首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Boron isotope systematics of cultured brachiopods: Response to acidification, vital effects and implications for palaeo-pH reconstruction
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Boron isotope systematics of cultured brachiopods: Response to acidification, vital effects and implications for palaeo-pH reconstruction

机译:培养的Brachiopods的硼同位素系统:对酸化,至关重要的影响和甘蔗 - pH重建影响的反应

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摘要

CO2-induced ocean acidification and associated decrease of seawater carbonate saturation state contributed to multiple environmental crises in Earth's history, and currently poses a major threat for marine calcifying organisms. Owing to their high abundance and good preservation in the Phanerozoic geological record, brachiopods present an advantageous taxon of marine calcifiers for palaeo-proxy applications as well as studies on biological mechanism to cope with environmental change. To investigate the geochemical and physiological responses of brachiopods to prolonged low-pH conditions we cultured Magellania venosa, Terebratella dorsata and Pajaudina atlantica under controlled experimental settings over a period of more than two years. Our experiments demonstrate that brachiopods form their calcite shells under strong biological control, which enables them to survive and grow under low-pH conditions and even in seawater strongly undersaturated with respect to calcite (pH = 7.35, Omega(cal) = 0.6). Using boron isotope (delta B-11) systematics including MC-ICP-MS as well as SIMS analyses, validated against in vivo microelectrode measurements, we show that this resilience is achieved by strict regulation of the calcifying fluid pH between the epithelial mantle and the shell. We provide a culture-based delta B-11-pH calibration, which as a result of the internal pH regulatory mechanisms deviates from the inorganic borate ion to pH relationship, but confirms a clear yet subtle pH dependency for brachiopods. At a micro-scale level, the incorporation of boron appears to be principally driven by a physiological gradient across the shell, where the delta B-11 values of the innermost calcite record the internal calcifying fluid pH while the composition of the outermost layers is also influenced by seawater pH. These findings are of consequence to studies on biomineralisation processes, physiological adaptations as well as past climate reconstructions. (C) 2019 The Authors. P
机译:二氧化碳诱导的海洋酸化和海水碳酸盐饱和状态的相关降低导致地球历史上的多种环境危机,目前对海洋钙化生物的重大威胁。由于其在彭卓古代地质记录中的高丰度和良好的保存,Brachiopods为帕拉诺 - 代理申请的海洋钙化剂的有利分类以及对应对环境变化的生物机制的研究。为了探讨Brachiopods对延长低pH病症的地球化学和生理反应,我们培养Magellania venosa,Terebratella Dorsata和Pajaudina atlantica在一个多年来的一个多年来的时间内。我们的实验表明,Brachiopods在强烈的生物控制下形成他们的方解石壳,这使得它们能够在低pH条件下存活并生长,即使在对方解石的海水中强烈呈现(pH = 7.35,Omega(Cal)= 0.6)。使用硼同位素(Delta B-11)系统,包括MC-ICP-MS以及SIMS分析,验证在体内微电极测量中,我们表明这种弹性是通过严格调节上皮披肩和所述贝壳。我们提供一种基于培养基的ΔB-11-pH校准,其由于内部pH调节机制偏离无机硼酸盐离子与pH值关系,但证实了对Brachiopods的清晰细微的pH依赖性。在微尺度水平上,硼的掺入似乎主要由穿过壳体的生理梯度驱动,其中最内心方解石的ΔB-11值记录内部钙化流体pH,而最外层的组成也是如此受海水pH的影响。这些发现结果对生物矿化过程研究,生理适应以及过去的气候重建。 (c)2019年作者。 P.

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