首页> 外文期刊>Physiological Entomology >Electrophysiological responses of the antennal campaniform sensilla to rapid changes of temperature in the ground beetles Pterostichus oblongopunctatus and Poecilus cupreus (Tribe Pterostichini) with different ecological preferences.
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Electrophysiological responses of the antennal campaniform sensilla to rapid changes of temperature in the ground beetles Pterostichus oblongopunctatus and Poecilus cupreus (Tribe Pterostichini) with different ecological preferences.

机译:触角钟形感觉器对不同生态偏好的地表甲虫Pterostichus oblongopunctatus和Poecilus cupreus(Tribe Pterostichini)温度快速变化的电生理响应。

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摘要

Cold cells innervating antennal campaniform sensilla of the ground beetles Pterostichus oblongopunctatus (Fabricius, 1787) and Poecilus cupreus (Linnaeus, 1758) belonging to the tribe Pterostichini fire at a stationary rate of 22-23 imp s-1 at 23 degrees C. In P. oblongopunctatus, there is a strong negative correlation between the stationary firing rate of the cold cell and temperature. By contrast, no relationship between the firing rate and temperature is observed in P. cupreus. Mean peak frequencies, reaching up to nearly 500 Hz, and first-second firing rates, reaching up to 140 imp s-1, are observed at the beginning of the phasic-tonic response to rapid cooling of the cold cells of P. cupreus, which are significantly higher than those for P. oblongopunctatus. However, firing rates of the cold cells of the two ground beetles studied do not differ 3 s later, during the tonic stabilization period of the response. The length of the long interspike period, lasting up to several seconds, at the beginning of rapid warming, is a positive function of the extent of change in temperature, and is longer in P. oblongopunctatus than in P. cupreus. These differences in the responses of the cold cells are related to the ecological preferences of the two ground beetles..
机译:分布于地下甲虫Pterostichus oblongopunctatus(Fabricius,1787)和Poecilus cupreus(Linnaeus,1758)的触角弯曲状坎帕尼样感觉的冷细胞,在23°C时以22-23 imp s-1的固定速率着火。 …………………………………………………………………………………………………………………………………………………………………………………………………………………………………………。相反,在铜绿假单胞菌中未观察到烧成速率与温度之间的关系。在对铜绿假单胞菌的冷细胞快速冷却的相声响应开始时,观察到平均峰值频率达到近500 Hz,第一秒发射速率达到140 imp s-1。显着高于圆球形对虾。然而,研究的两个地面甲虫的冷细胞的发射速率在3s后的补品稳定期没有差异。在快速变暖开始时,较长的间穗期的持续时间长达数秒,这是温度变化程度的正函数,并且在圆角对虾中比铜对虾更长。冷细胞反应中的这些差异与两个地面甲虫的生态偏好有关。

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