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Pax3/7 基因在 Oikopleura dioica 中的功能支持其房屋制造 Fol 领域的神经上皮样起源。

Pax3/7 gene function in Oikopleura dioica supports a neuroepithelial-like origin for its house-making Fol territory.

机构信息

Michael Sars Centre, University of Bergen, Bergen, NO-5020, Norway; Department of Medical Cell Biology, Uppsala University, Uppsala, SE-75123, Sweden.

Michael Sars Centre, University of Bergen, Bergen, NO-5020, Norway.

出版信息

Dev Biol. 2024 Dec;516:207-220. doi: 10.1016/j.ydbio.2024.08.012. Epub 2024 Aug 23.

DOI:10.1016/j.ydbio.2024.08.012
PMID:39181419
Abstract

Larvacean tunicates feature a spectacular innovation not seen in other animals - the trunk oikoplastic epithelium (OE). This epithelium produces a house, a large and complex extracellular structure used for filtering and concentrating food particles. Previously we identified several homeobox transcription factor genes expressed during early OE patterning. Among these are two Pax3/7 copies that we named pax37A and pax37B. The vertebrate homologs, PAX3 and PAX7 are involved in developmental processes related to neural crest and muscles. In the ascidian tunicate Ciona intestinalis, Pax3/7 plays a role in the development of cells deriving from the neural plate border, including trunk epidermal sensory neurons and tail nerve cord neurons, as well as in the neural tube closure. Here we have investigated the roles of Oikopleura dioica pax37A and pax37B in the development of the OE, by using CRISPR-Cas9 mutant lines and analyzing scRNA-seq data from wild-type animals. We found that pax37B but not pax37A is essential for the differentiation of cell fields that produce the food concentrating filter of the house: the anterior Fol, giant Fol and Nasse cells. Trajectory analysis supported a neuroepithelial-like or a preplacodal ectoderm transcriptional signature in these cells. We propose that the highly specialized secretory epithelial cells of the Fol region either maintained or evolved neuroepithelial features. This is supported by a fragmented gene regulatory network involved in their development that also operates in ascidian epidermal neurons.

摘要

樽海鞘具有一种其他动物所没有的壮观创新——主干质层上皮(OE)。这种上皮产生了一种房屋,这是一种用于过滤和浓缩食物颗粒的大型复杂细胞外结构。之前,我们在早期 OE 模式形成过程中鉴定了几个同源盒转录因子基因的表达。其中包括两个命名为 pax37A 和 pax37B 的 Pax3/7 拷贝。脊椎动物同源物 PAX3 和 PAX7 参与与神经嵴和肌肉相关的发育过程。在尾海鞘属的尾海鞘中,Pax3/7 在源自神经板边界的细胞发育中发挥作用,包括主干表皮感觉神经元和尾部神经索神经元,以及神经管闭合。在这里,我们通过使用 CRISPR-Cas9 突变系和分析来自野生型动物的 scRNA-seq 数据,研究了 Oikopleura dioica pax37A 和 pax37B 在 OE 发育中的作用。我们发现 pax37B 但不是 pax37A 对于产生房屋食物浓缩过滤器的细胞区域的分化是必不可少的:前 Fol、巨 Fol 和 Nasse 细胞。轨迹分析支持这些细胞具有神经上皮样或前颅嵴外胚层转录特征。我们提出, Fol 区域的高度特化分泌上皮细胞要么保持要么进化出了神经上皮特征。这得到了一个涉及它们发育的片段化基因调控网络的支持,该网络也在尾海鞘表皮神经元中起作用。

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