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Genome-Wide Association Studies Identified Three Independent Polymorphisms Associated with α-Tocopherol Content in Maize Kernels

机译:全基因组关联研究确定了玉米籽粒中α-生育酚含量的三个独立的多态性

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摘要

Tocopherols are a class of four natural compounds that can provide nutrition and function as antioxidant in both plants and animals. Maize kernels have low α-tocopherol content, the compound with the highest vitamin E activity, thus, raising the risk of vitamin E deficiency in human populations relying on maize as their primary vitamin E source. In this study, two insertion/deletions (InDels) within a gene encoding γ-tocopherol methyltransferase, Zea mays VTE4 (ZmVTE4), and a single nucleotide polymorphism (SNP) located ∼85 kb upstream of ZmVTE4 were identified to be significantly associated with α-tocopherol levels in maize kernels by conducting an association study with a panel of ∼500 diverse inbred lines. Linkage analysis in three populations that segregated at either one of these three polymorphisms but not at the other two suggested that the three polymorphisms could affect α-tocopherol content independently. Furthermore, we found that haplotypes of the two InDels could explain ∼33% of α-tocopherol variation in the association panel, suggesting ZmVTE4 is a major gene involved in natural phenotypic variation of α-tocopherol. One of the two InDels is located within the promoter region and associates with ZmVTE4 transcript level. This information can not only help in understanding the underlying mechanism of natural tocopherol variations in maize kernels, but also provide valuable markers for marker-assisted breeding of α-tocopherol content in maize kernels, which will then facilitate the improvement of maize as a better source of daily vitamin E nutrition.
机译:生育酚是一类四种天然化合物,可在植物和动物中提供营养并充当抗氧化剂。玉米籽粒的维生素E活性最高的化合物α-生育酚含量低,因此,在以玉米为主要维生素E来源的人群中,维生素E缺乏症的风险增加。在这项研究中,鉴定出编码γ-生育酚甲基转移酶的玉米基因Zea mays VTE4(ZmVTE4)和位于ZmVTE4上游〜85 kb处的单核苷酸多态性(SNP)内的两个插入/缺失(InDels)与α显着相关。通过与约500个不同自交系组成的小组进行关联研究,研究玉米籽粒中的生育酚水平。对在这三个多态性中的一个而不是其他两个多态性处分离的三个种群进行的连锁分析表明,这三个多态性可以独立影响α-生育酚的含量。此外,我们发现两个InDel的单倍型可以解释关联面板中约33%的α-生育酚变异,这表明ZmVTE4是参与α-生育酚自然表型变异的主要基因。两个InDel之一位于启动子区域内,并与ZmVTE4转录水平关联。这些信息不仅可以帮助理解玉米籽粒中天然生育酚变化的潜在机制,而且可以为玉米粒中α-生育酚含量的标记辅助育种提供有价值的标记,从而有助于改良玉米作为更好的来源日常维生素E营养。

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