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解析油菜籽(甘蓝型油菜)种子生育酚含量和组成的遗传基础。

Unraveling the genetic basis of seed tocopherol content and composition in rapeseed (Brassica napus L.).

机构信息

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

出版信息

PLoS One. 2012;7(11):e50038. doi: 10.1371/journal.pone.0050038. Epub 2012 Nov 20.

Abstract

BACKGROUND

Tocopherols are important antioxidants in vegetable oils; when present as vitamin E, tocopherols are an essential nutrient for humans and livestock. Rapeseed (Brassica napus L, AACC, 2 n = 38) is one of the most important oil crops and a major source of tocopherols. Although the tocopherol biosynthetic pathway has been well elucidated in the model photosynthetic organisms Arabidopsis thaliana and Synechocystis sp. PCC6803, knowledge about the genetic basis of tocopherol biosynthesis in seeds of rapeseed is scant. This project was carried out to dissect the genetic basis of seed tocopherol content and composition in rapeseed through quantitative trait loci (QTL) detection, genome-wide association analysis, and homologous gene mapping.

METHODOLOGY/PRINCIPAL FINDINGS: We used a segregating Tapidor × Ningyou7 doubled haploid (TNDH) population, its reconstructed F(2) (RC-F(2)) population, and a panel of 142 rapeseed accessions (association panel). Genetic effects mainly contributed to phenotypic variations in tocopherol content and composition; environmental effects were also identified. Thirty-three unique QTL were detected for tocopherol content and composition in TNDH and RC-F(2) populations. Of these, seven QTL co-localized with candidate sequences associated with tocopherol biosynthesis through in silico and linkage mapping. Several near-isogenic lines carrying introgressions from the parent with higher tocopherol content showed highly increased tocopherol content compared with the recurrent parent. Genome-wide association analysis was performed with 142 B. napus accessions. Sixty-one loci were significantly associated with tocopherol content and composition, 11 of which were localized within the confidence intervals of tocopherol QTL.

CONCLUSIONS/SIGNIFICANCE: This joint QTL, candidate gene, and association mapping study sheds light on the genetic basis of seed tocopherol biosynthesis in rapeseed. The sequences presented here may be used for marker-assisted selection of oilseed rape lines with superior tocopherol content and composition.

摘要

背景

生育酚是植物油中的重要抗氧化剂;当以维生素 E 的形式存在时,生育酚是人类和牲畜的必需营养素。油菜( Brassica napus L,AACC,2n=38)是最重要的油料作物之一,也是生育酚的主要来源。尽管生育酚的生物合成途径在模式光合生物拟南芥和集胞藻 PCC6803 中已得到很好的阐明,但关于油菜种子中生育酚生物合成的遗传基础的知识却很少。本项目通过数量性状位点(QTL)检测、全基因组关联分析和同源基因映射,旨在解析油菜种子生育酚含量和组成的遗传基础。

方法/主要发现:我们使用了一个分离的 Tapidor×Ningyou7 加倍单倍体(TNDH)群体、其重建的 F2(RC-F2)群体和一个 142 个油菜品种(关联群体)面板。遗传效应主要导致生育酚含量和组成的表型变异;还确定了环境效应。在 TNDH 和 RC-F2 群体中,共检测到 33 个与生育酚含量和组成相关的独特 QTL。其中,7 个 QTL 通过计算机和连锁作图与与生育酚生物合成相关的候选序列共定位。与生育酚含量较高的亲本相比,携带来自高生育酚亲本的导入片段的几个近等基因系表现出高度增加的生育酚含量。对 142 个油菜品种进行了全基因组关联分析。61 个位点与生育酚含量和组成显著相关,其中 11 个位点位于生育酚 QTL 的置信区间内。

结论/意义:这项联合 QTL、候选基因和关联作图研究揭示了油菜种子生育酚生物合成的遗传基础。本文提出的序列可用于辅助选择具有优异生育酚含量和组成的油菜品系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3fc/3502226/cf3dec59c122/pone.0050038.g001.jpg

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