首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Olfactory adaptation depends on the Trp Ca2+ channel in Drosophila.
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Olfactory adaptation depends on the Trp Ca2+ channel in Drosophila.

机译:嗅觉的适应取决于果蝇中的Trp Ca2 +通道。

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Olfactory adaptation is shown to occur in Drosophila, at both behavioral and physiological levels. In a behavioral paradigm, the extent of adaptation is shown to depend on the dose and duration of the adapting stimulus. Half-maximal adaptation occurred after 15 sec of exposure to an odor, and recovery occurred with a half-time of 1. 5 min, under a set of test conditions. Cross-adaptation was observed among all odor combinations tested, although to a lesser extent than when the same odor was used as both the adapting and the test stimulus. Mutants of the transient receptor potential (Trp) Ca2+ channel were normal in olfactory response, but defective in olfactory adaptation, when measured either behaviorally or in tests of antennal physiology. These results indicate that olfactory response and adaptation can be distinguished. Trp expression was detected in the developing antenna but, surprisingly, not in the mature antenna. These results, together with temperature-shift analysis of a temperature-sensitive trp mutant, provide evidence of a role of Trp in olfactory system development.
机译:嗅觉适应在果蝇中表现为行为和生理水平。在行为范式中,适应程度显示为取决于适应刺激的剂量和持续时间。在一组测试条件下,暴露于异味15秒钟后,出现了最大适应性的一半,并在1.5分钟的一半时间内恢复了。在所有测试的气味组合中均观察到交叉适应,尽管程度要小于使用相同气味作为适应和测试刺激时的程度。瞬态受体电位(Trp)Ca2 +通道的突变体嗅觉反应正常,但通过行为学或触角生理学测试进行测量时,嗅觉适应性缺陷。这些结果表明可以区分嗅觉反应和适应。在发育中的天线中检测到Trp表达,但令人惊讶的是,在成熟的天线中未检测到。这些结果,以及对温度敏感的trp突变体的温度漂移分析,提供了Trp在嗅觉系统发育中的作用的证据。

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