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Li/Mg systematics in scleractinian corals: Calibration of the thermometer

机译:巩膜珊瑚中的Li / Mg系统学:温度计的校准

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摘要

We show that the Li/Mg systematics of a large suite of aragonitic coral skeletons, representing a wide range of species inhabiting disparate environments, provides a robust proxy for ambient seawater temperature. The corals encompass both zooxanthellate and azooxanthellate species (Acropora sp., Porites sp., Cladocora caespitosa, Lophelia pertusa, Madrepora oculata and Flabellum impensum) collected from shallow, intermediate, and deep-water habitats, as well as specimens cultured in tanks under temperature-controlled conditions. The Li/Mg ratios observed in corals from these diverse tropical, temperate,\udand deep-water environments are shown to be highly correlated with temperature, giving an exponential emperature relationship of: Li/Mg (mmol/mol) = 5.41 exp (0.049 * T) (r2 = 0.975, n = 49). Based on the standard error of the Li/Mg versus temperature correlation, we obtain a typical precision of ±0.9 C for the wide range of species analysed, similar or better than that of other less robust coral temperature proxies such as Sr/Ca ratios.\udThe robustness and species independent character of the Li/Mg temperature proxy is shown to be the result of the normalization of Li to Mg, effectively eliminating the precipitation efficiency component such that temperature remains as the main controller of coral Li/Mg compositions. This is inferred from analysis of corresponding Li/Ca and Mg/Ca ratios with both ratios showing strong microstructure-related co-variations between the fibrous aragonite and centres of calcification, a characteristic that we attribute to varying physiological controls on growth rate. Furthermore, Li/Ca ratios show an offset between more rapidly growing zooxanthellate and azooxanthellate corals, and hence only an approximately inverse relationship to seawater temperature. Mg/Ca ratios show very strong physiological controls on growth rate but no significant dependence with temperature, except possibly for Acropora sp. and Porites sp. A strong positive correlation is nevertheless found between Li/Ca and Mg/Ca ratios at similar temperatures, indicating that both Li and Mg are subject to control by similar growth mechanisms, specifically the mass fraction of aragonite precipitated during calcification, which is shown to be consistent\udwith a Rayleigh-based elemental fractionation model.\udThe highly coherent array defined by Li/Mg versus temperature is thus largely independent of coral calcification mechanisms, with the strong temperature dependence reflecting the greater sensitivity of the Kd\udLi/Ca partition coefficient relative to Kd Mg/Ca. Accordingly, Li/Mg ratios exhibit a highly coherent exponential correlation with temperature, thereby\udproviding a more robust tool for reconstructing paleo-seawater temperatures.
机译:我们表明,Li / Mg系统化的一大组芦荟珊瑚骨架代表了生活在不同环境中的各种物种,为环境海水温度提供了可靠的替代。珊瑚包括从浅水,中水和深水生境收集的人畜共患藻和偶氮恶藻物种(Acropora sp。,Porites sp。,Cladocora caespitosa,Lophelia pertusa,Madrepora oculata和Flabellum impensum),以及在温度下在池中培养的标本。控制的条件。在这些不同的热带,温带,深水和深水环境中的珊瑚中观察到的Li / Mg比率与温度高度相关,从而给出指数幂关系:Li / Mg(mmol / mol)= 5.41 exp(0.049 * T)(r2 = 0.975,n = 49)。根据Li / Mg与温度相关性的标准误差,对于所分析的各种物种,我们获得的典型精度为±0.9 C,与其他较不强壮的珊瑚温度代理(例如Sr / Ca之比)相似或更好。 \ udLi / Mg温度替代物的鲁棒性和物种独立性表明是Li到Mg归一化的结果,有效消除了降水效率成分,因此温度仍然是珊瑚Li / Mg组成的主要控制者。这是通过分析相应的Li / Ca和Mg / Ca比率得出的,这两种比率均显示出纤维文石与钙化中心之间存在与微观结构相关的强烈共变,这是我们对生长速率进行生理控制的一个特征。此外,Li / Ca比值显示出生长较快的虫黄藻和偶氮黄藻珊瑚之间的偏移,因此与海水温度仅成反比关系。 Mg / Ca比对生长速率显示出非常强的生理控制力,但对温度没有明显的依赖性,除了可能对Acropora sp.。和Porites sp。然而,在相似的温度下,Li / Ca和Mg / Ca的比值之间存在很强的正相关性,这表明Li和Mg都受到相似的生长机制的控制,特别是钙化过程中沉淀的文石的质量分数。 \ ud与基于Rayleigh的元素分级模型一致。\ ud因此,Li / Mg对温度定义的高度相干阵列在很大程度上独立于珊瑚钙化机制,强烈的温度依赖性反映了Kd \ udLi / Ca分配系数的更高灵敏度相对于Kd Mg / Ca。因此,Li / Mg比与温度呈现出高度连贯的指数相关性,从而\\提供了用于重建古海水温度的更强大的工具。

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