Sur Abhinav, Wang Yiqun, Capar Paulina, Margolin Gennady, Farrell Jeffrey A
Division of Developmental Biology, Eunice Kennedy Shriver National Institute of Child Health and Human Development, NIH, Bethesda, MD 20814.
Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138.
bioRxiv. 2023 Apr 15:2023.03.20.533545. doi: 10.1101/2023.03.20.533545.
During development, animals generate distinct cell populations with specific identities, functions, and morphologies. We mapped transcriptionally distinct populations across 489,686 cells from 62 stages during wild-type zebrafish embryogenesis and early larval development (3-120 hours post-fertilization). Using these data, we identified the limited catalog of gene expression programs reused across multiple tissues and their cell-type-specific adaptations. We also determined the duration each transcriptional state is present during development and suggest new long-term cycling populations. Focused analyses of non-skeletal muscle and the endoderm identified transcriptional profiles of understudied cell types and subpopulations, including the pneumatic duct, individual intestinal smooth muscle layers, spatially distinct pericyte subpopulations, and homologs of recently discovered human + enterocytes. The transcriptional regulators of these populations remain unknown, so we reconstructed gene expression trajectories to suggest candidates. To enable additional discoveries, we make this comprehensive transcriptional atlas of early zebrafish development available through our website, Daniocell.
在发育过程中,动物会产生具有特定身份、功能和形态的不同细胞群体。我们绘制了野生型斑马鱼胚胎发育和幼体早期发育(受精后3至120小时)62个阶段的489,686个细胞的转录不同群体图谱。利用这些数据,我们确定了跨多个组织重复使用的基因表达程序的有限目录及其细胞类型特异性适应性。我们还确定了每个转录状态在发育过程中存在的持续时间,并提出了新的长期循环群体。对非骨骼肌和内胚层的重点分析确定了研究较少的细胞类型和亚群的转录谱,包括气动导管、单个肠道平滑肌层、空间上不同的周细胞亚群以及最近发现的人类+肠细胞的同源物。这些群体的转录调节因子仍然未知,因此我们重建了基因表达轨迹以提出候选者。为了实现更多发现,我们通过我们的网站Daniocell提供了这个早期斑马鱼发育的综合转录图谱。