Kim Yong-Il, O'Rourke Rebecca, Sagerström Charles G
Section of Developmental Biology, Department of Pediatrics, University of Colorado Medical School, 12801 E. 17th Avenue, Aurora, CO 80045.
bioRxiv. 2023 Jan 28:2023.01.27.525932. doi: 10.1101/2023.01.27.525932.
Rhombomeres serve to position neural progenitors in the embryonic hindbrain, thereby ensuring appropriate neural circuit formation, but the molecular identities of individual rhombomeres and the mechanism whereby they form have not been fully established. Here we apply scMultiome analysis in zebrafish to molecularly resolve all rhombomeres for the first time. We find that rhombomeres become molecularly distinct between 10hpf (end of gastrulation) and 13hpf (early segmentation). While the mature hindbrain consists of alternating odd- versus even-type rhombomeres, our scMultiome analyses do not detect extensive odd versus even characteristics in the early hindbrain. Instead, we find that each rhombomere displays a unique gene expression and chromatin profile. Prior to the appearance of distinct rhombomeres, we detect three hindbrain progenitor clusters (PHPDs) that correlate with the earliest visually observed segments in the hindbrain primordium and that represent prospective rhombomere r2/r3 (possibly including r1), r4 and r5/r6, respectively. We further find that the PHPDs form in response to Fgf and RA morphogens and that individual PHPD cells co-express markers of multiple mature rhombomeres. We propose that the PHPDs contain mixed-identity progenitors and that their subdivision into individual mature rhombomeres requires resolution of mixed transcription and chromatin states.
菱脑节有助于在胚胎后脑定位神经祖细胞,从而确保适当的神经回路形成,但单个菱脑节的分子特征及其形成机制尚未完全明确。在此,我们首次在斑马鱼中应用单细胞多组学分析,从分子层面解析所有菱脑节。我们发现,菱脑节在受精后10小时(原肠胚形成末期)至13小时(早期体节形成期)之间在分子层面变得各不相同。虽然成熟的后脑由奇数型和偶数型菱脑节交替组成,但我们的单细胞多组学分析并未在早期后脑中检测到广泛的奇数与偶数特征。相反,我们发现每个菱脑节都显示出独特的基因表达和染色质图谱。在不同的菱脑节出现之前,我们检测到三个后脑祖细胞簇(PHPD),它们与后脑原基中最早在视觉上观察到的节段相关,分别代表预期的菱脑节r2/r3(可能包括r1)、r4和r5/r6。我们进一步发现,PHPD是对Fgf和RA形态发生素作出反应而形成的,并且单个PHPD细胞共表达多个成熟菱脑节的标志物。我们提出PHPD包含具有混合特征的祖细胞,并且将它们细分为单个成熟菱脑节需要解决混合的转录和染色质状态问题。