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首页> 外文期刊>Molecular Breeding >Mapping quantitative trait loci controlling oil content, oleic acid and linoleic acid content in sunflower (Helianthus annuus L.)
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Mapping quantitative trait loci controlling oil content, oleic acid and linoleic acid content in sunflower (Helianthus annuus L.)

机译:绘制控制向日葵中油含量,油酸和亚油酸含量的定量性状基因座

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Sunflower oil with high oleic acid content is in great demand due to its nutritional as well as industrial benefits. The trait is mainly controlled by dominant alleles at a major gene, Ol, with other modifiers. The objectives of this research were to map the oil content, oleic acid and linoleic acid content in sunflower seeds. An F2 mapping population from cytoplasmic male-sterile line COSF 7A (33-35 % oleic acid) and high oleic acid inbred line HO 5-13 (88-90 % oleic acid) was developed and phenotyped for oil content, oleic acid and linoleic acid content at the F2 seed level. High phenotypic and genotypic coefficients of variation were recorded for oleic acid and linoleic acid content. High heritability and high genetic advance as percent of mean was recorded for oleic acid and linoleic acid content. This indicated the presence of the additive type of gene action controlling the traits oleic acid content and linoleic acid content. The Ol gene was mapped to linkage group (LG) 14 and tightly linked to the marker HO_Fsp_b. In addition, two more quantitative trait loci (QTLs) for oleic acid content were identified in LG8 and LG9. Two QTLs for oil content and two QTLs for linoleic acid content were also identified. All these QTLs explained over 10 % of phenotypic variation. A study was conducted with 13 genotypes differing in oil quality as well as quantity over three seasons to assess the reliability of the identified QTLs over seasons. It resulted in the identification of two potential QTLs for oleic acid as well as linoleic acid content with the markers ORS 762 and HO_Fsp_b. These markers explained more than 57.6-66.6 % of phenotypic variation. Hence it can be concluded that these markers/QTLs would be useful in the marker-assisted selection breeding programme to improve oil quality. The present study also indicated the presence of at least two other genomic regions controlling oleic and linoleic acid content in sunflower.
机译:具有高油酸含量的葵花籽油由于其营养和工业益处而被大量需求。该性状主要由主要基因O1的显性等位基因和其他修饰子控制。这项研究的目的是绘制向日葵种子中的油含量,油酸和亚油酸含量。从细胞质雄性不育系COSF 7A(33-35%油酸)和高油酸自交系HO 5-13(88-90%油酸)开发了一个F2作图群体,并针对油含量,油酸和亚油酸表型化F2种子水平的酸含量。记录到高的表型和基因型变异系数的油酸和亚油酸含量。记录的高遗传力和高遗传进展均以平均百分比表示的油酸和亚油酸含量。这表明存在控制性状油酸含量和亚油酸含量的基因作用的加性类型。将O1基因定位到连锁群(LG)14,并与标记HO_Fsp_b紧密连锁。此外,在LG8和LG9中还鉴定了两个有关油酸含量的定量性状基因座(QTL)。还确定了两个油含量的QTL和两个亚油酸含量的QTL。所有这些QTL解释了超过10%的表型变异。在三个季节中对油质和数量不同的13个基因型进行了研究,以评估所确定的QTL在多个季节中的可靠性。结果导致使用标记ORS 762和HO_Fsp_b鉴定了两个潜在的油酸QTL和亚油酸含量。这些标记解释了超过57.6-66.6%的表型变异。因此,可以得出结论,这些标记/ QTL将在标记辅助选择育种程序中用于改善油质。本研究还表明存在至少两个其他控制向日葵中油酸和亚油酸含量的基因组区域。

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