首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Octopamine and tyramine modulate pheromone-sensitive olfactory sensilla of the hawkmoth Manduca sexta in a time-dependent manner
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Octopamine and tyramine modulate pheromone-sensitive olfactory sensilla of the hawkmoth Manduca sexta in a time-dependent manner

机译:章鱼胺和酪胺以时间依赖的方式调节天蛾灵敏的信息素敏感嗅觉。

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In moths octopamine improved pheromone-dependent mate search time dependently. In the nocturnal hawkmoth Manduca sexta long-term tip recordings of trichoid sensilla were performed to investigate whether biogenic amines modulate pheromone transduction time dependently. At three Zeitgebertimes octopamine, tyramine and the octopamine antagonist epinastine were applied during non-adapting pheromone-stimulation. At ZT 8-11, during the photophase, when sensilla were adapted, octopamine and to a lesser extent tyramine increased the bombykal-dependent sensillar potential amplitude and initial action potential (AP) frequency. In addition, during the photophase, when sensilla are less able to resolve pheromone pulses, octopamine rendered pheromone responses more phasic and sensitive, and raised the spontaneous AP frequency. During the late scotophase, at ZT 22-1, when the antenna appeared maximally sensitized for pheromone pulse detection and endogenous octopamine levels are high, exogenously applied octopamine was ineffective. Epinastine blocked the pheromone-dependent AP response at ZT 8-11 and slightly affected it at ZT 22-1, while it had no effect on the sensillar potential amplitude. Epinastine decreased the spontaneous AP activity during photophase and scotophase and rendered pheromone responses moretonic in the scotophase. We hypothesize that the presence of octopamine in the antenna is obligatory for the detection of intermittent pheromone pulses at all Zeitgebertimes.
机译:在飞蛾中,章鱼胺依赖地改善了信息素依赖的伴侣搜索时间。在夜蛾中,对长毛tri虫的长期记录进行了记录,以研究生物胺是否依赖地调节信息素的转导时间。在三个Zeitgebertimes期间,在非适应性信息素刺激过程中应用了章鱼胺,酪胺和章鱼胺拮抗剂Epinastine。在ZT 8-11的光相期间,当对感官进行适应时,章鱼胺和较小程度的酪胺会增加依赖孟皮卡尔的感官电位振幅和初始动作电位(AP)频率。此外,在光相过程中,当感官无法分辨信息素脉冲时,章鱼胺会使信息素反应更具相位性和敏感性,并提高了自发性AP频率。在后期阶段,在ZT 22-1,当天线对信息素脉冲检测最大程度地敏感,并且内源性章鱼胺水平很高时,外源性施加的章鱼胺无效。 Epinastine在ZT 8-11阻断了信息素依赖性AP反应,并在ZT 22-1稍微影响了它,而对感觉电位幅度没有影响。 Epinastine在光相和稀相期间降低了自发的AP活性,并在稀相中使信息素反应更加紧张。我们假设,在所有Zeitgebertimes中,天线中都必须存在章鱼胺才能检测间歇性信息素脉冲。

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