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Adaptation of antennal neurons in moths is associated with cessation of pheromone-mediated upwind flight.

机译:飞蛾触角神经元的适应与信息素介导的逆风飞行的停止有关。

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摘要

A wind-borne plume of sex pheromone from a female moth or a synthetic source has a fine, filamentous structure that creates steep and rapid fluctuations in concentration for a male moth flying up the plume's axis. The firing rates from single antennal neurons on Agrotis segetum antennae decreased to nearly zero within seconds after the antennae were placed in a pheromone plume 70 cm downwind of a high-concentration source known from previous studies to cause in-flight arrestment of upwind progress. In a separate experiment, the fluctuating output from chilled neurons on Grapholita molesta antennae became attenuated in response to repetitive, experimentally delivered pheromone pulses. The attenuation was correlated with a previously reported higher percentage of in-flight arrestment exhibited by moths flying at cooler compared to warmer temperatures. These results indicate that two peripheral processes related to excessive concentration, complete adaptation of antennal neurons, or merely the attenuation of fluctuations in burst frequency, are important determinants of when upwind progress by a moth flying in a pheromone plume stops and changes to station keeping. Also, adaptation and attenuation may affect the sensation of blend quality by preferentially affecting cells sensitive to the most abundant components in airborne pheromone blends.
机译:来自雌性飞蛾或合成来源的性信息素的风吹羽状烟羽具有细丝状结构,使雄性飞蛾在羽状飞蛾的轴上飞行时会产生浓度的快速急剧变化。在将触角置于先前研究中已知的高浓度来源的高浓度信息源的信息素羽流70厘米处的信息素羽流中后的几秒钟内,来自土壤农杆菌触角上单个触觉神经元的发射速率几乎降低至零,从而在飞行中阻止逆风前进。在一个单独的实验中,响应重复的,实验传递的信息素脉冲,Grapholita molesta触角上冷神经元的波动输出减弱了。这种衰减与以前报道的飞蛾在较凉的温度相比在较暖的温度下表现出的更高的飞行中阻滞率有关。这些结果表明,与过度集中,触角神经元的完全适应或突发频率波动的减弱有关的两个外围过程是决定何时信息素羽飞蛾上风前进停止并改变站位的重要决定因素。同样,适应性和衰减性可能会通过优先影响对机载信息素混合物中最丰富的成分敏感的细胞而影响混合物质量的感觉。

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