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基于大豆种质资源多样性的种子油和蛋白质含量 QTL 的全基因组关联作图。

Genome-wide association mapping of QTL underlying seed oil and protein contents of a diverse panel of soybean accessions.

机构信息

The National Key Facility for Crop, Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, 100081 Beijing, China.

Department of Breeding Research, Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany.

出版信息

Plant Sci. 2018 Jan;266:95-101. doi: 10.1016/j.plantsci.2017.04.013. Epub 2017 May 2.

DOI:10.1016/j.plantsci.2017.04.013
PMID:29241572
Abstract

To investigate the genetic basis of variation in oil and protein contents in soybean seeds, a diverse collection of 421 mainly Chinese soybean cultivars was genotyped using 1536 SNPs, mostly from candidate genes related to acyl-lipid metabolism and from regions harboring known QTL. Six significant associations were identified for each of seed oil and protein contents which individually explained 2.7-5.9% of the phenotypic variance. Six associations occurred in or near known QTL and the remaining are putative novel QTL. Ten significant associations influenced the oil content without decreasing protein content, and vice versa. One SNP was pleiotropic, with opposite effects on oil and protein contents. The genetic region covering Map-6076 and-6077 was shown to be involved in controlling oil content in soybean by integrating the results of association mapping with information on known QTL and tissue-specific expression data. This region was subject to strong selection during the genetic improvement of soybean. Our results not only confirm and refine the map positions of known QTL but also contribute to a further elucidation of the genetic architecture of protein and oil contents in soybean seeds by identifying new associations exhibiting pleiotropic effects on seed protein and oil contents.

摘要

为了研究大豆种子中油分和蛋白质含量变化的遗传基础,利用 1536 个 SNP(主要来自与酰基脂质代谢相关的候选基因和含有已知 QTL 的区域)对来自中国的 421 个主要大豆品种进行了基因型分析。对于每个种子的油分和蛋白质含量,分别鉴定到了 6 个显著关联,其分别解释了 2.7-5.9%的表型方差。6 个关联发生在已知 QTL 或其附近,其余的则是假定的新 QTL。10 个关联影响油分含量而不降低蛋白质含量,反之亦然。一个 SNP 具有多效性,对油分和蛋白质含量的影响相反。通过将关联作图的结果与已知 QTL 和组织特异性表达数据相结合,证明了包含 Map-6076 和 Map-6077 的遗传区域参与了大豆油分含量的调控。该区域在大豆的遗传改良过程中受到了强烈的选择。我们的研究结果不仅证实和细化了已知 QTL 的图谱位置,而且通过鉴定对种子蛋白质和油分含量表现出多效性的新关联,有助于进一步阐明大豆种子中蛋白质和油分含量的遗传结构。

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