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电鱼Brachyhypopomus pinnicaudatus电器官放电波形的可塑性。I. 昼夜变化的量化

Plasticity of the electric organ discharge waveform of the electric fish Brachyhypopomus pinnicaudatus. I. Quantification of day-night changes.

作者信息

Franchina C R, Stoddard P K

机构信息

Dept of Biological Sciences, Florida International University, Miami 33199, USA.

出版信息

J Comp Physiol A. 1998 Dec;183(6):759-68. doi: 10.1007/s003590050299.

Abstract

The electric organ discharge of the gymnotiform fish Brachyhypopomus pinnicaudatus is a biphasic waveform. The female's electric organ discharge is nearly symmetric but males produce a longer second phase than first phase. In this study, infrared-sensitive video cameras monitored the position of unrestrained fish, facilitating precise measurement of electric organ discharge duration and amplitude every 2 h for 24 h. Males (n = 27) increased electric organ discharge duration by 37 +/- 12% and amplitude by 24 +/- 9% at night and decreased it during the day. In contrast, females (n = 8) exhibited only minor electric organ discharge variation over time. Most of a male's increase occurred rapidly within the first 2-3 h of darkness. Electric organ discharge values gradually diminished during the second half of the dark period and into the next morning. Modulation of the second phase of the biphasic electric organ discharge produced most of the duration change in males, but both phases changed amplitude by similar amounts. Turning the lights off at mid-day triggered an immediate increase in electric organ discharge, suggesting modification of existing ion channels in the electric organ, rather than altered genomic expression. Exaggeration of electric organ discharge sex differences implies a social function. Daily reduction of duration and amplitude may reduce predation risk or energy expenditure.

摘要

裸背电鳗科鱼类短尾拟长臀电鳗的发电器官放电是一种双相波形。雌性的发电器官放电几乎是对称的,但雄性产生的第二阶段比第一阶段长。在本研究中,红外敏感摄像机监测了自由游动鱼类的位置,便于在24小时内每2小时精确测量一次发电器官放电的持续时间和幅度。雄性(n = 27)在夜间发电器官放电持续时间增加了37±12%,幅度增加了24±9%,而在白天则减少。相比之下,雌性(n = 8)的发电器官放电随时间变化较小。雄性的大部分增加在黑暗的前2 - 3小时内迅速发生。发电器官放电值在黑暗期的后半段及到第二天早晨逐渐减小。双相发电器官放电第二阶段的调制产生了雄性放电持续时间的大部分变化,但两个阶段的幅度变化量相似。中午关灯会立即引发发电器官放电增加,这表明是发电器官中现有离子通道的改变,而非基因组表达的改变。发电器官放电性别差异的扩大意味着一种社会功能。每日放电持续时间和幅度的减少可能会降低被捕食风险或能量消耗。

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