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Response of the Arctic Pteropod Limacina helicina to Projected Future Environmental Conditions

机译:北极翼足类天蛾对预期的未来环境条件的响应

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摘要

Thecosome pteropods (pelagic mollusks) can play a key role in the food web of various marine ecosystems. They are a food source for zooplankton or higher predators such as fishes, whales and birds that is particularly important in high latitude areas. Since they harbor a highly soluble aragonitic shell, they could be very sensitive to ocean acidification driven by the increase of anthropogenic CO2 emissions. The effect of changes in the seawater chemistry was investigated on Limacina helicina, a key species of Arctic pelagic ecosystems. Individuals were kept in the laboratory under controlled pCO2 levels of 280, 380, 550, 760 and 1020 µatm and at control (0°C) and elevated (4°C) temperatures. The respiration rate was unaffected by pCO2 at control temperature, but significantly increased as a function of the pCO2 level at elevated temperature. pCO2 had no effect on the gut clearance rate at either temperature. Precipitation of CaCO3, measured as the incorporation of 45Ca, significantly declined as a function of pCO2 at both temperatures. The decrease in calcium carbonate precipitation was highly correlated to the aragonite saturation state. Even though this study demonstrates that pteropods are able to precipitate calcium carbonate at low aragonite saturation state, the results support the current concern for the future of Arctic pteropods, as the production of their shell appears to be very sensitive to decreased pH. A decline of pteropod populations would likely cause dramatic changes to various pelagic ecosystems.
机译:翼足类(浮游软体动物)可以在各种海洋生态系统的食物网中发挥关键作用。它们是浮游动物或鱼类,鲸鱼和鸟类等高等捕食者的食物来源,在高纬度地区尤其重要。由于它们具有高度可溶的芦荟壳,因此它们对人为二氧化碳排放量增加驱动的海洋酸化非常敏感。研究了海水化学变化对北极浮游生态系统的重要物种Limacina helicina的影响。将个体保持在280、380、550、760和1020 µatm的受控pCO2水平下,并保持在对照(0°C)和升高的温度(4°C)下。在控制温度下,呼吸速率不受pCO2的影响,但在升高的温度下,呼吸速率显着增加,是pCO2水平的函数。在任何一个温度下,pCO2对肠道清除率均无影响。在两个温度下,以 45 Ca的掺入量衡量的CaCO3沉淀量均显着下降,这是pCO2的函数。碳酸钙沉淀的减少与文石饱和状态高度相关。尽管这项研究表明翼足类动物能够在低文石饱和状态下沉淀碳酸钙,但结果仍支持当前对北极翼足类动物未来的关注,因为其壳的生产对降低的pH值非常敏感。翼足类种群的减少可能会导致各种中上层生态系统发生巨大变化。

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