总之,RNAi为脊椎动物神经系统发育过程中基因沉默的时空控制开辟了新的可能性。

Thomas Baeriswyl, Esther T Stoeckli
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引用次数: 0

摘要

功能缺失法是功能基因分析的重要工具。由于可以使用复杂的方法来操纵胚胎干细胞中的基因表达,可以用来产生突变小鼠,因此小鼠是迄今为止基础和应用生物医学研究中最重要的脊椎动物模式生物。不幸的是,现有的方法不允许在胚胎发育期间对基因沉默进行精确的时间和空间控制,限制了小鼠发育研究的有用性。由于其易于获取,鸡胚胎已成为发育研究的首选模式生物之一。它们的缺点是缺乏遗传工具,这可以通过卵内RNA干扰(in ovo RNA interference)的发展来克服,这种方法允许在体内对基因沉默进行时间和空间控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In ovo RNAi opens new possibilities for temporal and spatial control of gene silencing during development of the vertebrate nervous system.

In ovo RNAi opens new possibilities for temporal and spatial control of gene silencing during development of the vertebrate nervous system.

In ovo RNAi opens new possibilities for temporal and spatial control of gene silencing during development of the vertebrate nervous system.

Loss-of-function approaches are important tools for functional gene analysis. Due to the availability of sophisticated methods to manipulate gene expression in embryonic stem cells that can be used to generate mutant mice, the mouse is by far the most important vertebrate model organism for basic and applied biomedical research. Unfortunately, the available methods do not allow for precise temporal and spatial control of gene silencing during embryonic development limiting the usefulness of the mouse for developmental studies. Due to their easy accessibility chicken embryos have been one of the preferred model organisms for developmental studies. Their disadvantage, the lack of genetic tools, could be overcome by the development of in ovo RNAi (in ovo RNA interference), a method that allows for temporal and spatial control of gene silencing in vivo.

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