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海洋浮游生物钙化减少以应对大气中二氧化碳增加。

Reduced calcification of marine plankton in response to increased atmospheric CO2.

作者信息

Riebesell U, Zondervan I, Rost B, Tortell P D, Zeebe R E, Morel F M

机构信息

Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, Germany.

出版信息

Nature. 2000 Sep 21;407(6802):364-7. doi: 10.1038/35030078.

DOI:10.1038/35030078
PMID:11014189
Abstract

The formation of calcareous skeletons by marine planktonic organisms and their subsequent sinking to depth generates a continuous rain of calcium carbonate to the deep ocean and underlying sediments. This is important in regulating marine carbon cycling and ocean-atmosphere CO2 exchange. The present rise in atmospheric CO2 levels causes significant changes in surface ocean pH and carbonate chemistry. Such changes have been shown to slow down calcification in corals and coralline macroalgae, but the majority of marine calcification occurs in planktonic organisms. Here we report reduced calcite production at increased CO2 concentrations in monospecific cultures of two dominant marine calcifying phytoplankton species, the coccolithophorids Emiliania huxleyi and Gephyrocapsa oceanica. This was accompanied by an increased proportion of malformed coccoliths and incomplete coccospheres. Diminished calcification led to a reduction in the ratio of calcite precipitation to organic matter production. Similar results were obtained in incubations of natural plankton assemblages from the north Pacific ocean when exposed to experimentally elevated CO2 levels. We suggest that the progressive increase in atmospheric CO2 concentrations may therefore slow down the production of calcium carbonate in the surface ocean. As the process of calcification releases CO2 to the atmosphere, the response observed here could potentially act as a negative feedback on atmospheric CO2 levels.

摘要

海洋浮游生物形成钙质骨骼并随后下沉至深处,这使得碳酸钙不断地落入深海及下层沉积物中。这对于调节海洋碳循环和海洋 - 大气二氧化碳交换至关重要。当前大气中二氧化碳水平的上升导致表层海洋的pH值和碳酸盐化学发生显著变化。这些变化已被证明会减缓珊瑚和珊瑚藻的钙化过程,但大多数海洋钙化发生在浮游生物中。在此,我们报告了在两种主要的海洋钙化浮游植物物种——颗石藻赫氏艾氏藻和大洋桥石藻的单种培养中,随着二氧化碳浓度升高,方解石产量降低。与此同时,畸形颗石和不完整球石囊的比例增加。钙化作用减弱导致方解石沉淀与有机质产生的比例降低。当北太平洋的自然浮游生物组合暴露于实验性升高的二氧化碳水平下时,也得到了类似的结果。我们认为,大气中二氧化碳浓度的逐渐增加可能会因此减缓表层海洋中碳酸钙的产生。由于钙化过程会向大气中释放二氧化碳,此处观察到的这种反应可能会对大气二氧化碳水平起到负反馈作用。

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