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Effect of ocean acidification on the early life stages of the blue mussel Mytilus edulis

机译:海洋酸化对蓝贻贝贻贝早期生命阶段的影响

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Several experiments have shown a decrease of growth and calcification of organisms at decreased pH levels. There is a growing interest to focus on early life stages that are believed to be more sensitive to environmental dis-turbances such as hypercapnia. Here, we present experimen-tal data, acquired in a commercial hatchery, demonstrating that the growth of planktonic mussel (Mytilus edulis) larvae is significantly affected by a decrease of pH to a level ex-pected for the end of the century. Even though there was no significant effect of a 0.25-0.34 pH unit decrease on hatching and mortality rates during the first 2 days of development nor during the following 13-day period prior to settlement, final shells were respectively 4.5± 1.3 and 6.0 ± 2.3% smaller at pH_(NBS)~7.8 (pCO_2~1100-1200μatm) than at a control pH_(NBS) of~8.1 (pCO_2 ~460-640 μatm). Moreover, a decrease of 12.0 ± 5.4% of shell thickness was observed after 15d of development. More severe impacts were found with a decrease of ~0.5 pH_(NBS) unit during the first 2 days of development which could be attributed to a decrease of calcification due to a slight undersaturation of seawater with respect to aragonite. Indeed, important effects on both hatching and D-veliger shell growth were found. Hatching rates were 24 ± 4% lower while D-veliger shells were 12.7 ± 0.9% smaller at pH_(NBS) ~7.6 (pCO_2 ~1900 μatm) than at a con-trol pH_(NBS) of ~8.1 (pCO_2 ~540 μatm). Although these results show that blue mussel larvae are still able to develop a shell in seawater undersaturated with respect to aragonite, the observed decreases of hatching rates and shell growth could lead to a significant decrease of the settlement success. As the environmental conditions considered in this study do not necessarily reflect the natural conditions experienced by this species at the time of spawning, future studies will need to consider the whole larval cycle (from fertilization to settlement) under environmentally relevant conditions in order to investigate the potential ecological and economical losses of a decrease of this species fitness in the field.
机译:一些实验表明,在降低的pH值下,生物的生长和钙化减少。人们越来越关注于人们认为对诸如高碳酸血症之类的环境干扰更为敏感的生命早期阶段。在这里,我们提供了在商业孵化场中获得的实验数据,表明浮游贻贝(Mytilus edulis)幼虫的生长受到pH降低至本世纪末预期水平的显着影响。即使在发育的前2天以及在沉降之前的接下来的13天期间,pH值降低0.25-0.34对孵化率和死亡率没有显着影响,最终壳分别为4.5±1.3和6.0±2.3在pH_(NBS)〜7.8(pCO_2〜1100-1200μatm)下比对照pH_(NBS)在〜8.1(pCO_2〜460-640μatm)下小%。此外,在显影15天后观察到壳厚度降低了12.0±5.4%。发现更严重的影响是在发育的前两天将pH_(NBS)单位降低约0.5,这可能是由于海水相对文石的稍微不饱和所致的钙化减少。确实,发现了对孵化和D-veliger壳生长的重要影响。在pH_(NBS)〜7.6(pCO_2〜1900μatm)时,孵化率降低24±4%,而D-veliger壳则比在〜8.1(pCO_2〜540μatm)的控制pH_(NBS)时小12.7±0.9% )。尽管这些结果表明,蓝贻贝幼虫仍然能够在相对于文石而言不饱和的海水中形成壳,但是观察到的孵化率和壳生长的下降可能导致沉降成功率的显着下降。由于本研究中考虑的环境条件不一定反映该物种在产卵时所经历的自然条件,因此未来的研究将需要考虑与环境相关的条件下的整个幼体周期(从受精到定居),以便调查田间该物种适应性下降的潜在生态和经济损失。

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