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睾酮和 11-酮睾酮对雄性短盖巨脂鲤的电通讯信号有不同的调节作用。

Testosterone and 11-ketotestosterone have different regulatory effects on electric communication signals of male Brachyhypopomus gauderio.

机构信息

Department of Biological Sciences, Florida International University, Miami, FL 33199, USA.

出版信息

Horm Behav. 2011 Jul;60(2):139-47. doi: 10.1016/j.yhbeh.2011.03.014. Epub 2011 May 8.

Abstract

The communication signals of electric fish can be dynamic, varying between the sexes on a circadian rhythm and in response to social and environmental cues. In the gymnotiform fish Brachyhypopomus gauderio waveform shape of the electric organ discharge (EOD) is regulated by steroid and peptide hormones. Furthermore, EOD amplitude and duration change on different timescales and in response to different social stimuli, suggesting that they are regulated by different mechanisms. Little is known about how androgen and peptide hormone systems interact to regulate signal waveform. We investigated the relationship between the androgens testosterone (T) and 11-ketotestosterone (11-KT), the melanocortin peptide hormone α-MSH, and their roles in regulating EOD waveform of male B. gauderio. Males were implanted with androgen (T, 11-KT, or blank), and injected with α-MSH before and at the peak of androgen effect. We compared the effects of androgen implants and social interactions by giving males a size-matched male stimulus with which they could interact electrically. Social stimuli and both androgens increased EOD duration, but only social stimuli and 11-KT elevated amplitude. However, no androgen enhanced EOD amplitude to the extent of a social stimulus, suggesting that a yet unidentified hormonal pathway regulates this signal parameter. Additionally, both androgens increased response of EOD duration to α-MSH, but only 11-KT increased response of EOD amplitude to α-MSH. Social stimuli had no effect on EOD response to α-MSH. The finding that EOD amplitude is preferentially regulated by 11-KT in B. gauderio may provide the basis for independent control of amplitude and duration.

摘要

电鱼的通讯信号可以是动态的,在昼夜节律上在雌雄之间变化,并对社会和环境线索做出反应。在电鳗形目鱼类 Brachyhypopomus gauderio 中,电器官放电 (EOD) 的波形形状受类固醇和肽激素调节。此外,EOD 的幅度和持续时间在不同的时间尺度上发生变化,并对不同的社会刺激做出反应,这表明它们受到不同机制的调节。关于雄激素和肽激素系统如何相互作用来调节信号波形,人们知之甚少。我们研究了雄激素睾酮 (T) 和 11-酮睾酮 (11-KT)、黑素皮质素肽激素 α-MSH 之间的关系,以及它们在调节雄性 B. gauderio 的 EOD 波形中的作用。雄性被植入雄激素(T、11-KT 或空白),并在雄激素作用的高峰期之前和期间注射 α-MSH。我们通过给雄性一个可以进行电相互作用的大小匹配的雄性刺激物来比较雄激素植入物和社会互动的影响。社会刺激和两种雄激素都增加了 EOD 的持续时间,但只有社会刺激和 11-KT 提高了幅度。然而,没有雄激素将 EOD 幅度增强到社会刺激的程度,这表明一种尚未确定的激素途径调节了这个信号参数。此外,两种雄激素都增加了 EOD 持续时间对 α-MSH 的反应,但只有 11-KT 增加了 EOD 幅度对 α-MSH 的反应。社会刺激对 EOD 对 α-MSH 的反应没有影响。在 B. gauderio 中,EOD 幅度优先受 11-KT 调节的发现可能为幅度和持续时间的独立控制提供了基础。

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