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海水酸化会影响夜光游水母刺细胞的渗透肿胀、调节性体积减小和放电。

Sea water acidification affects osmotic swelling, regulatory volume decrease and discharge in nematocytes of the jellyfish Pelagia noctiluca.

作者信息

Morabito Rossana, Marino Angela, Lauf Peter K, Adragna Norma C, La Spada Giuseppa

机构信息

Dept. of Human and Social Sciences, University of Messina, Messina, Italy.

出版信息

Cell Physiol Biochem. 2013;32(7):77-85. doi: 10.1159/000356629. Epub 2013 Dec 18.

Abstract

BACKGROUND

Increased acidification/PCO2 of sea water is a threat to the environment and affects the homeostasis of marine animals. In this study, the effect of sea water pH changes on the osmotic phase (OP), regulatory volume decrease (RVD) and discharge of the jellyfish Pelagia noctiluca (Cnidaria, Scyphozoa) nematocytes, collected from the Strait of Messina (Italy), was assessed.

METHODS

Isolated nematocytes, suspended in artificial sea water (ASW) with pH 7.65, 6.5 and 4.5, were exposed to hyposmotic ASW of the same pH values and their osmotic response and RVD measured optically in a special flow through chamber. Nematocyte discharge was analyzed in situ in ASW at all three pH values.

RESULTS

At normal pH (7.65), nematocytes subjected to hyposmotic shock first expanded osmotically and then regulated their cell volume within 15 min. Exposure to hyposmotic ASW pH 6.5 and 4.5 compromised the OP and reduced or totally abrogated the ensuing RVD, respectively. Acidic pH also significantly reduced the nematocyte discharge response.

CONCLUSION

Data indicate that the homeostasis and function of Cnidarians may be altered by environmental changes such as sea water acidification, thereby validating their use as novel bioindicators for the quality of the marine environment.

摘要

背景

海水酸化/二氧化碳分压升高对环境构成威胁,并影响海洋动物的体内平衡。在本研究中,评估了海水pH值变化对从意大利墨西拿海峡采集的夜光游水母(刺胞动物门,钵水母纲)刺细胞的渗透相(OP)、调节性体积减小(RVD)和排放的影响。

方法

将分离的刺细胞悬浮于pH值为7.65、6.5和4.5的人工海水中,使其暴露于相同pH值的低渗人工海水中,并在一个特殊的流通池中通过光学方法测量其渗透反应和调节性体积减小。在所有三个pH值下,在人工海水中原位分析刺细胞的排放情况。

结果

在正常pH值(7.65)下,遭受低渗冲击的刺细胞首先发生渗透性膨胀,然后在15分钟内调节其细胞体积。暴露于pH值为6.5和4.5的低渗人工海水中分别损害了渗透相,并分别降低或完全消除了随后的调节性体积减小。酸性pH值也显著降低了刺细胞的排放反应。

结论

数据表明,诸如海水酸化等环境变化可能会改变刺胞动物的体内平衡和功能,从而验证了它们作为海洋环境质量新型生物指标的用途。

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