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解读单个有孔虫的镁钙比和稳定氧同位素的变异性

Deciphering the Variability in Mg/Ca and Stable Oxygen Isotopes of Individual Foraminifera.

作者信息

Groeneveld Jeroen, Ho Sze Ling, Mackensen Andreas, Mohtadi Mahyar, Laepple Thomas

机构信息

Alfred Wegener Institute Helmholtz Center for Polar and Marine Research Potsdam Germany.

MARUM-Center for Marine Environmental Sciences University of Bremen Bremen Germany.

出版信息

Paleoceanogr Paleoclimatol. 2019 May;34(5):755-773. doi: 10.1029/2018PA003533. Epub 2019 May 11.

DOI:10.1029/2018PA003533
PMID:31423481
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6686659/
Abstract

Foraminifera are commonly used in paleoclimate reconstructions as they occur throughout the world's oceans and are often abundantly preserved in the sediments. Traditionally, foraminifera-based proxies like δO and Mg/Ca are analyzed on pooled specimens of a single species. Analysis of single specimens of foraminifera allows reconstructing climate variability on timescales related to El Niño-Southern Oscillation or seasonality. However, quantitative calibrations between the statistics of individual foraminifera analyses (IFA) and climate variability are still missing. We performed Mg/Ca and δO measurements on single specimens from core top sediments from different settings to better understand the signal recorded by individual foraminifera. We used three species of planktic foraminifera (Globigerinoidesruber (s.s.), . , and . ) from the Indo-Pacific Warm Pool and one species (G. ruber (pink)) from the Gulf of Mexico. Mean values for the different species of Mg/Ca versus calculated δO temperatures agree with published calibration equations. IFA statistics (both mean and standard deviation) of Mg/Ca and δO between the different sites show a strong relationship indicating that both proxies are influenced by a common factor, most likely temperature variations during calcification. This strongly supports the use of IFA to reconstruct climate variability. However, our combined IFA data for the different species only show a weak relationship to seasonal and interannual temperature changes, especially when seasonal variability increases at a location. This suggests that the season and depth habitat of the foraminifera strongly affect IFA variability, such that ecology needs to be considered when reconstructing past climate variability.

摘要

有孔虫在古气候重建中被广泛使用,因为它们遍布世界海洋,并且常常大量保存在沉积物中。传统上,基于有孔虫的指标,如δO和Mg/Ca,是在单个物种的混合样本上进行分析的。对有孔虫单个样本的分析能够重建与厄尔尼诺-南方涛动或季节性相关时间尺度上的气候变异性。然而,单个有孔虫分析(IFA)统计数据与气候变异性之间的定量校准仍然缺失。我们对来自不同环境的岩芯顶部沉积物中的单个样本进行了Mg/Ca和δO测量,以更好地理解单个有孔虫所记录的信号。我们使用了来自印度-太平洋暖池的三种浮游有孔虫(球型半方球虫(狭义)、……和……)以及来自墨西哥湾的一种(粉红色球型半方球虫)。不同物种的Mg/Ca平均值与计算出的δO温度值与已发表的校准方程相符。不同地点之间Mg/Ca和δO的IFA统计数据(均值和标准差)显示出很强的相关性,这表明这两个指标都受到一个共同因素的影响,很可能是钙化过程中的温度变化。这有力地支持了使用IFA来重建气候变异性。然而,我们针对不同物种的综合IFA数据与季节性和年际温度变化之间仅显示出微弱的关系,特别是当一个地点的季节性变异性增加时。这表明有孔虫的季节和深度栖息地强烈影响IFA变异性,因此在重建过去的气候变异性时需要考虑生态学因素。

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