Coccoliths as Recorders of Paleoceanography and Paleoclimate over the Past 66 Million Years

IF 11.3 1区 地球科学 Q1 ASTRONOMY & ASTROPHYSICS Annual Review of Earth and Planetary Sciences Pub Date : 2024-12-23 DOI:10.1146/annurev-earth-040623-103211
Clara T. Bolton, Heather M. Stoll
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Abstract

Coccolithophores are a major group of oceanic calcifying phytoplankton, and their calcite skeletal remains, termed calcareous nannofossils, are a major component of deep-sea sediments accumulating since the Jurassic. Coccolithophores play a role in both the biological pump and the carbonate pump, exporting organic and inorganic carbon, respectively, out of the surface ocean. This means that they are key responders to and recorders of ocean carbon cycle and climate changes over geological and shorter timescales, and studying these responses can help elucidate the uncertain fate of calcifying phytoplankton under projected climate change scenarios. Here, we review established and emerging approaches for reconstructing (a) mixed-layer ocean temperature, (b) marine productivity, and (c) aspects of the ocean carbon cycle, using calcareous nannofossils from deep-sea sediments. For each parameter, we discuss the different proxies that have been proposed, based on abundance or species composition, inorganic geochemistry, and/or coccolith morphology, and explore their applications and limitations in Cenozoic paleoceanography. Calcareous nannofossils can be used to reconstruct upper ocean conditions and changes over centennial to million-year timescales. Key coccolith-based proxies for temperature, productivity, and the carbon cycle are reviewed. Approaches based on assemblages, geochemistry, and morphology provide novel insights into the evolution and adaptation of coccolithophores and past climate.
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过去6600万年的古海洋学和古气候的记录器——球粒岩
球石藻是海洋钙化浮游植物的主要类群,其方解石骨架残骸被称为钙质纳米化石,是侏罗纪以来深海沉积物的主要组成部分。球石藻在生物泵和碳酸盐泵中发挥作用,分别从海洋表面输出有机碳和无机碳。这意味着它们是海洋碳循环和气候变化在地质和较短时间尺度上的关键响应者和记录者,研究这些响应可以帮助阐明在预测的气候变化情景下钙化浮游植物的不确定命运。在这里,我们回顾了利用深海沉积物中的钙质纳米化石重建(a)混合层海洋温度,(b)海洋生产力和(c)海洋碳循环方面的现有方法和新兴方法。对于每一个参数,我们讨论了基于丰度或物种组成、无机地球化学和/或球粒岩形态的不同代用指标,并探讨了它们在新生代古海洋学中的应用和局限性。■钙质纳米化石可用于重建上层海洋的条件和百年至百万年时间尺度的变化。▪回顾了温度、生产力和碳循环的主要基于球粒岩的指标。▪基于组合、地球化学和形态学的方法为研究球石藻的进化和适应以及过去的气候提供了新的见解。
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来源期刊
Annual Review of Earth and Planetary Sciences
Annual Review of Earth and Planetary Sciences 地学天文-地球科学综合
CiteScore
25.10
自引率
0.00%
发文量
25
期刊介绍: Since its establishment in 1973, the Annual Review of Earth and Planetary Sciences has been dedicated to providing comprehensive coverage of advancements in the field. This esteemed publication examines various aspects of earth and planetary sciences, encompassing climate, environment, geological hazards, planet formation, and the evolution of life. To ensure wider accessibility, the latest volume of the journal has transitioned from a gated model to open access through the Subscribe to Open program by Annual Reviews. Consequently, all articles published in this volume are now available under the Creative Commons Attribution (CC BY) license.
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