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Molecular basis of the high-palmitic acid trait in sunflower seed oil

机译:葵花籽油中高棕榈酸性状的分子基础

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Sunflower (Helianthus annuus L.) seed oil with high palmitic acid content has enhanced thermo-oxidative stability, which makes it well suited to high-temperature uses. CAS-5 is a sunflower mutant line that accumulates over 25 % palmitic acid in its seed oil, compared to 5-8 % in conventional cultivars. The objective of this study was to investigate the molecular basis of the high-palmitic acid trait in CAS-5 through both candidate gene and QTL mapping approaches. An F-2 population derived from the cross between CAS-5 and the conventional line HA-89 was developed. A 3-ketoacyl-ACP synthase II (KASII) locus on a telomeric region of linkage group (LG) 9 of the sunflower genetic map was found to co-segregate with palmitic acid content in this population. The KASII locus explained the vast majority of the phenotypic variation (98 %) of the trait. Two minor QTL affecting palmitic acid content were also found on the lower half of LG 9 and on LG 17. Additionally, QTL associated with other major fatty acids (stearic, oleic, and linoleic acid) were identified on LG 1, 6, and 10. This result may reflect untapped genetic variation that could exist among sunflower cultivars for genes determining fatty acid composition. In addition to demonstrating the major role of a KASII locus in the accumulation of high levels of palmitic acid in CAS-5 seeds, this study stressed the importance of characterizing genes with minor effects on fatty acid profile in order to establish optimal breeding strategies for modifying fatty acid composition in sunflower seed oil.
机译:高棕榈酸含量的向日葵(向日葵)种子油具有增强的热氧化稳定性,使其非常适合高温用途。 CAS-5是向日葵突变体品系,其种子油中棕榈酸累积超过25%,而传统品种中棕榈酸累积为5-8%。这项研究的目的是通过候选基因和QTL定位方法研究CAS-5中高棕榈酸性状的分子基础。从CAS-5和常规品系HA-89之间杂交获得了F-2种群。发现向日葵遗传图的连接基团(LG)9的端粒区域上的3-酮酰基-ACP合酶II(KASII)位点与该种群中的棕榈酸含量共分离。 KASII基因座解释了该性状的绝大多数表型变异(98%)。在LG 9的下半部分和LG 17上还发现了两个影响棕榈酸含量的少量QTL。此外,在LG 1、6和10上还发现了与其他主要脂肪酸(硬脂酸,油酸和亚油酸)相关的QTL。该结果可能反映了向日葵品种中用于确定脂肪酸组成的基因可能存在的尚未开发的遗传变异。除了证明KASII基因座在CAS-5种子中高水平棕榈酸积累中的主要作用外,该研究还强调了表征对脂肪酸谱影响较小的基因的重要性,以建立用于修饰的最佳育种策略。葵花籽油中的脂肪酸组成。

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