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在小鼠嗅球中,遗传定义的僧帽细胞和丛状细胞亚群的气味代表受重复采样的差异影响。

Differential Impacts of Repeated Sampling on Odor Representations by Genetically-Defined Mitral and Tufted Cell Subpopulations in the Mouse Olfactory Bulb.

机构信息

Department of Neurobiology and Anatomy, University of Utah, Salt Lake City, Utah 84103

Department of Neurobiology and Anatomy, University of Utah, Salt Lake City, Utah 84103.

出版信息

J Neurosci. 2020 Aug 5;40(32):6177-6188. doi: 10.1523/JNEUROSCI.0258-20.2020. Epub 2020 Jun 29.

Abstract

Sniffing, the active control of breathing beyond passive respiration, is used by mammals to modulate olfactory sampling. Sniffing allows animals to make odor-guided decisions within ∼200 ms, but animals routinely engage in bouts of high-frequency sniffing spanning several seconds; the impact of such repeated odorant sampling on odor representations remains unclear. We investigated this question in the mouse olfactory bulb (OB), where mitral and tufted cells (MTCs) form parallel output streams of odor information processing. To test the impact of repeated odorant sampling on MTC responses, we used two-photon imaging in anesthetized male and female mice to record activation of MTCs while precisely varying inhalation frequency. A combination of genetic targeting and viral expression of GCaMP6 reporters allowed us to access mitral cell (MC) and superficial tufted cell (sTC) subpopulations separately. We found that repeated odorant sampling differentially affected responses in MCs and sTCs, with MCs showing more diversity than sTCs over the same time period. Impacts of repeated sampling among MCs included both increases and decreases in excitation, as well as changes in response polarity. Response patterns across simultaneously-imaged MCs reformatted over time, with representations of different odorants becoming more distinct. Individual MCs responded differentially to changes in inhalation frequency, whereas sTC responses were more uniform over time and across frequency. Our results support the idea that MCs and TCs comprise functionally distinct pathways for odor information processing, and suggest that the reformatting of MC odor representations by high-frequency sniffing may serve to enhance the discrimination of similar odors. Repeated sampling of odorants during high-frequency respiration (sniffing) is a hallmark of active odorant sampling by mammals; however, the adaptive function of this behavior remains unclear. We found distinct effects of repeated sampling on odor representations carried by the two main output channels from the mouse olfactory bulb (OB), mitral and tufted cells (MTCs). Mitral cells (MCs) showed more diverse changes in response patterns over time as compared with tufted cells (TCs), leading to odorant representations that were more distinct after repeated sampling. These results support the idea that MTCs contribute different aspects to encoding odor information, and they indicate that MCs (but not TCs) may play a primary role in the modulation of olfactory processing by sampling behavior.

摘要

嗅探,即超越被动呼吸的主动控制呼吸,被哺乳动物用于调节嗅觉采样。嗅探使动物能够在大约 200 毫秒内做出气味导向的决策,但动物通常会进行几秒钟的高频嗅探;这种重复的气味采样对气味表示的影响尚不清楚。我们在小鼠嗅球(OB)中研究了这个问题,其中僧帽细胞和丛状细胞(MTCs)形成了平行的气味信息处理输出流。为了测试重复气味采样对 MTC 反应的影响,我们在麻醉的雄性和雌性小鼠中使用双光子成像记录 MTC 激活,同时精确改变吸气频率。遗传靶向和病毒表达 GCaMP6 报告基因的组合使我们能够分别访问僧帽细胞(MC)和浅层丛状细胞(sTC)亚群。我们发现,重复的气味采样对 MC 和 sTC 的反应有不同的影响,MC 在同一时间段内的多样性高于 sTC。MC 中的重复采样影响包括兴奋的增加和减少,以及反应极性的变化。随着时间的推移,同时成像的 MC 之间的反应模式重新格式化,不同气味的表示变得更加明显。单个 MC 对吸气频率的变化表现出不同的反应,而 sTC 的反应在时间和频率上更加均匀。我们的结果支持这样一种观点,即 MC 和 TC 构成了用于气味信息处理的功能上不同的途径,并表明高频嗅探中 MC 气味表示的重新格式化可能有助于增强对相似气味的辨别。在高频呼吸(嗅探)期间反复采样气味是哺乳动物主动气味采样的一个标志;然而,这种行为的适应功能仍然不清楚。我们发现,重复采样对来自小鼠嗅球(OB)的两个主要输出通道的气味表示有明显的影响,即僧帽细胞和丛状细胞(MTCs)。与丛状细胞(TCs)相比,MC 的反应模式在时间上的变化更为多样,导致在重复采样后气味表示更加明显。这些结果支持了这样一种观点,即 MTCs 对编码气味信息有不同的贡献,并且表明 MCs(而不是 TCs)可能在采样行为对嗅觉处理的调制中发挥主要作用。

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