以前在阿根廷科罗拉多盆地和中国塔里木盆地报道过类似的K/Pg边界Classopolis尖峰,涉及单轴类C.classoides(Pflug)Pocock和Jansonius组合,这表明这是一种全球现象。该形态分类单元在北美洲西部丹尼阶地层中的存在,此前被解释为Laramide造山运动期间较古老的前土仑纪(即三叠纪至早白垩纪)沉积物改造的证据。这一假设似乎得到了当代碎屑锆石研究结果以及花粉物理降解的支持。然而,在这篇综述的基础上,人们对这种花粉的所有丹尼阶实例,特别是来自煤矿床的花粉,都是从更古老的沉积物中重新形成的解释提出了质疑。在这种背景下,还考虑了关于产Classopolis的Cheirolepidiaceae神秘政变的各种假设,特别是Cheirolebidiaceae的生态分布被收回以包括xeric、高地栖息地(例如落基山脉)或半咸水的假设,白垩纪晚期和大年期生理上干燥的栖息地(例如炮弹海边缘)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Was the K/Pg boundary Classopollis ‘spike’ a singular event? A review of global palynological records suggests otherwise, with potentially broad implications
The Cretaceous/Paleogene (K/Pg) boundary Classopollis pollen “spike” in Patagonia, Argentina, is viewed as a singular event with no coeval analog anywhere else in the world. Review of global palynological records, however, reveals that similar K/Pg boundary Classopollis spikes involving monotaxial C. classoides (Pflug) Pocock and Jansonius assemblages have previously been reported from the Colorado Basin, Argentina, as well as the Tarim Basin, China, suggesting that this was a global phenomenon. The presence of this morphotaxon in the Danian strata of western North America has previously been interpreted as evidence of reworking from older, pre-Turonian (i.e., Triassic through Early Cretaceous) sediments during the Laramide orogeny. This hypothesis appears supported by the results of contemporary detrital zircon studies coupled with the physical degradation of pollen. However, the interpretation that all Danian examples of this pollen, particularly those from coal deposits, have been reworked from much older sediments is questioned on the basis of this review. Within this context, assorted hypotheses regarding the enigmatic coup de grâce of Classopollis-producing Cheirolepidiaceae are also considered, particularly the hypotheses that the ecologic distribution of Cheirolepidiaceae retracted to include xeric, upland habitats (e.g., the Rocky Mountains) or brackish-water, physiologically dry habitats (e.g., the margin of the Cannonball Sea) during the Late Cretaceous and Danian.
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来源期刊
Rocky Mountain Geology
Rocky Mountain Geology Earth and Planetary Sciences-Geology
CiteScore
1.10
自引率
0.00%
发文量
4
期刊介绍: Rocky Mountain Geology (formerly Contributions to Geology) is published twice yearly by the Department of Geology and Geophysics at the University of Wyoming. The focus of the journal is regional geology and paleontology of the Rocky Mountains and adjacent areas of western North America. This high-impact, scholarly journal, is an important resource for professional earth scientists. The high-quality, refereed articles report original research by top specialists in all aspects of geology and paleontology in the greater Rocky Mountain region.
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