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首页> 外文期刊>Marine Environmental Research >Effects of seawater chemistry (Mg~(2+)/Ca~(2+) ratio) and diet on the skeletal Mg/Ca ratio in the common sea urchin Paracentrotus lividus
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Effects of seawater chemistry (Mg~(2+)/Ca~(2+) ratio) and diet on the skeletal Mg/Ca ratio in the common sea urchin Paracentrotus lividus

机译:海水化学(Mg〜(2 +)/ Ca〜(2+)比例)和饮食对常见海胆Paracentrotus lividus骨骼Mg / Ca比例的影响

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摘要

It has been argued that concentration of major metallic ions such as Mg2+ and Ca2+ plays a role in determining the composition of the echinoderm skeleton. Consequently, in several studies Mg/Ca ratio from modern and fossil echinoderm ossicles was used as a proxy of secular Mg2+/Ca2+ changes of Phanerozoic seawater. However, although significant progress has been made in understanding biomineralization of echinoderms, it is still largely unknown what are the sources and physiological pathways of major ions that contribute to skeleton formation. Herein we tested the effects of modifications of ambient seawater Mg2+/Ca2+ ratio (which is typically similar to 5) and Mg-enrichment of the diet on the Mg/Ca ratio in regenerating spines of sea urchin Paracentrotus lividus under experimental conditions. We found that sea urchins cultured in seawater with Mg2+/Ca2+ ratio decreased to similar to 1.9 produced a skeleton with also decreased Mg/Ca ratio. However, the skeleton of specimens fed on a Mg-enriched diet showed significantly higher Mg/Ca ratio. This suggests that the seawater is an important but not the only source of ions that contributes to the Mg/Ca ratio of the skeleton. Consequently, the reliability of geochemical models that link directly seawater chemistry with the Mg/Ca ratio of the skeleton should be reevaluated.
机译:有人认为,主要金属离子如Mg2 +和Ca2 +的浓度在决定棘皮动物骨架的组成中起着作用。因此,在一些研究中,现代和化石棘皮骨小骨的Mg / Ca比值被用来替代生代海水的长期Mg2 + / Ca2 +变化。然而,尽管在了解棘皮动物的生物矿化方面已取得了重大进展,但仍然很大程度上未知哪些主要离子会导致骨骼形成,其主要来源和生理途径是什么。在本文中,我们在实验条件下测试了再生海胆淡水鲈的刺中环境海水中Mg2 + / Ca2 +比值的变化(通常与5相似)和日粮中Mg富集对Mg / Ca比值的影响。我们发现,在海水中以Mg2 + / Ca2 +比率降低至与1.9相似的海胆产生的骨架中Mg / Ca比率也降低。但是,饲喂富含镁的饮食的标本的骨骼显示出明显更高的Mg / Ca比。这表明海水是重要的离子来源,但不是唯一的离子来源,有助于骨骼的Mg / Ca比值。因此,应重新评估直接将海水化学与骨架的Mg / Ca比联系起来的地球化学模型的可靠性。

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