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Neuronal diversity and convergence in a visual system developmental atlas

机译:视觉系统发展地图集的神经元分集和融合

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摘要

Deciphering how neuronal diversity is established and maintained requires a detailed knowledge of neuronal gene expression throughout development. In contrast to mammalian brains~(1,2), the large neuronal diversity of the Drosophila optic lobe~(3)and its connectome~(4-6)are almost completely characterized. However, a molecular characterization of this neuronal diversity, particularly during development, has been lacking. Here we present insights into brain development through a nearly complete description of the transcriptomic diversity of the optic lobes of Drosophila. We acquired the transcriptome of 275,000 single cells at adult and at five pupal stages, and built a machine-learning framework to assign them to almost 200 cell types at all time points during development. We discovered two large neuronal populations that wrap neuropils during development but die just before adulthood, as well as neuronal subtypes that partition dorsal and ventral visual circuits by differential Wnt signalling throughout development. Moreover, we show that the transcriptomes of neurons that are of the same type but are produced days apart become synchronized shortly after their production. During synaptogenesis we also resolved neuronal subtypes that, although differing greatly in morphology and connectivity, converge to indistinguishable transcriptomic profiles in adults. Our datasets almost completely account for the known neuronal diversity of the Drosophila optic lobes, and serve as a paradigm to understand brain development across species.
机译:解密如何建立和维持神经元多样性需要在整个发育中详细了解神经元基因表达。与哺乳动物大脑形成对比〜(1,2),几乎完全表征了果蝇视神经叶〜(3)的大神经元分集及其连接〜(4-6)。然而,缺乏这种神经元多样性,特别是在开发过程中的分子表征。在这里,我们通过几乎完全描述了果蝇的视神经转录组多样性的几乎完全描述了对大脑发展的洞察。我们在成人和五个蛹阶段获得了275,000个单细胞的转录组,并建立了一个机器学习框架,以便在开发期间的所有时间点将其分配到近200个细胞类型。我们发现了两种大型神经元群,在开发期间包裹神经尿,但是在成年之前,在整个开发过程中通过差分Wnt信号传导来分配背部和腹侧视觉电路的神经元亚型。此外,我们表明,在其生产后不久之后,除了相同类型但产生的日子的神经元的转录om也是同步的。在突触期间,我们还解决了神经元亚型,尽管在形态和连通性中大大不同,但在成人中融合到不可区分的转录组体曲线。我们的数据集几乎完全占果蝇视神经裂片的已知神经元多样性,并作为跨物种理解大脑发育的范例。

著录项

  • 来源
    《Nature》 |2021年第7840期|88-95|共8页
  • 作者单位

    Department of Biology New York University;

    Department of Biology New York University;

    Department of Biology New York University|Department of Molecular Biology Umeå University;

    Department of Biology New York University;

    Department of Biology New York University;

    New York University Abu Dhabi;

    New York University Abu Dhabi;

    New York University Abu Dhabi;

    Department of Biology New York University;

    Department of Biology New York University;

    Department of Biology New York University|New York University Abu Dhabi;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:15:37

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