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信息素反应阈值取决于触角叶投射神经元的时间整合。

Pheromone responsiveness threshold depends on temporal integration by antennal lobe projection neurons.

机构信息

Department of Advanced Interdisciplinary Studies, Graduate School of Engineering, and Research Center for Advanced Science and Technology, University of Tokyo, Meguro-ku, Tokyo 153-8904, Japan.

出版信息

Proc Natl Acad Sci U S A. 2013 Sep 17;110(38):15455-60. doi: 10.1073/pnas.1313707110. Epub 2013 Sep 4.

Abstract

The olfactory system of male moths has an extreme sensitivity with the capability to detect and recognize conspecific pheromones dispersed and greatly diluted in the air. Just 170 molecules of the silkmoth (Bombyx mori) sex pheromone bombykol are sufficient to induce sexual behavior in the male. However, it is still unclear how the sensitivity of olfactory receptor neurons (ORNs) is relayed through the brain to generate high behavioral responsiveness. Here, we show that ORN activity that is subthreshold in terms of behavior can be amplified to suprathreshold levels by temporal integration in antennal lobe projection neurons (PNs) if occurring within a specific time window. To control ORN inputs with high temporal resolution, channelrhodopsin-2 was genetically introduced into bombykol-responsive ORNs. Temporal integration in PNs was only observed for weak inputs, but not for strong inputs. Pharmacological dissection revealed that GABAergic mechanisms inhibit temporal integration of strong inputs, showing that GABA signaling regulates PN responses in a stimulus-dependent fashion. Our results show that boosting of the PNs' responses by temporal integration of olfactory information occurs specifically near the behavioral threshold, effectively defining the lower bound for behavioral responsiveness.

摘要

雄蛾的嗅觉系统具有极高的灵敏度,能够检测和识别在空气中扩散并大大稀释的同种信息素。仅仅 170 个蚕蛾(Bombyx mori)性信息素 bombykol 分子就足以诱导雄性的性行为。然而,目前尚不清楚嗅觉受体神经元(ORNs)的敏感性如何通过大脑传递,从而产生高度的行为反应。在这里,我们表明,如果在特定的时间窗口内发生,ORN 活动在行为上低于阈值,但可以通过触角叶投射神经元(PNs)中的时间整合被放大到超阈值水平。为了以高时间分辨率控制 ORN 输入,我们将通道蛋白视紫红质-2(channelrhodopsin-2)基因引入到对 bombykol 有反应的 ORNs 中。仅观察到弱输入的 PN 中的时间整合,而强输入则没有。药理学分析表明,GABA 能机制抑制强输入的时间整合,表明 GABA 信号以刺激依赖的方式调节 PN 反应。我们的研究结果表明,通过嗅觉信息的时间整合来增强 PN 的反应仅在接近行为阈值的情况下发生,这有效地定义了行为反应的下限。

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