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Effect of trace metal availability on coccolithophorid calcification

机译:微量金属有效性对球墨镜钙化的影响

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The deposition of atmospheric dust into the ocean has varied considerably over geological time(1,2). Because some of the trace metals contained in dust are essential plant nutrients which can limit phytoplankton growth in parts of the ocean, it has been suggested that variations in dust supply to the surface ocean might influence primary production(3,4). Whereas the role of trace metal availability in photosynthetic carbon fixation has received considerable attention, its effect on biogenic calcification is virtually unknown. The production of both particulate organic carbon and calcium carbonate (CaCO3) drives the ocean's biological carbon pump. The ratio of particulate organic carbon to CaCO3 export, the so-called rain ratio, is one of the factors determining CO2 sequestration in the deep ocean. Here we investigate the influence of the essential trace metals iron and zinc on the prominent CaCO3-producing microalga Emiliania huxleyi. We show that whereas at low iron concentrations growth and calcification are equally reduced, low zinc concentrations result in a de-coupling of the two processes. Despite the reduced growth rate of zinc-limited cells, CaCO3 production rates per cell remain unaffected, thus leading to highly calcified cells. These results suggest that changes in dust deposition can affect biogenic calcification in oceanic regions characterized by trace metal limitation, with possible consequences for CO2 partitioning between the atmosphere and the ocean.
机译:大气中尘埃在海洋中的沉积随着地质时间的变化而变化很大(1,2)。由于粉尘中所含的某些微量金属是植物的必需养分,可以限制海洋部分地区浮游植物的生长,因此有人提出,表层海洋粉尘供应的变化可能会影响初级生产(3,4)。尽管微量金属的可用性在光合作用碳固定中的作用已受到相当多的关注,但其对生物钙化的影响实际上是未知的。颗粒有机碳和碳酸钙(CaCO3)的产生驱动着海洋的生物碳泵。颗粒状有机碳与CaCO3出口的比率,即所谓的降雨比率,是决定深海中CO2封存的因素之一。在这里,我们研究了必需的痕量金属铁和锌对产生CaCO3的微藻Emiliania huxleyi的影响。我们表明,在低铁浓度下,生长和钙化均会降低,而低锌浓度会导致两个过程脱钩。尽管锌限制细胞的生长速率降低,但每个细胞的CaCO3产生速率仍不受影响,从而导致高度钙化的细胞。这些结果表明,尘埃沉积物的变化会影响以痕量金属为特征的海洋区域的生物钙化,可能会影响大气和海洋之间的二氧化碳分配。

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