The Paleocene record of marine diatoms in deep-sea sediments

IF 1.9 4区 地球科学 Q1 PALEONTOLOGY Fossil Record Pub Date : 2018-08-20 DOI:10.5194/FR-21-183-2018
J. Renaudie, Effi-Laura Drews, S. Böhne
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引用次数: 9

Abstract

Abstract. Marine planktonic diatoms, as today's ocean main carbon and silicon exporters, are central to developing an understanding of the interplay between the evolution of marine life and climate change. The diatom fossil record extends as far as the Early Cretaceous, and the late Paleogene to Recent interval is relatively complete and well documented. Their early Paleogene record, when diatoms first expanded substantially in the marine plankton, is hampered by decreased preservation (notably an episode of intense chertification in the early Eocene) as well as by observation bias. In this article, we attempt to correct for the latter by collecting diatom data in various Paleocene samples from legacy Deep Sea Drilling Project and Ocean Drilling Program deep-sea sediment sections. The results show a different picture from what previous analyses concluded, in that the Paleocene deep-sea diatoms seem in fact to have been as diverse and abundant as in the later Eocene, while exhibiting very substantial survivorship of Cretaceous species up until the Eocene.
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深海沉积物中海洋硅藻的古新世记录
摘要作为当今海洋主要的碳和硅出口国,海洋浮游硅藻是理解海洋生物进化与气候变化之间相互作用的核心。硅藻化石记录最早可追溯到白垩纪早期,古近纪晚期至新近纪的间隔相对完整且有充分的记录。当硅藻首次在海洋浮游生物中大量扩张时,他们的古近纪早期记录受到了保存减少(尤其是始新世早期的一次强烈的硅化)以及观测偏差的阻碍。在这篇文章中,我们试图通过收集来自传统深海钻探项目和海洋钻探项目深海沉积物剖面的各种古新世样本中的硅藻数据来纠正后者。结果显示,与之前的分析得出的结论不同,古新世深海硅藻实际上似乎与始新世晚期一样多样和丰富,同时在始新世之前,白垩纪物种的生存率非常高。
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来源期刊
Fossil Record
Fossil Record PALEONTOLOGY-
CiteScore
3.60
自引率
7.10%
发文量
18
审稿时长
14 weeks
期刊介绍: Fossil Record (FR) is the palaeontological journal of the Museum für Naturkunde Berlin. This journal was founded in 1998 under the name Mitteilungen aus dem Museum für Naturkunde Berlin, Geowissenschaftliche Reihe and appears with two issues each year. Fossil Record publishes original papers in all areas of palaeontology including the taxonomy and systematics of fossil organisms, biostratigraphy, palaeoecology, and evolution. All taxonomic groups are treated, including invertebrates, microfossils, plants, and vertebrates.
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