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Reduced calcification in modern Southern Ocean planktonic foraminifera

机译:现代南洋浮游有孔虫的钙化减少

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Anthropogenic carbon dioxide has been accumulating in the oceans, lowering both the concentration of carbonate ions and the pH (ref. 1), resulting in the acidification of sea water. Previous laboratory experiments have shown that decreased carbonate ion concentrations cause many marine calcareous organisms to show reduced calcification rates(2-5). If these results are widely applicable to ocean settings, ocean acidification could lead to ecosystem shifts. Planktonic foraminifera are single-celled calcite-secreting organisms that represent between 25 and 50% of the total open-ocean marine carbonate flux(6) and influence the transport of organic carbon to the ocean interior(7). Here we compare the shell weights of the modern foraminifer Globigerina bulloides collected from sediment traps in the Southern Ocean with the weights of shells preserved in the underlying Holocene-aged sediments. We find that modern shell weights are 30-35% lower than those from the sediments, consistent with reduced calcification today induced by ocean acidification. We also find a link between higher atmospheric carbon dioxide and low shell weights in a 50,000-year-long record obtained from a Southern Ocean marine sediment core. It is unclear whether reduced calcification will affect the survival of this and other species, but a decline in the abundance of foraminifera caused by acidification could affect both marine ecosystems and the oceanic uptake of atmospheric carbon dioxide.
机译:人为二氧化碳一直在海洋中积聚,降低了碳酸根离子的浓度和pH值(参考文献1),导致海水酸化。以前的实验室实验表明,碳酸根离子浓度的降低会导致许多海洋钙质生物的钙化率降低(2-5)。如果这些结果广泛适用于海洋环境,那么海洋酸化可能导致生态系统发生变化。浮游有孔虫是单细胞方解石分泌生物,占开阔海洋碳酸盐通量总量的25%至50%(6),并影响有机碳向海洋内部的运输(7)。在这里,我们比较了从南大洋沉积物收集器收集的现代有孔虫Globigerina Bulloides的壳重与保留在全新世年龄沉积物中的壳重。我们发现现代壳的重量比沉积物的重量低30-35%,这与当今由海洋酸化引起的钙化减少有关。从南方海洋海洋沉积物核心获得的长达50,000年的记录中,我们还发现了较高的大气二氧化碳与低壳重之间的联系。目前尚不清楚钙化的减少是否会影响该物种和其他物种的生存,但是由酸化引起的有孔虫数量的减少会影响海洋生态系统和海洋对大气中二氧化碳的吸收。

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