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[蟾蜍腺垂体和嗅觉系统的起源:嵌合体方法的证明]

[Origin of the adenohypophysis and of the olfactory system in toads: demonstration by chimera method].

作者信息

Kawamura K, Kikuyama S

机构信息

Département de Biologie, Université de Waséda, Tokyo, Japan.

出版信息

C R Seances Soc Biol Fil. 1996;190(2-3):311-6.

PMID:8869240
Abstract

Localisation of the primordium of the olfactory system and its topographical relationships with the primordium of the hypothalamic-hypophyseal system were determined on the embryos of the toad Bufo japonicus by generating chimeric embryos. Different parts of the neural ridge and the neural plate were taken up from normal embryos and grafted on the same region of albino embryos of the same developmental stage. The melanin granules contained in the grafts permitted to trace the developmental fate. The anteriormost region of the neural ridge (ANR) was found to be the origin of all the parts of the adenohypophysis as well as some of the neurons in the preoptic region. The infundibulum differentiated from the central portion of the neural plate, just posterior to the adenohypophyseal primordium. The primordium of the olfactory system, including the olfactory sacs and the olfactory bulbs, was found to be situated on the neural ridge on both sides of the ANR. The present results showed that the central and peripheral parts of each of the two systems constitute a closely apposed cell population at the neurula stage. It seems that the periphero-central connection in these systems reflect a clonal origin of the presumptive cells. If the olfactory primordium was removed at the neurula stage, the olfactory sac regenerated from the adenohypophyseal primordium. In conclusion, these results demonstrate that the olfactory primordium is related not only topographically but also ontogenetically to the adenohypophyseal primordium.

摘要

通过构建嵌合体胚胎,确定了日本蟾蜍胚胎嗅觉系统原基的定位及其与下丘脑 - 垂体系统原基的拓扑关系。从正常胚胎中取出神经嵴和神经板的不同部分,移植到相同发育阶段的白化病胚胎的同一区域。移植体中含有的黑色素颗粒有助于追踪发育命运。发现神经嵴的最前端区域(ANR)是腺垂体所有部分以及视前区一些神经元的起源。漏斗从神经板的中央部分分化而来,就在腺垂体原基的后方。嗅觉系统的原基,包括嗅囊和嗅球,位于ANR两侧的神经嵴上。目前的结果表明,这两个系统的中央和外周部分在神经胚阶段构成紧密相邻的细胞群。这些系统中的外周 - 中央连接似乎反映了推定细胞的克隆起源。如果在神经胚阶段去除嗅觉原基,嗅囊会从腺垂体原基再生。总之,这些结果表明,嗅觉原基不仅在拓扑结构上,而且在个体发育上都与腺垂体原基相关。

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