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FLP/FRT and Cre/lox recombination technology in C. elegans

机译:秀丽隐杆线虫的FLP / FRT和Cre / lox重组技术

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摘要

One of the most powerful aspects of biological inquiry using model organisms is the ability to control gene expression. A holy grail is both temporal and spatial control of the expression of specific gene products - that is, the ability to express or withhold the activity of genes or their products in specific cells at specific times. Ideally such a method would also regulate the precise levels of gene activity, and alterations would be reversible. The related goal of controlled or purposefully randomized expression of visible markers is also tremendously powerful. While not all of these feats have been accomplished in Caenorhabditis elegans to date, much progress has been made, and recent technologies put these goals within closer reach. Here, I present published examples of successful two-component site-specific recombination in C. elegans. These technologies are based on the principle of controlled intra-molecular excision or inversion of DNA sequences between defined sites, as driven by FLP or Cre recombinases. I discuss several prospects for future applications of this technology.
机译:使用模型生物进行生物学探究的最强大方面之一是控制基因表达的能力。圣杯是对特定基因产物表达的时间和空间控制,即特定时间在特定细胞中表达或抑制基因或其产物活性的能力。理想地,这种方法还将调节基因活性的精确水平,并且改变是可逆的。可见标记的受控或有目的随机表达的相关目标也非常强大。到目前为止,虽然并非所有这些成就都已在秀丽隐杆线虫中实现,但已经取得了很大进展,并且最新技术使这些目标更加接近。在这里,我介绍了秀丽隐杆线虫成功的两组分位点特异性重组的已发表实例。这些技术基于受控的分子内切除或由FLP或Cre重组酶驱动的特定位点之间的DNA序列倒置的原理。我讨论了该技术未来应用的几种前景。

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