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无肠动物单细胞转录组学:一种基部两侧对称动物的细胞类型分析

Acoel Single-Cell Transcriptomics: Cell Type Analysis of a Deep Branching Bilaterian.

作者信息

Duruz Jules, Kaltenrieder Cyrielle, Ladurner Peter, Bruggmann Rémy, Martìnez Pedro, Sprecher Simon G

机构信息

Department of Biology, Institute of Zoology, University of Fribourg, Fribourg, Switzerland.

Institute of Zoology and Center of Molecular Bioscience Innsbruck, University of Innsbruck, Innsbruck, Austria.

出版信息

Mol Biol Evol. 2021 May 4;38(5):1888-1904. doi: 10.1093/molbev/msaa333.

Abstract

Bilaterian animals display a wide variety of cell types, organized into defined anatomical structures and organ systems, which are mostly absent in prebilaterian animals. Xenacoelomorpha are an early-branching bilaterian phylum displaying an apparently relatively simple anatomical organization that have greatly diverged from other bilaterian clades. In this study, we use whole-body single-cell transcriptomics on the acoel Isodiametra pulchra to identify and characterize different cell types. Our analysis identifies the existence of ten major cell type categories in acoels all contributing to main biological functions of the organism: metabolism, locomotion and movements, behavior, defense, and development. Interestingly, although most cell clusters express core fate markers shared with other animal clades, we also describe a surprisingly large number of clade-specific marker genes, suggesting the emergence of clade-specific common molecular machineries functioning in distinct cell types. Together, these results provide novel insight into the evolution of bilaterian cell types and open the door to a better understanding of the origins of the bilaterian body plan and their constitutive cell types.

摘要

两侧对称动物具有各种各样的细胞类型,这些细胞类型组织成明确的解剖结构和器官系统,而这些在两侧对称动物出现之前的动物中大多不存在。异涡虫纲是一个早期分支的两侧对称动物门,其显示出明显相对简单的解剖结构,与其他两侧对称动物分支有很大差异。在本研究中,我们对扁形虫美丽等径虫进行了全身体单细胞转录组学分析,以识别和表征不同的细胞类型。我们的分析确定了扁形虫中存在十种主要的细胞类型类别,它们都对生物体的主要生物学功能有贡献:新陈代谢、运动和移动、行为、防御和发育。有趣的是,尽管大多数细胞簇表达与其他动物分支共有的核心命运标记,但我们也描述了数量惊人的分支特异性标记基因,这表明在不同细胞类型中发挥作用的分支特异性共同分子机制的出现。总之,这些结果为两侧对称动物细胞类型的进化提供了新的见解,并为更好地理解两侧对称动物身体结构及其组成细胞类型的起源打开了大门。

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