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甘蓝型油菜脂肪酸去饱和途径相关候选基因和 QTL 的鉴定与定位。

The identification and mapping of candidate genes and QTL involved in the fatty acid desaturation pathway in Brassica napus.

机构信息

Department of Crop Genetics, John Innes Centre, Norwich Research Park, Colney, Norwich, NR4 7UH, UK.

出版信息

Theor Appl Genet. 2011 Apr;122(6):1075-90. doi: 10.1007/s00122-010-1512-5. Epub 2010 Dec 24.

Abstract

We constructed a linkage map for the population QDH, which was derived from a cross between an oilseed rape cultivar and a resynthesised Brassica napus. The linkage map included ten markers linked to loci orthologous to those encoding fatty acid biosynthesis genes in Arabidopsis thaliana. The QDH population contains a high level of allelic variation, particularly in the C genome. We conducted quantitative trait locus (QTL) analyses, using field data obtained over 3 years, for the fatty acid composition of seed oil. The population segregates for the two major loci controlling erucic acid content, on linkage groups A8 and C3, which quantitatively affect the content of other fatty acids and is a problem generally encountered when crossing "wild" germplasm with cultivated "double low" oilseed rape cultivars. We assessed three methods for QTL analysis, interval mapping, multiple QTL mapping and single marker regression analysis of the subset of lines with low erucic acid. We found the third of these methods to be most appropriate for our main purpose, which was the study of the genetic control of the desaturation of 18-carbon fatty acids. This method enabled us to decouple the effect of the segregation of the erucic acid-controlling loci and identify 34 QTL for fatty acid content of seed oil, 14 in the A genome and 20 in the C genome. The QTL indicate the presence of 13 loci with novel alleles inherited from the progenitors of the resynthesised B. napus that might be useful for modulating the content or extent of desaturation of polyunsaturated fatty acids, only one of which coincides with the anticipated position of a candidate gene, an orthologue of FAD2.

摘要

我们构建了一个来自油菜品种与合成甘蓝型油菜杂交的 QDH 群体的连锁图谱。该图谱包含十个与拟南芥脂肪酸生物合成基因编码的同源基因相连锁的标记。QDH 群体含有高水平的等位基因变异,特别是在 C 基因组中。我们利用三年田间数据进行了脂肪酸组成的数量性状基因座(QTL)分析。该群体在控制芥酸含量的两个主要基因座上分离,这两个基因座分别位于连锁群 A8 和 C3 上,它们定量影响其他脂肪酸的含量,这是在与“野生”种质杂交时普遍遇到的问题与栽培的“双低”油菜品种。我们评估了三种 QTL 分析方法,区间作图、多 QTL 作图和低芥酸亚群的单标记回归分析。我们发现第三种方法最适合我们的主要目的,即研究 18 碳脂肪酸去饱和的遗传控制。这种方法使我们能够分离出芥酸控制基因座分离的影响,并鉴定出 34 个与种子油脂肪酸含量相关的 QTL,其中 A 基因组中有 14 个,C 基因组中有 20 个。这些 QTL 表明,从合成的甘蓝型油菜的祖先中遗传了 13 个具有新等位基因的位点,这些位点可能有助于调节多不饱和脂肪酸的含量或去饱和程度,其中只有一个位点与候选基因 FAD2 的同源物的预期位置一致。

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