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在海葵 Clytia medusae 中细胞输送带的分子特征。

Molecular characterisation of a cellular conveyor belt in Clytia medusae.

机构信息

Sorbonne Université, MNHN, CNRS, EPHE, Institut de Systématique, Evolution, Biodiversité (ISYEB UMR 7205), Paris, France.

Sorbonne Université, CNRS, Laboratoire de Biologie du Développement de Villefranche-sur-mer (LBDV) UMR7009, 181 chemin du Lazaret, 06230, Villefranche-sur-mer, France.

出版信息

Dev Biol. 2019 Dec 15;456(2):212-225. doi: 10.1016/j.ydbio.2019.09.001. Epub 2019 Sep 8.

Abstract

The tentacular system of Clytia hemisphaerica medusa (Cnidaria, Hydrozoa) has recently emerged as a promising experimental model to tackle the developmental mechanisms that regulate cell lineage progression in an early-diverging animal phylum. From a population of proximal stem cells, the successive steps of tentacle stinging cell (nematocyte) elaboration, are spatially ordered along a "cellular conveyor belt". Furthermore, the C. hemisphaerica tentacular system exhibits bilateral organisation, with two perpendicular polarity axes (proximo-distal and oral-aboral). We aimed to improve our knowledge of this cellular system by combining RNAseq-based differential gene expression analyses and expression studies of Wnt signalling genes. RNAseq comparisons of gene expression levels were performed (i) between the tentacular system and a control medusa deprived of all tentacles, nematogenic sites and gonads, and (ii) between three samples staggered along the cellular conveyor belt. The behaviour in these differential expression analyses of two reference gene sets (stem cell genes; nematocyte genes), as well as the relative representations of selected gene ontology categories, support the validity of the cellular conveyor belt model. Expression patterns obtained by in situ hybridisation for selected highly differentially expressed genes and for Wnt signalling genes are largely consistent with the results from RNAseq. Wnt signalling genes exhibit complex spatial deployment along both polarity axes of the tentacular system, with the Wnt/β-catenin pathway probably acting along the oral-aboral axis rather than the proximo-distal axis. These findings reinforce the idea that, despite overall radial symmetry, cnidarians have a full potential for elaboration of bilateral structures based on finely orchestrated deployment of an ancient developmental gene toolkit.

摘要

海鸡冠水母(刺胞动物门,水螅纲)的触手系统最近成为一个很有前途的实验模型,可以用来研究调控早期动物门谱系细胞进化的发育机制。从一群近端干细胞开始,触手刺细胞(纤毛细胞)的发育过程沿着一条“细胞输送带”在空间上有序进行。此外,海鸡冠水母的触手系统具有双侧组织,有两个相互垂直的极性轴(近-远轴和口-肛轴)。我们旨在通过结合 RNA 测序差异基因表达分析和 Wnt 信号基因表达研究,来提高对这个细胞系统的认识。我们进行了 RNA 测序比较基因表达水平的分析:(i) 比较触手系统与一个控制水母,该控制水母没有触手、产生纤毛的部位和性腺;(ii) 比较沿着细胞输送带的三个样本。两个参考基因集(干细胞基因;纤毛细胞基因)在这些差异表达分析中的行为,以及选定基因本体类别(GO)的相对表示,支持了细胞输送带模型的有效性。通过原位杂交获得的选定高度差异表达基因和 Wnt 信号基因的表达模式与 RNA 测序的结果基本一致。Wnt 信号基因在触手系统的两个极性轴上表现出复杂的空间部署,Wnt/β-catenin 途径可能沿着口-肛轴而不是近-远轴起作用。这些发现进一步证实了这样一种观点,即尽管整体上具有径向对称性,但刺胞动物具有充分的潜力来构建基于古老发育基因工具箱精细协调部署的双侧结构。

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