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手表式PCR:一种通用且高效的基因组步移策略。

Wristwatch PCR: A Versatile and Efficient Genome Walking Strategy.

作者信息

Wang Lingqin, Jia Mengya, Li Zhaoqin, Liu Xiaohua, Sun Tianyi, Pei Jinfeng, Wei Cheng, Lin Zhiyu, Li Haixing

机构信息

State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang, China.

Sino-German Joint Research Institute, Nanchang University, Nanchang, China.

出版信息

Front Bioeng Biotechnol. 2022 Apr 12;10:792848. doi: 10.3389/fbioe.2022.792848. eCollection 2022.

Abstract

Genome walking is a method used to retrieve unknown flanking DNA. Here, we reported wristwatch (WW) PCR, an efficient genome walking technique mediated by WW primers (WWPs). WWPs feature 5'- and 3'-overlap and a heterologous interval. Therefore, a wristwatch-like structure can be formed between WWPs under relatively low temperatures. Each WW-PCR set is composed of three nested (primary, secondary, and tertiary) PCRs individually performed by three WWPs. The WWP is arbitrarily annealed somewhere on the genome in the one low-stringency cycle of the primary PCR, or directionally to the previous WWP site in one reduced-stringency cycle of the secondary/tertiary PCR, producing a pool of single-stranded DNAs (ssDNAs). A target ssDNA incorporates a gene-specific primer (GSP) complementary at the 3'-end and the WWP at the 5'-end and thus can be exponentially amplified in the next high-stringency cycles. Nevertheless, a non-target ssDNA cannot be amplified as it lacks a perfect binding site for any primers. The practicability of the WW-PCR was validated by successfully accessing unknown regions flanking CD0817 glutamate decarboxylase gene and the hygromycin gene of rice. The WW-PCR is an attractive alternative to the existing genome walking techniques.

摘要

基因组步移是一种用于获取未知侧翼DNA的方法。在此,我们报道了手表(WW)PCR,这是一种由WW引物(WWP)介导的高效基因组步移技术。WWP具有5'和3'重叠以及一个异源间隔。因此,在相对较低温度下,WWP之间可形成类似手表的结构。每个WW-PCR组由三个嵌套的(一级、二级和三级)PCR组成,分别由三个WWP单独进行。在一级PCR的一个低严谨度循环中,WWP随机退火到基因组上的某个位置,或者在二级/三级PCR的一个降低严谨度循环中定向退火到前一个WWP位点,产生一单链DNA(ssDNA)池。目标ssDNA在3'端包含一个互补的基因特异性引物(GSP),在5'端包含WWP,因此可在下一个高严谨度循环中进行指数扩增。然而,非目标ssDNA由于缺乏与任何引物的完美结合位点而无法扩增。通过成功获取水稻CD0817谷氨酸脱羧酶基因和潮霉素基因侧翼的未知区域,验证了WW-PCR的实用性。WW-PCR是现有基因组步移技术的一个有吸引力的替代方法。

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