首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The role of seawater endocytosis in the biomineralization process in calcareous foraminifera
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The role of seawater endocytosis in the biomineralization process in calcareous foraminifera

机译:钙质有孔虫在生物矿化过程中海水内吞作用的作用

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摘要

Foraminifera are unicellular organisms that inhabit the oceans in various ecosystems. The majority of the foraminifera precipitate calcitic shells and are among the major CaCO_3 producers in the oceans. They comprise an important component of the global carbon cycle and also provide valuable paleoceanographic information based on the relative abundance of stable isotopes and trace elements (proxies) in their shells. Understanding the biomineralization processes in foraminifera is important for predicting their calcification response to ocean acidification and for reliable interpretation of the paleoceanographic proxies. Most models of biomineralization invoke the involvement of membrane ion transporters (channels and pumps) in the delivery of Ca~(2+) and other ions to the calcification site. Here we show, in contrast, that in the benthic foraminiferan Amphistegina lobifera, (a shallow water species), transport of seawater via fluid phase endocytosis may account for most of the ions supplied to the calcification site. During their intracellular passage the seawater vacuoles undergo alkalization that elevates the CO_3~(2-) concentration and further enhances their calcifying potential. This mechanism of biomineralization may explain why many calcareous foraminifera can be good recorders of paleoceanographic conditions. It may also explain the sensitivity to ocean acidification that was observed in several planktonic and benthic species.
机译:有孔虫是单细胞生物,栖息在各种生态系统的海洋中。大多数有孔虫会沉淀钙质壳,并且是海洋中主要的CaCO_3产生者。它们是全球碳循环的重要组成部分,并且基于壳中稳定同位素和微量元素(代理)的相对丰度,还提供了有价值的古海洋学信息。了解有孔虫的生物矿化过程对于预测其对海洋酸化的钙化反应以及可靠地解释古海洋学代理很重要。大多数生物矿化模型都将膜离子转运蛋白(通道和泵)牵涉到Ca〜(2+)和其他离子向钙化部位的输送中。相比之下,我们在这里表明,在底栖有孔虫Amphistegina lobifera(一种浅水物种)中,通过液相内吞作用输送的海水可能占提供给钙化部位的大部分离子。在它们的细胞内通过期间,海水液泡经历碱化,这升高了CO_3〜(2-)的浓度并进一步增强了它们的钙化潜力。这种生物矿化的机制可以解释为什么许多钙质有孔虫可以成为古海洋学条件的良好记录者。它也可以解释在几种浮游和底栖物种中观察到的对海洋酸化的敏感性。

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