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大麦种子生育三烯酚自然变异的全基因组关联分析。

Genome-wide association analysis of natural variation in seed tocochromanols of barley.

机构信息

USDA-ARS, Cereal Crops Research Unit, 502 Walnut Street, Madison, WI, 53726, USA.

Department of Plant Pathology, Univ. of Minnesota, St. Paul, MN, 55108, USA.

出版信息

Plant Genome. 2020 Nov;13(3):e20039. doi: 10.1002/tpg2.20039. Epub 2020 Sep 28.

Abstract

Tocochromanols (tocols for short), commonly called Vitamin E, are lipid-soluble plant antioxidants vital for regulating lipid peroxidation in chloroplasts and seeds. Barley (Hordeum vulgare L.) seeds contain all eight different isoforms of tocols; however, the extent of natural variation in their composition and their underlying genetic basis is not known. Tocol levels in barley seeds were quantified in diverse H. vulgare panels comprising 297 wild lines from a diversity panel and 160 cultivated spring-type accessions from the mini-core panel representing the genetic diversity of the USDA barley germplasm collection. Significant differences were observed in the concentration of tocols between the two panels. To identify the genes associated with tocols, genome-wide association analysis was conducted with single nucleotide polymorphisms (SNPs) from Illumina arrays for the mini-core panel and genotyping-by-sequencing for the wild barley panel. Forty unique SNPs in the wild barley and 27 SNPs in the mini-core panel were significantly associated with various tocols. Marker-trait associations (MTAs) were identified on chromosomes 1, 6, and 7 for key genes in the tocol biosynthesis pathway, which have also been reported in other studies. Several novel MTAs were identified on chromosomes 2, 3, 4 and 5 and were found to be in proximity to genes involved in the generation of precursor metabolites required for tocol biosynthesis. This study provides a valuable resource for barley breeding programs targeting specific isoforms of seed tocols and for investigating the physiological roles of these metabolites in seed longevity, dormancy, and germination.

摘要

生育三烯酚(简称生育酚),通常被称为维生素 E,是脂溶性植物抗氧化剂,对调节叶绿体和种子中的脂质过氧化至关重要。大麦(Hordeum vulgare L.)种子中含有生育酚的所有 8 种不同异构体;然而,其组成的自然变异程度及其潜在的遗传基础尚不清楚。在由多样性面板中的 297 条野生系和迷你核心面板中的 160 个春性品种组成的不同大麦面板中,对大麦种子中的生育酚水平进行了定量分析,该迷你核心面板代表了美国农业部大麦种质资源收集的遗传多样性。在这两个面板之间观察到生育酚浓度存在显著差异。为了鉴定与生育酚相关的基因,对迷你核心面板中的 Illumina 阵列单核苷酸多态性(SNP)和野生大麦面板中的测序分型进行了全基因组关联分析。在野生大麦中发现了 40 个独特的 SNP 和迷你核心面板中的 27 个 SNP 与各种生育酚显著相关。在生育酚生物合成途径的关键基因上,在野生大麦和迷你核心面板上鉴定到了 40 个独特的 SNP 和迷你核心面板中的 27 个 SNP 与各种生育酚显著相关。在生育酚生物合成途径的关键基因上,在野生大麦和迷你核心面板上鉴定到了 40 个独特的 SNP 和迷你核心面板中的 27 个 SNP 与各种生育酚显著相关。在生育酚生物合成途径的关键基因上,在野生大麦和迷你核心面板上鉴定到了 40 个独特的 SNP 和迷你核心面板中的 27 个 SNP 与各种生育酚显著相关。在野生大麦和迷你核心面板上鉴定到了 40 个独特的 SNP 和迷你核心面板中的 27 个 SNP 与各种生育酚显著相关。标记-性状关联(MTA)在第 1、6 和 7 号染色体上被鉴定出来,这些染色体上的关键基因也在其他研究中报道过。在第 2、3、4 和 5 号染色体上还鉴定到了一些新的 MTA,这些 MTA 与生成生育酚生物合成所需前体代谢物的基因接近。这项研究为针对种子生育酚特定异构体的大麦育种计划提供了有价值的资源,并为研究这些代谢物在种子寿命、休眠和萌发中的生理作用提供了线索。

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