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Response of Chrysaora quinquecirrha medusae to low temperature

机译:水母Chrysaora quinquecirrha medusae对低温的响应

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Because of their high abundance in Chesapeake Bay, Chrysaora quinquecirrha medusae may be an important reservoir of organic matter. The timing and location of the decomposition of biomass from medusae may have implications for carbon cycling in the bay. Our objective was to identify the cause of C. quinquecirrha medusa disappearance to better understand when and where decomposition occurs. A time series of visual surface counts and vertical net hauls in the Choptank River, a tributary of Chesapeake Bay, showed that as temperatures approached 15°C, C. quinquecirrha medusae disappeared from the surface, but persisted in net hauls until temperatures reached 10°C. In order to test whether medusae sink upon cooling, we exposed C. quinquecirrha medusae to low temperatures in large static tanks and measured their depth and pulsation rates twice daily for at least 6 days. This procedure was repeated three times through the 2008 jellyfish season. On average, individuals exposed to temperatures below 15°C were found deeper and pulsed slower than those in the warmer control tank. This suggests that low temperatures cause the medusae to sink before cooling to the limit of their physiological tolerance and may have implications for the deposition of organic matter associated with the seasonal disappearance of medusae from Chesapeake Bay.
机译:由于其在切萨皮克湾的丰度很高,西洋Chrysaora quinquecirrha medusae可能是重要的有机物库。水母分解生物质的时机和位置可能对海湾中的碳循环有影响。我们的目标是确定水产美杜鹃消失的原因,以便更好地了解何时何地发生分解。切萨皮克湾的一条支流Choptank河中的视觉表面计数和垂直净拖拉的时间序列显示,随着温度接近15°C,西洋梭菌从表面消失,但持续净拖拉直到温度达到10°C C。为了测试水母是否在冷却后下沉,我们在大型静态​​水箱中将水母美杜鹃(C. quinquecirrha medusae)暴露于低温下,并至少两次每天两次测量其深度和脉动率。整个过程在2008年的水母季节中重复了3次。平均而言,暴露于低于15°C的温度的人比处于温暖状态的控制池中的人更深,脉动更慢。这表明低温导致美杜莎在冷却至其生理耐受性极限之前下沉,并可能影响与切萨皮克湾美杜莎的季节性消失有关的有机物沉积。

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