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Whole-organism cellular gene-expression atlas reveals conserved cell types in the ventral nerve cord of Platynereis dumerilii

机译:全生物细胞基因表达图谱揭示了杜氏侧柏腹侧神经线中保守的细胞类型

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摘要

The comparative study of cell types is a powerful approach toward deciphering animal evolution. To avoid selection biases, however, comparisons ideally involve all cell types present in a multicellular organism. Here, we use image registration and a newly developed “Profiling by Signal Probability Mapping” algorithm to generate a cellular resolution 3D expression atlas for an entire animal. We investigate three-segmented young worms of the marine annelid Platynereis dumerilii, with a rich diversity of differentiated cells present in relatively low number. Starting from whole-mount expression images for close to 100 neural specification and differentiation genes, our atlas identifies and molecularly characterizes 605 bilateral pairs of neurons at specific locations in the ventral nerve cord. Among these pairs, we identify sets of neurons expressing similar combinations of transcription factors, located at spatially coherent anterior-posterior, dorsal-ventral, and medial-lateral coordinates that we interpret as cell types. Comparison with motor and interneuron types in the vertebrate neural tube indicates conserved combinations, for example, of cell types cospecified by Gata1/2/3 and Tal transcription factors. These include V2b interneurons and the central spinal fluid-contacting Kolmer-Agduhr cells in the vertebrates, and several neuron types in the intermediate ventral ganglionic mass in the annelid. We propose that Kolmer-Agduhr cell-like mechanosensory neurons formed part of the mucociliary sole in protostome-deuterostome ancestors and diversified independently into several neuron types in annelid and vertebrate descendants.
机译:细胞类型的比较研究是解密动物进化的有力方法。然而,为了避免选择偏倚,比较理想地涉及多细胞生物中存在的所有细胞类型。在这里,我们使用图像配准和新开发的“通过信号概率映射进行分析”算法为整个动物生成细胞分辨率3D表达图集。我们调查的海洋节肢动物Ptynereis dumerilii的三段幼虫,分化细胞的丰富多样性相对较少。从近100个神经规范和分化基因的完整表达图像开始,我们的图谱可识别并分子鉴定腹侧神经索中特定位置的605对双侧神经元。在这些对中,我们确定了表达类似转录因子组合的神经元集,它们位于空间相干的前后,左右腹和内侧-外侧坐标上,我们将它们解释为细胞类型。与脊椎动物神经管中运动和中间神经元类型的比较表明,保守组合,例如由Gata1 / 2/3和Tal转录因子共同指定的细胞类型。这些包括脊椎动物中的V2b中间神经元和与中央脊髓液接触的Kolmer-Agduhr细胞,以及在肛门的中间腹神经节团中的几种神经元类型。我们提出,Kolmer-Agduhr细胞样的机械感觉神经元在原初代-氘代母体祖先中形成粘液纤毛唯一的一部分,并独立地分化成无脊椎动物和后代的几种神经元类型。

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