Brunet Avalos Clarisse, Sprecher Simon G
Department of Biology, University of Fribourg, Fribourg, Switzerland.
Front Mol Neurosci. 2021 Feb 1;14:623148. doi: 10.3389/fnmol.2021.623148. eCollection 2021.
Neurotransmitter expression is widely used as a criterion for classifying neurons. It was initially thought that neurons express a single type of neurotransmitter, a phenomenon commonly recognized as Dale's principle: "one neuron, one transmitter." Consequently, the expression of a single neurotransmitter should determine stable and distinguishable neuronal characteristics. However, this notion has been largely challenged and increasing evidence accumulates supporting a different scenario: "one neuron, multiple neurotransmitters." Single-cell transcriptomics provides an additional path to address coexpression of neurotransmitters, by investigating the expression of genes involved in the biosynthesis and transmission of fast-acting neuromodulators. Here, we study neuronal phenotypes based on the expression of neurotransmitters, at single-cell resolution, across different animal species representing distinct clades of the tree of life. We take advantage of several existing scRNAseq datasets and analyze them in light of neurotransmitter plasticity. Our results show that while most neurons appear to predominantly express a single type of neurotransmitter, a substantial number of neurons simultaneously expresses a combination of them, across all animal species analyzed.
神经递质表达被广泛用作神经元分类的标准。最初人们认为神经元只表达一种类型的神经递质,这种现象通常被称为戴尔原则:“一个神经元,一种递质”。因此,单一神经递质的表达应决定稳定且可区分的神经元特征。然而,这一观念受到了很大挑战,越来越多的证据支持另一种情况:“一个神经元,多种神经递质”。单细胞转录组学通过研究参与快速作用神经调节剂生物合成和传递的基因表达,为解决神经递质共表达问题提供了一条额外途径。在这里,我们基于神经递质的表达,以单细胞分辨率研究了代表生命之树不同进化分支的不同动物物种中的神经元表型。我们利用了几个现有的单细胞RNA测序数据集,并根据神经递质可塑性对其进行分析。我们的结果表明,虽然大多数神经元似乎主要表达一种类型的神经递质,但在所有分析的动物物种中,相当数量的神经元同时表达多种神经递质的组合。