首页> 外文期刊>Journal of neurogenetics >Genetic feminization of the thoracic nervous system disrupts courtship song in male Drosophila melanogaster.
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Genetic feminization of the thoracic nervous system disrupts courtship song in male Drosophila melanogaster.

机译:胸部神经系统的遗传女性化破坏了男性果蝇的求爱歌曲。

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Despite the growing research investigating the sex-specific organization of courtship behavior in Drosophila melanogaster, much remains to be understood about the sex-specific organization of the motor circuit that drives this behavior. To investigate the sex-specification of a tightly patterned component of courtship behavior, courtship song, the authors used the GAL4/UAS targeted gene expression system to feminize the ventral ganglia in male Drosophila and analyzed the acoustic properties of courtship song. More specifically, the authors used the thoracic-specifying teashirt promoter (tsh(GAL4)) to express feminizing transgenes specifically in the ventral ganglia. When tsh(GAL4) drove expression of transformer (tra), males were unable to produce prolonged wing extensions. Transgenic expression of an RNAi construct directed against male-specific fruitless (fru(M)) transcripts resulted in normal wing extension, but highly defective courtship song, with 58% of males failing to generate detectable courtship song. Of those that did sing, widths of individual pulses were significantly broader than controls, suggesting thoracic fru(M) function serves to mediate proprioceptive-dependent wing vibration damping during pulse song. However, the most critical signal in the song, the interpulse interval, remained intact. The inability to phenocopy this effect by reducing fru(M) expression in motor neurons and proprioceptive neurons suggests thoracic interneurons require fru(M) for proper pulse song execution and patterning of pulse structure, but not for pulse timing. This provides evidence that genes establishing sex-specific activation of complex behaviors may also be used in establishing pattern-generating motor networks underlying these sex-specific behaviors.
机译:尽管越来越多的研究调查黑腹果蝇(Drosophila melanogaster)中求爱行为的性别特定组织,但关于驱动这种行为的运动回路的性别特定组织仍有很多待理解。为了调查求爱行为的紧密模式组成部分的性别特征,求爱歌曲,作者使用GAL4 / UAS靶向基因表达系统来女性化果蝇腹侧神经节,并分析了求爱歌曲的声学特性。更具体地说,作者使用了胸腔指定的茶衫启动子(tsh(GAL4))在腹神经节中特异性表达女性化转基因。当tsh(GAL4)推动了transformer(tra)的表达时,雄性无法产生延长的机翼延伸。针对雄性特有的无果(fru(M))转录本的RNAi构建体的转基因表达导致机翼正常延伸,但求爱歌曲严重缺陷,其中58%的雄性未能生成可检测到的求爱歌曲。在那些唱歌的人中,单个脉搏的宽度明显比对照组宽,这表明胸腔fru(M)功能可在脉搏歌声期间介导本体感受相关的机翼振动阻尼。但是,歌曲中最关键的信号(脉冲间隔)保持不变。无法通过减少运动神经元和本体感受性神经元中fru(M)的表达来表观这种效应,这表明胸腔中神经元需要fru(M)才能正确执行脉冲歌曲和对脉冲结构进行图案化,但对于脉冲计时则不需要。这提供了证据,建立复杂行为的性别特异性激活的基因也可以用于建立这些性别特异性行为基础的模式生成运动网络。

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