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一种高通量基因组步移方法及其在克隆未知侧翼序列中的应用。

A high-throughput genome-walking method and its use for cloning unknown flanking sequences.

作者信息

Reddy Palakolanu Sudhakar, Mahanty Srikrishna, Kaul Tanushri, Nair Suresh, Sopory Sudhir K, Reddy Malireddy K

机构信息

International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi 110 067, India.

出版信息

Anal Biochem. 2008 Oct 15;381(2):248-53. doi: 10.1016/j.ab.2008.07.012. Epub 2008 Jul 22.

DOI:10.1016/j.ab.2008.07.012
PMID:18674512
Abstract

We developed a PCR-based high-throughput genome-walking protocol. The novelty of this protocol is in the random introduction of unique walker primer binding sites into different regions of the genome efficiently by taking advantage of the rolling circle mode of DNA synthesis by Phi29 DNA polymerase after annealing the partially degenerate primers to the denatured genomic DNA. The inherent strand-displacement activity of the Phi29 DNA polymerase displaces the 5' ends of downstream strands and DNA synthesis continues, resulting in a large number of overlapping fragments that cover the whole genome with the unique walker adapter attached to the 5' end of all the genomic DNA fragments. The directional genome walking can be performed using a locus-specific primer and the walker primer and Phi29 DNA polymerase-amplified genomic DNA fragments as template. The locus-specific primer will determine the position and direction of the genome walk. Two rounds of successive PCR amplifications by locus-specific and walker primers and their corresponding nested primers effectively amplify the flanking DNA fragments. The desired PCR fragment can be either cloned or sequenced directly using another nested, locus-specific primer. We successfully used this protocol to isolate and sequence 5' flanking regions/promoters of selected plant genes.

摘要

我们开发了一种基于聚合酶链式反应(PCR)的高通量基因组步移方案。该方案的新颖之处在于,在将部分简并引物与变性的基因组DNA退火后,利用Phi29 DNA聚合酶的滚环式DNA合成模式,有效地将独特的步移引物结合位点随机引入基因组的不同区域。Phi29 DNA聚合酶固有的链置换活性会置换下游链的5'端,DNA合成继续进行,从而产生大量重叠片段,这些片段覆盖整个基因组,且独特的步移衔接子连接在所有基因组DNA片段的5'端。可以使用位点特异性引物、步移引物以及以Phi29 DNA聚合酶扩增的基因组DNA片段作为模板进行定向基因组步移。位点特异性引物将决定基因组步移的位置和方向。通过位点特异性引物和步移引物及其相应的巢式引物进行两轮连续的PCR扩增,可有效扩增侧翼DNA片段。所需的PCR片段既可以克隆,也可以使用另一个巢式的位点特异性引物直接测序。我们成功地使用该方案分离并测序了所选植物基因的5'侧翼区域/启动子。

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