Mills A, Zakon H H
Department of Zoology, University of Texas, Austin 78712.
J Neurosci. 1991 Aug;11(8):2349-61. doi: 10.1523/JNEUROSCI.11-08-02349.1991.
The quasi-sinusoidal electric organ discharge (EOD) of the weakly electric fish Sternopygus is involved in communication and orientation. Each monophasic pulse of the low-intensity EOD is a compound action potential (AP) from the simultaneously firing electrocytes of the electric organ. EOD frequency is lower and EOD pulse duration longer in sexually mature males than in sexually mature females; exogenous androgen lowers EOD frequency and increases EOD pulse duration. In order to determine the contribution of single electrocyte spikes to the entire EOD pulse, APs were induced by intracellular current injection in single electrocytes of isolated pieces of electric organ. Each AP looks very similar to the externally recorded EOD pulses, and AP duration (APD) is significantly correlated with EOD pulse duration (r = 0.48; p less than 0.0005). The APD is slightly longer when compared to the EOD pulse duration, but this difference is likely due to the stimulation paradigm. Fish treated with dihydrotestosterone showed a decrease in EOD frequency, increase in EOD pulse duration, and corresponding increase in APD; control fish showed random, insignificant changes in EOD wave form and APD. Evidence presented here shows that changes in the passive membrane properties are unlikely to be responsible for the APD increase. The possibility is discussed that androgens act directly upon the electric organ, ultimately altering the ionic currents that produce the AP.
弱电鱼裸背电鳗的准正弦电器官放电(EOD)参与通讯和定向。低强度EOD的每个单相脉冲都是来自电器官中同时放电的电细胞的复合动作电位(AP)。性成熟雄性的EOD频率较低,EOD脉冲持续时间较长,而性成熟雌性则相反;外源性雄激素会降低EOD频率并增加EOD脉冲持续时间。为了确定单个电细胞尖峰对整个EOD脉冲的贡献,通过细胞内电流注入在分离的电器官片的单个电细胞中诱导产生AP。每个AP看起来与外部记录的EOD脉冲非常相似,并且AP持续时间(APD)与EOD脉冲持续时间显著相关(r = 0.48;p小于0.0005)。与EOD脉冲持续时间相比,APD略长,但这种差异可能是由于刺激模式所致。用二氢睾酮处理的鱼表现出EOD频率降低、EOD脉冲持续时间增加以及相应的APD增加;对照鱼的EOD波形和APD则出现随机的、不显著的变化。此处提供的证据表明,被动膜特性的变化不太可能是APD增加的原因。文中讨论了雄激素直接作用于电器官,最终改变产生AP的离子电流的可能性。