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内胚层来源的味觉感觉器官的形成需要胚胎味蕾祖细胞依赖Pax9进行扩增。

The formation of endoderm-derived taste sensory organs requires a Pax9-dependent expansion of embryonic taste bud progenitor cells.

作者信息

Kist Ralf, Watson Michelle, Crosier Moira, Robinson Max, Fuchs Jennifer, Reichelt Julia, Peters Heiko

机构信息

Institute of Genetic Medicine, Newcastle University, International Centre for Life, Newcastle upon Tyne, United Kingdom; Centre for Oral Health Research, School of Dental Sciences, Newcastle University, Newcastle upon Tyne, United Kingdom.

Institute of Genetic Medicine, Newcastle University, International Centre for Life, Newcastle upon Tyne, United Kingdom.

出版信息

PLoS Genet. 2014 Oct 9;10(10):e1004709. doi: 10.1371/journal.pgen.1004709. eCollection 2014 Oct.

Abstract

In mammals, taste buds develop in different regions of the oral cavity. Small epithelial protrusions form fungiform papillae on the ectoderm-derived dorsum of the tongue and contain one or few taste buds, while taste buds in the soft palate develop without distinct papilla structures. In contrast, the endoderm-derived circumvallate and foliate papillae located at the back of the tongue contain a large number of taste buds. These taste buds cluster in deep epithelial trenches, which are generated by intercalating a period of epithelial growth between initial placode formation and conversion of epithelial cells into sensory cells. How epithelial trench formation is genetically regulated during development is largely unknown. Here we show that Pax9 acts upstream of Pax1 and Sox9 in the expanding taste progenitor field of the mouse circumvallate papilla. While a reduced number of taste buds develop in a growth-retarded circumvallate papilla of Pax1 mutant mice, its development arrests completely in Pax9-deficient mice. In addition, the Pax9 mutant circumvallate papilla trenches lack expression of K8 and Prox1 in the taste bud progenitor cells, and gradually differentiate into an epidermal-like epithelium. We also demonstrate that taste placodes of the soft palate develop through a Pax9-dependent induction. Unexpectedly, Pax9 is dispensable for patterning, morphogenesis and maintenance of taste buds that develop in ectoderm-derived fungiform papillae. Collectively, our data reveal an endoderm-specific developmental program for the formation of taste buds and their associated papilla structures. In this pathway, Pax9 is essential to generate a pool of taste bud progenitors and to maintain their competence towards prosensory cell fate induction.

摘要

在哺乳动物中,味蕾在口腔的不同区域发育。小的上皮突起在舌背外胚层衍生的区域形成菌状乳头,每个乳头含有一个或几个味蕾,而软腭中的味蕾则在没有明显乳头结构的情况下发育。相比之下,位于舌后部内胚层衍生的轮廓乳头和叶状乳头含有大量味蕾。这些味蕾聚集在深层上皮沟中,这些沟是在初始基板形成和上皮细胞转化为感觉细胞之间插入一段上皮生长时期而产生的。在发育过程中上皮沟的形成是如何受到基因调控的,目前尚不清楚。在这里,我们表明Pax9在小鼠轮廓乳头不断扩大的味觉祖细胞区域中作用于Pax1和Sox9的上游。虽然在Pax1突变小鼠生长迟缓的轮廓乳头中发育的味蕾数量减少,但其发育在Pax9缺陷小鼠中完全停止。此外,Pax9突变的轮廓乳头沟在味蕾祖细胞中缺乏K8和Prox1的表达,并逐渐分化为表皮样上皮。我们还证明软腭的味觉基板通过Pax9依赖性诱导发育。出乎意料的是,Pax9对于在外胚层衍生的菌状乳头中发育的味蕾的模式形成、形态发生和维持是可有可无的。总的来说,我们的数据揭示了一种内胚层特异性的发育程序,用于形成味蕾及其相关的乳头结构。在这条途径中,Pax9对于产生一群味蕾祖细胞并维持它们向感觉前体细胞命运诱导的能力至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeb8/4191947/6ddd193927a5/pgen.1004709.g001.jpg

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