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首页> 外文期刊>Global change biology >Physiological response of the copepod Pseudocalanus sp in the Baltic Sea at different thermal scenarios
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Physiological response of the copepod Pseudocalanus sp in the Baltic Sea at different thermal scenarios

机译:thermal足类Pseudocalanus sp在波罗的海在不同温度下的生理响应

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摘要

We studied the physiological response of Pseudocalanus sp. under four different temperature elevation regimes: +0, +2, +4 and +6 degrees C above the decadal average temperature in the Western Baltic Sea. We measured fecal pellet (FP) production rates, which was taken as a proxy of ingestion, egg production (EPR) and respiration rates. Experiments lasted from mid-February to end April, corresponding most of the observations to the postspring bloom phase. We combined small scale incubations with the use of big (ca. 1400 L) mesocosms, which have previously been shown to be appropriate when studying phyto- and zooplankton succession, and the water used for the incubations was taken from the mesocosm tanks. Given that the phytoplankton succession varied between the four thermal scenarios, we evaluated (excepting in the case of the respiration rates, where incubations were carried out using 0.2 mu m filtered water) both the temperature and the associated food concentration effects. Respiration and ingestion rates were found to increase with temperature. As for EPR, they also increased with temperature during the bloom, but remained at low and constant values during the postbloom in all the four treatments due to the food limitation. Linked to the temperature rise, we also detected an increase in instantaneous mortality rates and a reduction in the net growth efficiency. Finally, we discuss the potential implications of our findings for the spring phyto- and zooplankton succession under the forecasted climate warming, as well as for the fisheries in the Baltic Sea, where Pseudocalanus sp. is a key species.
机译:我们研究了假单胞菌属的生理反应。在四种不同的温度升高方式下:西波罗的海的年代际平均温度之上的+ 0,+ 2,+ 4和+6摄氏度。我们测量了粪便颗粒(FP)的产生速率,将其作为摄食,产卵量(EPR)和呼吸速率的代表。实验从2月中旬持续到4月底,大部分观测结果都与后开花期有关。我们将小规模的孵化与大型(约1400 L)的中型膜结合起来使用,这在研究浮游植物和浮游动物的演替时已被证明是合适的,并且用于孵化的水取自中型膜池。鉴于浮游植物的演替在这四个热环境之间有所不同,我们评估了温度和相关食物浓度的影响(除了呼吸速率的情况,其中呼吸是使用0.2微米过滤水进行的。发现呼吸和摄食率随温度增加。至于EPR,它们在开花期间也随温度升高而上升,但由于食物限制,在所有四种处理中的开花后均保持在较低且恒定的值。与温度升高相关,我们还发现瞬时死亡率增加,净生长效率下降。最后,我们讨论了我们的发现对预测的气候变暖下春季浮游植物和浮游动物演替的潜在影响,以及对波多黎各海(Pseudocalanus sp。)的渔业的潜在影响。是关键物种。

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