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海洋酸化导致箱形水母 Carybdea xaymacana 的水螅体阶段死亡。

Ocean acidification causes mortality in the medusa stage of the cubozoan Carybdea xaymacana.

机构信息

Department of Biological Sciences, Bishop's University, Sherbrooke, QC, J1M 1Z7, Canada.

Smithsonian Marine Station, Fort Pierce, FL, USA.

出版信息

Sci Rep. 2019 Apr 4;9(1):5622. doi: 10.1038/s41598-019-42121-0.

Abstract

Ocean pH is decreasing due to anthropogenic activities, and the consequences of this acidification on marine fauna and ecosystems are the subject of an increasing number of studies. Yet, the impact of ocean acidification (OA) on several abundant and ecologically important taxa, such as medusozoans, is poorly documented. To date there have been no studies on the effect of post-2050 OA projections on the medusa stage of jellyfish. As medusae represent the reproductive stage of cnidarians, negative impacts on adult jellyfish could severely impact the long-term survival of this group. Using a laboratory experiment, we investigated the effect of 2300 OA projections (i.e. pH of 7.5) on the mortality rate of the medusa-stage of the cubozoan species Carybdea xaymacana, compared to ambient seawater pH conditions (i.e. pH of 8.1). After a 12-h exposure to OA, C. xaymacana medusae suffered higher mortality rates compared to ambient conditions. This study represents the first evidence of the potential lethal effects of post-2050 OA projections on jellyfish. The higher metabolic rates of cubozoans compared to other cnidarians might make box jellyfish more vulnerable to OA. A decrease in the density of cnidarians could lead to harmful ecological events, such as algal blooms.

摘要

由于人为活动,海洋的 pH 值正在下降,海洋酸化对海洋动物区系和生态系统的影响是越来越多研究的主题。然而,海洋酸化(OA)对一些丰富且具有重要生态意义的类群,如水母类,的影响却鲜有记录。迄今为止,还没有研究过 2050 年后 OA 预测对水母阶段水母的影响。由于水母体代表刺胞动物的生殖阶段,对成年水母的负面影响可能严重影响该群体的长期生存。我们使用实验室实验,研究了 2300 年 OA 预测(即 pH 值为 7.5)对箱形水母物种 Carybdea xaymacana 水母体阶段死亡率的影响,与环境海水 pH 值条件(即 pH 值为 8.1)相比。在暴露于 OA 12 小时后,C. xaymacana 水母体的死亡率高于环境条件。这项研究代表了 2050 年后 OA 预测对水母潜在致命影响的第一个证据。与其他刺胞动物相比,箱形水母的代谢率更高,这可能使箱形水母更容易受到 OA 的影响。刺胞动物密度的减少可能导致有害的生态事件,如藻类大量繁殖。

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