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高粱数量性状位点图谱:性状剖析、比较基因组学和作物改良的有力工具。

The Sorghum QTL Atlas: a powerful tool for trait dissection, comparative genomics and crop improvement.

机构信息

Queensland Alliance for Agriculture and Food Innovation, University of Queensland, Warwick, QLD, 4370, Australia.

Department of Agriculture and Fisheries, Hermitage Research Facility, Warwick, QLD, 4370, Australia.

出版信息

Theor Appl Genet. 2019 Mar;132(3):751-766. doi: 10.1007/s00122-018-3212-5. Epub 2018 Oct 20.

Abstract

We describe the development and application of the Sorghum QTL Atlas, a high-resolution, open-access research platform to facilitate candidate gene identification across three cereal species, sorghum, maize and rice. The mechanisms governing the genetic control of many quantitative traits are only poorly understood and have yet to be fully exploited. Over the last two decades, over a thousand QTL and GWAS studies have been published in the major cereal crops including sorghum, maize and rice. A large body of information has been generated on the genetic basis of quantitative traits, their genomic location, allelic effects and epistatic interactions. However, such QTL information has not been widely applied by cereal improvement programs and genetic researchers worldwide. In part this is due to the heterogeneous nature of QTL studies which leads QTL reliability variation from study to study. Using approaches to adjust the QTL confidence interval, this platform provides access to the most updated sorghum QTL information than any database available, spanning 23 years of research since 1995. The QTL database provides information on the predicted gene models underlying the QTL CI, across all sorghum genome assembly gene sets and maize and rice genome assemblies and also provides information on the diversity of the underlying genes and information on signatures of selection in sorghum. The resulting high-resolution, open-access research platform facilitates candidate gene identification across 3 cereal species, sorghum, maize and rice. Using a number of trait examples, we demonstrate the power and resolution of the resource to facilitate comparative genomics approaches to provide a bridge between genomics and applied breeding.

摘要

我们描述了高粱 QTL 图谱的开发和应用,这是一个高分辨率、开放获取的研究平台,旨在促进三个谷物物种(高粱、玉米和水稻)的候选基因鉴定。许多数量性状的遗传控制机制尚未得到充分理解,也尚未得到充分利用。在过去的二十年中,在主要的谷物作物中,包括高粱、玉米和水稻,已经发表了超过一千项 QTL 和 GWAS 研究。已经产生了大量关于数量性状遗传基础、其基因组位置、等位基因效应和上位性相互作用的信息。然而,这种 QTL 信息并没有被全球的谷物改良计划和遗传研究人员广泛应用。部分原因是 QTL 研究的异质性导致 QTL 可靠性在不同研究中存在差异。该平台使用调整 QTL 置信区间的方法,提供了比任何现有数据库都更全面的最新高粱 QTL 信息,涵盖了自 1995 年以来 23 年的研究。QTL 数据库提供了与 QTL CI 相关的预测基因模型的信息,涵盖了高粱所有基因组组装基因集以及玉米和水稻基因组组装的信息,并提供了有关基础基因多样性和高粱选择特征的信息。由此产生的高分辨率、开放获取的研究平台促进了三个谷物物种(高粱、玉米和水稻)的候选基因鉴定。通过几个性状的例子,我们展示了该资源的力量和分辨率,以促进比较基因组学方法,为基因组学和应用育种之间架起桥梁。

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