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Ocean acidification does not alter grazing in the calanoid copepods Calanus finmarchicus and Calanus glacialis

机译:海洋酸化不会改变calanoid桡足类Calanus finmarchicus和Calanus glacialis的放牧

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摘要

It is currently under debate whether organisms that regulate their acid–base status under environmental hypercapnia demand additional energy. This could impair animal fitness, but might be compensated for via increased ingestion rates when food is available. No data are yet available for dominant Calanus spp. from boreal and Arctic waters. To fill this gap, we incubated Calanus glacialis at 390, 1120, and 3000 µatm for 16 d with Thalassiosira weissflogii (diatom) as food source on-board RV Polarstern in Fram Strait in 2012. Every 4 d copepods were subsampled from all CO2 treatments and clearance and ingestion rates were determined. During the SOPRAN mesocosm experiment in Bergen, Norway, 2011, we weekly collected Calanus finmarchicus from mesocosms initially adjusted to 390 and 3000 matm CO2 and measured grazing at low and high pCO2. In addition, copepods were deep frozen for body mass analyses. Elevated pCO2 did not directly affect grazing activities and body mass, suggesting that the copepods did not have additional energy demands for coping with acidification, neither during long-term exposure nor after immediate changes in pCO2. Shifts in seawater pH thus do not seem to challenge these copepod species.
机译:目前在辩论中,在环境高碳酸血症下调节其酸碱状态的生物体是否需要额外的能量。这可能会损害动物的适应能力,但如果有食物,则可以通过增加摄食率来弥补。尚无主要Calanus spp的数据。来自北方和北极水域。为了填补这一空白,我们于2012年在法拉姆海峡以藻类北极熊作为食物来源,在390、1120和3000 µatm的条件下将glacialis甘蓝在16 d内孵育,并以Thalassiosira weissflogii(硅藻)作为食物来源。确定清除率和摄入率。在2011年在挪威卑尔根进行的SOPRAN中观试验中,我们每周从最初调节为390和3000 matm CO2的中观收集了finmarchicus alan鱼,并测量了低pCO2和高pCO2时的放牧。此外,将pe足动物深冻以进行体重分析。升高的pCO2不会直接影响放牧活动和体重,这表明co足类动物在长期暴露期间或pCO2立即变化后都没有额外的能量来应对酸化。因此,海水pH值的变化似乎并未挑战这些co足类物种。

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