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Randomly broken fragment PCR with 5′ end-directed adaptor for genome walking

机译:带有5末端衔接子的随机断裂片段PCR用于基因组步移

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摘要

Many genome walking methods based on polymerase chain reaction (PCR) are available, including those with and without restriction enzyme modification. Nevertheless, these methods suffer from low reproducibility, inefficiency, and non-specificity. Here, we present a traceable and efficient PCR strategy: randomly broken fragment PCR with 5′ end-directed adaptor for genome walking. The genome is first fragmented randomly. After blunting ends, the fragments are ligated to the 5′ end-directed adaptors. Semi-nested PCR is then performed. Thus, we can obtain an unknown sequence by cloning the fragments of interest, followed by sequencing. This method effectively bypasses the above-mentioned obstacles and offers the advances: 1) genome fragmentation without using restriction enzymes; 2) enhancement of primer specificity and the prevention of self-ligation between the adaptors by employing a 5′ end-directed adaptor. All of the steps in this new method are straightforward, and the unknown sequence can be definitively obtained by merely applying the method once.
机译:许多基于聚合酶链反应(PCR)的基因组步移方法都是可用的,包括那些有或没有限制酶修饰的方法。然而,这些方法具有低再现性,低效率和非特异性的缺点。在这里,我们提出了一种可追溯且有效的PCR策略:随机断裂的片段PCR和5'末端定向接头,用于基因组步移。首先将基因组随机片段化。钝端结束后,将片段连接至5'末端导向的衔接子。然后进行半巢式PCR。因此,我们可以通过克隆目标片段,然后测序来获得未知序列。该方法有效地绕过了上述障碍并提供了进展:1)不使用限制酶的基因组片段化; 2)通过使用5'端接衔接子提高引物特异性并防止衔接子之间的自连接。这种新方法的所有步骤都很简单,只需应用一次该方法就可以明确地获得未知序列。

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