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Seaweed fails to prevent ocean acidification impact on foraminifera along a shallow-water CO2 gradient

机译:海藻未能阻止海洋酸化沿浅水CO2梯度对有孔虫的影响

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摘要

Ocean acidification causes biodiversity loss, alters ecosystems, and may impact food security, as shells of small organisms dissolve easily in corrosive waters. There is a suggestion that photosynthetic organisms could mitigate ocean acidification on a local scale, through seagrass protection or seaweed cultivation, as net ecosystem organic production raises the saturation state of calcium carbonate making seawater less corrosive. Here, we used a natural gradient in calcium carbonate saturation, caused by shallow-water CO2 seeps in the Mediterranean Sea, to assess whether seaweed that is resistant to acidification (Padina pavonica) could prevent adverse effects of acidification on epiphytic foraminifera. We found a reduction in the number of species of foraminifera as calcium carbonate saturation state fell and that the assemblage shifted from one dominated by calcareous species at reference sites (pH ∼8.19) to one dominated by agglutinated foraminifera at elevated levels of CO2 (pH ∼7.71). It is expected that ocean acidification will result in changes in foraminiferal assemblage composition and agglutinated forms may become more prevalent. Although Padina did not prevent adverse effects of ocean acidification, high biomass stands of seagrass or seaweed farms might be more successful in protecting epiphytic foraminifera.
机译:海洋酸化会破坏生物多样性,改变生态系统,并可能影响粮食安全,因为小生物的壳很容易溶解在腐蚀性水中。有建议认为,由于净生态系统有机生产提高了碳酸钙的饱和状态,使海水的腐蚀性降低,光合生物可以通过保护海草或种植海藻来减轻海洋酸化。在这里,我们使用了地中海中浅水CO2渗漏引起的碳酸钙饱和度的自然梯度,来评估抗酸化的海藻(Padina pavonica)是否可以防止酸化对附生有孔虫的不利影响。我们发现,随着碳酸钙饱和状态的降低,有孔虫的种类减少,并且该组合从在参考点(pH 〜8.19)的钙质种占主导地位的一种转变为在CO2浓度升高(pH〜 7.71)。预计海洋酸化将导致有孔虫的组成组成发生变化,并且凝集形式可能会更加普遍。尽管Padina并不能防止海洋酸化的不利影响,但高生物量的海草或海藻养殖场在保护附生有孔虫方面可能更为成功。

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