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Olfactory receptor neurons are sensitive to stimulus onset asynchrony: implications for odor source discrimination

机译:嗅觉受体神经元对刺激开始的异步敏感:对气味来源辨别的影响

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摘要

In insects, olfactory receptor neurons (ORNs) are localized in sensilla. Within a sensillum, different ORN types are typically co-localized and exhibit nonsynaptic reciprocal inhibition through ephaptic coupling. This inhibition is hypothesized to aid odor source discrimination in environments where odor molecules (odorants) are dispersed by wind, resulting in turbulent plumes. Under these conditions, odorants from a single source arrive at the ORNs synchronously, while those from separate sources arrive asynchronously. Ephaptic inhibition is expected to be weaker for asynchronous arriving odorants from separate sources, thereby enhancing their discrimination. Previous studies have focused on ephaptic inhibition of sustained ORN responses to constant odor stimuli. This begs the question of whether ephaptic inhibition also affects transient ORN responses and if this inhibition is modulated by the temporal arrival patterns of different odorants. To address this, we recorded co-localized ORNs in the fruit fly Drosophila melanogaster and exposed them to dynamic odorant mixtures. We found reciprocal inhibition, strongly suggesting the presence of ephaptic coupling. This reciprocal inhibition does indeed modulate transient ORN responses and is sensitive to the relative timing of odor stimuli. Notably, the strength of inhibition decreases as the synchrony and correlation between arriving odorants decrease. These results support the hypothesis that ephaptic inhibition aids odor source discrimination.
机译:在昆虫中,嗅觉受体神经元 (ORN) 位于感器中。在感器内,不同的 ORN 类型通常共定位,并通过触觉耦合表现出非突触相互抑制。据推测,这种抑制有助于在气味分子(气味剂)被风分散的环境中区分气味来源,从而导致湍流羽流。在这些情况下,来自单一来源的加臭剂同步到达 ORN,而来自不同来源的加臭剂则异步到达。对于来自不同来源的异步到达的气味剂,预计触觉抑制会较弱,从而增强它们的辨别力。以前的研究集中在触觉抑制对持续气味刺激的持续 ORN 反应。这就引出了一个问题,即触觉抑制是否也会影响瞬时 ORN 反应,以及这种抑制是否受到不同气味剂的时间到达模式的调节。为了解决这个问题,我们在果蝇黑腹果蝇中记录了共定位的 ORN,并将它们暴露在动态气味混合物中。我们发现了相互抑制,强烈表明存在触觉耦合。这种相互抑制确实调节瞬时 ORN 反应,并且对气味刺激的相对时间敏感。值得注意的是,抑制强度随着到达的气味剂之间的同步性和相关性降低而降低。这些结果支持触觉抑制有助于气味来源辨别的假设。

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