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A novel quantitative trait locus on chromosome A9 controlling oleic acid content in Brassica napus

机译:铜豆腐染色体A9控制油酸含量的一种新型定量性状基因座

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One of the most important goals in the breeding of oilseed crops, including Brassica napus, is to improve the quality of edible vegetable oil, which is mainly determined by the seed fatty acid composition, particularly the C18:1 content. Previous studies have indicated that the C18:1 content is a polygenic trait, and no stable quantitative trait loci (QTLs) except for FAD2 have been reported. By performing a GWAS using 375 low erucic acid B.?napus accessions genotyped with the Brassica 60K SNP array and constructing a high‐density SNP‐based genetic map of a 150 DH population, we identified a novel QTL on the A9 chromosome. The novel locus could explain 11.25%, 5.72% and 6.29% of phenotypic variation during three consecutive seasons and increased the C18:1 content by approximately 3%–5%. By fine mapping and gene expression analysis, we found three potential candidate genes and verified the fatty acids in a homologous gene mutant of Arabidopsis. A metal ion‐binding protein was found to be the most likely candidate gene in the region. Thus, the C18:1 content can be further increased to about 80% with this novel locus together with FAD2 mutant allele without compromise of agronomic performance. A closely linked marker, BnA129, for this novel QTL (OLEA9) was developed so that we can effectively identify materials with high C18:1 content at an early growth stage by marker‐assisted selection. Our results may also provide new insight for understanding the complex genetic mechanism of fatty acid metabolism.
机译:油籽作物繁殖中最重要的目标之一,包括芸薹属植物,是改善食用植物油的质量,主要由种子脂肪酸组合物,特别是C18:1含量决定。以前的研究表明,C18:1含量是多基因特征,并且报告了除FAD2之外的稳定定量性状基因座(QTL)。通过使用375低煤酸B.?Apus释放的GWAS与甘蓝型60K SNP阵列进行基因分型并构建150瓦姆群的高密度SNP遗传图谱,我们在A9染色体上鉴定了一种新型QTL。在连续三个季节中,新型基因座可以解释11.25%,5.72%和6.29%的表型变异,并将C18:1含量增加约3%-5%。通过精细的测绘和基因表达分析,我们发现三种潜在的候选基因并验证了拟南芥的同源基因突变体中的脂肪酸。发现金属离子结合蛋白是该区域中最有可能的候选基因。因此,C18:1含量可以进一步增加至此新轨迹与FAD2突变等位基因一起增加至约80%,而不会妥协农艺性能。开发了一种紧密连接的标记,BNA129,用于这种新型QTL(OLEA9),以便通过标记辅助选择,有效地识别高C18:1含量的高C18:1含量。我们的结果还可以为了解脂肪酸代谢的复杂遗传机制提供新的洞察力。

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