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A transcriptomic atlas of mammalian olfactory mucosae reveals an evolutionary influence on food odor detection in humans

机译:哺乳动物嗅觉粘膜转录组图谱揭示了对人类食物异味检测的进化影响

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The mammalian olfactory system displays species-specific adaptations to different ecological niches. To investigate the evolutionary dynamics of olfactory sensory neuron (OSN) subtypes across mammalian evolution, we applied RNA sequencing of whole olfactory mucosa samples from mouse, rat, dog, marmoset, macaque, and human. We find that OSN subtypes, representative of all known mouse chemosensory receptor gene families, are present in all analyzed species. Further, we show that OSN subtypes expressing canonical olfactory receptors are distributed across a large dynamic range and that homologous subtypes can be either highly abundant across all species or species/order specific. Highly abundant mouse and human OSN subtypes detect odorants with similar sensory profiles and sense ecologically relevant odorants, such as mouse semiochemicals or human key food odorants. Together, our results allow for a better understanding of the evolution of mammalian olfaction in mammals and provide insights into the possible functions of highly abundant OSN subtypes.
机译:哺乳动物的嗅觉系统显示出物种对不同生态位的适应性。为了研究哺乳动物整个嗅觉感觉神经元(OSN)亚型的进化动力学,我们对小鼠,大鼠,狗,小猿,猕猴和人的整个嗅觉黏膜样品进行了RNA测序。我们发现OSN亚型,代表所有已知的小鼠化学感应受体基因家族,存在于所有分析的物种中。此外,我们表明表达规范嗅觉受体的OSN亚型分布在较大的动态范围内,并且同源亚型可以在所有物种或物种/顺序特定物种中高度丰富。高度丰富的小鼠和人类OSN亚型可检测具有相似感官特征的增香剂,并检测与生态相关的增香剂,例如小鼠化学信息素或人类关键食品增香剂。在一起,我们的结果可以更好地了解哺乳动物中哺乳动物嗅觉的演变,并提供有关高度丰富的OSN亚型可能功能的见解。

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