SNP markers and their impact on plant breeding.

International journal of plant genomics Pub Date : 2012-01-01 Epub Date: 2012-12-18 DOI:10.1155/2012/728398
Jafar Mammadov, Rajat Aggarwal, Ramesh Buyyarapu, Siva Kumpatla
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引用次数: 388

Abstract

The use of molecular markers has revolutionized the pace and precision of plant genetic analysis which in turn facilitated the implementation of molecular breeding of crops. The last three decades have seen tremendous advances in the evolution of marker systems and the respective detection platforms. Markers based on single nucleotide polymorphisms (SNPs) have rapidly gained the center stage of molecular genetics during the recent years due to their abundance in the genomes and their amenability for high-throughput detection formats and platforms. Computational approaches dominate SNP discovery methods due to the ever-increasing sequence information in public databases; however, complex genomes pose special challenges in the identification of informative SNPs warranting alternative strategies in those crops. Many genotyping platforms and chemistries have become available making the use of SNPs even more attractive and efficient. This paper provides a review of historical and current efforts in the development, validation, and application of SNP markers in QTL/gene discovery and plant breeding by discussing key experimental strategies and cases exemplifying their impact.

Abstract Image

SNP标记及其对植物育种的影响。
分子标记的使用彻底改变了植物遗传分析的速度和精度,从而促进了作物分子育种的实施。在过去的三十年中,标记系统和相应的检测平台的发展取得了巨大的进步。近年来,基于单核苷酸多态性(SNPs)的标记由于其在基因组中的丰度和对高通量检测格式和平台的适应性迅速成为分子遗传学的中心舞台。由于公共数据库中序列信息的不断增加,计算方法主导了SNP发现方法;然而,复杂的基因组在鉴定这些作物的信息性snp方面提出了特殊的挑战。许多基因分型平台和化学物质的出现使得snp的使用更具吸引力和效率。本文综述了SNP标记在QTL/基因发现和植物育种中的开发、验证和应用的历史和现状,讨论了关键的实验策略和例子,说明了SNP标记在QTL/基因发现和植物育种中的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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