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分子标记的开发与应用:过去与现在。

Development and use of molecular markers: past and present.

作者信息

Grover Atul, Sharma P C

机构信息

a Biotechnology Division , Defence Institute of Bio Energy Research , Goraparao, P.O. Arjunpur , Haldwani , Uttarakhand , India and.

b University School of Biotechnology, Guru Gobind Singh Indraprastha University , Dwarka Sec. 16C , New Delhi , India.

出版信息

Crit Rev Biotechnol. 2016;36(2):290-302. doi: 10.3109/07388551.2014.959891. Epub 2014 Nov 28.

DOI:10.3109/07388551.2014.959891
PMID:25430893
Abstract

Molecular markers, due to their stability, cost-effectiveness and ease of use provide an immensely popular tool for a variety of applications including genome mapping, gene tagging, genetic diversity diversity, phylogenetic analysis and forensic investigations. In the last three decades, a number of molecular marker techniques have been developed and exploited worldwide in different systems. However, only a handful of these techniques, namely RFLPs, RAPDs, AFLPs, ISSRs, SSRs and SNPs have received global acceptance. A recent revolution in DNA sequencing techniques has taken the discovery and application of molecular markers to high-throughput and ultrahigh-throughput levels. Although, the choice of marker will obviously depend on the targeted use, microsatellites, SNPs and genotyping by sequencing (GBS) largely fulfill most of the user requirements. Further, modern transcriptomic and functional markers will lead the ventures onto high-density genetic map construction, identification of QTLs, breeding and conservation strategies in times to come in combination with other high throughput techniques. This review presents an overview of different marker technologies and their variants with a comparative account of their characteristic features and applications.

摘要

分子标记因其稳定性、成本效益和易用性,为包括基因组作图、基因标记、遗传多样性、系统发育分析和法医调查在内的各种应用提供了一种极为流行的工具。在过去三十年中,全球范围内在不同系统中开发并应用了许多分子标记技术。然而,其中只有少数几种技术,即限制性片段长度多态性(RFLP)、随机扩增多态性DNA(RAPD)、扩增片段长度多态性(AFLP)、简单序列重复区间(ISSR)、简单序列重复(SSR)和单核苷酸多态性(SNP)得到了全球认可。DNA测序技术最近的一场革命已将分子标记的发现和应用提升到了高通量和超高通量水平。尽管标记的选择显然将取决于目标用途,但微卫星、SNP和测序基因分型(GBS)在很大程度上满足了大多数用户的需求。此外,现代转录组和功能标记将在未来与其他高通量技术相结合,引领构建高密度遗传图谱、鉴定数量性状位点(QTL)、育种和保护策略等工作。本综述概述了不同的标记技术及其变体,并对其特征和应用进行了比较说明。

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