首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Olfactory fingerprints for major histocompatibility complex-determined body odors II: relationship among odor maps, genetics, odor composition, and behavior.
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Olfactory fingerprints for major histocompatibility complex-determined body odors II: relationship among odor maps, genetics, odor composition, and behavior.

机译:主要组织相容性复合物确定的体臭的嗅觉指纹II:气味图,遗传学,气味成分和行为之间的关系。

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摘要

The olfactory system detects small differences in the composition of natural odorants, made up of hundreds of molecules. Odorous quality is hypothetically represented by a combinatorial code: activation of distinct but overlapping subsets of olfactory receptors resulting in activation of a distinct subset of glomeruli in the main olfactory bulb (MOB). Here we show that modification of a single gene (the K gene of the major histocompatibility locus), which results in a subtle change in the odiferous quality of urine, causes a small but significant change in the composition of urine volatiles and consequently the evoked glomerular activation pattern in the MOB. The magnitude of disparity between urine-evoked glomerular activation patterns is predictive of the extent of (1) the genetic difference among the urine donors, (2) the difference in the chemical composition of urine, and (3) the odor detector's ability to discriminate. These data on natural odors are consistent with the combinatorial code hypothesis and identify subsets of glomeruli that are apt to play a significant role in mediating individual recognition.
机译:嗅觉系统检测到由数百个分子组成的天然气味成分的微小差异。假设气味质量由组合代码表示:嗅觉受体的不同但重叠的子集的激活导致主嗅球(MOB)中肾小球的不同子集的激活。在这里,我们显示单个基因(主要组织相容性基因座的K基因)的修饰会导致尿液不同质量的细微变化,导致尿液挥发物的成分发生小而显着的变化,从而诱发肾小球MOB中的激活模式。尿液诱发的肾小球活化模式之间的差异程度可预测以下程度:(1)尿液供体之间的遗传差异,(2)尿液化学成分的差异以及(3)气味检测器的辨别能力。这些有关自然气味的数据与组合密码假设一致,并确定了在介导个人识别中起重要作用的肾小球子集。

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