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鲶鱼 Silurus glanis 的能量消耗存在昼夜双相性。

Diel dualism in the energy consumption of the European catfish Silurus glanis.

机构信息

Water Research Institution TGM Prague, Podbabská 30, Prague 6, Czech Republic.

出版信息

J Fish Biol. 2012 Dec;81(7):2223-34. doi: 10.1111/j.1095-8649.2012.03436.x. Epub 2012 Sep 7.

DOI:10.1111/j.1095-8649.2012.03436.x
PMID:23252736
Abstract

Twenty individuals of the largest European freshwater predator, the European catfish Silurus glanis, were tagged with electromyogram (EMG) physiological telemetry sensors. The fish were observed during diel cycles during the spring and summer in the Elbe and Berounka Rivers, Czech Republic. The purpose of this study was to determine whether diel dualism in the activity of S. glanis occurs naturally or is induced by the laboratory environment and by the conditions occurring in aquaculture. The results obtained from the riverine environment tended to show dualism in the use of the light and dark phases of the day because 35% of the individuals varied from a site-specific common diel activity pattern. The EMG values increased in accordance with the mass (M) of the fish. To eliminate the influence of M on individual energy consumption, the EMG records were analysed in terms of the EMG:M ratios. High individual variability was found in these ratios. The diel activity pattern of the individuals with relatively high energy consumption differed from the common diel activity pattern. In contrast, the fish that adopted the common diel activity pattern displayed relatively low energy consumption. The results of this study indicated that dualism and energy consumption are related. The EMG values also varied with the values of the environmental variables. Increasing temperature was associated with high EMG values, whereas the EMG values decreased with increasing flow.

摘要

20 条欧洲最大的淡水捕食者——欧鲶 Silurus glanis 个体被标记上肌电图(EMG)生理遥测传感器。这些鱼在捷克共和国易北河和贝龙卡河的春夏两季的昼夜周期中被观察。本研究的目的是确定 S. glanis 的昼夜双相活动是自然发生的,还是由实验室环境和水产养殖中的条件诱导的。从河流环境中获得的结果倾向于表明昼夜双相性的存在,因为 35%的个体表现出与特定地点常见的昼夜活动模式不同的变化。EMG 值随着鱼的体重(M)的增加而增加。为了消除 M 对个体能量消耗的影响,根据 EMG:M 比值分析 EMG 记录。这些比值中发现了很高的个体变异性。能量消耗相对较高的个体的昼夜活动模式与常见的昼夜活动模式不同。相比之下,采用常见昼夜活动模式的鱼则显示出相对较低的能量消耗。本研究的结果表明,昼夜双相性和能量消耗是相关的。EMG 值也随环境变量的值而变化。温度升高与 EMG 值升高有关,而 EMG 值随流量增加而降低。

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