Department of Computer Science and Applied Mathematics and Department of Biological Regulation, Weizmann Institute of Science, 76100 Rehovot, Israel.
(Epi)genomics of Animal Development Unit, Department of Developmental and Stem Cell Biology, Institut Pasteur, 75015 Paris, France; CNRS, UMR3738, 25 Rue du Dr Roux, 75015 Paris, France.
Cell. 2018 May 31;173(6):1520-1534.e20. doi: 10.1016/j.cell.2018.05.019.
The emergence and diversification of cell types is a leading factor in animal evolution. So far, systematic characterization of the gene regulatory programs associated with cell type specificity was limited to few cell types and few species. Here, we perform whole-organism single-cell transcriptomics to map adult and larval cell types in the cnidarian Nematostella vectensis, a non-bilaterian animal with complex tissue-level body-plan organization. We uncover eight broad cell classes in Nematostella, including neurons, cnidocytes, and digestive cells. Each class comprises different subtypes defined by the expression of multiple specific markers. In particular, we characterize a surprisingly diverse repertoire of neurons, which comparative analysis suggests are the result of lineage-specific diversification. By integrating transcription factor expression, chromatin profiling, and sequence motif analysis, we identify the regulatory codes that underlie Nematostella cell-specific expression. Our study reveals cnidarian cell type complexity and provides insights into the evolution of animal cell-specific genomic regulation.
细胞类型的出现和多样化是动物进化的主要因素。到目前为止,与细胞类型特异性相关的基因调控程序的系统特征仅限于少数几种细胞类型和几种物种。在这里,我们对刺胞动物 Nematostella vectensis 进行了全生物体单细胞转录组学研究,以绘制非双侧动物具有复杂组织层次身体计划组织的成年和幼虫细胞类型图谱。我们在 Nematostella 中发现了八个广泛的细胞类群,包括神经元、刺细胞和消化细胞。每个类群都由多个特定标记的表达定义的不同亚型组成。特别是,我们描述了一个令人惊讶的多样化的神经元库,比较分析表明这些神经元是谱系特异性多样化的结果。通过整合转录因子表达、染色质谱分析和序列基序分析,我们确定了 Nematostella 细胞特异性表达的调控代码。我们的研究揭示了刺胞动物细胞类型的复杂性,并为动物细胞特异性基因组调控的进化提供了见解。