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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >The role of coccolithophore calcification in bioengineering their environment
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The role of coccolithophore calcification in bioengineering their environment

机译:球墨石钙化在生物工程环境中的作用

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Coccolithophorids are enigmatic plankton that produce calcium carbonate coccoliths, which over geological time have buried atmospheric CO2 into limestone, changing both the atmosphere and geology of the Earth. However, the role of coccoliths for the proliferation of these organisms remains unclear; suggestions include roles in anti-predation, enhanced photosynthesis and sun-screening. Here we test the hypothesis that calcification stabilizes the pH of the seawater proximate to the organisms, providing a level of acidification countering the detrimental basification that occurs during net photosynthesis. Such bioengineering provides a more stable pH environment for growth and fits the empirical evidence for changes in rates of calcification under different environmental conditions. Under this scenario, simulations suggest that the optimal production ratio of inorganic to organic particulate C (PIC : POCprod) will be lower (by approx. 20%) with, ocean acidification and that overproduction of coccoliths in a future acidified ocean, where pH buffering is weaker, presents a risk to calcifying cells.
机译:球墨石藻是产生碳酸钙球石的神秘浮游生物,随着时间的推移,它们将大气中的CO2埋入石灰石中,从而改变了地球的大气和地质状况。然而,球藻在这些生物繁殖中的作用仍不清楚。建议包括在抗捕食,增强光合作用和防晒方面的作用。在这里,我们测试了钙化使生物附近的海水的pH值稳定的假设,提供了一定的酸化水平,以抵消净光合作用过程中发生的有害碱化。这种生物工程为生长提供了更稳定的pH环境,并为不同环境条件下钙化速率变化提供了经验证据。在这种情况下,模拟表明,随着海洋酸化以及未来pH缓冲的酸化海洋中可可石的过量生产,无机与有机颗粒碳(PIC:POCprod)的最佳生产比率将降低(降低约20%)。较弱,存在钙化细胞的风险。

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