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下胚层控制着处于原肠胚形成阶段的兔胚胎中胚层的生成和轴向模式形成。

Hypoblast controls mesoderm generation and axial patterning in the gastrulating rabbit embryo.

作者信息

Idkowiak Jan, Weisheit Gunnar, Plitzner Juliane, Viebahn Christoph

机构信息

Department of Anatomy and Cell Biology, Martin-Luther-University, Grosse Steinstrasse 52, 06097, Halle, Germany.

出版信息

Dev Genes Evol. 2004 Dec;214(12):591-605. doi: 10.1007/s00427-004-0436-y. Epub 2004 Oct 6.

Abstract

Gastrulation in higher vertebrate species classically commences with the generation of mesoderm cells in the primitive streak by epithelio-mesenchymal transformation of epiblast cells. However, the primitive streak also marks, with its longitudinal orientation in the posterior part of the conceptus, the anterior-posterior (or head-tail) axis of the embryo. Results obtained in chick and mouse suggest that signals secreted by the hypoblast (or visceral endoderm), the extraembryonic tissue covering the epiblast ventrally, antagonise the mesoderm induction cascade in the anterior part of the epiblast and thereby restrict streak development to the posterior pole (and possibly initiate head development anteriorly). In this paper we took advantage of the disc-shape morphology of the rabbit gastrula for defining the expression compartments of the signalling molecules Cerberus and Dickkopf at pre-gastrulation and early gastrulation stages in a mammal other than the mouse. The two molecules are expressed in novel expression compartments in a complementary fashion both in the hypoblast and in the emerging primitive streak. In loss-of-function experiments, carried out in a New-type culturing system, hypoblast was removed prior to culture at defined stages before and at the beginning of gastrulation. The epiblast shows a stage-dependent and topographically restricted susceptibility to express Brachyury, a T-box gene pivotal for mesoderm formation, and to transform into (histologically proven) mesoderm. These results confirm for the mammalian embryo that the anterior-posterior axis of the conceptus is formed first as a molecular prepattern in the hypoblast and then irrevocably fixed, under the control of signals secreted from the hypoblast, by epithelio-mesenchymal transformation (primitive streak formation) in the epiblast.

摘要

在高等脊椎动物物种中,原肠胚形成通常始于上胚层细胞通过上皮-间充质转化在原条中产生中胚层细胞。然而,原条以其在胚胎后部的纵向取向,也标志着胚胎的前后(或头-尾)轴。在鸡和小鼠中获得的结果表明,下胚层(或脏内胚层)分泌的信号,即腹侧覆盖上胚层的胚外组织,拮抗上胚层前部的中胚层诱导级联反应,从而将原条发育限制在后极(并可能在前部启动头部发育)。在本文中,我们利用兔原肠胚的盘状形态,来确定信号分子Cerberus和Dickkopf在除小鼠外的另一种哺乳动物原肠胚形成前和原肠胚形成早期的表达区域。这两种分子在下胚层和新出现的原条中以互补的方式在新的表达区域中表达。在功能丧失实验中,在一种新型培养系统中进行,在原肠胚形成前和原肠胚形成开始时的特定阶段培养前去除下胚层。上胚层显示出对表达Brachyury(一种对中胚层形成至关重要的T盒基因)以及转化为(组织学证实的)中胚层的阶段依赖性和地形学限制的敏感性。这些结果证实,对于哺乳动物胚胎来说,胚胎的前后轴首先作为下胚层中的分子预模式形成,然后在来自下胚层分泌的信号控制下,通过上胚层中的上皮-间充质转化(原条形成)不可逆转地固定下来。

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