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多个上皮组织对于在咽深部发育牙齿是必需的。

Multiple epithelia are required to develop teeth deep inside the pharynx.

机构信息

Research Group Evolutionary Developmental Biology, Biology Department, Ghent University, B-9000 Ghent, Belgium.

Research Group Evolutionary Developmental Biology, Biology Department, Ghent University, B-9000 Ghent, Belgium

出版信息

Proc Natl Acad Sci U S A. 2020 May 26;117(21):11503-11512. doi: 10.1073/pnas.2000279117. Epub 2020 May 12.

Abstract

To explain the evolutionary origin of vertebrate teeth from odontodes, it has been proposed that competent epithelium spread into the oropharyngeal cavity via the mouth and other possible channels such as the gill slits [Huysseune et al., 2009, 214, 465-476]. Whether tooth formation deep inside the pharynx in extant vertebrates continues to require external epithelia has not been addressed so far. Using zebrafish we have previously demonstrated that cells derived from the periderm penetrate the oropharyngeal cavity via the mouth and via the endodermal pouches and connect to periderm-like cells that subsequently cover the entire endoderm-derived pharyngeal epithelium [Rosa et al., 2019, 9, 10082]. We now provide conclusive evidence that the epithelial component of pharyngeal teeth in zebrafish (the enamel organ) is derived from medial endoderm, as hitherto assumed based on position deep in the pharynx. Yet, dental morphogenesis starts only after the corresponding endodermal pouch (pouch 6) has made contact with the skin ectoderm, and only after periderm-like cells have covered the prospective tooth-forming endodermal epithelium. Manipulation of signaling pathways shown to adversely affect tooth development indicates they act downstream of these events. We demonstrate that pouch-ectoderm contact and the presence of a periderm-like layer are both required, but not sufficient, for tooth initiation in the pharynx. We conclude that the earliest interactions to generate pharyngeal teeth encompass those between different epithelial populations (skin ectoderm, endoderm, and periderm-like cells in zebrafish), in addition to the epithelial-mesenchymal interactions that govern the formation of all vertebrate teeth.

摘要

为了解释脊椎动物牙齿从牙原基进化而来的机制,有人提出,有能力的上皮细胞通过口腔和其他可能的通道(如鳃裂)扩散到咽腔[Huysseune 等人,2009 年,214,465-476]。目前尚未研究现存脊椎动物咽腔内深部牙齿的形成是否仍需要外部上皮细胞。我们之前使用斑马鱼证明,来自表皮的细胞通过口腔和内胚层囊泡穿透咽腔,并与随后覆盖整个内胚层衍生咽上皮的表皮样细胞相连[Rosa 等人,2019 年,9,10082]。我们现在提供了确凿的证据,表明斑马鱼咽齿的上皮成分(釉质器官)来源于中胚层,就像以前基于咽腔深部位置的假设一样。然而,牙发生仅在相应的内胚层囊泡(囊泡 6)与皮肤外胚层接触后开始,并且仅在外皮样细胞覆盖潜在的牙齿形成内胚层上皮后开始。显示对牙齿发育有不利影响的信号通路的操作表明,它们作用于这些事件的下游。我们证明,囊泡-外胚层接触和存在表皮样层对于在咽中启动牙齿都是必需的,但不是充分的条件。我们得出结论,生成咽齿的最早相互作用包括不同上皮群体(皮肤外胚层、内胚层和斑马鱼中的表皮样细胞)之间的相互作用,以及控制所有脊椎动物牙齿形成的上皮-间充质相互作用。

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