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在模拟运输实验中牙鲆对丁香油的麻醉效果及生理反应

Anesthetic Effect and Physiological Response in Olive Flounder () to Clove Oil in a Simulated Transport Experiment.

作者信息

Gil Hyun Woo, Ko Min Gyun, Lee Tae Ho, Park In-Seok, Kim Dong Soo

机构信息

Division of Marine Bioscience, College of Ocean Science and Technology, Korea Maritime and Ocean University, Busan 606-791, Korea.

Institute of Marine Living Modified Organism (iMLMO), Pukyung National University, Busan 608-737, Korea.

出版信息

Dev Reprod. 2016 Sep;20(3):255-266. doi: 10.12717/DR.2016.20.3.255.

Abstract

The optimum concentrations of clove oil as an anesthetic for olive flounder () and the stress response of the fish to clove oil anesthesia were determined over a range of water temperatures, and investigated in a simulated transport experiment using analysis of various water and physiological parameters. While the time for induction of anesthesia decreased significantly as both the concentration of clove oil and water temperature increased, the recovery time increased significantly (<0.05). The plasma cortisol concentration in fish at each temperature increased significantly up to 12 h following exposure (<0.05), then decreased to 48 h (<0.05). The DO dissolved oxygen concentrations, pH values, and the fish respiratory frequencies decreased over 6 h following exposure to clove oil in all experimental groups (<0.05), whereas the NH and COconcentrations in all experimental groups increased up to 6 h (<0.05). The pH values and DO concentrations increased with increasing clove oil concentration (<0.05) in the 6 h following exposure, and the CO and NH concentrations and the respiratory frequencies decreased with increasing clove oil concentration (<0.05). The results of this experiment suggest that clove oil reduced the metabolic activity of olive flounder, thus reducing NH excretion and O consumption. In conclusion, clove oil appears to be a cost-effective and efficient anesthetic that is safe for use and non-toxic to the fish and users. Its use provides the potential for improved transportation of olive flounder.

摘要

在一系列水温条件下,测定了丁香酚作为牙鲆麻醉剂的最佳浓度以及牙鲆对丁香酚麻醉的应激反应,并通过分析各种水质和生理参数,在模拟运输实验中进行了研究。随着丁香酚浓度和水温的升高,麻醉诱导时间显著缩短,但恢复时间显著延长(<0.05)。在各温度下,牙鲆血浆皮质醇浓度在暴露后12小时内显著升高(<0.05),然后在48小时内下降(<0.05)。在所有实验组中,暴露于丁香酚后6小时内,溶解氧(DO)浓度、pH值和鱼的呼吸频率均下降(<0.05),而所有实验组中的氨(NH)和二氧化碳(CO)浓度在6小时内均升高(<0.05)。暴露后6小时内,pH值和DO浓度随丁香酚浓度的增加而升高(<0.05),而CO和NH浓度以及呼吸频率随丁香酚浓度的增加而降低(<0.05)。本实验结果表明,丁香酚降低了牙鲆的代谢活性,从而减少了氨的排泄和氧气的消耗。总之,丁香酚似乎是一种经济高效的麻醉剂,使用安全,对鱼和使用者无毒。其使用为改善牙鲆的运输提供了潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af1b/5078151/ad2ff60093e3/DR-20-255-g001.jpg

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