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基因组中用于单核苷酸多态性(SNP)的限制性酶挖掘

Restriction enzyme mining for SNPs in genomes.

作者信息

Chuang Li-Yeh, Yang Cheng-Hong, Tsui Ke-Hung, Cheng Yu-Huei, Chang Phei-Lang, Wen Cheng-Hao, Chang Hsueh-Wei

机构信息

Department of Chemical Engineering, I-Shou University, Kaohsiung, Taiwan, ROC.

出版信息

Anticancer Res. 2008 Jul-Aug;28(4A):2001-7.

PMID:18649739
Abstract

Many different single nucleotide polymorphisms (SNPs) genotyping methods have been developed recently. However, most of them are expensive. Using restriction enzymes for SNP genotyping is a cost-effective method. However, restriction enzyme mining for SNPs in a genome sequence is still challenging for researchers who do not have a background in genomics and bioinformatics. In this review, the basic bioinformatics tools used for restriction enzyme mining for SNP genotyping are summarized and described. The objectives of this paper include: i) the introduction of SNPs, genotyping and PCR-restriction fragment length polymorphism (RFLP); ii) a review of components for genotyping software, including tools for primer design only or restriction enzyme mining only; iii) a review of software providing the flanking sequence for primer design; iv) recent advances in PCR-RFLP tools and natural and mutagenic PCR-RFLP; v) highlighting the strategy for restriction enzyme mining for SNP genotyping; vi) a discussion of potential problems for multiple PCR-RFLP. The different implications for restriction enzymes on sense and antisense strands are also discussed. Our PCR-RFLP freeware, SNP-RFLPing, is included in this review to illustrate many characteristics of PCR-RFLP software design. Future developments will include further sophistication of PCR-RFLP software in order to provide better visualization and a more interactive environment for SNP genotyping and to integrate the software with other tools used in association studies.

摘要

近年来,人们开发了许多不同的单核苷酸多态性(SNP)基因分型方法。然而,其中大多数方法成本高昂。使用限制性内切酶进行SNP基因分型是一种经济有效的方法。然而,对于没有基因组学和生物信息学背景的研究人员来说,在基因组序列中挖掘用于SNP基因分型的限制性内切酶仍然具有挑战性。在这篇综述中,总结并描述了用于挖掘SNP基因分型限制性内切酶的基本生物信息学工具。本文的目的包括:i)介绍SNP、基因分型和聚合酶链反应-限制性片段长度多态性(PCR-RFLP);ii)综述基因分型软件的组成部分,包括仅用于引物设计或仅用于限制性内切酶挖掘的工具;iii)综述提供引物设计侧翼序列的软件;iv)PCR-RFLP工具以及天然和诱变PCR-RFLP的最新进展;v)强调挖掘SNP基因分型限制性内切酶的策略;vi)讨论多重PCR-RFLP的潜在问题。还讨论了限制性内切酶在有义链和反义链上的不同影响。我们的PCR-RFLP免费软件SNP-RFLPing包含在本综述中,以说明PCR-RFLP软件设计的许多特点。未来的发展将包括进一步完善PCR-RFLP软件,以便为SNP基因分型提供更好的可视化和更具交互性的环境,并将该软件与关联研究中使用的其他工具集成。

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