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Rediscovering the chick embryo as a model to study retinal development

机译:重新发现小鸡胚胎作为研究视网膜发育的模型

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The embryonic chick occupies a privileged place among animal models used in developmental studies. Its rapid development and accessibility for visualization and experimental manipulation are just some of the characteristics that have made it a vertebrate model of choice for more than two millennia. Until a few years ago, the inability to perform genetic manipulations constituted a major drawback of this system. However, the completion of the chicken genome project and the development of techniques to manipulate gene expression have allowed this classic animal model to enter the molecular age. Such techniques, combined with the embryological manipulations that this system is well known for, provide a unique toolkit to study the genetic basis of neural development. A major advantage of these approaches is that they permit targeted gene misexpression with extremely high spatiotemporal resolution and over a large range of developmental stages, allowing functional analysis at a level, speed and ease that is difficult to achieve in other systems. This article provides a general overview of the chick as a developmental model focusing more specifically on its application to the study of eye development. Special emphasis is given to the state of the art of the techniques that have made gene gain- and loss-of-function studies in this model a reality. In addition, we discuss some methodological considerations derived from our own experience that we believe will be beneficial to researchers working with this system.
机译:在发育研究中使用的动物模型中,胚胎小鸡占据了特权。它的快速发展以及可视化和实验操作的可访问性只是使其成为超过两千年的脊椎动物模型的一些特征。直到几年前,由于无法执行基因操作,因此构成了该系统的主要缺陷。但是,鸡基因组计划的完成和操纵基因表达的技术的发展使这种经典的动物模型进入了分子时代。此类技术与该系统众所周知的胚胎学操作相结合,为研究神经发育的遗传基础提供了独特的工具包。这些方法的主要优点是,它们可以以极高的时空分辨率在较大范围的发育阶段中实现靶向基因的错误表达,从而可以在其他系统中难以实现的水平,速度和便利性下进行功能分析。本文提供了小鸡作为发育模型的一般概述,重点是更具体地将其应用到眼睛发育研究中。特别强调了使该模型中的基因获得和功能丧失研究成为现实的技术的现状。此外,我们讨论了一些从我们自己的经验中得出的方法论上的考虑,我们认为这将对使用此系统的研究人员有所帮助。

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