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Novel observations on biomineralization processes in foraminifera and implications for Mg/Ca ratio in the shells

机译:有孔虫生物矿化过程的新发现及其对壳中镁/钙比的影响

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摘要

Stable isotopes and trace elements in foraminifera shells are important for determining the paleochemistry of the ocean, and Mg/Ca ratios and delta(18)O values in foraminifera have recently been used to determine simultaneously the temperature and salinity of past oceans. However, large variations between species and significant Mg intra-shell heterogeneity indicate a major role for biological factors in determining the Mg/Ca ratio in foraminifera. Our novel in vivo observations on the biomineralization process of perforate foraminifera show that their calcareous wall is composed of two different calcite types: a thin, high-Mg primary layer, and low-Mg layers that cover the primary layer on both sides. The data may suggest that two biomineralization pathways are employed in the formation of the different calcite types. A new conceptual framework is provided to explain part of the Mg heterogeneity in foraminiferal shells and the variable sensitivity of the Mg/Ca ratio to temperature in different species.
机译:有孔虫壳中的稳定同位素和微量元素对于确定海洋的古化学非常重要,最近,有孔虫中的Mg / Ca比值和delta(18)O值已用于同时确定过去海洋的温度和盐度。但是,物种之间的巨大差异和显着的Mg壳内异质性表明,生物学因素在确定有孔虫中Mg / Ca的比例中起着重要作用。我们对有孔有孔虫的生物矿化过程的新颖体内观察表明,它们的钙质壁由两种不同的方解石类型组成:薄的高镁主层和覆盖两侧主层的低镁层。数据表明在不同方解石类型的形成中采用了两种生物矿化途径。提供了一个新的概念框架来解释有孔虫壳中的镁异质性的一部分,以及不同物种中镁/钙比对温度的可变敏感性。

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