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Dissolution Dominating Calcification Process in Polar Pteropods Close to the Point of Aragonite Undersaturation

机译:在文石欠饱和点附近的极性翼足类中溶解主导的钙化过程

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摘要

Thecosome pteropods are abundant upper-ocean zooplankton that build aragonite shells. Ocean acidification results in the lowering of aragonite saturation levels in the surface layers, and several incubation studies have shown that rates of calcification in these organisms decrease as a result. This study provides a weight-specific net calcification rate function for thecosome pteropods that includes both rates of dissolution and calcification over a range of plausible future aragonite saturation states (Ωar). We measured gross dissolution in the pteropod Limacina helicina antarctica in the Scotia Sea (Southern Ocean) by incubating living specimens across a range of aragonite saturation states for a maximum of 14 days. Specimens started dissolving almost immediately upon exposure to undersaturated conditions (Ωar∼0.8), losing 1.4% of shell mass per day. The observed rate of gross dissolution was different from that predicted by rate law kinetics of aragonite dissolution, in being higher at Ωar levels slightly above 1 and lower at Ωar levels of between 1 and 0.8. This indicates that shell mass is affected by even transitional levels of saturation, but there is, nevertheless, some partial means of protection for shells when in undersaturated conditions. A function for gross dissolution against Ωar derived from the present observations was compared to a function for gross calcification derived by a different study, and showed that dissolution became the dominating process even at Ωar levels close to 1, with net shell growth ceasing at an Ωar of 1.03. Gross dissolution increasingly dominated net change in shell mass as saturation levels decreased below 1. As well as influencing their viability, such dissolution of pteropod shells in the surface layers will result in slower sinking velocities and decreased carbon and carbonate fluxes to the deep ocean.
机译:拟翅足类是丰富的上层海洋浮游动物,可形成文石壳。海洋酸化导致表层文石饱和度降低,一些孵化研究表明,这些生物的钙化速率因此降低。这项研究提供了一种重量特异性的翼足类净钙化速率函数,包括在一系列可能的未来文石饱和状态(Ωar)上的溶解速率和钙化速率。我们通过将生活标本在一系列文石饱和状态下孵育最多14天,来测量斯科特海(南部海洋)的翼足类Limacina helicina南极洲中的总溶出度。样品在暴露于不饱和条件下(Ωar〜0.8)几乎立即开始溶解,每天损失1.4%的壳质量。观测到的总溶出速率与文石溶出速率规律动力学所预测的不同,在略高于1的Ωar处较高,而在1至0.8之间的Ωar处较低。这表明壳质量甚至受过渡水平的饱和度影响,但是,即使在欠饱和条件下,也有部分保护壳的方法。将本观察结果得出的针对Ωar的总溶解度函数与另一项研究得出的针对总钙化的函数进行了比较,结果表明,即使在Ωar接近1的水平下,溶解也成为主要过程,而净壳层生长在Ωar处逐渐减小为1.03。当饱和度降低到低于1时,总溶出度逐渐成为控制壳质量净变化的主要因素。除了影响其生存能力外,翼足类壳在表层的这种溶解还将导致下沉速度降低,并降低进入深海的碳和碳酸盐通量。

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