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Gastrulation and the establishment of the three germ layers in the early horse conceptus

机译:腐蚀性和建立早期马概念的三种胚胎层

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Experimental studies and field surveys suggest that embryonic loss during the first 6 weeks of gestation is a common occurrence in the mare. During the first 2 weeks of development, a number of important cell differentiation events must occur to yield a viable embryo proper containing all three major germ layers (ectoderm, mesoderm, and endoderm). Because formation of the mesoderm and primitive streak are critical to the development of the embryo proper, but have not been described extensively in the horse, we examined tissue development and differentiation in early horse conceptuses using a combination of stereomicroscopy, light microscopy, and immunohistochemistry. Ingression of epiblast cells to form the mesoderm was first observed on day 12 after ovulation: by Day 18 the conceptus had completed a series of differentiation events and morphologic changes that yielded an embryo proper with a functional circulation. While mesoderm precursor cells were present from Day 12 after ovulation, vimentin expression was not detectable until Day 14, suggesting that initial differentiation of mesoderm from the epiblast in the horse is independent of this intermediate filament protein, a situation that contrasts with other domestic species. Development of the other major embryonic germ layers was similar to other species. For example, ectodermal cells expressed cytokeratins, and there was a clear demarcation in staining intensity between embryonic ectoderm and trophectoderm. Hypoblast showed clear alpha 1-fetoprotein expression from as early as Day 10 after ovulation, and seemed to be the only source of alpha 1-fetoprotein in the early conceptus.
机译:实验研究和田间调查表明,妊娠前6周内的胚胎损失是母马的常见发生。在发育的前两周期间,必须发生许多重要的细胞分化事件,以产生含有所有三种主要胚层(Ectoderm,Mesoderm和Endoderm)的可行胚胎。因为中胚层和原始条纹的形成对胚胎的发展至关重要,但是尚未在马中被广泛描述,我们使用立体镜检查,光学显微镜和免疫组织化学的组合检查了早期马概念的组织发育和分化。在排卵后第12天首先首先观察到形成中胚层的表皮细胞的进入:在第18天,概念完成了一系列分化事件和形态学变化,其产生具有功能性循环的胚胎适当的胚胎。虽然中胚层前体细胞出现在排卵后的第12天,但在第14天,Vimentin表达不能检测到,表明,Mesoderm的初始分化来自马中的小细胞与这种中间丝蛋白质,与其他国内物种形成鲜明对比的情况。其他主要胚胎胚层的发展类似于其他物种。例如,异位细胞表达细胞角蛋白,并且胚胎外胚层和肾小管胚胎之间的染色强度存在明显的分界。 Hopoblast在排卵后10日早期显示敏感的α1-胎蛋白表达,并且似乎是早期概念中唯一的α1-胎儿蛋白的唯一来源。

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