首页> 外文期刊>The Journal of Experimental Biology >Serotonin modulates the electric waveform of the gymnotiform electric fish Brachyhypopomus pinnicaudatus
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Serotonin modulates the electric waveform of the gymnotiform electric fish Brachyhypopomus pinnicaudatus

机译:5-羟色胺调节裸not形电鱼Brachyhypopomus pinnicaudatus的电波形

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The gymnotiform electric fish Brachyhypopomus pinnicaudatus communicates with a sexually dimorphic electric waveform, the electric organ discharge (EOD). Males display pronounced circadian. rhythms in the amplitude and duration of their EODs. Changes in the social environment influence the magnitudes of these circadian rhythms and also produce more transient responses in the EOD waveforms. Here we show that injections of serotonin produce quick, transient, dose-dependent enhancements of the male EOD characters similar to those induced by encounters with another male. The response to serotonin administered peripherally begins 5-10 min post injection and lasts approximately 3 h. The magnitude of the response to serotonin is tightly associated with the magnitude of the day-to-night swing of the circadian rhythm prior to injection. Taken together these findings suggest that the male's social environment influences his response to serotonin by altering the function of some part of the downstream chain between the serotonin receptors and the ion channels involved in control of the EOD waveform. Although chronic activation of serotonin circuitry is widely known to elicit subordinate behavior, we find that 5-HT initially increases a dominance signal in these fish. These findings are consistent with the emerging view that serotonin facilitates different adaptive responses to acute and chronic social challenge and stress. [References: 38]
机译:裸not形电鱼Brachyhypopomus pinnicaudatus与性二态性电波,即电子器官放电(EOD)通信。雄性显示明显的昼夜节律。 EOD的幅度和持续时间的节奏。社会环境的变化会影响这些昼夜节律的幅度,并且还会在EOD波形中产生更多的瞬态响应。在这里,我们显示了5-羟色胺的注射产生的雄性EOD性状快速,短暂,剂量依赖性增强,类似于与另一雄性相识所致。注射后5-10分钟开始对周围施用的5-羟色胺的反应持续约3小时。对5-羟色胺的反应幅度与注射前昼夜节律的昼夜波动幅度紧密相关。综上所述,这些发现表明,男性的社会环境通过改变血清素受体与控制EOD波形所涉及的离子通道之间的下游链的某些部分的功能,影响了其对血清素的反应。尽管众所周知5-羟色胺电路的慢性激活会引起下属行为,但我们发现5-HT最初会增加这些鱼的优势信号。这些发现与新出现的观点一致,即5-羟色胺促进对急性和慢性社会挑战和压力的不同适应性反应。 [参考:38]

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