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Mapping QTL controlling fatty acid composition in a doubled haploid rapeseed population segregating for oil content

机译:在分离含油量的双单倍油菜籽群体中绘制控制QTL的脂肪酸组成图

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Increasing oil content and improving the fatty acid composition in the seed oil are important breeding goals for rapeseed (Brassica napus L.). The objective of the study was to investigate a possible relationship between fatty acid composition and oil content in an oilseed rape doubled haploid (DH) population. The DH population was derived from a cross between the German cultivar Sollux and the Chinese cultivar Gaoyou, both having a high erucic acid and a very high oil content. In total, 282 DH lines were evaluated in replicated field experiments in four environments, two each in Germany and in China. Fatty acid composition of the seed oil was analyzed by gas liquid chromatography and oil content was determined by NIRS. Quantitative trait loci (QTL) for fatty acid contents were mapped and their additive main effects were determined by a mixed model approach using the program QTLMapper. For all fatty acids large and highly significant genetic variations among the genotypes were observed. High heritabilities were determined for oil content and for all fatty acids (h po = 0.82 to 0.94), except for stearic acid content (h po= 0.38). Significant correlations were found between the contents of all individual fatty acids and oil content. Closest genetic correlations were found between oil content and the sum of polyunsaturated fatty acids (18:2 + 18:3; r G = -0.46), the sum of monounsaturated fatty acids (18:1 + 20:1 + 22:1; r G = 0.46) and palmitic acid (16:0; r G = -0.34), respectively. Between one and eight QTL for the contents of the different fatty acids were detected. Together, their additive main effects explained between 28% and 65% of the genetic variance for the individual fatty acids. Ten QTL for fatty acid contents mapped within a distance of 0 to 10 cM to QTL for oil content, which were previously identified in this DH population. QTL mapped within this distance to each other are likely to be identical. The results indicate a close interrelationship between fatty acid composition and oil content, which should be considered when breeding for increased oil content or improved oil composition in rapeseed.
机译:增加油含量并改善种子油中的脂肪酸组成是菜籽(甘蓝型油菜)的重要育种目标。该研究的目的是调查油菜双单倍体(DH)群体中脂肪酸组成与含油量之间的可能关系。 DH群体来自德国品种Sollux和中国品种高邮之间的杂交,二者均具有较高的芥酸和很高的油含量。共有282条DH系在四个环境中通过重复田间实验进行了评估,在德国和中国分别有两个。通过气相色谱法分析种子油中的脂肪酸组成,并通过NIRS测定油含量。绘制了脂肪酸含量的定量性状基因座(QTL),并使用程序QTLMapper通过混合模型方法确定了其加性主效应。对于所有脂肪酸,观察到基因型之间的大且高度显着的遗传变异。对于油含量和所有脂肪酸(h po = 0.82至0.94),除硬脂酸含量(h po = 0.38)外,均确定了较高的遗传力。发现所有单独脂肪酸的含量与油含量之间存在显着的相关性。含油量与多不饱和脂肪酸之和(18:2 + 18:3; r G = -0.46),单不饱和脂肪酸之和(18:1 + 20:1 + 22:1; r G = 0.46)和棕榈酸(16:0; r G = -0.34)。检测到不同脂肪酸含量的1至8个QTL。总之,它们的累加主效应可解释单个脂肪酸遗传变异的28%至65%。十个脂肪酸含量的QTL映射到与油含量的QTL的距离为0到10 cM的范围内,先前已在该DH人群中确定。在此距离内相互映射的QTL可能相同。结果表明,脂肪酸组成与油含量之间存在密切的相互关系,在育种时应考虑增加油菜籽中的油含量或改善油组成。

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