Priority Organization for Innovation and Excellence, Kumamoto University, 2-2-1 Honjo, Kumamoto, 860-0811, Japan.
Dev Growth Differ. 2013 May;55(4):406-21. doi: 10.1111/dgd.12058. Epub 2013 Apr 29.
Avian embryos are important model organism to study higher vertebrate development. Easy accessibility to developing avian embryos enables a variety of experimental applications to understand specific functions of molecules, tissue-tissue interactions, and cell lineages. The whole-mount ex ovo culture technique for avian embryos permits time-lapse imaging analysis for a better understanding of cell behaviors underlying tissue morphogenesis in physiological conditions. To study mechanisms of blood vessel formation and remodeling in developing embryos by using a time-lapse imaging approach, a transgenic quail model, Tg(tie1:H2B-eYFP), was generated. From a cell behavior perspective, Tg(tie1:H2B-eYFP) quail embryos are a suitable model to shed light on how the structure and pattern of blood vessels are established in higher vertebrates. In this manuscript, we give an overview on the biological and technological background of the transgenic quail model and describe procedures for the ex ovo culture of quail embryos and time-lapse imaging analysis.
禽类胚胎是研究高等脊椎动物发育的重要模式生物。禽类胚胎易于获取,可用于多种实验应用,以了解分子的特定功能、组织-组织相互作用和细胞谱系。禽类胚胎的整体离胚培养技术可进行延时成像分析,有助于更好地理解生理条件下组织形态发生过程中的细胞行为。为了通过延时成像方法研究发育胚胎中血管形成和重塑的机制,生成了一种转基因鹌鹑模型 Tg(tie1:H2B-eYFP)。从细胞行为的角度来看,Tg(tie1:H2B-eYFP)鹌鹑胚胎是一个合适的模型,可以揭示高等脊椎动物中血管的结构和模式是如何建立的。在本手稿中,我们概述了转基因鹌鹑模型的生物学和技术背景,并描述了鹌鹑胚胎的离胚培养和延时成像分析程序。