松果体祖细胞起源于受FGF信号限制的非神经区域

N. Staudt, F. Giger, Triona Fielding, J. A. Hutt, Isabelle Foucher, Victoria Snowden, Agathe Hellich, C. Kiecker, C. Houart
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引用次数: 6

摘要

松果体器官是间脑顶部的神经内分泌腺,其胚胎发育至今仍是个谜。经典的命运图谱研究表明,松果体祖细胞起源于前神经板外侧边界。通过对斑马鱼的基因表达和命运定位/谱系追踪,我们发现松果体祖细胞至少部分来源于非神经外胚层。鸡的基因表达表明这种松果体祖细胞的非神经来源在羊膜中是保守的。在斑马鱼中,胎盘而非神经嵴细胞命运的遗传抑制导致松果体发育不全,而在原肠形成过程中,已知指定胎盘身份的转录因子的错误表达促进了异位松果体祖细胞的形成。我们还证明了成纤维细胞生长因子(FGFs)通过抑制松果体的命运将松果体祖结构域定位在非神经边界内,而Otx转录因子通过抑制这种FGF活性促进松果体的发生。松果体器官的非神经起源揭示了松果体和脑垂体形成的潜在相似性,并提示所有中枢神经内分泌器官可能都需要非神经贡献来形成神经分泌细胞。摘要:斑马鱼的基因表达和命运定位/谱系追踪表明,松果体器官是在FGF信号的控制下,从非神经的胎盘前外胚层发育而来的。
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Pineal progenitors originate from a non-neural territory limited by FGF signalling
ABSTRACT The embryonic development of the pineal organ, a neuroendocrine gland on top of the diencephalon, remains enigmatic. Classic fate-mapping studies suggested that pineal progenitors originate from the lateral border of the anterior neural plate. We show here, using gene expression and fate mapping/lineage tracing in zebrafish, that pineal progenitors originate, at least in part, from the non-neural ectoderm. Gene expression in chick indicates that this non-neural origin of pineal progenitors is conserved in amniotes. Genetic repression of placodal, but not neural crest, cell fate results in pineal hypoplasia in zebrafish, while mis-expression of transcription factors known to specify placodal identity during gastrulation promotes the formation of ectopic pineal progenitors. We also demonstrate that fibroblast growth factors (FGFs) position the pineal progenitor domain within the non-neural border by repressing pineal fate and that the Otx transcription factors promote pinealogenesis by inhibiting this FGF activity. The non-neural origin of the pineal organ reveals an underlying similarity in the formation of the pineal and pituitary glands, and suggests that all CNS neuroendocrine organs may require a non-neural contribution to form neurosecretory cells. Highlighted Article: Gene expression and fate mapping/lineage tracing in zebrafish reveals that the pineal organ develops from the non-neural pre-placodal ectoderm under the control of FGF signalling.
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