Sex-specific role of a glutamate receptor subtype in a pacemaker nucleus controlling electric behavior

Q Medicine
Laura Quintana , Erik Harvey-Girard , Carolina Lescano , Omar Macadar , Daniel Lorenzo
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引用次数: 7

Abstract

Electric communication signals, produced by South American electric fish, vary across sexes and species and present an ideal opportunity to examine the bases of signal diversity, and in particular, the mechanisms underlying sexually dimorphic behavior. Gymnotiforms produce electric organ discharges (EOD) controlled by a hindbrain pacemaker nucleus (PN). Background studies have identified the general cellular mechanisms that underlie the production of communication signals, EOD chirps and interruptions, typically displayed in courtship and agonistic contexts. Brachyhypopomus gauderio emit sexually dimorphic signals, and recent studies have shown that the PN acquires the capability of generating chirps seasonally, only in breeding males, by modifying its glutamatergic system. We hypothesized that sexual dimorphism was caused by sexual differences in the roles of glutamate receptors. To test this hypothesis, we analyzed NMDA and AMPA mediated responses in PN slice preparations by field potential recordings, and quantified one AMPA subunit mRNA, in the PNs of males and females during the breeding season. In situ hybridization of GluR2B showed no sexual differences in quantities between the male and female PN. Functional responses of the PN to glutamate and AMPA, on the other hand, showed a clear cut sexual dimorphism. In breeding males, but not females, the PN responded to glutamate and AMPA with bursting activity, with a temporal pattern that resembled the pattern of EOD chirps. In this study, we have been successful in identifying cellular mechanisms of sexual dimorphic communication signals. The involvement of AMPA receptors in PN activity is part of the tightly regulated changes that account for the increase in signal diversity during breeding in this species, necessary for a successful reproduction.

谷氨酸受体亚型在起搏器核控制电行为中的性别特异性作用
南美电鱼产生的电子通信信号在不同性别和物种之间有所不同,这为研究信号多样性的基础,特别是两性二态行为的机制提供了一个理想的机会。裸子虫产生由后脑起搏器核(PN)控制的电器官放电(EOD)。背景研究已经确定了通信信号产生的一般细胞机制,EOD啁啾和中断,通常表现在求爱和竞争环境中。Brachyhypopomus gauderio发出两性二态信号,最近的研究表明,PN通过改变其谷氨酸能系统,获得了季节性鸣叫的能力,仅在繁殖雄性中。我们假设两性异形是由谷氨酸受体的性别差异引起的。为了验证这一假设,我们通过场电位记录分析了NMDA和AMPA在PN切片制备中的介导反应,并量化了雄性和雌性在繁殖季节的PN中的一个AMPA亚基mRNA。GluR2B的原位杂交显示,雄性和雌性PN在数量上没有性别差异。另一方面,PN对谷氨酸和AMPA的功能反应显示出明显的性别二态性。在繁殖的雄性中,而不是雌性,PN对谷氨酸和AMPA的反应是爆发活动,其时间模式与EOD啁啾的模式相似。在这项研究中,我们已经成功地确定了两性二态通信信号的细胞机制。AMPA受体参与PN活性是该物种在繁殖过程中信号多样性增加的严格调控变化的一部分,这是成功繁殖所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Physiology-Paris
Journal of Physiology-Paris 医学-神经科学
CiteScore
2.02
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Each issue of the Journal of Physiology (Paris) is specially commissioned, and provides an overview of one important area of neuroscience, delivering review and research papers from leading researchers in that field. The content will interest both those specializing in the experimental study of the brain and those working in interdisciplinary fields linking theory and biological data, including cellular neuroscience, mathematical analysis of brain function, computational neuroscience, biophysics of brain imaging and cognitive psychology.
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