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通过基于水凝胶的检测方法,利用MutS和聚乙二醇介导对基因组DNA中的单核苷酸多态性(SNP)进行多重基因分型。

Multiplex genotyping of SNPs in genomic DNA via hydrogel-based assay mediated with MutS and polyethylene glycol.

作者信息

Mun Seok Joon, Jang Wookyoung, Park Hyun-Seung, Lim Yong Jun, Yang Tae-Jin, Bong Ki Wan

机构信息

Department of Chemical and Biological Engineering, Korea University, Seoul, 02841, Republic of Korea.

Department of Agriculture, Forestry and Bioresources, Plant Genomics and Breeding Institute, Natural Products Research Institute, Research Institute of Agriculture and Life Sciences, College of Agriculture and Life Sciences, Seoul National University, Seoul, 08826, Republic of Korea; Department of Integrative Biological Sciences and Industry, Convergence Research Center for Natural Products, Sejong University, Seoul, 05006, Republic of Korea.

出版信息

Biosens Bioelectron. 2023 Dec 1;241:115670. doi: 10.1016/j.bios.2023.115670. Epub 2023 Sep 9.

Abstract

The simultaneous genotyping of multiple single nucleotide polymorphisms (SNPs) in genomic DNA derived from organisms holds significant potential for applications such as precision medicine and food product authentication. However, conventional assay technologies including qPCR-based techniques, microarrays, and hydrogel-based assays face limitations in efficient multiplexing of SNPs, particularly for large-size DNA beyond kilobase scales, due to constraints in multiplex capability, specificity, or sensitivity. In this study, a hydrogel-based multiplex SNP genotyping platform specifically designed for genomic DNA is presented. This platform integrates the ligation detection reaction (LDR) and rolling circle amplification (RCA) techniques within a hydrogel-based multiplex sensing system, enabling adaptable and sensitive SNP genotyping for genomic DNA. To enhance the specificity of the assay, MutS protein and polyethylene glycol are introduced into the protocol, reducing the non-specific ligation and RCA reactions synergistically. With significant specificity improvement of over 10-fold, three types of SNPs within an artificially constructed ∼1000 bp double-stranded DNA (dsDNA) are successfully genotyped with double-digit picomolar sensitivity. Furthermore, the practical applicability of the developed process for the origin identification of raw materials is demonstrated by genotyping three types of SNPs within genomic DNA obtained from two closely related plant species, Korean ginseng (Panax ginseng) and American ginseng (Panax quinquefolius), containing ca. 3.5 gigabase genome size. Of notable significance, this study marks the premiere achievement in PCR-free multiplex genotyping of SNPs in genomic DNA using a single fluorophore.

摘要

对源自生物体的基因组DNA中的多个单核苷酸多态性(SNP)进行同步基因分型,在精准医学和食品认证等应用方面具有巨大潜力。然而,包括基于定量聚合酶链反应(qPCR)的技术、微阵列和基于水凝胶的检测方法在内的传统检测技术,在SNP的高效多重检测方面存在局限性,特别是对于超过千碱基规模的大尺寸DNA,这是由于多重能力、特异性或灵敏度方面的限制。在本研究中,提出了一种专门为基因组DNA设计的基于水凝胶的多重SNP基因分型平台。该平台将连接检测反应(LDR)和滚环扩增(RCA)技术整合到基于水凝胶的多重传感系统中,实现了对基因组DNA的适应性和灵敏的SNP基因分型。为了提高检测的特异性,将MutS蛋白和聚乙二醇引入实验方案,协同减少非特异性连接和RCA反应。特异性显著提高了10倍以上,在人工构建的约1000 bp双链DNA(dsDNA)中成功对三种类型的SNP进行了基因分型,灵敏度达到两位数皮摩尔。此外,通过对从两种近缘植物物种——高丽参(Panax ginseng)和西洋参(Panax quinquefolius)获得的基因组DNA中的三种类型的SNP进行基因分型,证明了所开发方法在原材料来源鉴定方面的实际适用性,这两种植物的基因组大小约为3.5吉碱基。值得注意的是,本研究标志着使用单个荧光团对基因组DNA中的SNP进行无PCR多重基因分型的首次成功。

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