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整合单细胞转录组学和体电子显微镜技术证实海胆中存在胰腺腺泡样细胞。

Integrating single cell transcriptomics and volume electron microscopy confirms the presence of pancreatic acinar-like cells in sea urchins.

作者信息

Paganos Periklis, Ronchi Paolo, Carl Jil, Mizzon Giulia, Martinez Pedro, Benvenuto Giovanna, Arnone Maria Ina

机构信息

Stazione Zoologica Anton Dohrn (SZN), Naples, Italy.

European Molecular Biology Laboratory (EMBL), Heidelberg, Germany.

出版信息

Front Cell Dev Biol. 2022 Aug 19;10:991664. doi: 10.3389/fcell.2022.991664. eCollection 2022.

Abstract

The identity and function of a given cell type relies on the differential expression of gene batteries that promote diverse phenotypes and functional specificities. Therefore, the identification of the molecular and morphological fingerprints of cell types across taxa is essential for untangling their evolution. Here we use a multidisciplinary approach to identify the molecular and morphological features of an exocrine, pancreas-like cell type harbored within the sea urchin larval gut. Using single cell transcriptomics, we identify various cell populations with a pancreatic-like molecular fingerprint that are enriched within the larva digestive tract. Among these, in the region where they reside, the midgut/stomach domain, we find that populations of exocrine pancreas-like cells have a unique regulatory wiring distinct from the rest the of the cell types of the same region. Furthermore, Serial Block-face scanning Electron Microscopy (SBEM) of the exocrine cells shows that this reported molecular diversity is associated to distinct morphological features that reflect the physiological and functional properties of this cell type. Therefore, we propose that these sea urchin exocrine cells are homologous to the well-known mammalian pancreatic acinar cells and thus we trace the origin of this particular cell type to the time of deuterostome diversification. Overall, our approach allows a thorough characterization of a complex cell type and shows how both the transcriptomic and morphological information contribute to disentangling the evolution of cell types and organs such as the pancreatic cells and pancreas.

摘要

特定细胞类型的身份和功能依赖于促进多种表型和功能特异性的基因组合的差异表达。因此,识别不同分类群中细胞类型的分子和形态特征对于理清它们的进化过程至关重要。在这里,我们采用多学科方法来识别海胆幼虫肠道中存在的一种外分泌、胰腺样细胞类型的分子和形态特征。通过单细胞转录组学,我们识别出在幼虫消化道中富集的具有胰腺样分子特征的各种细胞群体。其中,在它们所在的中肠/胃区域,我们发现外分泌胰腺样细胞群体具有独特的调控线路,与同一区域的其他细胞类型不同。此外,对外分泌细胞的连续块面扫描电子显微镜(SBEM)显示,这种报道的分子多样性与反映该细胞类型生理和功能特性的不同形态特征相关。因此,我们提出这些海胆外分泌细胞与著名的哺乳动物胰腺腺泡细胞同源,从而将这种特定细胞类型的起源追溯到后口动物多样化的时期。总体而言,我们的方法允许对复杂细胞类型进行全面表征,并展示了转录组学和形态学信息如何有助于理清细胞类型和器官(如胰腺细胞和胰腺)的进化。

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