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Mapping and Comparison of Quantitative Trait Loci for Oleic Acid Seed Content in Two Segregating Soybean Populations

机译:两个分离大豆群体中油酸种子含量的数量性状位点的定位与比较

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Soybean [Glycine max (L.) Merr.] produces 29.4% of the world's edible vegetable oil. An important determinant of the nutritional value and the oxidative stability of soybean oil is the oleic acid content. Elevation of the oleate content levels leads to the improvement of soybean oil quality. However, our knowledge of the genetic factors underlying oleate variation in soybean seeds remains incomplete, hampering the use of marker-assisted selection in soybean breeding programs. We used a whole-genome scan approach to identify oleate quantitative trait loci (QTLs) in a soybean population segregating for oleic acid content and a cognate segregating population to confirm oleate QTL. A novel oleate QTL with moderate effects was revealed on linkage group F in the proximity of the simple sequence repeat marker sat_309, which was confirmed in both populations across all environments tested. Furthermore, this study verified the existence of an oleate QTL with moderate effects in the proximity of FAD2-1B isoform on linkage group 1, which interacted epistatically with the oleate QTL on linkage group F. Oleate QTLs with moderate effects were also detected on linkage groups A2 and N only in one of the populations under study. Minor QTLs on linkage groups E, L, All, and D2 confirmed previous mapping studies for oleate content in soybean.
机译:大豆[Glycine max(L.)Merr。]占世界食用植物油的29.4%。大豆油的营养价值和氧化稳定性的重要决定因素是油酸含量。油酸盐含量水平的提高导致大豆油品质的改善。但是,我们对大豆种子中油酸盐变化的遗传因素的了解仍然不完整,这妨碍了大豆育种计划中标记辅助选择的使用。我们使用了全基因组扫描方法来识别分离出油酸含量的大豆群体中的油酸盐定量性状基因座(QTL),并利用同源分离的群体来确认油酸盐QTL。在简单序列重复标记sat_309附近的连接基团F上发现了一种具有中等作用的新型油酸酯QTL,该序列已在所有测试环境中的两个种群中得到证实。此外,这项研究验证了在连锁群1的FAD2-1B亚型附近存在中等影响的油酸QTL,它与连锁群F的油酸QTL发生上位性相互作用。在连锁群上也检测到中等影响的油酸QTL仅在其中一个研究人群中提供A2和N。对连接基团E,L,All和D2的次要QTL证实了以前对大豆中油酸盐含量作图的研究。

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