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NGS technologies for analyzing germplasm diversity in genebanks

机译:NGS技术分析种质库种质多样性

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摘要

More than 70 years after the first ex situ genebanks have been established, major efforts in this field are still concerned with issues related to further completion of individual collections and securing of their storage. Attempts regarding valorization of ex situ collections for plant breeders have been hampered by the limited availability of phenotypic and genotypic information. With the advent of molecular marker technologies first efforts were made to fingerprint genebank accessions, albeit on a very small scale and mostly based on inadequate DNA marker systems. Advances in DNA sequencing technology and the development of high-throughput systems for multiparallel interrogation of thousands of single nucleotide polymorphisms (SNPs) now provide a suite of technological platforms facilitating the analysis of several hundred of Gigabases per day using state-of-the-art sequencing technology or, at the same time, of thousands of SNPs. The present review summarizes recent developments regarding the deployment of these technologies for the analysis of plant genetic resources, in order to identify patterns of genetic diversity, map quantitative traits and mine novel alleles from the vast amount of genetic resources maintained in genebanks around the world. It also refers to the various shortcomings and bottlenecks that need to be overcome to leverage the full potential of high-throughput DNA analysis for the targeted utilization of plant genetic resources.
机译:建立第一个非原生境种质库已有70多年了,这一领域的主要努力仍然与与进一步完成单个收藏品和确保其保存有关的问题有关。表型和基因型信息的可获得性有限,阻碍了为植物育种者异地收集物进行价质化的尝试。随着分子标记技术的出现,人们开始了对指纹种质库登录的努力,尽管规模很小,并且主要是基于不足的DNA标记系统。 DNA测序技术的进步以及用于数以千计的单核苷酸多态性(SNP)的多重平行审讯的高通量系统的发展现在提供了一套技术平台,可帮助您每天使用最先进的技术分析数百个千兆碱基测序技术,或同时具有数千个SNP。本综述总结了有关这些技术用于植物遗传资源分析的最新进展,以便从世界各地基因库中保存的大量遗传资源中识别遗传多样性模式,绘制定量性状并挖掘新的等位基因。它还涉及需要克服的各种缺点和瓶颈,以利用高通量DNA分析的全部潜力来有针对性地利用植物遗传资源。

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