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蛾类嗅觉感受器跨上皮电位的振荡受章鱼胺和血清素影响。

Oscillations of the transepithelial potential of moth olfactory sensilla are influenced by octopamine and serotonin.

作者信息

Dolzer J, Krannich S, Fischer K, Stengl M

机构信息

Biologie, Tierphysiologie, Philipps-Universität Marburg, Germany.

出版信息

J Exp Biol. 2001 Aug;204(Pt 16):2781-94. doi: 10.1242/jeb.204.16.2781.

Abstract

The biogenic amine octopamine is known to enhance the sensitivity of male moths to their species-specific pheromones in flight-tunnel experiments. This sensitization of pheromone-guided upwind flight is at least partly due to octopamine-dependent increases in the peak nerve impulse frequency of the pheromone response of olfactory receptor neurons. It is not known, however, whether octopamine exerts its effects directly on the electrical properties of the olfactory receptor neurons or indirectly, via modulation of the accessory cells of the sensillum. In extracellular tip recordings of pheromone-dependent trichoid sensilla on the antennae of male Manduca sexta moths, we investigated the effects of octopamine and serotonin on the transepithelial potential, which is generated by the activity of V-ATPases in sensillar accessory cells. In addition, the action potential activity of unstimulated olfactory receptor neurons was examined in the presence of biogenic amines. Under constant environmental conditions, the transepithelial potential oscillated regularly with periods of 2-8 min and with a 1-25mV peak-to-peak amplitude over periods of several hours. These oscillatory intervals were interrupted by periods of relatively stable transepithelial potential, correlated with flight activity by the moth. Octopamine reduced the amplitude of the transepithelial potential oscillation and decreased the resistance of the sensillum preparation in a dose-dependent manner. Serotonin altered the waveform of the transepithelial potential, but did not change the resistance of the preparation. Thus, both amines affect the accessory cells, but have different targets in the regulation of the transepithelial potential. Neither amine significantly influenced the spontaneous action potential activity of the olfactory receptor neurons.

摘要

在风洞实验中,已知生物胺章鱼胺可增强雄蛾对其物种特异性信息素的敏感性。这种信息素引导的逆风飞行的致敏作用至少部分归因于章鱼胺依赖性增加嗅觉受体神经元信息素反应的峰值神经冲动频率。然而,尚不清楚章鱼胺是直接作用于嗅觉受体神经元的电特性,还是通过调节感器的辅助细胞间接发挥作用。在烟草天蛾雄蛾触角上依赖信息素的毛形感器的细胞外尖端记录中,我们研究了章鱼胺和血清素对跨上皮电位的影响,跨上皮电位由感器辅助细胞中的V - ATP酶的活性产生。此外,在存在生物胺的情况下,检测了未受刺激的嗅觉受体神经元的动作电位活性。在恒定的环境条件下,跨上皮电位在2 - 8分钟的周期内有规律地振荡,在数小时内峰峰值幅度为1 - 25mV。这些振荡间隔被跨上皮电位相对稳定的时期打断,这与蛾子的飞行活动相关。章鱼胺以剂量依赖的方式降低了跨上皮电位振荡的幅度,并降低了感器制剂的电阻。血清素改变了跨上皮电位的波形,但没有改变制剂的电阻。因此,这两种胺都影响辅助细胞,但在调节跨上皮电位方面有不同的靶点。两种胺均未显著影响嗅觉受体神经元的自发动作电位活性。

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