首页> 美国卫生研究院文献>Nucleic Acids Research >Positional cloning without a genome map: using Targeted RFLP Subtraction to isolate dense markers tightly linked to the regA locus of Volvox carteri.
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Positional cloning without a genome map: using Targeted RFLP Subtraction to isolate dense markers tightly linked to the regA locus of Volvox carteri.

机译:没有基因组图谱的位置克隆:使用定向RFLP减法分离与Volvox Carteri regA基因座紧密相连的致密标记。

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摘要

The ability to isolate genes defined by mutant phenotypes has fueled the rapid progress in understanding basic biological mechanisms and the causes of inherited diseases. Positional cloning, a commonly used method for isolating genes corresponding to mutations, is most efficiently applied to the small number of model organisms for which high resolution genetic maps exist. We demonstrate a new and generally applicable positional cloning method that obviates the need for a genetic map. The technique is based on Restriction Fragment Length Polymorphism (RFLP) Subtraction, a method that isolates RFLP markers spanning an entire genome. The new method, Targeted RFLP Subtraction (TRS), isolates markers from a specific region by combining RFLP Subtraction with a phenotypic pooling strategy. We used TRS to directly isolate dense markers tightly linked to the regA gene of the eukaryotic green alga Volvox. As a generally applicable method for saturating a small targeted region with DNA markers, TRS should facilitate gene isolation from diverse organisms and accelerate the process of physically mapping specific regions in preparation for sequence analysis.
机译:分离由突变表型定义的基因的能力推动了对基本生物学机制和遗传病病因的理解的迅速发展。位置克隆是一种常用的分离与突变相对应的基因的方法,它最有效地应用于少数具有高分辨率遗传图谱的模型生物。我们展示了一种新的且普遍适用的位置克隆方法,该方法无需遗传图谱。该技术基于限制性片段长度多态性(RFLP)减法,该方法可分离跨越整个基因组的RFLP标记。靶向RFLP减法(TRS)是一种新方法,通过将RFLP减法与表型合并策略结合使用,可以从特定区域中分离标记。我们使用TRS直接分离与真核绿藻Volvox regA基因紧密相连的致密标记。作为普遍适用的用DNA标记使目标区域饱和的方法,TRS应该有助于从多种生物中分离基因,并加快对特定区域进行物理作图的过程,以准备进行序列分析。

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