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超越途径:通过连锁和关联分析相结合,对玉米籽粒生育酚含量进行遗传剖析。

Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses.

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.

National Maize Improvement Center of China, MOA Key Lab of Maize Biology, Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Beijing, China.

出版信息

Plant Biotechnol J. 2018 Aug;16(8):1464-1475. doi: 10.1111/pbi.12889. Epub 2018 Feb 20.

Abstract

Although tocopherols play an important role in plants and animals, the genetic architecture of tocopherol content in maize kernels has remained largely unknown. In this study, linkage and association analyses were conducted to examine the genetic architecture of tocopherol content in maize kernels. Forty-one unique quantitative trait loci (QTLs) were identified by linkage mapping in six populations of recombinant inbred lines (RILs). In addition, 32 significant loci were detected via genome-wide association study (GWAS), 18 of which colocalized with the QTLs identified by linkage mapping. Fine mapping of a major QTL validated the accuracy of GWAS and QTL mapping results and suggested a role for nontocopherol pathway genes in the modulation of natural tocopherol variation. We provided genome-wide evidence that genes involved in fatty acid metabolism, chlorophyll metabolism and chloroplast function may affect natural variation in tocopherols. These findings were confirmed through mutant analysis of a particular gene from the fatty acid pathway. In addition, the favourable alleles for many of the significant SNPs/QTLs represented rare alleles in natural populations. Together, our results revealed many novel genes that are potentially involved in the variation of tocopherol content in maize kernels. Pyramiding of the favourable alleles of the newly elucidated genes and the well-known tocopherol pathway genes would greatly improve tocopherol content in maize.

摘要

尽管生育酚在植物和动物中起着重要作用,但玉米籽粒生育酚含量的遗传结构在很大程度上仍然未知。本研究通过连锁和关联分析来研究玉米籽粒生育酚含量的遗传结构。通过对六个重组自交系群体的连锁作图,鉴定出 41 个独特的数量性状位点(QTL)。此外,通过全基因组关联研究(GWAS)检测到 32 个显著位点,其中 18 个与连锁作图鉴定的 QTL 共定位。一个主要 QTL 的精细定位验证了 GWAS 和 QTL 作图结果的准确性,并表明非生育酚途径基因在调节天然生育酚变异中的作用。我们提供了全基因组证据,表明参与脂肪酸代谢、叶绿素代谢和叶绿体功能的基因可能影响生育酚的自然变异。通过对脂肪酸途径中特定基因的突变分析证实了这一发现。此外,许多显著 SNP/QTL 的有利等位基因在自然种群中代表稀有等位基因。总之,我们的研究结果揭示了许多新的基因,这些基因可能参与玉米籽粒生育酚含量的变化。新阐明的基因和已知的生育酚途径基因的有利等位基因的聚合将大大提高玉米中的生育酚含量。

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